diff --git a/flax_model/alphafold3/_tools/hmmer/share/man/man1/esl-alimask.1 b/flax_model/alphafold3/_tools/hmmer/share/man/man1/esl-alimask.1 new file mode 100644 index 0000000000000000000000000000000000000000..9f19cc8ba77e68e943e3a3ad288a7ae559c4896d --- /dev/null +++ b/flax_model/alphafold3/_tools/hmmer/share/man/man1/esl-alimask.1 @@ -0,0 +1,618 @@ +.TH "esl\-alimask" 1 "Aug 2023" "Easel 0.49" "Easel Manual" + +.SH NAME +esl\-alimask \- remove columns from a multiple sequence alignment + +.SH SYNOPSIS + +.nf +\fBesl\-alimask \fR[\fIoptions\fR] \fImsafile maskfile\fR + (remove columns based on a mask in an input file) + +\fBesl\-alimask \-t \fR[\fIoptions\fR] \fImsafile coords\fR + (remove a contiguous set of columns at the start and end of an alignment) + +\fBesl\-alimask \-g \fR[\fIoptions\fR] \fImsafile\fR + (remove columns based on their frequency of gaps) + +\fBesl\-alimask \-p \fR[\fIoptions\fR] \fImsafile\fR + (remove columns based on their posterior probability annotation) + +\fBesl\-alimask \-\-rf\-is\-mask \fR[\fIoptions\fR] \fImsafile\fR + (only remove columns that are gaps in the RF annotation) + +The \fB\-g\fR and \fB\-p\fR options may be used in combination. +.fi + + +.SH DESCRIPTION + +.B esl\-alimask +reads a single input alignment, removes some columns from it +(i.e. masks it), and outputs the masked alignment. + +.PP +.B esl\-alimask +can be run in several different modes. + +.PP +.B esl\-alimask +runs in "mask file mode" by default when two +command-line arguments (\fImsafile\fR and \fImaskfile\fR) +are supplied. In this mode, a bit-vector mask in the +.I maskfile +defines which columns to keep/remove. The mask is a string that may +only contain the characters '0' and '1'. A '0' at position x of the +mask indicates that column x is excluded by the mask and should be +removed during masking. A '1' at position x of the mask indicates +that column x is included by the mask and should not be removed during +masking. All lines in the +.I maskfile +that begin with '#' are considered comment lines and are ignored. All +non-whitespace characters in non-comment lines are considered to be +part of the mask. The length of the mask must equal either the total +number of columns in the (first) alignment in +.I msafile, +or the number of columns that are not gaps in the RF annotation of that +alignment. The latter case is only valid if +.I msafile +is in Stockholm format and contains '#=GC RF' annotation. +If the mask length is equal to the non-gap RF length, all gap +RF columns will automatically be removed. + +.PP +.B esl\-alimask +runs in "truncation mode" if the +.B \-t +option is used along with two command line arguments +(\fImsafile\fR and \fIcoords\fR). In this mode, +the alignment will be truncated by removing a contiguous set of +columns from the beginning and end of the alignment. The second +command line argument is the +.I coords +string, that specifies what range of columns to keep in the +alignment, all columns outside of this range will be removed. +The +.I coords +string consists of start and end coordinates separated +by any nonnumeric, nonwhitespace character or characters you like; for +example, +.BR 23..100 , +.BR 23/100 , +or +.B 23\-100 +all work. To keep all alignment columns beginning at 23 until the +end of the alignment, you +can omit the end; for example, +.B 23: +would work. +If the +.B \-\-t\-rf +option is used in combination with +.B \-t, +the coordinates in +.I coords +are interpreted as non-gap RF column coordinates. For example, +with +.B \-\-t\-rf, +a +.I coords +string of +.B 23\-100 +would remove all columns before the 23rd non-gap residue in +the "#=GC RF" annotation and after the 100th non-gap RF residue. + +.PP +.B esl\-alimask +runs in "RF mask" mode if the +.B \-\-rf\-is\-mask +option is enabled. In this mode, the alignment must be in Stockholm +format and contain '#=GC RF' annotation. +.B esl\-alimask +will simply remove all columns that are gaps in the RF annotation. + +.PP +.B esl\-alimask +runs in "gap frequency mode" if +.B \-g +is enabled. In this mode columns for which greater than +.I +fraction of the aligned sequences have gap residues will be removed. +By default, +.I +is 0.5, but this value can be changed to +.I +with the +.BI \-\-gapthresh " " +option. In this mode, if the alignment is in Stockholm format and +has RF annotation, then all columns that are gaps in the RF annotation +will automatically be removed, unless +.B \-\-saveins +is enabled. + +.PP +.B esl\-alimask +runs in "posterior probability mode" if +.B \-p +is enabled. In this mode, masking is based on posterior probability annotation, +and the input alignment must be in Stockholm format and contain '#=GR +PP' (posterior probability) annotation for all sequences. As a special +case, if +.B \-p +is used in combination with +.B \-\-ppcons, +then the input alignment need not have '#=GR PP' annotation, but must +contain '#=GC PP_cons' (posterior probability consensus) annotation. + +.PP +Characters in Stockholm alignment posterior probability annotation +(both '#=GR PP' and '#=GC PP_cons') can have 12 possible values: the +ten digits '0-9', '*', and '.'. If '.', the position must correspond to +a gap in the sequence (for '#=GR PP') or in the RF annotation (for '#=GC +PP_cons'). A value of '0' indicates a posterior probability of +between 0.0 and 0.05, '1' indicates between 0.05 and 0.15, '2' +indicates between 0.15 and 0.25 and so on up to '9' which indicates +between 0.85 and 0.95. A value of '*' indicates a posterior +probability of between 0.95 and 1.0. Higher posterior probabilities +correspond to greater confidence that the aligned residue belongs +where it appears in the alignment. + +.PP +When +.B \-p +is enabled with +.BI \-\-ppcons " ", +columns which have a consensus posterior probability of less than +.I +will be removed during masking, and all other columns will not be removed. + +.PP +When +.B \-p +is enabled without +.B \-\-ppcons, +the number of each possible PP value in each column is counted. +If +.I +fraction of the sequences that contain aligned residues (i.e. do not +contain gaps) in a column have a posterior probability +greater than or equal to +.I , +then that column will not be removed during masking. All columns that +do not meet this criterion will be removed. By default, the values of both +.I +and +.I +are 0.95, but they can be changed with the +.BI \-\-pfract " " +and +.BI \-\-pthresh " " +options, respectively. + +.PP +In posterior probability mode, all columns that have 0 residues +(i.e. that are 100% gaps) will be automatically removed, unless the +.B \-\-pallgapok +option is enabled, in which case such columns will not be removed. + +.PP +Importantly, during posterior probability masking, unless +.B \-\-pavg +is used, PP annotation +values are always considered to be the minimum numerical value in +their corresponding range. For example, a PP '9' character is converted +to a numerical posterior probability of 0.85. If +.B \-\-pavg +is used, PP annotation values are considered to be the average +numerical value in their range. For example, a PP '9' character is +converted to a numerical posterior probability of 0.90. + +.PP +In posterior probability mode, if the alignment is in Stockholm format and +has RF annotation, then all columns that are gaps in the RF annotation +will automatically be removed, unless +.B \-\-saveins +is enabled. + +.PP +A single run of +.B esl\-alimask +can perform both gap frequency-based masking and posterior +probability-based masking if both the +.B \-g +and +.B \-p +options are enabled. In this case, a gap frequency-based mask and a +posterior probability-based mask are independently computed. These +two masks are combined to create the final mask using a logical 'and' +operation. Any column that is to be removed by either the gap or PP +mask will be removed by the final mask. + +.PP +With the +.B \-\-small +option, +.B esl\-alimask +will operate in memory saving mode and the required RAM for the masking +will be minimal (usually less than a Mb) and independent of the +alignment size. To use +.BR \-\-small , +the alignment alphabet must be specified with either +.BR \-\-amino , +.BR \-\-dna , +or +.BR \-\-rna , +and the alignment must be in Pfam format (non-interleaved, 1 +line/sequence Stockholm format). Pfam format is the default output +format of INFERNAL's +.B cmalign +program. Without +.B \-\-small +the required RAM will be equal to roughly the size of the first input +alignment (the size of the alignment file itself if it only contains +one alignment). + + +.SH OUTPUT + +By default, +.B esl\-alimask +will print only the masked alignment to stdout and then exit. +If the +.BI \-o " " +option is used, the alignment will be saved to file +.I +, and information on the number of columns kept and removed will be +printed to stdout. If +.B \-q +is used in combination with +.BR \-o , +nothing is printed to stdout. + +.PP +The mask(s) computed by +.B esl\-alimask +when the +.BR \-t , +.BR \-p , +.BR \-g , +or +.B \-\-rf\-is\-mask +options are used can be saved to output files using the options +\fB\-\-fmask\-rf\fR\fI \fR, +\fB\-\-fmask\-all\fR\fI \fR, +\fB\-\-gmask\-rf\fR\fI \fR, +\fB\-\-gmask\-all\fR\fI \fR, +\fB\-\-pmask\-rf\fR\fI \fR, and +\fB\-\-pmask\-all\fR\fI \fR. +In all cases, +.I +will contain a single line, a bit vector of length +.I , +where +.I +is the either the total number of columns in the alignment (for the +options suffixed with 'all') or the number of non-gap columns in the +RF annotation (for the options suffixed with 'rf'). The mask will be a +string of '0' and '1' characters: a '0' at position x in the mask +indicates column x was removed (excluded) by the mask, and a '1' at +position x indicates column x was kept (included) by the mask. For +the 'rf' suffixed options, the mask only applies to non-gap RF +columns. The options beginning with 'f' will save the 'final' mask +used to keep/remove columns from the alignment. The options beginning +with 'g' save the masks based on gap frequency and require +.BR \-g . +The options beginning with 'p' save the masks based on posterior +probabilities and require +.BR \-p . + + +.SH OPTIONS + +.TP +.B \-h +Print brief help; includes version number and summary of +all options, including expert options. + +.TP +.BI \-o " " +Output the final, masked alignment to file +.I +instead of to stdout. +When this option is used, information about the number of columns +kept/removed is printed to stdout. + +.TP +.B \-q +Be quiet; do not print anything to stdout. +This option can only be used in combination with the +.B \-o +option. + +.TP +.B \-\-small +Operate in memory saving mode. Required RAM will be independent of the +size of the input alignment to mask, instead of roughly the size of the +input alignment. When enabled, the alignment must be in +Pfam Stockholm (non-interleaved 1 line/seq) format (see +.BR esl\-reformat ) +and the output alignment will be in Pfam format. + +.TP +.BI \-\-informat " " +Assert that input +.I msafile +is in alignment format +.IR . +Common choices for +.I +include: +.BR stockholm , +.BR a2m , +.BR afa , +.BR psiblast , +.BR clustal , +.BR phylip . +For more information, and for codes for some less common formats, +see main documentation. +The string +.I +is case-insensitive (\fBa2m\fR or \fBA2M\fR both work). +Default is +.B stockholm +format, unless +.B \-\-small +is used, in which case +.B pfam +format (non-interleaved Stockholm) is assumed. + +.TP +.BI \-\-outformat " " +Write the output +.I msafile +in alignment format +.IR . +Common choices for +.I +include: +.BR stockholm , +.BR a2m , +.BR afa , +.BR psiblast , +.BR clustal , +.BR phylip . +The string +.I +is case-insensitive (\fBa2m\fR or \fBA2M\fR both work). +Default is +.BR stockholm , +unless +.B \-\-small +is enabled, in which case +.B pfam +(noninterleaved Stockholm) is the default output format. + + +.TP +.BI \-\-fmask\-rf " " +Save the non-gap RF-length final mask used to mask the alignment +to file +.IR . +The input alignment must be in Stockholm format and contain '#=GC RF' +annotation for this option to be valid. See the OUTPUT section above for +more details on output mask files. + +.TP +.BI \-\-fmask\-all " " +Save the full alignment-length final mask used to mask the alignment +to file +.IR . +See the OUTPUT section above for more details on output mask files. + +.TP +.B \-\-amino +Specify that the input alignment is a protein alignment. +By default, +.B esl\-alimask +will try to autodetect the alphabet, but if the alignment is +sufficiently small it may be ambiguous. This option defines the +alphabet as protein. Importantly, if +.B \-\-small +is enabled, the alphabet must be specified with either +.BR \-\-amino , +.BR \-\-dna , +or +.BR \-\-rna . + +.TP +.B \-\-dna +Specify that the input alignment is a DNA alignment. + +.TP +.B \-\-rna +Specify that the input alignment is an RNA alignment. + +.TP +.B \-\-t\-rf +With +.BR \-t , +specify that the start and end coordinates defined in +the second command line argument +.I coords +correspond to non-gap RF coordinates. To use this option, the +alignment must be in Stockholm format and have "#=GC RF" +annotation. See the DESCRIPTION section for an example of using the +.B \-\-t\-rf +option. + +.TP +.B \-\-t\-rmins +With +.BR \-t , +specify that all columns that are gaps in the reference (RF) +annotation in between the specified start and end coordinates be +removed. By default, these columns will be kept. +To use this option, the alignment must be in Stockholm format and +have "#=GC RF" annotation. + +.TP +.BI \-\-gapthresh " " +With +.BR \-g , +specify that a column is kept (included by mask) if no more +than +.I +fraction of sequences in the alignment have a gap ('.', '\-', or '_') +at that position. All other columns are removed (excluded by mask). +By default, +.I +is 0.5. + +.TP +.BI \-\-gmask\-rf " " +Save the non-gap RF-length gap frequency-based mask used to mask the alignment +to file +.IR . +The input alignment must be in Stockholm format and contain '#=GC RF' +annotation for this option to be valid. See the OUTPUT section above for +more details on output mask files. + +.TP +.BI \-\-gmask\-all " " +Save the full alignment-length gap frequency-based mask used to mask the alignment +to file +.IR . +See the OUTPUT section above for more details on output mask files. + + +.TP +.BI \-\-pfract " " +With +.BR \-p , +specify that a column is kept (included by mask) if the +fraction of sequences with a non-gap residue in that column with a +posterior probability of at least +.I +(from \fB\-\-pthresh\fR\fI \fR) is +.I +or greater. All other columns are removed (excluded by mask). +By default +.I +is 0.95. + +.TP +.BI \-\-pthresh " " +With +.BR \-p , +specify that a column is kept (included by mask) if +.I +(from \fB\-\-pfract \fR\fI\fR) +fraction of sequences with a non-gap residue in that column have a +posterior probability of at least +.IR . +All other columns are removed (excluded by mask). +By default +.I +is 0.95. See the DESCRIPTION section for more on +posterior probability (PP) masking. +Due to the granularity of the PP annotation, different +.I +values within a range covered by a single PP character will be +have the same effect on masking. For example, using +.B \-\-pthresh 0.86 +will have the same effect as using +\fB\-\-pthresh 0.94\fR. + +.TP +.BI \-\-pavg " " +With +.BR \-p , +specify that a column is kept (included by mask) if +the average posterior probability of non-gap residues in that column +is at least +.IR . +See the DESCRIPTION section for more on +posterior probability (PP) masking. + +.TP +.BI \-\-ppcons " " +With +.BR \-p , +use the '#=GC PP_cons' annotation to define which columns to +keep/remove. A column is kept (included by mask) if the PP_cons value +for that column is +.I +or greater. Otherwise it is removed. + +.TP +.B \-\-pallgapok +With +.BR \-p , +do not automatically remove any columns that are 100% gaps +(i.e. contain 0 aligned residues). By default, such columns will be +removed. + +.TP +.BI \-\-pmask\-rf " " +Save the non-gap RF-length posterior probability-based mask used to mask the alignment +to file +.IR . +The input alignment must be in Stockholm format and contain '#=GC RF' +annotation for this option to be valid. See the OUTPUT section above for +more details on output mask files. + +.TP +.BI \-\-pmask\-all " " +Save the full alignment-length posterior probability-based mask used to mask the alignment +to file +.IR . +See the OUTPUT section above for more details on output mask files. + + +.TP +.B \-\-keepins +If +.B \-p +and/or +.B \-g +is enabled and the alignment is in Stockholm or Pfam format and has '#=GC RF' +annotation, then allow columns that are gaps in the RF annotation to +possibly be kept. By default, all gap RF columns would be removed +automatically, but with this option enabled gap and non-gap RF columns +are treated identically. +To automatically remove all gap RF columns when using a +.I maskfile +, then define the mask in +.I maskfile +as having length equal to the non-gap RF length in the alignment. +To automatically remove all gap RF columns when using +.B \-t, +use the +.B \-\-t\-rmins +option. + + + + + + + + +.SH SEE ALSO + +.nf +http://bioeasel.org/ +.fi + +.SH COPYRIGHT + +.nf +Copyright (C) 2023 Howard Hughes Medical Institute. +Freely distributed under the BSD open source license. +.fi + +.SH AUTHOR + +.nf +http://eddylab.org +.fi diff --git a/flax_model/alphafold3/_tools/hmmer/share/man/man1/hmmalign.1 b/flax_model/alphafold3/_tools/hmmer/share/man/man1/hmmalign.1 new file mode 100644 index 0000000000000000000000000000000000000000..96c11fbb749e44d4645dae5d24addc46eefca32d --- /dev/null +++ b/flax_model/alphafold3/_tools/hmmer/share/man/man1/hmmalign.1 @@ -0,0 +1,185 @@ +.TH "hmmalign" 1 "Aug 2023" "HMMER 3.4" "HMMER Manual" + +.SH NAME +hmmalign \- align sequences to a profile + +.SH SYNOPSIS +.B hmmalign +[\fIoptions\fR] +.I hmmfile +.I seqfile + +.SH DESCRIPTION + +.PP +Perform a multiple sequence alignment of all the sequences in +.I seqfile +by aligning them individually to the profile HMM in +.I hmmfile. +The new alignment is output to stdout. + +.PP +The +.I hmmfile +should contain only a single profile. If it contains more, only the +first profile in the file will be used. + +.PP +Either +.I hmmfile +or +.I seqfile +(but not both) may be '\-' (dash), which +means reading this input from stdin rather than a file. + +.PP +The sequences in +.I seqfile +are aligned in unihit local alignment mode. Therefore they should +already be known to contain only a single domain (or a fragment of one). +The optimal alignment +may assign some residues as nonhomologous (N and C states), in which +case these residues are still included in the resulting alignment, but +shoved to the outer edges. To trim these unaligned nonhomologous residues from +the result, see the +.B \-\-trim +option. + + +.SH OPTIONS + +.TP +.B \-h +Help; print a brief reminder of command line usage and all available +options. + +.TP +.BI \-o " " +Direct the output alignment to file +.I , +rather than to stdout. + +.TP +.BI \-\-mapali " " +Merge the existing alignment in file +.I +into the result, where +.I +is exactly the same alignment that was used to build the model in +.I hmmfile. +This is done using a map of alignment columns to consensus +profile positions that is stored in the +.I hmmfile. +The multiple alignment in +.I +will be exactly reproduced in its consensus columns (as defined by the +profile), but the displayed alignment in insert columns may be +altered, because insertions relative to a profile are considered by +convention to be unaligned data. + + +.TP +.B \-\-trim +Trim nonhomologous residues (assigned to N and C states in the optimal +alignments) from the resulting multiple alignment output. + +.TP +.B \-\-amino +Assert that sequences in +.I seqfile +are protein, bypassing alphabet autodetection. + +.TP +.B \-\-dna +Assert that sequences in +.I seqfile +are DNA, bypassing alphabet autodetection. + +.TP +.B \-\-rna +Assert that sequences in +.I seqfile +are RNA, bypassing alphabet autodetection. + + +.TP +.BI \-\-informat " " +Assert that input +.I seqfile +is in format +.IR , +bypassing format autodetection. +Common choices for +.I +include: +.BR fasta , +.BR embl , +.BR genbank. +Alignment formats also work; +common choices include: +.BR stockholm , +.BR a2m , +.BR afa , +.BR psiblast , +.BR clustal , +.BR phylip . +For more information, and for codes for some less common formats, +see main documentation. +The string +.I +is case-insensitive (\fBfasta\fR or \fBFASTA\fR both work). + +.TP +.BI \-\-outformat " " +Write the output alignment +in format +.IR . +Common choices for +.I +include: +.BR stockholm , +.BR a2m , +.BR afa , +.BR psiblast , +.BR clustal , +.BR phylip . +The string +.I +is case-insensitive (\fBa2m\fR or \fBA2M\fR both work). +Default is +.BR stockholm . + + + +.SH SEE ALSO + +See +.BR hmmer (1) +for a master man page with a list of all the individual man pages +for programs in the HMMER package. + +.PP +For complete documentation, see the user guide that came with your +HMMER distribution (Userguide.pdf); or see the HMMER web page +(http://hmmer.org/). + + + +.SH COPYRIGHT + +.nf +Copyright (C) 2023 Howard Hughes Medical Institute. +Freely distributed under the BSD open source license. +.fi + +For additional information on copyright and licensing, see the file +called COPYRIGHT in your HMMER source distribution, or see the HMMER +web page +(http://hmmer.org/). + + +.SH AUTHOR + +.nf +http://eddylab.org +.fi diff --git a/flax_model/alphafold3/_tools/hmmer/share/man/man1/hmmpgmd_shard.1 b/flax_model/alphafold3/_tools/hmmer/share/man/man1/hmmpgmd_shard.1 new file mode 100644 index 0000000000000000000000000000000000000000..427779943212b3fcbaec0a476866e8250e039179 --- /dev/null +++ b/flax_model/alphafold3/_tools/hmmer/share/man/man1/hmmpgmd_shard.1 @@ -0,0 +1,162 @@ +.TH "hmmpgmd_shard" 1 "Aug 2023" "HMMER 3.4" "HMMER Manual" + +.SH NAME +hmmpgmd_shard \- sharded daemon for database search web services + + +.SH SYNOPSIS +.B hmmpgmd_shard +[\fIoptions\fR] + + +.SH DESCRIPTION + +.PP +The +.B hmmpgmd_shard +program provides a sharded version of the +.B hmmpgmd +program that we use internally to implement high-performance HMMER services that can be accessed via the internet. See the +.B hmmpgmd +man page for a discussion of how the base +.B hmmpgmd +program is used. This man page discusses differences between +.B hmmpgmd_shard +and +.B hmmpgmd. +The base +.B hmmpgmd +program loads the entirety of its database file into RAM on every worker node, in spite of the fact that each worker node searches a predictable fraction of the database(s) contained in that file when performing searches. This wastes RAM, particularly when many worker nodes are used to accelerate searches of large databases. + +.PP +.B Hmmpgmd_shard +addresses this by dividing protein sequence database files into shards. Each worker node loads only 1/Nth of the database file, where N is the number of worker nodes attached to the master. HMM database files are not sharded, meaning that every worker node will load the entire database file into RAM. Current HMM databases are much smaller than current protein sequence databases, and easily fit into the RAM of modern servers even without sharding. + +.PP +.B Hmmpgmd_shard +is used in the same manner as +.B hmmpgmd +, except that it takes one additional argument: +.BI \-\-num_shards " " +, which specifies the number of shards that protein databases will be divided into, and defaults to 1 if unspecified. This argument is only valid for the master node of a +.B hmmpgmd +system (i.e., when +.BI \-\-master +is passed to the +.B hmmpgmd +program), and must be equal to the number of worker nodes that will connect to the master node. +.B Hmmpgmd_shard +will signal an error if more than +.BI num_shards +worker nodes attempt to connect to the master node or if a search is started when fewer than +.BI num_shards +workers are connected to the master. + +.SH OPTIONS + +.TP +.B \-h +Help; print a brief reminder of command line usage and all available +options. + +.TP +.BI \-\-master +Run as the master server. + +.TP +.BI \-\-worker " " +Run as a worker, connecting to the master server that is running on IP +address +.IR . + +.TP +.BI \-\-cport " " +Port to use for communication between clients and the master server. +The default is 51371. + +.TP +.BI \-\-wport " " +Port to use for communication between workers and the master server. +The default is 51372. + +.TP +.BI \-\-ccncts " " +Maximum number of client connections to accept. The default is 16. + +.TP +.BI \-\-wcncts " " +Maximum number of worker connections to accept. The default is 32. + +.TP +.BI \-\-pid " " +Name of file into which the process id will be written. + +.TP +.BI \-\-seqdb " " +Name of the file (in +.B hmmpgmd +format) containing protein sequences. +The contents of this file will be cached for searches. + +.TP +.BI \-\-hmmdb " " +Name of the file containing protein HMMs. The contents of this file +will be cached for searches. + +.TP +.BI \-\-cpu " " +Number of parallel threads to use (for +.B \-\-worker +). + +.TP +.BI \-\-num_shards " " +Number of shards to divide cached sequence database(s) into. HMM databases are not sharded, due to their small size. +This option is only valid when the +.B \-\-master +option is present, and defaults to 1 if not specified. +.B Hmmpgmd_shard +requires that the number of shards be equal to the number of worker nodes, and will give errors if more than +.BI num_shards +workers attempt to connect to the master node or if a search is started with fewer than +.BI num_shards +workers connected to the master. + +.SH SEE ALSO + +See +.BR hmmmpgmd (1) +for a description of the base hmmpgmd command and how the daemon should be used. + +.BR hmmer (1) +for a master man page with a list of all the individual man pages +for programs in the HMMER package. + +.PP +For complete documentation, see the user guide that came with your +HMMER distribution (Userguide.pdf); or see the HMMER web page +(http://hmmer.org/). + + + +.SH COPYRIGHT + +.nf +Copyright (C) 2023 Howard Hughes Medical Institute. +Freely distributed under the BSD open source license. +.fi + +For additional information on copyright and licensing, see the file +called COPYRIGHT in your HMMER source distribution, or see the HMMER +web page +(http://hmmer.org/). + + +.SH AUTHOR + +.nf +http://eddylab.org +.fi + + + diff --git a/flax_model/alphafold3/_tools/hmmer/share/man/man1/hmmstat.1 b/flax_model/alphafold3/_tools/hmmer/share/man/man1/hmmstat.1 new file mode 100644 index 0000000000000000000000000000000000000000..ca3243b38be110c95c4bed08f697d9f8e03e49fb --- /dev/null +++ b/flax_model/alphafold3/_tools/hmmer/share/man/man1/hmmstat.1 @@ -0,0 +1,133 @@ +.TH "hmmstat" 1 "Aug 2023" "HMMER 3.4" "HMMER Manual" + +.SH NAME +hmmstat \- summary statistics for a profile file + + +.SH SYNOPSIS +.B hmmstat +[\fIoptions\fR] +.I hmmfile + + +.SH DESCRIPTION + +The +.B hmmstat +utility prints out a tabular file of summary statistics for each +profile in +.IR hmmfile . + + +.PP +.I hmmfile +may be '\-' (a dash character), in which case profiles +are read from a +stdin +pipe instead of from a file. + +.PP +The columns are: + +.TP +.B idx +The index of this profile, numbering each profile in the file starting from 1. + +.TP +.B name +The name of the profile. + +.TP +.B accession +The optional accession of the profile, or "\-" if there is none. + +.TP +.B nseq +The number of sequences that the profile was estimated from. + +.TP +.B eff_nseq +The effective number of sequences that the profile was estimated +from, after HMMER applied an effective sequence number calculation +such as the default entropy weighting. + +.TP +.B M +The length of the model in consensus residues (match states). + +.TP +.B relent +Mean relative entropy per match state, in bits. This is the expected +(mean) score per consensus position. This is what the default +entropy-weighting method for effective sequence number estimation +focuses on, so for default HMMER3 models, you expect this value to +reflect the default target for entropy-weighting. + +.TP +.B info +Mean information content per match state, in bits. +Probably not useful. Information content is a slightly +different calculation than relative entropy. + +.TP +.B "p relE" +Mean positional relative entropy, in bits. +This is a fancier version of the per-match-state relative entropy, +taking into account the transition (insertion/deletion) probabilities; +it may be a more accurate estimation of the average score contributed +per model consensus position. + +.TP +.B compKL +Kullback-Leibler divergence from +the default background frequency distribution to +the average composition of the profile's consensus match states, in bits. +The higher this number, the more biased the residue composition of the +profile is. Highly biased profiles can slow the HMMER3 acceleration +pipeline, by causing too many nonhomologous sequences to pass the filters. + + +.SH OPTIONS + +.TP +.B \-h +Help; print a brief reminder of command line usage and all available +options. + + +.SH SEE ALSO + +See +.BR hmmer (1) +for a master man page with a list of all the individual man pages +for programs in the HMMER package. + +.PP +For complete documentation, see the user guide that came with your +HMMER distribution (Userguide.pdf); or see the HMMER web page +(http://hmmer.org/). + + + +.SH COPYRIGHT + +.nf +Copyright (C) 2023 Howard Hughes Medical Institute. +Freely distributed under the BSD open source license. +.fi + +For additional information on copyright and licensing, see the file +called COPYRIGHT in your HMMER source distribution, or see the HMMER +web page +(http://hmmer.org/). + + +.SH AUTHOR + +.nf +http://eddylab.org +.fi + + + + diff --git a/flax_model/alphafold3/_tools/hmmer/share/man/man1/makehmmerdb.1 b/flax_model/alphafold3/_tools/hmmer/share/man/man1/makehmmerdb.1 new file mode 100644 index 0000000000000000000000000000000000000000..3d8b2e458b6f49e94d944399d1c90258d88367b5 --- /dev/null +++ b/flax_model/alphafold3/_tools/hmmer/share/man/man1/makehmmerdb.1 @@ -0,0 +1,133 @@ +.TH "makehmmerdb" 1 "Aug 2023" "HMMER 3.4" "HMMER Manual" + +.SH NAME +makehmmerdb \- build nhmmer database from a sequence file + + +.SH SYNOPSIS +.B makehmmerdb +[\fIoptions\fR] +.I seqfile +.I binaryfile + + +.SH DESCRIPTION + +.PP +.B makehmmerdb +is used to create a binary file from a DNA sequence file. This +binary file may be used as a target database for the DNA search tool +.BR nhmmer . +Using default settings in +.BR nhmmer , +this yields a roughly 10-fold acceleration with small loss of +sensitivity on benchmarks. + + +.SH OPTIONS + +.TP +.B \-h +Help; print a brief reminder of command line usage and all available +options. + + + +.SH OTHER OPTIONS + +.TP +.BI \-\-informat " " +Assert that input +.I seqfile +is in format +.IR , +bypassing format autodetection. +Common choices for +.I +include: +.BR fasta , +.BR embl , +.BR genbank. +Alignment formats also work; +common choices include: +.BR stockholm , +.BR a2m , +.BR afa , +.BR psiblast , +.BR clustal , +.BR phylip . +For more information, and for codes for some less common formats, +see main documentation. +The string +.I +is case-insensitive (\fBfasta\fR or \fBFASTA\fR both work). + + +.TP +.BI \-\-bin_length " " +Bin length. The binary file depends on a data structure called the +FM index, which organizes a permuted copy of the sequence in bins +of length +.IR . +Longer bin length will lead to smaller files (because data is +captured about each bin) and possibly slower query time. The +default is 256. Much more than 512 may lead to notable reduction +in speed. + + +.TP +.BI \-\-sa_freq " " +Suffix array sample rate. The FM index structure also samples from +the underlying suffix array for the sequence database. More frequent +sampling (smaller value for +.IR ) +will yield larger file size and faster search (until file size becomes +large enough to cause I/O to be a bottleneck). The default value +is 8. Must be a power of 2. + + +.TP +.BI \-\-block_size " " +The input sequence is broken into blocks of size +.I +million letters. An FM index is built for each block, rather than +building an FM index for the entire sequence database. Default is +50. Larger blocks do not seem to yield substantial speed increase. + + + +.SH SEE ALSO + +See +.BR hmmer (1) +for a master man page with a list of all the individual man pages +for programs in the HMMER package. + +.PP +For complete documentation, see the user guide that came with your +HMMER distribution (Userguide.pdf); or see the HMMER web page +(http://hmmer.org/). + + + +.SH COPYRIGHT + +.nf +Copyright (C) 2023 Howard Hughes Medical Institute. +Freely distributed under the BSD open source license. +.fi + +For additional information on copyright and licensing, see the file +called COPYRIGHT in your HMMER source distribution, or see the HMMER +web page +(http://hmmer.org/). + + +.SH AUTHOR + +.nf +http://eddylab.org +.fi + + + diff --git a/flax_model/alphafold3/_tools/hmmer/share/man/man1/nhmmer.1 b/flax_model/alphafold3/_tools/hmmer/share/man/man1/nhmmer.1 new file mode 100644 index 0000000000000000000000000000000000000000..5a7f4d3d2ed3deb93254b2497bc4ff676a3d8aeb --- /dev/null +++ b/flax_model/alphafold3/_tools/hmmer/share/man/man1/nhmmer.1 @@ -0,0 +1,687 @@ +.TH "nhmmer" 1 "Aug 2023" "HMMER 3.4" "HMMER Manual" + +.SH NAME +nhmmer \- search DNA queries against a DNA sequence database + + +.SH SYNOPSIS +.B nhmmer +[\fIoptions\fR] +.I queryfile +.I seqdb + + +.SH DESCRIPTION + +.PP +.B nhmmer +is used to search one or more nucleotide queries against a +nucleotide sequence database. +For each query in +.IR queryfile , +use that query to search the target database of sequences in +.IR seqdb , +and output a ranked list of the hits with the most significant +matches to the query. A query may be either a profile model +built using +.BR hmmbuild , +a sequence alignment, or a single sequence. Sequence based +queries can be in a number of formats (see +.BR \-\-qformat ), +and can typically be autodetected. Note that only +Stockholm +format supports queries made up of more than one sequence +alignment. + + + +.PP +Either the query +.I queryfile +or the target +.I seqdb +may be '\-' (a dash character), in which case +the query file or target database input will be read from a pipe instead of from a +file. Only one input source can come through , not both. +If the +.I queryfile +contains more than one query, then +.I seqdb +cannot come from stdin, because we can't rewind the +streaming target database to search it with another profile. + +.PP +If the query is sequence-based (unaligned or aligned), +a new file containing the HMM(s) built from the input(s) in +.I queryfile +may optionally be produced, with the filename set using the +.B \-\-hmmout +flag. + + +.PP +The output format is designed to be human-readable, but is often so +voluminous that reading it is impractical, and parsing it is a pain. The +.B \-\-tblout +option saves output in a simple tabular format that is concise and +easier to parse. +The +.B \-o +option allows redirecting the main output, including throwing it away +in /dev/null. + + + +.SH OPTIONS + +.TP +.B \-h +Help; print a brief reminder of command line usage and all available +options. + + + +.SH OPTIONS FOR CONTROLLING OUTPUT + +.TP +.BI \-o " " +Direct the main human-readable output to a file +.I +instead of the default stdout. + +.TP +.BI \-A " " +Save a multiple alignment of all significant hits (those satisfying +"inclusion thresholds") to the file +.IR . + +.TP +.BI \-\-tblout " " +Save a simple tabular (space-delimited) file summarizing the +per-target output, with one data line per homologous target sequence +found. + +.TP +.BI \-\-dfamtblout " " +Save a tabular (space-delimited) file summarizing the +per-hit output, similar to +.B \-\-tblout +but more succinct. + +.TP +.BI \-\-aliscoresout " " +Save to file a list of per-position scores for each hit. +This is useful, for example, in identifying regions of high +score density for use in resolving overlapping hits from +different models. + +.TP +.BI \-\-hmmout " " +If +.I queryfile +is sequence-based, write the internally-computed HMM(s) to file +.IR . + + +.TP +.B \-\-acc +Use accessions instead of names in the main output, where available +for profiles and/or sequences. + +.TP +.B \-\-noali +Omit the alignment section from the main output. This can greatly +reduce the output volume. + +.TP +.B \-\-notextw +Unlimit the length of each line in the main output. The default +is a limit of 120 characters per line, which helps in displaying +the output cleanly on terminals and in editors, but can truncate +target profile description lines. + +.TP +.BI \-\-textw " " +Set the main output's line length limit to +.I +characters per line. The default is 120. + + + +.SH OPTIONS CONTROLLING SINGLE SEQUENCE SCORING + +By default, if a query is a single sequence from a file in +fasta format, +.B nhmmer +uses a search model constructed from that sequence and a standard +20x20 substitution matrix for residue probabilities, along with two +additional parameters for position-independent gap open and gap extend +probabilities. These options allow the default single-sequence scoring +parameters to be changed, and for single-sequence scoring options to +be applied to a single sequence coming from an aligned format. + +.TP +.BI \-\-singlemx +If a single sequence query comes from a multiple sequence alignment file, +such as in Stockholm format, the search model is by default constructed as is typically done +for multiple sequence alignments. This option forces +.B nhmmer +to use the single-sequence method with substitution score matrix. + +.TP +.BI \-\-mxfile "" +Set the gap open probability for a single sequence query model to +.IR . +The default is 0.02. +.I +must be >= 0 and < 0.5. + +.TP +.BI \-\-pextend " " +Set the gap extend probability for a single sequence query model to +.IR . +The default is 0.4. +.I +must be >= 0 and < 1.0. + + + +.SH OPTIONS CONTROLLING REPORTING THRESHOLDS + +Reporting thresholds control which hits are reported in output files +(the main output, +.BR \-\-tblout , +and +.BR \-\-dfamtblout ). +Hits are ranked by statistical significance (E-value). + + +.TP +.BI \-E " " +Report target sequences with an E-value of <= +.IR . +The default is 10.0, meaning that on average, about 10 false positives +will be reported per query, so you can see the top of the noise +and decide for yourself if it's really noise. + +.TP +.BI \-T " " +Instead of thresholding output on E-value, instead +report target sequences with a bit score of >= +.IR . + + + + +.SH OPTIONS FOR INCLUSION THRESHOLDS + +Inclusion thresholds are stricter than reporting thresholds. +Inclusion thresholds control which hits are considered to be reliable +enough to be included in an output alignment or a subsequent search +round, or marked as significant ("!") as opposed to questionable ("?") +in hit output. + +.TP +.BI \-\-incE " " +Use an E-value of <= +.I +as the inclusion threshold. +The default is 0.01, meaning that on average, about 1 false positive +would be expected in every 100 searches with different query +sequences. + +.TP +.BI \-\-incT " " +Instead of using E-values for setting the inclusion threshold, +use a bit score of >= +.I +as the inclusion threshold. +By default this option is unset. + + + +.SH OPTIONS FOR MODEL-SPECIFIC SCORE THRESHOLDING + +Curated profile databases may define specific bit score thresholds for +each profile, superseding any thresholding based on statistical +significance alone. + +To use these options, the profile must contain the appropriate (GA, +TC, and/or NC) optional score threshold annotation; this is picked up +by +.B hmmbuild +from Stockholm format alignment files. For a nucleotide model, each +thresholding option has a single per-hit threshold +This acts as if +.BI \-T " " +.BI \-\-incT " " +has been applied specifically using each model's curated thresholds. + +.TP +.B \-\-cut_ga +Use the GA (gathering) bit score threshold in the model to set +per-hit reporting and inclusion +thresholds. GA thresholds are generally considered to be the +reliable curated thresholds defining family membership; for example, +in Dfam, these thresholds are applied when annotating a genome +with a model of a family known to be found in that organism. They +may allow for minimal expected false discovery rate. + +.TP +.B \-\-cut_nc +Use the NC (noise cutoff) bit score threshold in the model to set +per-hit reporting and inclusion +thresholds. NC thresholds are less stringent than GA; in the context +of Pfam, they are generally used to store the score of the +highest-scoring known false positive. + +.TP +.B \-\-cut_tc +Use the TC (trusted cutoff) bit score threshold in the model to set +per-hit reporting and inclusion +thresholds. TC thresholds are more stringent than GA, and are +generally considered to be the score of the lowest-scoring known +true positive that is above all known false positives; for example, +in Dfam, these thresholds are applied when annotating a genome +with a model of a family not known to be found in that organism. + + + + +.SH OPTIONS CONTROLLING THE ACCELERATION PIPELINE + +HMMER3 searches are accelerated in a three-step filter pipeline: the +scanning-SSV filter, the Viterbi filter, and the Forward filter. The +first filter is the fastest and most approximate; the last is the full +Forward scoring algorithm. There is also a bias filter step between +SSV and Viterbi. Targets that pass all the steps in the acceleration +pipeline are then subjected to postprocessing -- domain +identification and scoring using the Forward/Backward algorithm. + +Changing filter thresholds only removes or includes targets from +consideration; changing filter thresholds does not alter bit scores, +E-values, or alignments, all of which are determined solely in +postprocessing. + +.TP +.B \-\-max +Turn off (nearly) all filters, including the bias filter, and run full +Forward/Backward postprocessing on most of the target sequence. +In contrast to +.B phmmer +and +.BR hmmsearch , +where this flag really does turn off the filters entirely, the +.B \-\-max +flag in +.B nhmmer +sets the scanning-SSV filter threshold to 0.4, not 1.0. Use of this +flag increases sensitivity somewhat, at a large cost in speed. + +.TP +.BI \-\-F1 " " +Set the P-value threshold for the SSV filter step. The default is +0.02, meaning that roughly 2% of the highest scoring nonhomologous +targets are expected to pass the filter. + +.TP +.BI \-\-F2 " " +Set the P-value threshold for the Viterbi filter step. +The default is 0.001. + +.TP +.BI \-\-F3 " " +Set the P-value threshold for the Forward filter step. +The default is 1e-5. + +.TP +.B \-\-nobias +Turn off the bias filter. This increases sensitivity somewhat, but can +come at a high cost in speed, especially if the query has biased +residue composition (such as a repetitive sequence region, or if it is +a membrane protein with large regions of hydrophobicity). Without the +bias filter, too many sequences may pass the filter with biased +queries, leading to slower than expected performance as the +computationally intensive Forward/Backward algorithms shoulder an +abnormally heavy load. + + + +.SH OPTIONS FOR SPECIFYING THE ALPHABET + +.TP +.B \-\-dna +Assert that sequences in +.I msafile +are DNA, bypassing alphabet autodetection. + +.TP +.B \-\-rna +Assert that sequences in +.I msafile +are RNA, bypassing alphabet autodetection. + + + +.SH OPTIONS CONTROLLING SEED SEARCH HEURISTIC + +When searching with +.BR nhmmer , +one may optionally precompute a binary version of the target database, using +.BR makehmmerdb , +then search against that database. Using default settings, this yields a +roughly 10-fold acceleration with small loss of sensitivity on benchmarks. +This is achieved using a heuristic method that searches for seeds (ungapped +alignments) around which full processing is done. This is essentially +a replacement to the SSV stage. (This method has been extensively tested, +but should still be treated as somewhat experimental.) +The following options only impact +.B nhmmer +if the value of +.B \-\-tformat +is +.BR hmmerdb . + +Changing parameters for this seed-finding step will impact both speed and +sensitivity - typically faster search leads to lower sensitivity. + +.TP +.BI \-\-seed_max_depth " " +The seed step requires that a seed reach a specified bit score in length +no longer than +.IR . +By default, this value is 15. Longer seeds allow a greater chance of +meeting the bit score threshold, leading to diminished filtering +(greater sensitivity, slower run time). + +.TP +.BI \-\-seed_sc_thresh " " +The seed must reach score +.I +(in bits). The default is 15.0 bits. A higher threshold increases +filtering stringency, leading to faster run times and lower +sensitivity. + +.TP +.BI \-\-seed_sc_density " " +Either all prefixes or all suffixes of a seed must have +bit density (bits per aligned position) of at least +.IR . +The default is 0.8 bits/position. An increase in the density +requirement leads to increased filtering stringency, thus faster +run times and lower sensitivity. + +.TP +.BI \-\-seed_drop_max_len " " +A seed may not have a run of length +.I +in which the score drops by +.B \-\-seed_drop_lim +or more. Basically, this prunes seeds that go through long +slightly-negative seed extensions. The default is 4. Increasing +the limit causes (slightly) diminished filtering efficiency, thus +slower run times and higher sensitivity. (minor tuning option) + +.TP +.BI \-\-seed_drop_lim " " +In a seed, there may be no run of length +.B \-\-seed_drop_max_len +in which the score drops by +.BR \-\-seed_drop_lim . +The default is 0.3 bits. Larger numbers mean less filtering. +(minor tuning option) + +.TP +.BI \-\-seed_req_pos " " +A seed must contain a run of at least +.I +positive-scoring matches. The default is 5. Larger values mean +increased filtering. +(minor tuning option) + +.TP +.BI \-\-seed_ssv_length " " +After finding a short seed, an ungapped alignment is extended +in both directions in an attempt to meet the +.B \-\-F1 +score threshold. The window through which this ungapped alignment +extends is length +.IR . +The default is 70. +Decreasing this value slightly reduces run time, at a small risk of +reduced sensitivity. (minor tuning option) + + +.SH OTHER OPTIONS + + +.TP +.BI \-\-qformat " " +Assert that input +.I queryfile +is a sequence file (unaligned or aligned), in format +.IR , +bypassing format autodetection. +Common choices for +.I +include: +.BR fasta , +.BR embl , +.BR genbank. +Alignment formats also work, and will serve as the +basis for automatic creation of a profile HMM used for +searching; +common choices include: +.BR stockholm , +.BR a2m , +.BR afa , +.BR psiblast , +.BR clustal , +.BR phylip . +For more information, and for codes for some less common formats, +see main documentation. + + +.TP +.BI \-\-qsingle_seqs +Force +.I queryfile +to be read as individual sequences, even if it is in +an msa format. For example, if the input is in aligned +.BR stockholm +format, the +.BR \-\-qsingle_seqs + flag will cause each sequence in that alignment to be used as a separate query sequence. + +.TP +.BI \-\-tformat " " +Assert that target sequence database +.I seqdb +is in format +.IR , +bypassing format autodetection. +Common choices for +.I +include: +.BR fasta , +.BR embl , +.BR genbank , +.BR fmindex . +Alignment formats also work; +common choices include: +.BR stockholm , +.BR a2m , +.BR afa , +.BR psiblast , +.BR clustal , +.BR phylip . +For more information, and for codes for some less common formats, +see main documentation. +The string +.I +is case-insensitive (\fBfasta\fR or \fBFASTA\fR both work). +The format +.B fmindex +indicates that the database file is a binary file produced using +.BR makehmmerdb . + + +.TP +.B \-\-nonull2 +Turn off the null2 score corrections for biased composition. + +.TP +.BI \-Z " " +For the purposes of per-hit E-value calculations, +Assert that the total size of the target database is +.I +million nucleotides, +rather than the actual number of targets seen. + + +.TP +.BI \-\-seed " " +Set the random number seed to +.IR . +Some steps in postprocessing require Monte Carlo simulation. The +default is to use a fixed seed (42), so that results are exactly +reproducible. Any other positive integer will give different (but also +reproducible) results. A choice of 0 uses a randomly chosen seed. + + +.TP +.BI \-\-w_beta " " +Window length tail mass. +The upper bound, +.IR W , +on the length at which nhmmer expects to find an instance of the +model is set such that the fraction of all sequences generated +by the model with length >= W is less than +.IR . +The default is 1e-7. +This flag may be used to override the value of +.I W +established for the model by +.BR hmmbuild , +or when the query is sequence-based. + + + +.TP +.BI \-\-w_length " " +Override the model instance length upper bound, W, +which is otherwise controlled by +.BR \-\-w_beta . +It should be larger than the model length. The value of W +is used deep in the acceleration pipeline, and modest changes +are not expected to impact results (though larger values of W +do lead to longer run time). +This flag may be used to override the value of +W established for the model by +.BR hmmbuild , +or when the query is sequence-based. + + + +.TP +.B \-\-watson +Only search the top strand. By default both the query sequence +and its reverse-complement are searched. + +.TP +.B \-\-crick +Only search the bottom (reverse-complement) strand. By +default both the query sequence and its reverse-complement are searched. + + +.TP +.BI \-\-cpu " " +Set the number of parallel worker threads to +.IR . +On multicore machines, the default is 2. +You can also control this number by setting an environment variable, +.IR HMMER_NCPU . +There is also a master thread, so the actual number of threads that +HMMER spawns is +.IR +1. + +This option is not available if HMMER was compiled with POSIX threads +support turned off. + + + + +.TP +.BI \-\-stall +For debugging the MPI master/worker version: pause after start, to +enable the developer to attach debuggers to the running master and +worker(s) processes. Send SIGCONT signal to release the pause. +(Under gdb: +.BR "(gdb) signal SIGCONT" ) +(Only available if optional MPI support was enabled at compile-time.) + +.TP +.BI \-\-mpi +Run under MPI control with master/worker parallelization (using +.BR mpirun , +for example, or equivalent). Only available if optional MPI support +was enabled at compile-time. + + + + + + +.SH SEE ALSO + +See +.BR hmmer (1) +for a master man page with a list of all the individual man pages +for programs in the HMMER package. + +.PP +For complete documentation, see the user guide that came with your +HMMER distribution (Userguide.pdf); or see the HMMER web page +(http://hmmer.org/). + + + +.SH COPYRIGHT + +.nf +Copyright (C) 2023 Howard Hughes Medical Institute. +Freely distributed under the BSD open source license. +.fi + +For additional information on copyright and licensing, see the file +called COPYRIGHT in your HMMER source distribution, or see the HMMER +web page +(http://hmmer.org/). + + +.SH AUTHOR + +.nf +http://eddylab.org +.fi + + + diff --git a/flax_model/alphafold3/_tools/hmmer/share/man/man1/nhmmscan.1 b/flax_model/alphafold3/_tools/hmmer/share/man/man1/nhmmscan.1 new file mode 100644 index 0000000000000000000000000000000000000000..ec790e0b97d0ff721d2059f976a4ea4bde71ce8c --- /dev/null +++ b/flax_model/alphafold3/_tools/hmmer/share/man/man1/nhmmscan.1 @@ -0,0 +1,472 @@ +.TH "nhmmscan" 1 "Aug 2023" "HMMER 3.4" "HMMER Manual" + +.SH NAME +nhmmscan \- search DNA sequence(s) against a DNA profile database + + +.SH SYNOPSIS +.B nhmmscan +[\fIoptions\fR] +.I hmmdb +.I seqfile + + + +.SH DESCRIPTION + +.PP +.B nhmmscan +is used to search nucleotide sequences against collections +of nucleotide profiles. For each sequence in +.IR seqfile , +use that query sequence to search the target database of +profiles in +.IR hmmdb , +and output ranked lists of the profiles with the +most significant matches to the sequence. + +.PP +The +.I seqfile +may contain more than one query sequence. It can be in FASTA format, +or several other common sequence file formats (genbank, embl, and +uniprot, among others), or in alignment file formats (stockholm, +aligned fasta, and others). See the +.I \-\-qformat +option for a complete list. + +.PP +The +.I hmmdb +needs to be press'ed using +.B hmmpress +before it can be searched with +.BR nhmmscan . +This creates four binary files, +suffixed +.B .h3{fimp}. + +.PP +The query +.I seqfile +may be '\-' (a dash character), in which case +the query sequences are read from a stdin pipe instead of from a +file. +The +.I hmmdb +cannot be read from a stdin stream, because it needs to have +the four auxiliary binary files generated by +.BR hmmpress . + +.PP +The output format is designed to be human-readable, but is often so +voluminous that reading it is impractical, and parsing it is a pain. The +.B \-\-tblout +option saves output in a simple tabular format that is concise and +easier to parse. +The +.B \-o +option allows redirecting the main output, including throwing it away +in /dev/null. + + + +.SH OPTIONS + +.TP +.B \-h +Help; print a brief reminder of command line usage and all available +options. + + + +.SH OPTIONS FOR CONTROLLING OUTPUT + +.TP +.BI \-o " " +Direct the main human-readable output to a file +.I +instead of the default stdout. + +.TP +.BI \-\-tblout " " +Save a simple tabular (space-delimited) file summarizing the +per-hit output, with one data line per homologous target model +hit found. + +.TP +.BI \-\-dfamtblout " " +Save a tabular (space-delimited) file summarizing the +per-hit output, similar to +.B \-\-tblout +but more succinct. + +.TP +.BI \-\-aliscoresout " " +Save to file a list of per-position scores for each hit. +This is useful, for example, in identifying regions of high +score density for use in resolving overlapping hits from +different models. + + +.TP +.B \-\-acc +Use accessions instead of names in the main output, where available +for profiles and/or sequences. + +.TP +.B \-\-noali +Omit the alignment section from the main output. This can greatly +reduce the output volume. + +.TP +.B \-\-notextw +Unlimit the length of each line in the main output. The default +is a limit of 120 characters per line, which helps in displaying +the output cleanly on terminals and in editors, but can truncate +target profile description lines. + +.TP +.BI \-\-textw " " +Set the main output's line length limit to +.I +characters per line. The default is 120. + + + +.SH OPTIONS FOR REPORTING THRESHOLDS + +Reporting thresholds control which hits are reported in output files +(the main output, +.BR \-\-tblout , +and +.BR \-\-dfamtblout ). +Hits are ranked by statistical significance (E-value). + +.TP +.BI \-E " " +Report target profiles with an E-value of <= +.IR . +The default is 10.0, meaning that on average, about 10 false positives +will be reported per query, so you can see the top of the noise +and decide for yourself if it's really noise. + +.TP +.BI \-T " " +Instead of thresholding output on E-value, instead +report target profiles with a bit score of >= +.IR . + + + + +.SH OPTIONS FOR INCLUSION THRESHOLDS + +Inclusion thresholds are stricter than reporting thresholds. +Inclusion thresholds control which hits are considered to be +reliable enough +to be included in an output alignment or a subsequent search round. +In +.BR nhmmscan , +which does not have any alignment output (like +.BR nhmmer ), +inclusion thresholds have little effect. They only affect what hits +get marked as significant (!) or questionable (?) in hit +output. + +.TP +.BI \-\-incE " " +Use an E-value of <= +.I +as the inclusion threshold. +The default is 0.01, meaning that on average, about 1 false positive +would be expected in every 100 searches with different query +sequences. + +.TP +.BI \-\-incT " " +Instead of using E-values for setting the inclusion threshold, +use a bit score of >= +.I +as the inclusion threshold. +It would be unusual to use bit score thresholds with +.BR hmmscan , +because you don't expect a single score threshold to work for +different profiles; different profiles have slightly different +expected score distributions. + + + +.SH OPTIONS FOR MODEL-SPECIFIC SCORE THRESHOLDING + +Curated profile databases may define specific bit score thresholds for +each profile, superseding any thresholding based on statistical +significance alone. + +To use these options, the profile must contain the appropriate (GA, +TC, and/or NC) optional score threshold annotation; this is picked up +by +.B hmmbuild +from Stockholm format alignment files. For a nucleotide model, each +thresholding option has a single per-hit threshold +This acts as if +.BI \-T " " +.BI \-\-incT " " +has been applied specifically using each model's curated thresholds. + +.TP +.B \-\-cut_ga +Use the GA (gathering) bit score threshold in the model to set +per-hit reporting and inclusion +thresholds. GA thresholds are generally considered to be the +reliable curated thresholds defining family membership; for example, +in Dfam, these thresholds are applied when annotating a genome +with a model of a family known to be found in that organism. They +may allow for minimal expected false discovery rate. + +.TP +.B \-\-cut_nc +Use the NC (noise cutoff) bit score threshold in the model to set +per-hit reporting and inclusion +thresholds. NC thresholds are less stringent than GA; in the context +of Pfam, they are generally used to store the score of the +highest-scoring known false positive. + +.TP +.B \-\-cut_tc +Use the TC (trusted cutoff) bit score threshold in the model to set +per-hit reporting and inclusion +thresholds. TC thresholds are more stringent than GA, and are +generally considered to be the score of the lowest-scoring known +true positive that is above all known false positives; for example, +in Dfam, these thresholds are applied when annotating a genome +with a model of a family not known to be found in that organism. + + + +.SH CONTROL OF THE ACCELERATION PIPELINE + +HMMER3 searches are accelerated in a three-step filter pipeline: the +scanning-SSV filter, the Viterbi filter, and the Forward filter. The +first filter is the fastest and most approximate; the last is the full +Forward scoring algorithm. There is also a bias filter step between +SSV and Viterbi. Targets that pass all the steps in the acceleration +pipeline are then subjected to postprocessing -- domain +identification and scoring using the Forward/Backward algorithm. + +Changing filter thresholds only removes or includes targets from +consideration; changing filter thresholds does not alter bit scores, +E-values, or alignments, all of which are determined solely in +postprocessing. + +.TP +.B \-\-max +Turn off (nearly) all filters, including the bias filter, and run full +Forward/Backward postprocessing on most of the target sequence. +In contrast to +.B hmmscan, +where this flag really does turn off the filters entirely, the +.B \-\-max +flag in +.B nhmmscan +sets the scanning-SSV filter threshold to 0.4, not 1.0. Use of this +flag increases sensitivity somewhat, at a large cost in speed. + +.TP +.BI \-\-F1 " " +Set the P-value threshold for the MSV filter step. The default is +0.02, meaning that roughly 2% of the highest scoring nonhomologous +targets are expected to pass the filter. + +.TP +.BI \-\-F2 " " +Set the P-value threshold for the Viterbi filter step. +The default is 0.001. + +.TP +.BI \-\-F3 " " +Set the P-value threshold for the Forward filter step. +The default is 1e-5. + +.TP +.B \-\-nobias +Turn off the bias filter. This increases sensitivity somewhat, but can +come at a high cost in speed, especially if the query has biased +residue composition (such as a repetitive sequence region, or if it is +a membrane protein with large regions of hydrophobicity). Without the +bias filter, too many sequences may pass the filter with biased +queries, leading to slower than expected performance as the +computationally intensive Forward/Backward algorithms shoulder an +abnormally heavy load. + + + +.SH OTHER OPTIONS + +.TP +.B \-\-nonull2 +Turn off the null2 score corrections for biased composition. + +.TP +.BI \-Z " " +Assert that the total number of targets in your searches is +.IR , +for the purposes of per-sequence E-value calculations, +rather than the actual number of targets seen. + +.TP +.BI \-\-seed " " +Set the random number seed to +.IR . +Some steps in postprocessing require Monte Carlo simulation. The +default is to use a fixed seed (42), so that results are exactly +reproducible. Any other positive integer will give different (but also +reproducible) results. A choice of 0 uses an arbitrarily chosen seed. + +.TP +.BI \-\-qformat " " +Assert that input query +.I seqfile +is in format +.IR , +bypassing format autodetection. +Common choices for +.I +include: +.BR fasta , +.BR embl , +.BR genbank. +Alignment formats also work; +common choices include: +.BR stockholm , +.BR a2m , +.BR afa , +.BR psiblast , +.BR clustal , +.BR phylip . +For more information, and for codes for some less common formats, +see main documentation. +The string +.I +is case-insensitive (\fBfasta\fR or \fBFASTA\fR both work). + + +.TP +.BI \-\-w_beta " " +Window length tail mass. +The upper bound, W, +on the length at which nhmmer expects to find an instance of the +model is set such that the fraction of all sequences generated +by the model with length >= W is less than +.IR . +The default is 1e-7. +This flag may be used to override the value of W +established for the model by +.BR hmmbuild . + + + +.TP +.BI \-\-w_length " " +Override the model instance length upper bound, W, +which is otherwise controlled by +.BR \-\-w_beta . +It should be larger than the model length. The value of W +is used deep in the acceleration pipeline, and modest changes +are not expected to impact results (though larger values of W +do lead to longer run time). +This flag may be used to override the value of W +established for the model by +.BR hmmbuild . + + +.TP +.B \-\-watson +Only search the top strand. By default both the query sequence +and its reverse-complement are searched. + +.TP +.B \-\-crick +Only search the bottom (reverse-complement) strand. By +default both the query sequence and its reverse-complement are searched. + + +.TP +.BI \-\-cpu " " +Set the number of parallel worker threads to +.IR . +The default is 0, meaning off (no thread-level parallelization), because +.B nhmmscan +is typically i/o bound and the extra overhead of our current +multithreaded +implementation isn't worthwhile. +You can also control this number by setting an environment variable, +.IR HMMER_NCPU . +There is also a master thread, so the actual number of threads that +HMMER spawns is at least +.IR +1. + +This option is not available if HMMER was compiled with POSIX threads +support turned off. + + + + +.TP +.BI \-\-stall +For debugging the MPI master/worker version: pause after start, to +enable the developer to attach debuggers to the running master and +worker(s) processes. Send SIGCONT signal to release the pause. +(Under gdb: +.BR "(gdb) signal SIGCONT" ) + +(Only available if optional MPI support was enabled at compile-time.) + +.TP +.BI \-\-mpi +Run under MPI control with master/worker parallelization (using +.BR mpirun , +for example, or equivalent). Only available if optional MPI support +was enabled at compile-time. + + + + + + + + + +.SH SEE ALSO + +See +.BR hmmer (1) +for a master man page with a list of all the individual man pages +for programs in the HMMER package. + +.PP +For complete documentation, see the user guide that came with your +HMMER distribution (Userguide.pdf); or see the HMMER web page +(http://hmmer.org/). + + + +.SH COPYRIGHT + +.nf +Copyright (C) 2023 Howard Hughes Medical Institute. +Freely distributed under the BSD open source license. +.fi + +For additional information on copyright and licensing, see the file +called COPYRIGHT in your HMMER source distribution, or see the HMMER +web page +(http://hmmer.org/). + + +.SH AUTHOR + +.nf +http://eddylab.org +.fi + diff --git a/flax_model/alphafold3/data/cpp/__init__.py b/flax_model/alphafold3/data/cpp/__init__.py new file mode 100644 index 0000000000000000000000000000000000000000..e69de29bb2d1d6434b8b29ae775ad8c2e48c5391 diff --git a/flax_model/alphafold3/data/cpp/msa_profile_pybind.cc b/flax_model/alphafold3/data/cpp/msa_profile_pybind.cc new file mode 100644 index 0000000000000000000000000000000000000000..10ba5884d3e0a51cfd98364522a505379ccb7e4b --- /dev/null +++ b/flax_model/alphafold3/data/cpp/msa_profile_pybind.cc @@ -0,0 +1,79 @@ +// 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/str_cat.h" +#include "pybind11/cast.h" +#include "pybind11/numpy.h" +#include "pybind11/pybind11.h" + +namespace { + +namespace py = pybind11; + +py::array_t ComputeMsaProfile( + const py::array_t& msa, int num_residue_types) { + if (msa.size() == 0) { + throw py::value_error("The MSA must be non-empty."); + } + if (msa.ndim() != 2) { + throw py::value_error(absl::StrCat("The MSA must be rectangular, got ", + msa.ndim(), "-dimensional MSA array.")); + } + const int msa_depth = msa.shape()[0]; + const int sequence_length = msa.shape()[1]; + + py::array_t profile({sequence_length, num_residue_types}); + std::fill(profile.mutable_data(), profile.mutable_data() + profile.size(), + 0.0f); + auto profile_unchecked = profile.mutable_unchecked<2>(); + + const double normalized_count = 1.0 / msa_depth; + const int* msa_it = msa.data(); + for (int row_index = 0; row_index < msa_depth; ++row_index) { + for (int column_index = 0; column_index < sequence_length; ++column_index) { + const int residue_code = *(msa_it++); + if (residue_code < 0 || residue_code >= num_residue_types) { + throw py::value_error( + absl::StrCat("All residue codes must be positive and smaller than " + "num_residue_types ", + num_residue_types, ", got ", residue_code)); + } + profile_unchecked(column_index, residue_code) += normalized_count; + } + } + return profile; +} + +constexpr char kComputeMsaProfileDoc[] = R"( +Computes MSA profile for the given encoded MSA. + +Args: + msa: A Numpy array of shape (num_msa, num_res) with the integer coded MSA. + num_residue_types: Integer that determines the number of unique residue types. + This will determine the shape of the output profile. + +Returns: + A float Numpy array of shape (num_res, num_residue_types) with residue + frequency (residue type count normalized by MSA depth) for every column of the + MSA. +)"; + +} // namespace + +namespace alphafold3 { + +void RegisterModuleMsaProfile(pybind11::module m) { + m.def("compute_msa_profile", &ComputeMsaProfile, py::arg("msa"), + py::arg("num_residue_types"), py::doc(kComputeMsaProfileDoc + 1)); +} + +} // namespace alphafold3 diff --git a/flax_model/alphafold3/data/msa.py b/flax_model/alphafold3/data/msa.py new file mode 100644 index 0000000000000000000000000000000000000000..787c104573898842e46a191e7027de7708894e2d --- /dev/null +++ b/flax_model/alphafold3/data/msa.py @@ -0,0 +1,348 @@ + + +"""Functions for getting MSA and calculating alignment features.""" + +from collections.abc import MutableMapping, Sequence +import string +from typing import Self + +from absl import logging +from flax_model.alphafold3.constants import mmcif_names +from flax_model.alphafold3.data import msa_config +from flax_model.alphafold3.data import msa_features +from flax_model.alphafold3.data import parsers +from flax_model.alphafold3.data.tools import jackhmmer +from flax_model.alphafold3.data.tools import msa_tool +from flax_model.alphafold3.data.tools import nhmmer +from flax_model.alphafold3.data.tools import mmseqs +import numpy as np + + + +class Error(Exception): + """Error indicatating a problem with MSA Search.""" + + +def _featurize(seq: str, chain_poly_type: str) -> str | list[int]: + if mmcif_names.is_standard_polymer_type(chain_poly_type): + featurized_seqs, _ = msa_features.extract_msa_features( + msa_sequences=[seq], chain_poly_type=chain_poly_type + ) + return featurized_seqs[0].tolist() + # For anything else simply require an identical match. + return seq + + +def sequences_are_feature_equivalent( + sequence1: str, + sequence2: str, + chain_poly_type: str, +) -> bool: + feat1 = _featurize(sequence1, chain_poly_type) + feat2 = _featurize(sequence2, chain_poly_type) + return feat1 == feat2 + + +class Msa: + """Multiple Sequence Alignment container with methods for manipulating it.""" + + def __init__( + self, + query_sequence: str, + chain_poly_type: str, + sequences: Sequence[str], + descriptions: Sequence[str], + deduplicate: bool = True, + ): + """Raw constructor, prefer using the from_{a3m,multiple_msas} class methods. + + The first sequence must be equal (in featurised form) to the query sequence. + If sequences/descriptions are empty, they will be initialised to the query. + + Args: + query_sequence: The sequence that was used to search for MSA. + chain_poly_type: Polymer type of the query sequence, see mmcif_names. + sequences: The sequences returned by the MSA search tool. + descriptions: Metadata for the sequences returned by the MSA search tool. + deduplicate: If True, the MSA sequences will be deduplicated in the input + order. Lowercase letters (insertions) are ignored when deduplicating. + """ + if len(sequences) != len(descriptions): + raise ValueError('The number of sequences and descriptions must match.') + + self.query_sequence = query_sequence + self.chain_poly_type = chain_poly_type + + if not deduplicate: + self.sequences = sequences + self.descriptions = descriptions + else: + self.sequences = [] + self.descriptions = [] + # A replacement table that removes all lowercase characters. + deletion_table = str.maketrans('', '', string.ascii_lowercase) + unique_sequences = set() + for seq, desc in zip(sequences, descriptions, strict=True): + # Using string.translate is faster than re.sub('[a-z]+', ''). + sequence_no_deletions = seq.translate(deletion_table) + if sequence_no_deletions not in unique_sequences: + unique_sequences.add(sequence_no_deletions) + self.sequences.append(seq) + self.descriptions.append(desc) + + # Make sure the MSA always has at least the query. + self.sequences = self.sequences or [query_sequence] + self.descriptions = self.descriptions or ['Original query'] + + # Check if the 1st MSA sequence matches the query sequence. Since it may be + # mutated by the search tool (jackhmmer) check using the featurized version. + if not sequences_are_feature_equivalent( + self.sequences[0], query_sequence, chain_poly_type + ): + raise ValueError( + f'First MSA sequence {self.sequences[0]} is not the {query_sequence=}' + ) + + @classmethod + def from_multiple_msas( + cls, msas: Sequence[Self], deduplicate: bool = True + ) -> Self: + """Initializes the MSA from multiple MSAs. + + Args: + msas: A sequence of Msa objects representing individual MSAs produced by + different tools/dbs. + deduplicate: If True, the MSA sequences will be deduplicated in the input + order. Lowercase letters (insertions) are ignored when deduplicating. + + Returns: + An Msa object created by merging multiple MSAs. + """ + if not msas: + raise ValueError('At least one MSA must be provided.') + + query_sequence = msas[0].query_sequence + chain_poly_type = msas[0].chain_poly_type + sequences = [] + descriptions = [] + + for msa in msas: + if msa.query_sequence != query_sequence: + raise ValueError( + f'Query sequences must match: {[m.query_sequence for m in msas]}' + ) + if msa.chain_poly_type != chain_poly_type: + raise ValueError( + f'Chain poly types must match: {[m.chain_poly_type for m in msas]}' + ) + sequences.extend(msa.sequences) + descriptions.extend(msa.descriptions) + + return cls( + query_sequence=query_sequence, + chain_poly_type=chain_poly_type, + sequences=sequences, + descriptions=descriptions, + deduplicate=deduplicate, + ) + + @classmethod + def from_multiple_a3ms( + cls, a3ms: Sequence[str], chain_poly_type: str, deduplicate: bool = True + ) -> Self: + """Initializes the MSA from multiple A3M strings. + + Args: + a3ms: A sequence of A3M strings representing individual MSAs produced by + different tools/dbs. + chain_poly_type: Polymer type of the query sequence, see mmcif_names. + deduplicate: If True, the MSA sequences will be deduplicated in the input + order. Lowercase letters (insertions) are ignored when deduplicating. + + Returns: + An Msa object created by merging multiple A3Ms. + """ + if not a3ms: + raise ValueError('At least one A3M must be provided.') + + query_sequence = None + all_sequences = [] + all_descriptions = [] + + for a3m in a3ms: + sequences, descriptions = parsers.parse_fasta(a3m) + if query_sequence is None: + query_sequence = sequences[0] + + if sequences[0] != query_sequence: + raise ValueError( + f'Query sequences must match: {sequences[0]=} != {query_sequence=}' + ) + all_sequences.extend(sequences) + all_descriptions.extend(descriptions) + + return cls( + query_sequence=query_sequence, + chain_poly_type=chain_poly_type, + sequences=all_sequences, + descriptions=all_descriptions, + deduplicate=deduplicate, + ) + + @classmethod + def from_a3m( + cls, + query_sequence: str, + chain_poly_type: str, + a3m: str, + max_depth: int | None = None, + deduplicate: bool = True, + ) -> Self: + """Parses the single A3M and builds the Msa object.""" + sequences, descriptions = parsers.parse_fasta(a3m) + + if max_depth is not None and 0 < max_depth < len(sequences): + logging.info( + 'MSA cropped from depth of %d to %d for %s.', + len(sequences), + max_depth, + query_sequence, + ) + sequences = sequences[:max_depth] + descriptions = descriptions[:max_depth] + + return cls( + query_sequence=query_sequence, + chain_poly_type=chain_poly_type, + sequences=sequences, + descriptions=descriptions, + deduplicate=deduplicate, + ) + + @classmethod + def from_empty(cls, query_sequence: str, chain_poly_type: str) -> Self: + """Creates an empty Msa containing just the query sequence.""" + return cls( + query_sequence=query_sequence, + chain_poly_type=chain_poly_type, + sequences=[], + descriptions=[], + deduplicate=False, + ) + + @property + def depth(self) -> int: + return len(self.sequences) + + def __repr__(self) -> str: + return f'Msa({self.depth} sequences, {self.chain_poly_type})' + + def to_a3m(self) -> str: + """Returns the MSA in the A3M format.""" + a3m_lines = [] + for desc, seq in zip(self.descriptions, self.sequences, strict=True): + a3m_lines.append(f'>{desc}') + a3m_lines.append(seq) + return '\n'.join(a3m_lines) + '\n' + + def featurize(self) -> MutableMapping[str, np.ndarray]: + """Featurises the MSA and returns a map of feature names to features. + + Returns: + A dictionary mapping feature names to values. + + Raises: + msa.Error: + * If the sequences in the MSA don't have the same length after deletions + (lower case letters) are removed. + * If the MSA contains an unknown amino acid code. + * If there are no sequences after aligning. + """ + try: + msa, deletion_matrix = msa_features.extract_msa_features( + msa_sequences=self.sequences, chain_poly_type=self.chain_poly_type + ) + except ValueError as e: + raise Error(f'Error extracting MSA or deletion features: {e}') from e + + if msa.shape == (0, 0): + raise Error(f'Empty MSA feature for {self}') + + species_ids = msa_features.extract_species_ids(self.descriptions) + + return { + 'msa_species_identifiers': np.array(species_ids, dtype=object), + 'num_alignments': np.array(self.depth, dtype=np.int32), + 'msa': msa, + 'deletion_matrix': deletion_matrix, + } + + +def get_msa_tool( + msa_tool_config: msa_config.JackhmmerConfig | msa_config.NhmmerConfig | msa_config.MmseqsConfig, +) -> msa_tool.MsaTool: + """Returns the requested MSA tool.""" + + match msa_tool_config: + case msa_config.JackhmmerConfig(): + return jackhmmer.Jackhmmer( + binary_path=msa_tool_config.binary_path, + database_path=msa_tool_config.database_config.path, + n_cpu=msa_tool_config.n_cpu, + n_iter=msa_tool_config.n_iter, + e_value=msa_tool_config.e_value, + z_value=msa_tool_config.z_value, + max_sequences=msa_tool_config.max_sequences, + max_threads=msa_tool_config.max_threads, + ) + case msa_config.NhmmerConfig(): + return nhmmer.Nhmmer( + binary_path=msa_tool_config.binary_path, + hmmalign_binary_path=msa_tool_config.hmmalign_binary_path, + hmmbuild_binary_path=msa_tool_config.hmmbuild_binary_path, + database_path=msa_tool_config.database_config.path, + n_cpu=msa_tool_config.n_cpu, + e_value=msa_tool_config.e_value, + max_sequences=msa_tool_config.max_sequences, + max_threads=msa_tool_config.max_threads, + alphabet=msa_tool_config.alphabet, + ) + case msa_config.MmseqsConfig(): + return mmseqs.Mmseqs( + binary_path=msa_tool_config.binary_path, + database_path=msa_tool_config.database_config.path, + n_cpu=msa_tool_config.n_cpu, + use_gpu=msa_tool_config.use_gpu, + mmseqs_options=msa_tool_config.mmseqs_options, + result2msa_options=msa_tool_config.result2msa_options, + ) + case _: + raise ValueError(f'Unknown MSA tool: {msa_tool_config}.') + + +def get_msa( + target_sequence: str, + run_config: msa_config.RunConfig, + chain_poly_type: str, + deduplicate: bool = False, +) -> Msa: + """Computes the MSA for a given query sequence. + + Args: + target_sequence: The target amino-acid sequence. + run_config: MSA run configuration. + chain_poly_type: The type of chain for which to get an MSA. + deduplicate: If True, the MSA sequences will be deduplicated in the input + order. Lowercase letters (insertions) are ignored when deduplicating. + + Returns: + Aligned MSA sequences. + """ + + return Msa.from_a3m( + query_sequence=target_sequence, + chain_poly_type=chain_poly_type, + a3m=get_msa_tool(run_config.config).query(target_sequence).a3m, + max_depth=run_config.crop_size, + deduplicate=deduplicate, + ) diff --git a/flax_model/alphafold3/data/msa_store.py b/flax_model/alphafold3/data/msa_store.py new file mode 100644 index 0000000000000000000000000000000000000000..d842e61787fac03cc9edcf5b8075ce080e14816e --- /dev/null +++ b/flax_model/alphafold3/data/msa_store.py @@ -0,0 +1,58 @@ + + +"""Interface and implementations for fetching MSA data.""" + +from collections.abc import Sequence +from typing import Protocol, TypeAlias + +from flax_model.alphafold3.data import msa +from flax_model.alphafold3.data import msa_config + + +MsaErrors: TypeAlias = Sequence[tuple[msa_config.RunConfig, str]] + + +class MsaProvider(Protocol): + """Interface for providing Multiple Sequence Alignments.""" + + def __call__( + self, + query_sequence: str, + chain_polymer_type: str, + ) -> tuple[msa.Msa, MsaErrors]: + """Retrieve MSA for the given polymer query_sequence. + + Args: + query_sequence: The residue sequence of the polymer to search for. + chain_polymer_type: The polymer type of the query_sequence. This must + match the chain_polymer_type of the provider. + + Returns: + A tuple containing the MSA and MsaErrors. MsaErrors is a Sequence + containing a tuple for each msa_query that failed. Each tuple contains + the failing query and the associated error message. + """ + + +class EmptyMsaProvider: + """MSA provider that returns just the query sequence, useful for testing.""" + + def __init__(self, chain_polymer_type: str): + self._chain_polymer_type = chain_polymer_type + + def __call__( + self, query_sequence: str, chain_polymer_type: str + ) -> tuple[msa.Msa, MsaErrors]: + """Returns an MSA containing just the query sequence, never errors.""" + if chain_polymer_type != self._chain_polymer_type: + raise ValueError( + f'EmptyMsaProvider of type {self._chain_polymer_type} called with ' + f'sequence of {chain_polymer_type=}, {query_sequence=}.' + ) + return ( + msa.Msa.from_empty( + query_sequence=query_sequence, + chain_poly_type=self._chain_polymer_type, + ), + (), + ) diff --git a/flax_model/alphafold3/data/template_realign.py b/flax_model/alphafold3/data/template_realign.py new file mode 100644 index 0000000000000000000000000000000000000000..490d0c5aae0e2e5cf13f73d2a09c044dcb936e7a --- /dev/null +++ b/flax_model/alphafold3/data/template_realign.py @@ -0,0 +1,160 @@ + + +"""Realign sequences found in PDB seqres to the actual CIF sequences.""" + +from collections.abc import Mapping + + +class AlignmentError(Exception): + """Failed alignment between the hit sequence and the actual mmCIF sequence.""" + + +def realign_hit_to_structure( + *, + hit_sequence: str, + hit_start_index: int, + hit_end_index: int, + full_length: int, + structure_sequence: str, + query_to_hit_mapping: Mapping[int, int], +) -> Mapping[int, int]: + """Realigns the hit sequence to the Structure sequence. + + For example, for the given input: + query_sequence : ABCDEFGHIJKL + hit_sequence : ---DEFGHIJK- + struc_sequence : XDEFGHKL + the mapping is {3: 0, 4: 1, 5: 2, 6: 3, 7: 4, 8: 5, 9: 6, 10: 7}. However, the + actual Structure sequence has an extra X at the start as well as no IJ. So the + alignment from the query to the Structure sequence will be: + hit_sequence : ---DEFGHIJK- + struc_aligned : --XDEFGH--KL + and the new mapping will therefore be: {3: 1, 4: 2, 5: 3, 6: 4, 7: 5, 10: 6}. + + Args: + hit_sequence: The PDB seqres hit sequence obtained from Hmmsearch, but + without any gaps. This is not the full PDB seqres template sequence but + rather just its subsequence from hit_start_index to hit_end_index. + hit_start_index: The start index of the hit sequence in the full PDB seqres + template sequence (inclusive). + hit_end_index: The end index of the hit sequence in the full PDB seqres + template sequence (exclusive). + full_length: The length of the full PDB seqres template sequence. + structure_sequence: The actual sequence extracted from the Structure + corresponding to this template. In vast majority of cases this is the same + as the PDB seqres sequence, but this function handles the cases when not. + query_to_hit_mapping: The mapping from the query sequence to the + hit_sequence. + + Raises: + AlignmentError: if the alignment between the sequence returned by Hmmsearch + differs from the actual sequence found in the mmCIF and can't be aligned + using the simple alignment algorithm. + + Returns: + A mapping from the query sequence to the actual Structure sequence. + """ + max_num_gaps = full_length - len(structure_sequence) + if max_num_gaps < 0: + raise AlignmentError( + f'The Structure sequence ({len(structure_sequence)}) ' + f'must be shorter than the PDB seqres sequence ({full_length}):\n' + f'Structure sequence : {structure_sequence}\n' + f'PDB seqres sequence: {hit_sequence}' + ) + + if len(hit_sequence) != hit_end_index - hit_start_index: + raise AlignmentError( + f'The difference of {hit_end_index=} and {hit_start_index=} does not ' + f'equal to the length of the {hit_sequence}: {len(hit_sequence)}' + ) + + best_score = -1 + best_start = 0 + best_query_to_hit_mapping = query_to_hit_mapping + max_num_gaps_before_subseq = min(hit_start_index, max_num_gaps) + # It is possible the gaps needed to align the PDB seqres subsequence and + # the Structure subsequence need to be inserted before the match region. + # Try and pick the alignment with the best number of aligned residues. + for num_gaps_before_subseq in range(0, max_num_gaps_before_subseq + 1): + start = hit_start_index - num_gaps_before_subseq + end = hit_end_index - num_gaps_before_subseq + structure_subseq = structure_sequence[start:end] + + new_query_to_hit_mapping, score = _remap_to_struc_seq( + hit_seq=hit_sequence, + struc_seq=structure_subseq, + max_num_gaps=max_num_gaps - num_gaps_before_subseq, + mapping=query_to_hit_mapping, + ) + if score >= best_score: + # Use >= to prefer matches with larger number of gaps before. + best_score = score + best_start = start + best_query_to_hit_mapping = new_query_to_hit_mapping + + return {q: h + best_start for q, h in best_query_to_hit_mapping.items()} + + +def _remap_to_struc_seq( + *, + hit_seq: str, + struc_seq: str, + max_num_gaps: int, + mapping: Mapping[int, int], +) -> tuple[Mapping[int, int], int]: + """Remaps the query -> hit mapping to match the actual Structure sequence. + + Args: + hit_seq: The hit sequence - a subsequence of the PDB seqres sequence without + any Hmmsearch modifications like inserted gaps or lowercased residues. + struc_seq: The actual sequence obtained from the corresponding Structure. + max_num_gaps: The maximum number of gaps that can be inserted in the + Structure sequence. In practice, this is the length difference between the + PDB seqres sequence and the actual Structure sequence. + mapping: The mapping from the query residues to the hit residues. This will + be remapped to point to the actual Structure sequence using a simple + realignment algorithm. + + Returns: + A tuple of (mapping, score): + * Mapping from the query to the actual Structure sequence. + * Score which is the number of matching aligned residues. + + Raises: + ValueError if the structure sequence isn't shorter than the seqres sequence. + ValueError if the alignment fails. + """ + hit_seq_idx = 0 + struc_seq_idx = 0 + hit_to_struc_seq_mapping = {} + score = 0 + + # This while loop is guaranteed to terminate since we increase both + # struc_seq_idx and hit_seq_idx by at least 1 in each iteration. + remaining_num_gaps = max_num_gaps + while hit_seq_idx < len(hit_seq) and struc_seq_idx < len(struc_seq): + if hit_seq[hit_seq_idx] != struc_seq[struc_seq_idx]: + # Explore which alignment aligns the next residue (if present). + best_shift = 0 + for shift in range(0, remaining_num_gaps + 1): + next_hit_res = hit_seq[hit_seq_idx + shift : hit_seq_idx + shift + 1] + next_struc_res = struc_seq[struc_seq_idx : struc_seq_idx + 1] + if next_hit_res == next_struc_res: + best_shift = shift + break + hit_seq_idx += best_shift + remaining_num_gaps -= best_shift + + hit_to_struc_seq_mapping[hit_seq_idx] = struc_seq_idx + score += hit_seq[hit_seq_idx] == struc_seq[struc_seq_idx] + hit_seq_idx += 1 + struc_seq_idx += 1 + + fixed_mapping = {} + for query_idx, original_hit_idx in mapping.items(): + fixed_hit_idx = hit_to_struc_seq_mapping.get(original_hit_idx) + if fixed_hit_idx is not None: + fixed_mapping[query_idx] = fixed_hit_idx + + return fixed_mapping, score diff --git a/flax_model/alphafold3/data/templates.py b/flax_model/alphafold3/data/templates.py new file mode 100644 index 0000000000000000000000000000000000000000..9d65ba3f239fc3e5d54bde2e48c73af0c2ab2907 --- /dev/null +++ b/flax_model/alphafold3/data/templates.py @@ -0,0 +1,978 @@ + + +"""API for retrieving and manipulating template search results.""" + +from collections.abc import Iterable, Iterator, Mapping, Sequence +import dataclasses +import datetime +import functools +import os +import re +from typing import Any, Final, Self, TypeAlias + +from absl import logging +from flax_model.alphafold3 import structure +from flax_model.alphafold3.common import resources +from flax_model.alphafold3.constants import atom_types +from flax_model.alphafold3.constants import mmcif_names +from flax_model.alphafold3.constants import residue_names +from flax_model.alphafold3.data import msa_config +from flax_model.alphafold3.data import parsers +from flax_model.alphafold3.data import structure_stores +from flax_model.alphafold3.data import template_realign +from flax_model.alphafold3.data.tools import hmmsearch +from flax_model.alphafold3.structure import mmcif +import numpy as np + + +_POLYMER_FEATURES: Final[Mapping[str, np.float64 | np.int32 | object]] = { + 'template_aatype': np.int32, + 'template_all_atom_masks': np.float64, + 'template_all_atom_positions': np.float64, + 'template_domain_names': object, + 'template_release_date': object, + 'template_sequence': object, +} + +_LIGAND_FEATURES: Final[Mapping[str, Any]] = { + 'ligand_features': Mapping[str, Any] +} + + +TemplateFeatures: TypeAlias = Mapping[ + str, np.ndarray | bytes | Mapping[str, np.ndarray | bytes] +] +_REQUIRED_METADATA_COLUMNS: Final[Sequence[str]] = ( + 'seq_release_date', + 'seq_unresolved_res_num', + 'seq_author_chain_id', + 'seq_sequence', +) + + +@dataclasses.dataclass(frozen=True, kw_only=True, slots=True) +class _Polymer: + """Container for alphabet specific (dna, rna, protein) atom information.""" + + min_atoms: int + num_atom_types: int + atom_order: Mapping[str, int] + + +_POLYMERS = { + mmcif_names.PROTEIN_CHAIN: _Polymer( + min_atoms=5, + num_atom_types=atom_types.ATOM37_NUM, + atom_order=atom_types.ATOM37_ORDER, + ), + mmcif_names.DNA_CHAIN: _Polymer( + min_atoms=21, + num_atom_types=atom_types.ATOM29_NUM, + atom_order=atom_types.ATOM29_ORDER, + ), + mmcif_names.RNA_CHAIN: _Polymer( + min_atoms=20, + num_atom_types=atom_types.ATOM29_NUM, + atom_order=atom_types.ATOM29_ORDER, + ), +} + + +def _encode_restype( + chain_poly_type: str, + sequence: str, +) -> Sequence[int]: + """Encodes a sequence of residue names as a sequence of ints. + + Args: + chain_poly_type: Polymer chain type to determine sequence encoding. + sequence: Polymer residues. Protein encoded by single letters. RNA and DNA + encoded by multi-letter CCD codes. + + Returns: + A sequence of integers encoding amino acid types for the given chain type. + """ + if chain_poly_type == mmcif_names.PROTEIN_CHAIN: + return [ + residue_names.PROTEIN_TYPES_ONE_LETTER_WITH_UNKNOWN_AND_GAP_TO_INT[ + _STANDARDIZED_AA.get(res, res) + ] + for res in sequence + ] + + unk_nucleic = residue_names.UNK_NUCLEIC_ONE_LETTER + unk_nucleic_idx = residue_names.POLYMER_TYPES_ORDER_WITH_UNKNOWN_AND_GAP[ + unk_nucleic + ] + if chain_poly_type == mmcif_names.RNA_CHAIN: + return [ + residue_names.POLYMER_TYPES_ORDER_WITH_UNKNOWN_AND_GAP.get( + res, unk_nucleic_idx + ) + for res in sequence + ] + elif chain_poly_type == mmcif_names.DNA_CHAIN: + # Map UNK DNA to the generic nucleic UNK (N), which happens to also be the + # same as the RNA UNK. + return [ + residue_names.POLYMER_TYPES_ORDER_WITH_UNKNOWN_AND_GAP.get( + residue_names.DNA_COMMON_ONE_TO_TWO.get(res, unk_nucleic), + unk_nucleic_idx, + ) + for res in sequence + ] + + raise NotImplementedError(f'"{chain_poly_type}" unsupported.') + + +_DAYS_BEFORE_QUERY_DATE: Final[int] = 60 +_HIT_DESCRIPTION_REGEX = re.compile( + r'(?P[a-z0-9]{4,})_(?P\w+)/(?P\d+)-(?P\d+) ' + r'.* length:(?P\d+)\b.*' +) + +_STANDARDIZED_AA = {'B': 'D', 'J': 'X', 'O': 'X', 'U': 'C', 'Z': 'E'} + + +class Error(Exception): + """Base class for exceptions.""" + + +class HitDateError(Error): + """An error indicating that invalid release date was detected.""" + + +class InvalidTemplateError(Error): + """An error indicating that template is invalid.""" + + +@dataclasses.dataclass(frozen=True, kw_only=True) +class Hit: + """Template hit metrics derived from the MSA for filtering and featurising. + + Attributes: + pdb_id: The PDB ID of the hit. + auth_chain_id: The author chain ID of the hit. + hmmsearch_sequence: Hit sequence as given in hmmsearch a3m output. + structure_sequence: Hit sequence as given in PDB structure. + unresolved_res_indices: Indices of unresolved residues in the structure + sequence. 0-based. + query_sequence: The query nucleotide/amino acid sequence. + start_index: The start index of the sequence relative to the full PDB seqres + sequence. Inclusive and uses 0-based indexing. + end_index: The end index of the sequence relative to the full PDB seqres + sequence. Exclusive and uses 0-based indexing. + full_length: Length of the full PDB seqres sequence. This can be different + from the length from the actual sequence we get from the mmCIF and we use + this to detect whether we need to realign or not. + release_date: The release date of the PDB corresponding to this hit. + chain_poly_type: The polymer type of the selected hit structure. + """ + + pdb_id: str + auth_chain_id: str + hmmsearch_sequence: str + structure_sequence: str + unresolved_res_indices: Sequence[int] | None + query_sequence: str + start_index: int + end_index: int + full_length: int + release_date: datetime.date + chain_poly_type: str + + @functools.cached_property + def query_to_hit_mapping(self) -> Mapping[int, int]: + """0-based query index to hit index mapping.""" + query_to_hit_mapping = {} + hit_index = 0 + query_index = 0 + for residue in self.hmmsearch_sequence: + # Gap inserted in the template + if residue == '-': + query_index += 1 + # Deleted residue in the template (would be a gap in the query). + elif residue.islower(): + hit_index += 1 + # Normal aligned residue, in both query and template. Add to mapping. + elif residue.isupper(): + query_to_hit_mapping[query_index] = hit_index + query_index += 1 + hit_index += 1 + + structure_subseq = self.structure_sequence[ + self.start_index : self.end_index + ] + if self.matching_sequence != structure_subseq: + # The seqres sequence doesn't match the structure sequence. Two cases: + # 1. The sequences have the same length. The sequences are different + # because our 3->1 residue code mapping is different from the one PDB + # uses. We don't do anything in this case as both sequences have the + # same length, so the original query to hit mapping stays valid. + # 2. The sequences don't have the same length, the one in structure is + # shorter. In this case we change the mapping to match the actual + # structure sequence using a simple realignment algorithm. + # This procedure was validated on all PDB seqres (2023_01_12) sequences + # and handles all cases that can happen. + if self.full_length != len(self.structure_sequence): + return template_realign.realign_hit_to_structure( + hit_sequence=self.matching_sequence, + hit_start_index=self.start_index, + hit_end_index=self.end_index, + full_length=self.full_length, + structure_sequence=self.structure_sequence, + query_to_hit_mapping=query_to_hit_mapping, + ) + + # Hmmsearch returns a subsequence and so far indices have been relative to + # the subsequence. Add an offset to index relative to the full structure + # sequence. + return {q: h + self.start_index for q, h in query_to_hit_mapping.items()} + + @property + def matching_sequence(self) -> str: + """Returns the matching hit sequence including insertions. + + Make deleted residues uppercase and remove gaps ("-"). + """ + return self.hmmsearch_sequence.upper().replace('-', '') + + @functools.cached_property + def output_templates_sequence(self) -> str: + """Returns the final template sequence.""" + result_seq = ['-'] * len(self.query_sequence) + for query_index, template_index in self.query_to_hit_mapping.items(): + result_seq[query_index] = self.structure_sequence[template_index] + return ''.join(result_seq) + + @property + def length_ratio(self) -> float: + """Ratio of the length of the hit sequence to the query.""" + return len(self.matching_sequence) / len(self.query_sequence) + + @property + def align_ratio(self) -> float: + """Ratio of the number of aligned residues to the query length.""" + return len(self.query_to_hit_mapping) / len(self.query_sequence) + + @functools.cached_property + def is_valid(self) -> bool: + """Whether hit can be used as a template.""" + if self.unresolved_res_indices is None: + return False + + return bool( + set(self.query_to_hit_mapping.values()) + - set(self.unresolved_res_indices) + ) + + @property + def full_name(self) -> str: + """A full name of the hit.""" + return f'{self.pdb_id}_{self.auth_chain_id}' + + def __post_init__(self): + if not self.pdb_id.islower() and not self.pdb_id.isdigit(): + raise ValueError(f'pdb_id must be lowercase {self.pdb_id}') + + if not (0 <= self.start_index <= self.end_index): + raise ValueError( + 'Start must be non-negative and less than or equal to end index. ' + f'Range: {self.start_index}-{self.end_index}' + ) + + if len(self.matching_sequence) != (self.end_index - self.start_index): + raise ValueError( + 'Sequence length must be equal to end_index - start_index. ' + f'{len(self.matching_sequence)} != {self.end_index} - ' + f'{self.start_index}' + ) + + if self.full_length < 0: + raise ValueError(f'Full length must be non-negative: {self.full_length}') + + def keep( + self, + *, + release_date_cutoff: datetime.date | None, + max_subsequence_ratio: float | None, + min_hit_length: int | None, + min_align_ratio: float | None, + ) -> bool: + """Returns whether the hit should be kept. + + In addition to filtering on all of the provided parameters, this method also + excludes hits with unresolved residues. + + Args: + release_date_cutoff: Maximum release date of the template. + max_subsequence_ratio: If set, excludes hits which are an exact + subsequence of the query sequence, and longer than this ratio. Useful to + avoid ground truth leakage. + min_hit_length: If set, excludes hits which have fewer residues than this. + min_align_ratio: If set, excludes hits where the number of residues + aligned to the query is less than this proportion of the template + length. + """ + # Exclude hits which are too recent. + if ( + release_date_cutoff is not None + and self.release_date > release_date_cutoff + ): + return False + + # Exclude hits which are large duplicates of the query_sequence. + if ( + max_subsequence_ratio is not None + and self.length_ratio > max_subsequence_ratio + ): + if self.matching_sequence in self.query_sequence: + return False + + # Exclude hits which are too short. + if ( + min_hit_length is not None + and len(self.matching_sequence) < min_hit_length + ): + return False + + # Exclude hits with unresolved residues. + if not self.is_valid: + return False + + # Exclude hits with too few alignments. + try: + if min_align_ratio is not None and self.align_ratio <= min_align_ratio: + return False + except template_realign.AlignmentError as e: + logging.warning('Failed to align %s: %s', self, str(e)) + return False + + return True + + +def _filter_hits( + hits: Iterable[Hit], + release_date_cutoff: datetime.date, + max_subsequence_ratio: float | None, + min_align_ratio: float | None, + min_hit_length: int | None, + deduplicate_sequences: bool, + max_hits: int | None, +) -> Sequence[Hit]: + """Filters hits based on the filter config.""" + filtered_hits = [] + seen_before = set() + for hit in hits: + if not hit.keep( + max_subsequence_ratio=max_subsequence_ratio, + min_align_ratio=min_align_ratio, + min_hit_length=min_hit_length, + release_date_cutoff=release_date_cutoff, + ): + continue + + # Remove duplicate templates, keeping the first. + if deduplicate_sequences: + if hit.output_templates_sequence in seen_before: + continue + seen_before.add(hit.output_templates_sequence) + + filtered_hits.append(hit) + if max_hits and len(filtered_hits) == max_hits: + break + + return filtered_hits + + +@dataclasses.dataclass(init=False) +class Templates: + """A container for templates that were found for the given query sequence. + + The structure_store is constructed from the config by default. Callers can + optionally supply a structure_store to the constructor to avoid the cost of + construction and metadata loading. + """ + + def __init__( + self, + *, + query_sequence: str, + hits: Sequence[Hit], + max_template_date: datetime.date, + structure_store: structure_stores.StructureStore, + query_release_date: datetime.date | None = None, + ): + self._query_sequence = query_sequence + self._hits = tuple(hits) + self._max_template_date = max_template_date + self._query_release_date = query_release_date + self._hit_structures = {} + self._structure_store = structure_store + + if any(h.query_sequence != self._query_sequence for h in self.hits): + raise ValueError('All hits must match the query sequence.') + + if self._hits: + chain_poly_type = self._hits[0].chain_poly_type + if any(h.chain_poly_type != chain_poly_type for h in self.hits): + raise ValueError('All hits must have the same chain_poly_type.') + + @classmethod + def from_seq_and_a3m( + cls, + *, + query_sequence: str, + msa_a3m: str, + max_template_date: datetime.date, + database_path: os.PathLike[str] | str, + hmmsearch_config: msa_config.HmmsearchConfig, + max_a3m_query_sequences: int | None, + structure_store: structure_stores.StructureStore, + filter_config: msa_config.TemplateFilterConfig | None = None, + query_release_date: datetime.date | None = None, + chain_poly_type: str = mmcif_names.PROTEIN_CHAIN, + ) -> Self: + """Creates templates from a run of hmmsearch tool against a custom a3m. + + Args: + query_sequence: The polymer sequence of the target query. + msa_a3m: An a3m of related polymers aligned to the query sequence, this is + used to create an HMM for the hmmsearch run. + max_template_date: This is used to filter templates for training, ensuring + that they do not leak ground truth information used in testing sets. + database_path: A path to the sequence database to search for templates. + hmmsearch_config: Config with Hmmsearch settings. + max_a3m_query_sequences: The maximum number of input MSA sequences to use + to construct the profile which is then used to search for templates. + structure_store: Structure store to fetch template structures from. + filter_config: Optional config that controls which and how many hits to + keep. More performant than constructing and then filtering. If not + provided, no filtering is done. + query_release_date: The release_date of the template query, this is used + to filter templates for training, ensuring that they do not leak + structure information from the future. + chain_poly_type: The polymer type of the templates. + + Returns: + Templates object containing a list of Hits initialised from the + structure_store metadata and a3m alignments. + """ + hmmsearch_a3m = run_hmmsearch_with_a3m( + database_path=database_path, + hmmsearch_config=hmmsearch_config, + max_a3m_query_sequences=max_a3m_query_sequences, + a3m=msa_a3m, + ) + return cls.from_hmmsearch_a3m( + query_sequence=query_sequence, + a3m=hmmsearch_a3m, + max_template_date=max_template_date, + query_release_date=query_release_date, + chain_poly_type=chain_poly_type, + structure_store=structure_store, + filter_config=filter_config, + ) + + @classmethod + def from_hmmsearch_a3m( + cls, + *, + query_sequence: str, + a3m: str, + max_template_date: datetime.date, + structure_store: structure_stores.StructureStore, + filter_config: msa_config.TemplateFilterConfig | None = None, + query_release_date: datetime.date | None = None, + chain_poly_type: str = mmcif_names.PROTEIN_CHAIN, + ) -> Self: + """Creates Templates from a Hmmsearch A3M. + + Args: + query_sequence: The polymer sequence of the target query. + a3m: Results of Hmmsearch in A3M format. This provides a list of potential + template alignments and pdb codes. + max_template_date: This is used to filter templates for training, ensuring + that they do not leak ground truth information used in testing sets. + structure_store: Structure store to fetch template structures from. + filter_config: Optional config that controls which and how many hits to + keep. More performant than constructing and then filtering. If not + provided, no filtering is done. + query_release_date: The release_date of the template query, this is used + to filter templates for training, ensuring that they do not leak + structure information from the future. + chain_poly_type: The polymer type of the templates. + + Returns: + Templates object containing a list of Hits initialised from the + structure_store metadata and a3m alignments. + """ + + def hit_generator(a3m: str): + if not a3m: + return # Hmmsearch could return an empty string if there are no hits. + + for hit_seq, hit_desc in parsers.lazy_parse_fasta_string(a3m): + pdb_id, auth_chain_id, start, end, full_length = _parse_hit_description( + hit_desc + ) + + release_date, sequence, unresolved_res_ids = _parse_hit_metadata( + structure_store, pdb_id, auth_chain_id + ) + if unresolved_res_ids is None: + continue + + # seq_unresolved_res_num are 1-based, setting to 0-based indices. + unresolved_indices = [i - 1 for i in unresolved_res_ids] + + yield Hit( + pdb_id=pdb_id, + auth_chain_id=auth_chain_id, + hmmsearch_sequence=hit_seq, + structure_sequence=sequence, + query_sequence=query_sequence, + unresolved_res_indices=unresolved_indices, + start_index=start - 1, # Raw value is residue number, not index. + end_index=end, + full_length=full_length, + release_date=datetime.date.fromisoformat(release_date), + chain_poly_type=chain_poly_type, + ) + + if filter_config is None: + hits = tuple(hit_generator(a3m)) + else: + hits = _filter_hits( + hit_generator(a3m), + release_date_cutoff=filter_config.max_template_date, + max_subsequence_ratio=filter_config.max_subsequence_ratio, + min_align_ratio=filter_config.min_align_ratio, + min_hit_length=filter_config.min_hit_length, + deduplicate_sequences=filter_config.deduplicate_sequences, + max_hits=filter_config.max_hits, + ) + + return Templates( + query_sequence=query_sequence, + query_release_date=query_release_date, + hits=hits, + max_template_date=max_template_date, + structure_store=structure_store, + ) + + @property + def query_sequence(self) -> str: + return self._query_sequence + + @property + def hits(self) -> tuple[Hit, ...]: + return self._hits + + @property + def query_release_date(self) -> datetime.date | None: + return self._query_release_date + + @property + def num_hits(self) -> int: + return len(self._hits) + + @functools.cached_property + def release_date_cutoff(self) -> datetime.date: + if self.query_release_date is None: + return self._max_template_date + return min( + self._max_template_date, + self.query_release_date + - datetime.timedelta(days=_DAYS_BEFORE_QUERY_DATE), + ) + + def __repr__(self) -> str: + return f'Templates({self.num_hits} hits)' + + def filter( + self, + *, + max_subsequence_ratio: float | None, + min_align_ratio: float | None, + min_hit_length: int | None, + deduplicate_sequences: bool, + max_hits: int | None, + ) -> Self: + """Returns a new Templates object with only the hits that pass all filters. + + This also filters on query_release_date and max_template_date. + + Args: + max_subsequence_ratio: If set, excludes hits which are an exact + subsequence of the query sequence, and longer than this ratio. Useful to + avoid ground truth leakage. + min_align_ratio: If set, excludes hits where the number of residues + aligned to the query is less than this proportion of the template + length. + min_hit_length: If set, excludes hits which have fewer residues than this. + deduplicate_sequences: Whether to exclude duplicate template sequences, + keeping only the first. This can be useful in increasing the diversity + of hits especially in the case of homomer hits. + max_hits: If set, excludes any hits which exceed this count. + """ + filtered_hits = _filter_hits( + hits=self._hits, + release_date_cutoff=self.release_date_cutoff, + max_subsequence_ratio=max_subsequence_ratio, + min_align_ratio=min_align_ratio, + min_hit_length=min_hit_length, + deduplicate_sequences=deduplicate_sequences, + max_hits=max_hits, + ) + return Templates( + query_sequence=self.query_sequence, + query_release_date=self.query_release_date, + hits=filtered_hits, + max_template_date=self._max_template_date, + structure_store=self._structure_store, + ) + + def get_hits_with_structures( + self, + ) -> Sequence[tuple[Hit, structure.Structure]]: + """Returns hits + Structures, Structures filtered to the hit's chain.""" + results = [] + structures = {struc.name.lower(): struc for struc in self.structures} + for hit in self.hits: + if not hit.is_valid: + raise InvalidTemplateError( + 'Hits must be filtered before calling get_hits_with_structures.' + ) + struc = structures[hit.pdb_id] + label_chain_id = struc.polymer_auth_asym_id_to_label_asym_id().get( + hit.auth_chain_id + ) + results.append((hit, struc.filter(chain_id=label_chain_id))) + return results + + def featurize( + self, + include_ligand_features: bool = True, + ) -> TemplateFeatures: + """Featurises the templates and returns a map of feature names to features. + + NB: If you don't do any prefiltering, this method might be slow to run + as it has to fetch many CIFs and featurize them all. + + Args: + include_ligand_features: Whether to compute ligand features. + + Returns: + Template features: A mapping of template feature labels to features, which + may be numpy arrays, bytes objects, or for the special case of label + `ligand_features` (if `include_ligand_features` is True), a nested + feature map of labels to numpy arrays. + + Raises: + InvalidTemplateError: If hits haven't been filtered before featurization. + """ + hits_by_pdb_id = {} + for idx, hit in enumerate(self.hits): + if not hit.is_valid: + raise InvalidTemplateError( + f'Hits must be filtered before featurizing, got unprocessed {hit=}' + ) + hits_by_pdb_id.setdefault(hit.pdb_id, []).append((idx, hit)) + + unsorted_features = [] + for struc in self.structures: + pdb_id = str(struc.name).lower() + for idx, hit in hits_by_pdb_id[pdb_id]: + try: + label_chain_id = struc.polymer_auth_asym_id_to_label_asym_id()[ + hit.auth_chain_id + ] + hit_features = { + **get_polymer_features( + chain=struc.filter(chain_id=label_chain_id), + chain_poly_type=hit.chain_poly_type, + query_sequence_length=len(hit.query_sequence), + query_to_hit_mapping=hit.query_to_hit_mapping, + ), + } + if include_ligand_features: + hit_features['ligand_features'] = _get_ligand_features(struc) + unsorted_features.append((idx, hit_features)) + except Error as e: + raise type(e)(f'Failed to featurise {hit=}') from e + + sorted_features = sorted(unsorted_features, key=lambda x: x[0]) + sorted_features = [feat for _, feat in sorted_features] + return package_template_features( + hit_features=sorted_features, + include_ligand_features=include_ligand_features, + ) + + @property + def structures(self) -> Iterator[structure.Structure]: + """Yields template structures for each unique PDB ID among hits. + + If there are multiple hits in the same Structure, the Structure will be + included only once by this method. + + Yields: + A Structure object for each unique PDB ID among hits. + + Raises: + HitDateError: If template's release date exceeds max cutoff date. + """ + + for hit in self.hits: + if hit.release_date > self.release_date_cutoff: # pylint: disable=comparison-with-callable + raise HitDateError( + f'Invalid release date for hit {hit.pdb_id=}, when release date ' + f'cutoff is {self.release_date_cutoff}.' + ) + + # Get the set of pdbs to load. In particular, remove duplicate PDB IDs. + targets_to_load = tuple({hit.pdb_id for hit in self.hits}) + + for target_name in targets_to_load: + yield structure.from_mmcif( + mmcif_string=self._structure_store.get_mmcif_str(target_name), + fix_mse_residues=True, + fix_arginines=True, + include_water=False, + include_bonds=False, + include_other=True, # For non-standard polymer chains. + ) + + +def _parse_hit_description(description: str) -> tuple[str, str, int, int, int]: + """Parses the hmmsearch A3M sequence description line.""" + # Example lines (protein, nucleic, no description): + # >4pqx_A/2-217 [subseq from] mol:protein length:217 Free text + # >4pqx_A/2-217 [subseq from] mol:na length:217 Free text + # >5g3r_A/1-55 [subseq from] mol:protein length:352 + if match := re.fullmatch(_HIT_DESCRIPTION_REGEX, description): + return ( + match['pdb_id'], + match['chain_id'], + int(match['start']), + int(match['end']), + int(match['length']), + ) + else: + raise ValueError(f'Could not parse description "{description}"') + + +def _parse_hit_metadata( + structure_store: structure_stores.StructureStore, + pdb_id: str, + auth_chain_id: str, +) -> tuple[Any, str | None, Sequence[int] | None]: + """Parse hit metadata by parsing mmCIF from structure store.""" + try: + cif = mmcif.from_string(structure_store.get_mmcif_str(pdb_id)) + except structure_stores.NotFoundError: + logging.warning( + 'Failed to get mmCIF for %s (author chain %s).', pdb_id, auth_chain_id + ) + return None, None, None + release_date = mmcif.get_release_date(cif) + + try: + struc = structure.from_parsed_mmcif( + cif, + model_id=structure.ModelID.ALL, + include_water=True, + include_other=True, + include_bonds=False, + ) + except ValueError: + struc = structure.from_parsed_mmcif( + cif, + model_id=structure.ModelID.FIRST, + include_water=True, + include_other=True, + include_bonds=False, + ) + + sequence = struc.polymer_author_chain_single_letter_sequence( + include_missing_residues=True, + protein=True, + dna=True, + rna=True, + other=True, + )[auth_chain_id] + + unresolved_res_ids = struc.filter( + chain_auth_asym_id=auth_chain_id + ).unresolved_residues.id + + return release_date, sequence, unresolved_res_ids + + +def get_polymer_features( + *, + chain: structure.Structure, + chain_poly_type: str, + query_sequence_length: int, + query_to_hit_mapping: Mapping[int, int], +) -> Mapping[str, Any]: + """Returns features for this polymer chain. + + Args: + chain: Structure object representing the template. Must be already filtered + to a single chain. + chain_poly_type: The chain polymer type (protein, DNA, RNA). + query_sequence_length: The length of the query sequence. + query_to_hit_mapping: 0-based query index to hit index mapping. + + Returns: + A dictionary with polymer features for template_chain_id in the struc. + + Raises: + ValueError: If the input structure contains more than just a single chain. + """ + # if len(chain.polymer_auth_asym_id_to_label_asym_id()) != 1: + # raise ValueError('The structure must be filtered to a single chain.') + + if chain.name is None: + raise ValueError('Template structure must have a name.') + + if chain.release_date is None: + raise ValueError( + f'Template structure {chain.name} must have a release date. You can do' + ' this by setting "_pdbx_audit_revision_history.revision_date" in the' + ' template mmCIF to a date in the ISO-8601 format (e.g. 1989-11-17).' + ) + + num_polymer_chains = len(chain.polymer_auth_asym_id_to_label_asym_id()) + if num_polymer_chains != 1: + raise ValueError( + f'Template structure {chain.name} must be filtered to a single polymer' + f' chain but got a structure with {num_polymer_chains} polymer chains.' + ) + + auth_chain_id, label_chain_id = next( + iter(chain.polymer_auth_asym_id_to_label_asym_id().items()) + ) + chain_sequence = chain.chain_single_letter_sequence()[label_chain_id] + + polymer = _POLYMERS[chain_poly_type] + res_arrays = chain.to_res_arrays( + include_missing_residues=True, atom_order=polymer.atom_order + ) + positions = res_arrays.atom_positions + positions_mask = res_arrays.atom_mask + template_all_atom_positions = np.zeros( + (query_sequence_length, polymer.num_atom_types, 3), dtype=np.float64 + ) + template_all_atom_masks = np.zeros( + (query_sequence_length, polymer.num_atom_types), dtype=np.int64 + ) + + template_sequence = ['-'] * query_sequence_length + for query_index, template_index in query_to_hit_mapping.items(): + template_all_atom_positions[query_index] = positions[template_index] + template_all_atom_masks[query_index] = positions_mask[template_index] + template_sequence[query_index] = chain_sequence[template_index] + + template_sequence = ''.join(template_sequence) + template_aatype = _encode_restype(chain_poly_type, template_sequence) + template_name = f'{chain.name.lower()}_{auth_chain_id}' + release_date = chain.release_date.strftime('%Y-%m-%d') + return { + 'template_all_atom_positions': template_all_atom_positions, + 'template_all_atom_masks': template_all_atom_masks, + 'template_sequence': template_sequence.encode(), + 'template_aatype': np.array(template_aatype, dtype=np.int32), + 'template_domain_names': np.array(template_name.encode(), dtype=object), + 'template_release_date': np.array(release_date.encode(), dtype=object), + } + + +def _get_ligand_features( + struc: structure.Structure, +) -> Mapping[str, Mapping[str, np.ndarray | bytes]]: + """Returns features for the ligands in this structure.""" + ligand_struc = struc.filter_to_entity_type(ligand=True) + assert ligand_struc.coords is not None + assert ligand_struc.atom_name is not None + assert ligand_struc.atom_occupancy is not None + + ligand_features = {} + for ligand_chain_id in ligand_struc.chains: + idxs = np.where(ligand_struc.chain_id == ligand_chain_id)[0] + if idxs.shape[0]: + ligand_features[ligand_chain_id] = { + 'ligand_atom_positions': ( + ligand_struc.coords[idxs, :].astype(np.float32) + ), + 'ligand_atom_names': ligand_struc.atom_name[idxs].astype(object), + 'ligand_atom_occupancies': ( + ligand_struc.atom_occupancy[idxs].astype(np.float32) + ), + 'ccd_id': ligand_struc.res_name[idxs][0].encode(), + } + return ligand_features + + +def package_template_features( + *, + hit_features: Sequence[Mapping[str, Any]], + include_ligand_features: bool, +) -> Mapping[str, Any]: + """Stacks polymer features, adds empty and keeps ligand features unstacked.""" + + features_to_include = set(_POLYMER_FEATURES) + if include_ligand_features: + features_to_include.update(_LIGAND_FEATURES) + + features = { + feat: [single_hit_features[feat] for single_hit_features in hit_features] + for feat in features_to_include + } + + stacked_features = {} + for k, v in features.items(): + if k in _POLYMER_FEATURES: + v = np.stack(v, axis=0) if v else np.array([], dtype=_POLYMER_FEATURES[k]) + stacked_features[k] = v + + return stacked_features + + +def _resolve_path(path: os.PathLike[str] | str) -> str: + """Resolves path for data dep paths, stringifies otherwise.""" + # Data dependency paths: db baked into the binary. + resolved_path = resources.filename(path) + if os.path.exists(resolved_path): + return resolved_path + else: + # Other paths, e.g. local. + return str(path) + + +def run_hmmsearch_with_a3m( + *, + database_path: os.PathLike[str] | str, + hmmsearch_config: msa_config.HmmsearchConfig, + max_a3m_query_sequences: int | None, + a3m: str | None, +) -> str: + """Runs Hmmsearch to get a3m string of hits.""" + searcher = hmmsearch.Hmmsearch( + binary_path=hmmsearch_config.hmmsearch_binary_path, + hmmbuild_binary_path=hmmsearch_config.hmmbuild_binary_path, + database_path=_resolve_path(database_path), + e_value=hmmsearch_config.e_value, + inc_e=hmmsearch_config.inc_e, + dom_e=hmmsearch_config.dom_e, + incdom_e=hmmsearch_config.incdom_e, + alphabet=hmmsearch_config.alphabet, + filter_f1=hmmsearch_config.filter_f1, + filter_f2=hmmsearch_config.filter_f2, + filter_f3=hmmsearch_config.filter_f3, + filter_max=hmmsearch_config.filter_max, + ) + # STO enables us to annotate query non-gap columns as reference columns. + sto = parsers.convert_a3m_to_stockholm(a3m, max_a3m_query_sequences) + return searcher.query_with_sto(sto, model_construction='hand') diff --git a/flax_model/alphafold3/data/tools/__init__.py b/flax_model/alphafold3/data/tools/__init__.py new file mode 100644 index 0000000000000000000000000000000000000000..e69de29bb2d1d6434b8b29ae775ad8c2e48c5391 diff --git a/flax_model/alphafold3/data/tools/hmmbuild.py b/flax_model/alphafold3/data/tools/hmmbuild.py new file mode 100644 index 0000000000000000000000000000000000000000..583fd22993a4df71deddca461df178260fa50e6b --- /dev/null +++ b/flax_model/alphafold3/data/tools/hmmbuild.py @@ -0,0 +1,136 @@ + + +"""A Python wrapper for hmmbuild - construct HMM profiles from MSA.""" + +import os +import re +import tempfile +from typing import Literal + +from flax_model.alphafold3.data import parsers +from flax_model.alphafold3.data.tools import subprocess_utils + + +class Hmmbuild(object): + """Python wrapper of the hmmbuild binary.""" + + def __init__( + self, + *, + binary_path: str, + singlemx: bool = False, + alphabet: str | None = None, + ): + """Initializes the Python hmmbuild wrapper. + + Args: + binary_path: The path to the hmmbuild executable. + singlemx: Whether to use --singlemx flag. If True, it forces HMMBuild to + just use a common substitution score matrix. + alphabet: The alphabet to assert when building a profile. Useful when + hmmbuild cannot guess the alphabet. If None, no alphabet is asserted. + + Raises: + RuntimeError: If hmmbuild binary not found within the path. + """ + self._binary_path = binary_path + self._singlemx = singlemx + self._alphabet = alphabet + + subprocess_utils.check_binary_exists(path=self._binary_path, name='hmmbuild') + + def build_profile_from_sto(self, sto: str, model_construction='fast') -> str: + """Builds a HHM for the aligned sequences given as an A3M string. + + Args: + sto: A string with the aligned sequences in the Stockholm format. + model_construction: Whether to use reference annotation in the msa to + determine consensus columns ('hand') or default ('fast'). + + Returns: + A string with the profile in the HMM format. + + Raises: + RuntimeError: If hmmbuild fails. + """ + return self._build_profile( + sto, informat='stockholm', model_construction=model_construction + ) + + def build_profile_from_a3m(self, a3m: str) -> str: + """Builds a HHM for the aligned sequences given as an A3M string. + + Args: + a3m: A string with the aligned sequences in the A3M format. + + Returns: + A string with the profile in the HMM format. + + Raises: + RuntimeError: If hmmbuild fails. + """ + lines = [] + for sequence, description in parsers.lazy_parse_fasta_string(a3m): + sequence = re.sub('[a-z]+', '', sequence) # Remove inserted residues. + lines.append(f'>{description}\n{sequence}\n') + msa = ''.join(lines) + return self._build_profile(msa, informat='afa') + + def _build_profile( + self, + msa: str, + informat: Literal['afa', 'stockholm'], + model_construction: str = 'fast', + ) -> str: + """Builds a HMM for the aligned sequences given as an MSA string. + + Args: + msa: A string with the aligned sequences, in A3M or STO format. + informat: One of 'afa' (aligned FASTA) or 'sto' (Stockholm). + model_construction: Whether to use reference annotation in the msa to + determine consensus columns ('hand') or default ('fast'). + + Returns: + A string with the profile in the HMM format. + + Raises: + RuntimeError: If hmmbuild fails. + ValueError: If unspecified arguments are provided. + """ + if model_construction not in {'hand', 'fast'}: + raise ValueError(f'Bad {model_construction=}. Only hand or fast allowed.') + + with tempfile.TemporaryDirectory() as query_tmp_dir: + input_msa_path = os.path.join(query_tmp_dir, 'query.msa') + output_hmm_path = os.path.join(query_tmp_dir, 'output.hmm') + + with open(input_msa_path, 'w') as f: + f.write(msa) + + # Specify the format as we don't specify the input file extension. See + # https://github.com/EddyRivasLab/hmmer/issues/321 for more details. + cmd_flags = ['--informat', informat] + # If adding flags, we have to do so before the output and input: + if model_construction == 'hand': + cmd_flags.append(f'--{model_construction}') + if self._singlemx: + cmd_flags.append('--singlemx') + if self._alphabet: + cmd_flags.append(f'--{self._alphabet}') + + cmd_flags.extend([output_hmm_path, input_msa_path]) + + cmd = [self._binary_path, *cmd_flags] + + subprocess_utils.run( + cmd=cmd, + cmd_name='Hmmbuild', + log_stdout=False, + log_stderr=True, + log_on_process_error=True, + ) + + with open(output_hmm_path) as f: + hmm = f.read() + + return hmm diff --git a/flax_model/alphafold3/data/tools/hmmsearch.py b/flax_model/alphafold3/data/tools/hmmsearch.py new file mode 100644 index 0000000000000000000000000000000000000000..8498f752080790e0a23abfe88878cba901f16e94 --- /dev/null +++ b/flax_model/alphafold3/data/tools/hmmsearch.py @@ -0,0 +1,141 @@ + + +"""A Python wrapper for hmmsearch - search profile against a sequence db.""" + +import os +import tempfile + +from absl import logging +from flax_model.alphafold3.data import parsers +from flax_model.alphafold3.data.tools import hmmbuild +from flax_model.alphafold3.data.tools import subprocess_utils + + +class Hmmsearch(object): + """Python wrapper of the hmmsearch binary.""" + + def __init__( + self, + *, + binary_path: str, + hmmbuild_binary_path: str, + database_path: str, + alphabet: str = 'amino', + filter_f1: float | None = None, + filter_f2: float | None = None, + filter_f3: float | None = None, + e_value: float | None = None, + inc_e: float | None = None, + dom_e: float | None = None, + incdom_e: float | None = None, + filter_max: bool = False, + ): + """Initializes the Python hmmsearch wrapper. + + Args: + binary_path: The path to the hmmsearch executable. + hmmbuild_binary_path: The path to the hmmbuild executable. Used to build + an hmm from an input a3m. + database_path: The path to the hmmsearch database (FASTA format). + alphabet: Chain type e.g. amino, rna, dna. + filter_f1: MSV and biased composition pre-filter, set to >1.0 to turn off. + filter_f2: Viterbi pre-filter, set to >1.0 to turn off. + filter_f3: Forward pre-filter, set to >1.0 to turn off. + e_value: E-value criteria for inclusion in tblout. + inc_e: E-value criteria for inclusion in MSA/next round. + dom_e: Domain e-value criteria for inclusion in tblout. + incdom_e: Domain e-value criteria for inclusion of domains in MSA/next + round. + filter_max: Remove all filters, will ignore all filter_f* settings. + + Raises: + RuntimeError: If hmmsearch binary not found within the path. + """ + self._binary_path = binary_path + self._hmmbuild_runner = hmmbuild.Hmmbuild( + alphabet=alphabet, binary_path=hmmbuild_binary_path + ) + self._database_path = database_path + flags = [] + if filter_max: + flags.append('--max') + else: + if filter_f1 is not None: + flags.extend(('--F1', filter_f1)) + if filter_f2 is not None: + flags.extend(('--F2', filter_f2)) + if filter_f3 is not None: + flags.extend(('--F3', filter_f3)) + + if e_value is not None: + flags.extend(('-E', e_value)) + if inc_e is not None: + flags.extend(('--incE', inc_e)) + if dom_e is not None: + flags.extend(('--domE', dom_e)) + if incdom_e is not None: + flags.extend(('--incdomE', incdom_e)) + + self._flags = tuple(map(str, flags)) + + subprocess_utils.check_binary_exists( + path=self._binary_path, name='hmmsearch' + ) + + if not os.path.exists(self._database_path): + logging.error('Could not find hmmsearch database %s', database_path) + raise ValueError(f'Could not find hmmsearch database {database_path}') + + def query_with_hmm(self, hmm: str) -> str: + """Queries the database using hmmsearch using a given hmm.""" + with tempfile.TemporaryDirectory() as query_tmp_dir: + hmm_input_path = os.path.join(query_tmp_dir, 'query.hmm') + sto_out_path = os.path.join(query_tmp_dir, 'output.sto') + with open(hmm_input_path, 'w') as f: + f.write(hmm) + + cmd = [ + self._binary_path, + '--noali', # Don't include the alignment in stdout. + *('--cpu', '8'), + ] + # If adding flags, we have to do so before the output and input: + if self._flags: + cmd.extend(self._flags) + cmd.extend([ + *('-A', sto_out_path), + hmm_input_path, + self._database_path, + ]) + + subprocess_utils.run( + cmd=cmd, + cmd_name=f'Hmmsearch ({os.path.basename(self._database_path)})', + log_stdout=False, + log_stderr=True, + log_on_process_error=True, + ) + + with open(sto_out_path) as f: + a3m_out = parsers.convert_stockholm_to_a3m( + f, remove_first_row_gaps=False, linewidth=60 + ) + + return a3m_out + + def query_with_a3m(self, a3m_in: str) -> str: + """Query the database using hmmsearch using a given a3m.""" + + # Only the "fast" model construction makes sense with A3M, as it doesn't + # have any way to annotate reference columns. + hmm = self._hmmbuild_runner.build_profile_from_a3m(a3m_in) + return self.query_with_hmm(hmm) + + def query_with_sto( + self, msa_sto: str, model_construction: str = 'fast' + ) -> str: + """Queries the database using hmmsearch using a given stockholm msa.""" + hmm = self._hmmbuild_runner.build_profile_from_sto( + msa_sto, model_construction=model_construction + ) + return self.query_with_hmm(hmm) diff --git a/flax_model/alphafold3/data/tools/jackhmmer.py b/flax_model/alphafold3/data/tools/jackhmmer.py new file mode 100644 index 0000000000000000000000000000000000000000..e43d2638de5a8094db8169f125a467bc8464a607 --- /dev/null +++ b/flax_model/alphafold3/data/tools/jackhmmer.py @@ -0,0 +1,326 @@ + + +"""Library to run Jackhmmer from Python.""" + +from collections.abc import Iterable, Sequence +from concurrent import futures +import heapq +import os +import pathlib +import shutil +import tempfile +import time + +from absl import logging +from flax_model.alphafold3.data import parsers +from flax_model.alphafold3.data.tools import shards +from flax_model.alphafold3.data.tools import msa_tool +from flax_model.alphafold3.data.tools import subprocess_utils + + +class Jackhmmer(msa_tool.MsaTool): + """Python wrapper of the Jackhmmer binary.""" + + def __init__( + self, + *, + binary_path: str, + database_path: str, + n_cpu: int = 8, + n_iter: int = 3, + e_value: float | None = 1e-3, + z_value: float | int | None = None, + dom_e: float | None = None, + dom_z_value: float | int | None = None, + max_sequences: int = 5000, + filter_f1: float = 5e-4, + filter_f2: float = 5e-5, + filter_f3: float = 5e-7, + max_threads: int | None = None, + **unused_kwargs, + ): + """Initializes the Python Jackhmmer wrapper. + + NOTE: The MSA obtained by running against sharded dbs won't be always + exactly the same as the MSA obtained by running against an unsharded db. + This is because of Jackhmmer deduplication logic, which won't spot duplicate + hits across multiple shards. Usually this means that the sharded search + finds more hits (likely bounded by the number of shards), but this should + not pose an issue given how the results are used downstream. The problem is + more pronounced with deep MSAs and lower in the hit list (higher e-values). + + Make sure to set the Z and domZ values when searching against a sharded + database, otherwise the results won't match the normal unsharded search. + + Args: + binary_path: The path to the jackhmmer executable. + database_path: The path to the jackhmmer database (FASTA format). Sharded + file specs, e.g. `@`, are supported. + n_cpu: The number of CPUs to give Jackhmmer. + n_iter: The number of Jackhmmer iterations. + e_value: The E-value, see Jackhmmer docs for more details. + z_value: The Z-value representing the number of comparisons done (i.e + correct database size) for E-value calculation. Make sure to set this + when searching against a sharded database, otherwise the e-values will + be incorrectly scaled. + dom_e: Domain e-value criteria for inclusion in tblout. + dom_z_value: Domain z-value representing the number of comparisons done + (i.e correct database size) for domain E-value calculation. Make sure to + set this when searching against a sharded database, otherwise the domain + e-values will be incorrectly scaled. + max_sequences: Maximum number of sequences to return in the MSA. + filter_f1: MSV and biased composition pre-filter, set to >1.0 to turn off. + filter_f2: Viterbi pre-filter, set to >1.0 to turn off. + filter_f3: Forward pre-filter, set to >1.0 to turn off. + max_threads: If given, the maximum number of threads used when running + sharded databases. + + Raises: + RuntimeError: If Jackhmmer binary not found within the path. + ValueError: If an invalid configuration is provided in the args. + """ + self._database_path = database_path + + if shard_paths := shards.get_sharded_paths(self._database_path): + if n_iter != 1: + raise ValueError('For a sharded db, only n_iter=1 is supported.') + if z_value is None: + raise ValueError( + 'The Z-value must be set when searching against a sharded database ' + 'to correctly scale e-values.' + ) + if max_sequences <= 1: + raise ValueError( + 'max_sequences must be greater than 1 when running in sharded ' + 'mode, because each shard would return only the query sequence.' + ) + + self._shard_paths = shard_paths + self._max_threads = len(self._shard_paths) + if max_threads is not None: + self._max_threads = min(max_threads, self._max_threads) + logging.info('Jackhmmer running with max_threads = %d', self._max_threads) + else: + self._shard_paths = None + self._max_threads = None + + self._binary_path = binary_path + subprocess_utils.check_binary_exists( + path=self._binary_path, name='Jackhmmer' + ) + + self._n_cpu = n_cpu + self._n_iter = n_iter + self._e_value = e_value + self._z_value = z_value + self._dom_e = dom_e + self._dom_z_value = dom_z_value + self._max_sequences = max_sequences + self._filter_f1 = filter_f1 + self._filter_f2 = filter_f2 + self._filter_f3 = filter_f3 + + # If Jackhmmer supports the --seq_limit flag (via our patch), use it to + # prevent writing out redundant sequences and increasing peak memory usage. + # If not, the Jackhmmer will be run without the --seq_limit flag. + self._supports_seq_limit = subprocess_utils.jackhmmer_seq_limit_supported( + self._binary_path + ) + + def query(self, target_sequence: str) -> msa_tool.MsaToolResult: + """Query the database (sharded or unsharded) using Jackhmmer.""" + if self._shard_paths: + # Sharded case, run the query against each database shard in parallel. + logging.info( + 'Query sequence (sharded db): %s', + target_sequence + if len(target_sequence) <= 16 + else f'{target_sequence[:16]}... (len {len(target_sequence)})', + ) + + global_temp_dir = tempfile.mkdtemp() + + def _query_shard_fn( + shard_path: str, + ) -> tuple[msa_tool.MsaToolResult, float]: + t_start = time.time() + result = self._query_db_shard( + target_sequence=target_sequence, + db_shard_path=shard_path, + get_tblout=True, # Tblout contains e-values needed for merging. + global_temp_dir=global_temp_dir, + ) + return result, time.time() - t_start + + with futures.ThreadPoolExecutor(max_workers=self._max_threads) as ex: + tool_outputs, timings = zip(*ex.map(_query_shard_fn, self._shard_paths)) + + logging.info( + 'Finished query for %d shards, shard timings (seconds): %s', + len(tool_outputs), + ', '.join(f'{t:.1f}' for t in timings), + ) + + shutil.rmtree(global_temp_dir, ignore_errors=True) + return _merge_jackhmmer_results(tool_outputs, self._max_sequences) + + else: + # Non-sharded case, run the query against the whole database. + logging.info( + 'Query sequence (non-sharded db): %s', + target_sequence + if len(target_sequence) <= 16 + else f'{target_sequence[:16]}... (len {len(target_sequence)})', + ) + return self._query_db_shard( + target_sequence=target_sequence, + db_shard_path=self._database_path, + get_tblout=False, + ) + + def _query_db_shard( + self, + *, + target_sequence: str, + db_shard_path: str, + get_tblout: bool, + global_temp_dir: str | None = None, + ) -> msa_tool.MsaToolResult: + """Query the database shard using Jackhmmer.""" + + with tempfile.TemporaryDirectory(dir=global_temp_dir) as query_tmp_dir: + input_fasta_path = os.path.join(query_tmp_dir, 'query.fasta') + subprocess_utils.create_query_fasta_file( + sequence=target_sequence, path=input_fasta_path + ) + output_sto_path = os.path.join(query_tmp_dir, 'output.sto') + pathlib.Path(output_sto_path).touch() + + # The F1/F2/F3 are the expected proportion to pass each of the filtering + # stages (which get progressively more expensive), reducing these + # speeds up the pipeline at the expensive of sensitivity. They are + # currently set very low to make querying Mgnify run in a reasonable + # amount of time. + cmd_flags = [ + *('-o', '/dev/null'), # Don't pollute stdout with Jackhmmer output. + *('-A', output_sto_path), + '--noali', + *('--F1', str(self._filter_f1)), + *('--F2', str(self._filter_f2)), + *('--F3', str(self._filter_f3)), + *('--cpu', str(self._n_cpu)), + *('-N', str(self._n_iter)), + ] + + if get_tblout: + output_tblout_path = pathlib.Path(query_tmp_dir, 'tblout.txt') + output_tblout_path.touch() + cmd_flags.extend(['--tblout', str(output_tblout_path)]) + else: + output_tblout_path = None + + # Report only sequences with E-values <= x in per-sequence output. + if self._e_value is not None: + cmd_flags.extend(['-E', str(self._e_value)]) + + # Use the same value as the reporting e-value (`-E` flag). + cmd_flags.extend(['--incE', str(self._e_value)]) + + if self._z_value is not None: + cmd_flags.extend(['-Z', str(self._z_value)]) + + if self._dom_z_value is not None: + cmd_flags.extend(['--domZ', str(self._dom_z_value)]) + + if self._dom_e is not None: + cmd_flags.extend(['--domE', str(self._dom_e)]) + + if self._max_sequences is not None and self._supports_seq_limit: + cmd_flags.extend(['--seq_limit', str(self._max_sequences)]) + + # The input FASTA and the input db are the last two arguments. + cmd = [self._binary_path] + cmd_flags + [input_fasta_path, db_shard_path] + + subprocess_utils.run( + cmd=cmd, + cmd_name=f'Jackhmmer ({os.path.basename(db_shard_path)})', + log_stdout=False, + log_stderr=True, + log_on_process_error=True, + ) + + with open(output_sto_path) as f: + a3m = parsers.convert_stockholm_to_a3m( + f, max_sequences=self._max_sequences + ) + + # Get the tabular output which has e.g. e-value for each target. + tbl = '' if output_tblout_path is None else output_tblout_path.read_text() + + return msa_tool.MsaToolResult( + target_sequence=target_sequence, + a3m=a3m, + e_value=self._e_value, + tblout=tbl, + ) + + +def _merge_jackhmmer_results( + jh_results: Sequence[msa_tool.MsaToolResult], max_sequences: int +) -> msa_tool.MsaToolResult: + """Merges Jackhmmer result protos into a single one.""" + assert len(set(jh_res.target_sequence for jh_res in jh_results)) == 1 + assert len(set(jh_res.e_value for jh_res in jh_results)) == 1 + + # Parse the TBL output, create a mapping from hit name to TBL line. + parsed_tbl = {} + for jh_result in jh_results: + assert jh_result.tblout is not None + for line in jh_result.tblout.splitlines(): + if not line.startswith('#'): + parsed_tbl[line.partition(' ')[0]] = line + + # Create an iterator and merge a3m info with tbl info. + def _merged_a3m_tbl_iter(a3m: str) -> Iterable[tuple[str, str, str, str]]: + # Don't parse the entire a3m, lazily parse only as many sequences as needed. + iterator = iter(parsers.lazy_parse_fasta_string(a3m)) + next(iterator) # Skip the query which isn't present in tblout. + for sequence, description in iterator: + name = description.partition(' ')[0].partition('/')[0] + if tbl_info := parsed_tbl.get(name): + # Skip sequences for which we don't have tbl information. + yield sequence, description, tbl_info, name + + def sort_key(seq_data: tuple[str, str, str, str]) -> tuple[float, str]: + unused_seq, unused_description, tbl_info, name = seq_data + # Tblout lines have 19 whitespace delimited columns. "-" used if no value + # present. We want e-value in column with index 4, so do only 5 splits. + # Use the name in case of a e-value tie. + return float(tbl_info.split(maxsplit=5)[4]), name + + # A3M/TBL is sorted by e-value and name, hence we can merge them efficiently. + merged_a3m_and_tblout = heapq.merge( + *[_merged_a3m_tbl_iter(res.a3m) for res in jh_results], + key=sort_key, + ) + + # Truncate the a3m to max_sequences. Do not truncate the tblout. + merged_tblout = [] + merged_a3m = [f'>query\n{jh_results[0].target_sequence}'] + for seq, description, tbl_info, _ in merged_a3m_and_tblout: + merged_tblout.append(tbl_info) + if len(merged_a3m) < max_sequences: + merged_a3m.append(f'>{description}\n{seq}') + + logging.info( + 'Limiting merged MSA depth from %d to %d', + len(merged_tblout), + max_sequences, + ) + + return msa_tool.MsaToolResult( + target_sequence=jh_results[0].target_sequence, + a3m='\n'.join(merged_a3m), + e_value=jh_results[0].e_value, + tblout=None, # We no longer need the tblout. + ) diff --git a/flax_model/alphafold3/data/tools/mmseqs.py b/flax_model/alphafold3/data/tools/mmseqs.py new file mode 100644 index 0000000000000000000000000000000000000000..757bb7f25123a3a34521e59c1cc6153dcff4ab12 --- /dev/null +++ b/flax_model/alphafold3/data/tools/mmseqs.py @@ -0,0 +1,303 @@ + + +"""Library to run Mmseqs from Python.""" + +import os +import tempfile +import subprocess +import time +from typing import List, Dict, Optional + + +from absl import logging +from flax_model.alphafold3.data import parsers +from flax_model.alphafold3.data.tools import msa_tool +from flax_model.alphafold3.data.tools import subprocess_utils +import shlex + +import shutil +import re + + +class Mmseqs(msa_tool.MsaTool): + + _database_types = ["mgnify", "uniprot_cluster_annot", "uniref90", "small_bfd"] + + def __init__( + self, + *, + binary_path: str, + database_path: str, + n_cpu: int = 8, + e_value: float = 1e-4, + max_sequences: int = 5000, + use_gpu: int = 1, + msa_format_mode: int = 4, + mmseqs_options: str = "", + result2msa_options: str = "", + ): + self.binary_path = binary_path + self.database_path = database_path + + subprocess_utils.check_binary_exists(path=self.binary_path, name='MMseqs') + + if not os.path.exists(self.database_path): + raise ValueError(f'Database not found: {database_path}') + + self.n_cpu = n_cpu + self.e_value = e_value + self.max_sequences = max_sequences + self.use_gpu = use_gpu + self.msa_format_mode = msa_format_mode + self.mmseqs_options = mmseqs_options + self.result2msa_options = result2msa_options + + def _get_gpu_memory_gb(self) -> float: + hip_devices = os.environ.get('HIP_VISIBLE_DEVICES', '') + cuda_devices = os.environ.get('CUDA_VISIBLE_DEVICES', '') + + hy_smi = shutil.which('hy-smi') + nvidia_smi = shutil.which('nvidia-smi') + + prefer_hip = bool(hip_devices or hy_smi) + + device_id: Optional[str] = None + if prefer_hip and hip_devices: + ids = [d.strip() for d in hip_devices.split(',') if d.strip()] + device_id = ids[0] if ids else None + elif cuda_devices: + ids = [d.strip() for d in cuda_devices.split(',') if d.strip()] + device_id = ids[0] if ids else None + + # 1) hy-smi (HIP path) + if hy_smi: + try: + mem = self._get_gpu_memory_gb_via_hy_smi(hy_smi, device_id) + if mem is not None: + logging.info(f"GPU memory (hy-smi): {mem:.1f}GB") + return mem + except Exception as e: # noqa: BLE001 + logging.warning(f"hy-smi query failed: {e}") + + # 2) NVIDIA fallback when CUDA devices are provided + if nvidia_smi and cuda_devices: + try: + ids = [d.strip() for d in cuda_devices.split(',') if d.strip()] + if ids: + cmd = [ + nvidia_smi, + '--query-gpu=memory.total', + '--format=csv,noheader,nounits', + f'--id={ids[0]}', + ] + result = subprocess.run(cmd, capture_output=True, text=True, check=True) + memory_mb = float(result.stdout.strip()) + return memory_mb / 1024.0 + except (subprocess.CalledProcessError, ValueError, FileNotFoundError) as e: + logging.warning(f"nvidia-smi query failed: {e}") + + logging.info("Falling back to default GPU memory: 40GB") + return 40.0 + + def _parse_memory_gb_from_text(self, text: str) -> Optional[float]: + units = { + 'gib': 1.0, + 'gb': 1.0, + 'mib': 1.0 / 1024.0, + 'mb': 1.0 / 1024.0, + 'kib': 1.0 / (1024.0 * 1024.0), + 'kb': 1.0 / (1024.0 * 1024.0), + 'b': 1.0 / (1024.0 * 1024.0 * 1024.0), + } + pattern = re.compile(r"(\d+(?:\.\d+)?)\s*(GiB|GB|MiB|MB|KiB|KB|B)", re.IGNORECASE) + candidates = [] + for match in pattern.finditer(text): + value = float(match.group(1)) + unit = match.group(2).lower() + factor = units.get(unit, None) + if factor is not None: + candidates.append(value * factor) + if candidates: + return max(candidates) + # rocm-smi often prints bytes as: Total Memory (B): 17163091968 + bytes_pattern = re.compile(r"Total\s*Memory\s*\(B\)\s*[:=]\s*(\d{6,})", re.IGNORECASE) + m = bytes_pattern.search(text) + if m: + try: + return float(m.group(1)) / (1024.0 * 1024.0 * 1024.0) + except ValueError: + return None + # generic Total: + generic_bytes = re.compile(r"Total\s*[:=]\s*(\d{6,})", re.IGNORECASE) + m2 = generic_bytes.search(text) + if m2: + try: + return float(m2.group(1)) / (1024.0 * 1024.0 * 1024.0) + except ValueError: + return None + return None + + def _get_gpu_memory_gb_via_hy_smi(self, hy_smi_path: str, device_id: Optional[str]) -> Optional[float]: + candidate_cmds = [] + # 1) Plain text output exactly as user provided; most reliable for MiB lines + if device_id is not None: + candidate_cmds.append([hy_smi_path, '--showmeminfo', 'vram', '-d', str(device_id)]) + candidate_cmds.append([hy_smi_path, '--showmeminfo', 'vram']) + # 2) CSV/JSON (may not include units next to values, kept as fallback) + if device_id is not None: + candidate_cmds.append([hy_smi_path, '--showmeminfo', 'vram', '--csv', '-d', str(device_id)]) + candidate_cmds.append([hy_smi_path, '--showmeminfo', 'vram', '--csv']) + if device_id is not None: + candidate_cmds.append([hy_smi_path, '--showmeminfo', 'vram', '--json', '-d', str(device_id)]) + candidate_cmds.append([hy_smi_path, '--showmeminfo', 'vram', '--json']) + # 3) All-in-one info as a last resort + candidate_cmds.append([hy_smi_path, '-a']) + + for cmd in candidate_cmds: + try: + result = subprocess.run(cmd, capture_output=True, text=True, check=True) + # Prefer exact vram parser for hy-smi + parsed = self._parse_hysmi_vram_total_gb(result.stdout, device_id) + if parsed is None: + parsed = self._parse_memory_gb_from_text(result.stdout) + if parsed is not None and parsed > 0: + return parsed + except subprocess.CalledProcessError: + continue + return None + + def _parse_hysmi_vram_total_gb(self, text: str, device_id: Optional[str]) -> Optional[float]: + # Match lines like: HCU[0] : vram Total Memory (MiB): 65520 + pattern = re.compile(r"(?:DCU|HCU)\[(\d+)\].*?vram\s+Total\s+Memory\s*\(MiB\)\s*:\s*(\d+)", re.IGNORECASE) + matches = pattern.findall(text) + if not matches: + return None + values_gb = [] + for dev, mib_str in matches: + try: + if device_id is not None and str(device_id) != str(dev): + continue + mib = float(mib_str) + values_gb.append(mib / 1024.0) + except ValueError: + continue + if not values_gb: + return None + return max(values_gb) + + + + def _get_database_type(self, database_path: str) -> str: + path_lower = database_path.lower() + for db_type in self._database_types: + if db_type in path_lower: + return db_type + return "unknown" + + def _calculate_memory_allocation(self, database_path: str) -> int: + db_type = self._get_database_type(database_path) + if db_type == "unknown": + return 8 + + if not self.use_gpu: + return 8 + + gpu_memory_gb = self._get_gpu_memory_gb() + + available_memory = max(0, gpu_memory_gb) + + if db_type == "mgnify": + small_dbs_memory = 3 * 2 + allocated_memory = int(available_memory - small_dbs_memory) + allocated_memory = max(2, allocated_memory) + else: + allocated_memory = 2 + + logging.info(f"Database {db_type}: allocated {allocated_memory}GB GPU memory") + return allocated_memory + + def query(self, target_sequence: str) -> msa_tool.MsaToolResult: + with tempfile.TemporaryDirectory() as tmp_dir: + input_fasta = os.path.join(tmp_dir, 'query.fasta') + subprocess_utils.create_query_fasta_file(target_sequence, input_fasta) + + query_db = os.path.join(tmp_dir, 'queryDB') + self._run_createdb(input_fasta, query_db) + + result_db = os.path.join(tmp_dir, 'resultDB') + self._run_search(query_db, result_db) + + output_sto = os.path.join(tmp_dir, 'output.sto') + self._run_result2msa(query_db, result_db, output_sto) + + with open(output_sto) as f: + a3m = self._parse_output(f) + + return msa_tool.MsaToolResult( + target_sequence=target_sequence, + a3m=a3m, + e_value=self.e_value + ) + + def _run_search(self, input_db: str, output_db: str): + with tempfile.TemporaryDirectory() as tmp_dir: + cmd = [ + self.binary_path, + 'search', + input_db, + self.database_path, + output_db, + tmp_dir, + '--threads', str(self.n_cpu), + '-e', str(self.e_value), + '--gpu', str(self.use_gpu), + *shlex.split(self.mmseqs_options) + ] + + if self.use_gpu: + max_gpu_mem = self._calculate_memory_allocation(self.database_path) + cmd.extend(['--max-gpu-mem', f'{max_gpu_mem}G']) + logging.info(f"Running MMseqs search with max GPU memory: {max_gpu_mem}GB") + else: + logging.info("Running MMseqs search in CPU mode") + + subprocess_utils.run( + cmd=cmd, + cmd_name='MMseqs2 search', + log_stderr=True + ) + + def _run_createdb(self, input_fasta: str, output_db: str): + cmd = [self.binary_path, 'createdb', input_fasta, output_db] + subprocess_utils.run(cmd, 'MMseqs2 createdb') + + def _run_result2msa(self, query_db: str, result_db: str, output_sto: str): + cmd = [ + self.binary_path, + 'result2msa', + query_db, + self.database_path, + result_db, + output_sto, + '--msa-format-mode', str(self.msa_format_mode), + *shlex.split(self.result2msa_options) + ] + subprocess_utils.run(cmd, 'MMseqs2 result2msa') + + def _parse_output(self, file_handle): + try: + return parsers.convert_stockholm_to_a3m(file_handle, self.max_sequences) + except Exception as e: + logging.warning(f"Stockholm parse failed: {e}") + + file_handle.seek(0) + content = file_handle.read() + debug_file = f"/tmp/stockholm_debug_{int(time.time())}.sto" + with open(debug_file, 'w') as f: + f.write(content) + logging.info(f"Saved debug file: {debug_file}") + + file_handle.seek(0) + return parsers.convert_mmseqs_stockholm_to_a3m(file_handle, self.max_sequences) + + diff --git a/flax_model/alphafold3/data/tools/rdkit_utils.py b/flax_model/alphafold3/data/tools/rdkit_utils.py new file mode 100644 index 0000000000000000000000000000000000000000..f9dfbc7d415b10c03b2cabf0422151181f7d5698 --- /dev/null +++ b/flax_model/alphafold3/data/tools/rdkit_utils.py @@ -0,0 +1,535 @@ + + +"""Tools for calculating features for ligands.""" + +import collections +from collections.abc import Mapping, Sequence + +from absl import logging +from flax_model.alphafold3.cpp import cif_dict +import numpy as np +import rdkit.Chem as rd_chem +from rdkit.Chem import AllChem as rd_all_chem + + +_RDKIT_MMCIF_TO_BOND_TYPE: Mapping[str, rd_chem.BondType] = { + 'SING': rd_chem.BondType.SINGLE, + 'DOUB': rd_chem.BondType.DOUBLE, + 'TRIP': rd_chem.BondType.TRIPLE, +} + +_RDKIT_BOND_TYPE_TO_MMCIF: Mapping[rd_chem.BondType, str] = { + v: k for k, v in _RDKIT_MMCIF_TO_BOND_TYPE.items() +} + +_RDKIT_BOND_STEREO_TO_MMCIF: Mapping[rd_chem.BondStereo, str] = { + rd_chem.BondStereo.STEREONONE: 'N', + rd_chem.BondStereo.STEREOE: 'E', + rd_chem.BondStereo.STEREOZ: 'Z', + rd_chem.BondStereo.STEREOCIS: 'Z', + rd_chem.BondStereo.STEREOTRANS: 'E', +} + + +class MolFromMmcifError(Exception): + """Raised when conversion from mmCIF to RDKit Mol fails.""" + + +class UnsupportedMolBondError(Exception): + """Raised when we try to handle unsupported RDKit bonds.""" + + +def _populate_atoms_in_mol( + mol: rd_chem.Mol, + atom_names: Sequence[str], + atom_types: Sequence[str], + atom_charges: Sequence[int], + implicit_hydrogens: bool, + ligand_name: str, + atom_leaving_flags: Sequence[str], +): + """Populate the atoms of a Mol given atom features. + + Args: + mol: Mol object. + atom_names: Names of the atoms. + atom_types: Types of the atoms. + atom_charges: Charges of the atoms. + implicit_hydrogens: Whether to mark the atoms to allow implicit Hs. + ligand_name: Name of the ligand which the atoms are in. + atom_leaving_flags: Whether the atom is possibly a leaving atom. Values from + the CCD column `_chem_comp_atom.pdbx_leaving_atom_flag`. The expected + values are 'Y' (yes), 'N' (no), '?' (unknown/unset, interpreted as no). + + Raises: + ValueError: If atom type is invalid. + """ + # Map atom names to the position they will take in the rdkit molecule. + atom_name_to_idx = {name: i for i, name in enumerate(atom_names)} + + for atom_name, atom_type, atom_charge, atom_leaving_flag in zip( + atom_names, atom_types, atom_charges, atom_leaving_flags, strict=True + ): + try: + if atom_type == 'X': + atom_type = '*' + atom = rd_chem.Atom(atom_type) + except RuntimeError as e: + raise ValueError(f'Failed to use atom type: {str(e)}') from e + + if not implicit_hydrogens: + atom.SetNoImplicit(True) + + atom.SetProp('atom_name', atom_name) + atom.SetProp('atom_leaving_flag', atom_leaving_flag) + atom.SetFormalCharge(atom_charge) + residue_info = rd_chem.AtomPDBResidueInfo() + residue_info.SetName(_format_atom_name(atom_name, atom_type)) + residue_info.SetIsHeteroAtom(True) + residue_info.SetResidueName(ligand_name) + residue_info.SetResidueNumber(1) + atom.SetPDBResidueInfo(residue_info) + atom_index = mol.AddAtom(atom) + assert atom_index == atom_name_to_idx[atom_name] + + +def _populate_bonds_in_mol( + mol: rd_chem.Mol, + atom_names: Sequence[str], + bond_begins: Sequence[str], + bond_ends: Sequence[str], + bond_orders: Sequence[str], + bond_is_aromatics: Sequence[bool], +): + """Populate the bonds of a Mol given bond features. + + Args: + mol: Mol object. + atom_names: Names of atoms in the molecule. + bond_begins: Names of atoms at the beginning of the bond. + bond_ends: Names of atoms at the end of the bond. + bond_orders: What order the bonds are. + bond_is_aromatics: Whether the bonds are aromatic. + """ + atom_name_to_idx = {name: i for i, name in enumerate(atom_names)} + for begin, end, bond_type, is_aromatic in zip( + bond_begins, bond_ends, bond_orders, bond_is_aromatics, strict=True + ): + begin_name, end_name = atom_name_to_idx[begin], atom_name_to_idx[end] + bond_idx = mol.AddBond(begin_name, end_name, bond_type) + mol.GetBondWithIdx(bond_idx - 1).SetIsAromatic(is_aromatic) + + +def sanitize_mol(mol, sort_alphabetically, remove_hydrogens) -> rd_chem.Mol: + # https://www.rdkit.org/docs/source/rdkit.Chem.rdmolops.html#rdkit.Chem.rdmolops.SanitizeMol + # Kekulize, check valencies, set aromaticity, conjugation and hybridization. + # This can repair e.g. incorrect aromatic flags. + rd_chem.SanitizeMol(mol) + if sort_alphabetically: + mol = sort_atoms_by_name(mol) + if remove_hydrogens: + mol = rd_chem.RemoveHs(mol) + return mol + + +def _add_conformer_to_mol(mol, conformer, force_parse) -> rd_chem.Mol: + # Create conformer and use it to assign stereochemistry. + if conformer is not None: + try: + mol.AddConformer(conformer) + rd_chem.AssignStereochemistryFrom3D(mol) + except ValueError as e: + logging.warning('Failed to parse conformer: %s', e) + if not force_parse: + raise + + +def mol_from_ccd_cif( + mol_cif: cif_dict.CifDict, + *, + force_parse: bool = False, + sort_alphabetically: bool = True, + remove_hydrogens: bool = True, + implicit_hydrogens: bool = False, +) -> rd_chem.Mol: + """Creates an rdkit Mol object from a CCD mmcif data block. + + The atoms are renumbered so that their names are in alphabetical order and + these names are placed on the atoms under property 'atom_name'. + Only hydrogens which are not required to define the molecule are removed. + For example, hydrogens that define stereochemistry around a double bond are + retained. + See this link for more details. + https://www.rdkit.org/docs/source/rdkit.Chem.rdmolops.html#rdkit.Chem.rdmolops.RemoveHs + + Args: + mol_cif: An mmcif object representing a molecule. + force_parse: If True, assumes missing aromatic flags are false, substitutes + deuterium for hydrogen, assumes missing charges are 0 and ignores missing + conformer / stereochemistry information. + sort_alphabetically: True: sort atom alphabetically; False: keep CCD order + remove_hydrogens: if True, remove non-important hydrogens + implicit_hydrogens: Sets a marker on the atom that allows implicit Hs. + + Returns: + An rdkit molecule, with the atoms sorted by name. + + Raises: + MolToMmcifError: If conversion from mmcif to rdkit Mol fails. More detailed + error is available as this error's cause. + """ + # Read data fields. + try: + atom_names, atom_types, atom_charges, atom_leaving_flags = parse_atom_data( + mol_cif, force_parse + ) + bond_begins, bond_ends, bond_orders, bond_is_aromatics = parse_bond_data( + mol_cif, force_parse + ) + lig_name = mol_cif['_chem_comp.id'][0].rjust(3) + except (KeyError, ValueError) as e: + raise MolFromMmcifError from e + + # Build Rdkit molecule. + mol = rd_chem.RWMol() + + # Per atom features. + try: + _populate_atoms_in_mol( + mol=mol, + atom_names=atom_names, + atom_types=atom_types, + atom_charges=atom_charges, + implicit_hydrogens=implicit_hydrogens, + ligand_name=lig_name, + atom_leaving_flags=atom_leaving_flags, + ) + except (ValueError, RuntimeError) as e: + raise MolFromMmcifError from e + + _populate_bonds_in_mol( + mol, atom_names, bond_begins, bond_ends, bond_orders, bond_is_aromatics + ) + + try: + conformer = _parse_ideal_conformer(mol_cif) + except (KeyError, ValueError) as e: + logging.warning('Failed to parse ideal conformer: %s', e) + if not force_parse: + raise MolFromMmcifError from e + conformer = None + + mol.UpdatePropertyCache(strict=False) + + try: + _add_conformer_to_mol(mol, conformer, force_parse) + mol = sanitize_mol(mol, sort_alphabetically, remove_hydrogens) + except ( + ValueError, + rd_chem.KekulizeException, + rd_chem.AtomValenceException, + ) as e: + raise MolFromMmcifError from e + + return mol + + +def mol_to_ccd_cif( + mol: rd_chem.Mol, + component_id: str, + pdbx_smiles: str | None = None, + include_hydrogens: bool = True, +) -> cif_dict.CifDict: + """Creates a CCD-like mmcif data block from an rdkit Mol object. + + Only a subset of associated mmcif fields is populated, but that is + sufficient for further usage, e.g. in featurization code. + + Atom names can be specified via `atom_name` property. For atoms with + unspecified value of that property, the name is assigned based on element type + and the order in the Mol object. + + If the Mol object has associated conformers, atom positions from the first of + them will be populated in the resulting mmcif file. + + Args: + mol: An rdkit molecule. + component_id: Name of the molecule to use in the resulting mmcif. That is + equivalent to CCD code. + pdbx_smiles: If specified, the value will be used to populate + `_chem_comp.pdbx_smiles`. + include_hydrogens: Whether to include atom and bond data involving + hydrogens. + + Returns: + An mmcif data block corresponding for the given rdkit molecule. + + Raises: + UnsupportedMolBond: When a molecule contains a bond that can't be + represented with mmcif. + """ + mol = rd_chem.Mol(mol) + if include_hydrogens: + mol = rd_chem.AddHs(mol) + rd_chem.Kekulize(mol) + + if mol.GetNumConformers() > 0: + ideal_conformer = mol.GetConformer(0).GetPositions() + ideal_conformer = np.vectorize(lambda x: f'{x:.3f}')(ideal_conformer) + else: + # No data will be populated in the resulting mmcif if the molecule doesn't + # have any conformers attached to it. + ideal_conformer = None + + mol_cif = collections.defaultdict(list) + mol_cif['data_'] = [component_id] + mol_cif['_chem_comp.id'] = [component_id] + if pdbx_smiles: + mol_cif['_chem_comp.pdbx_smiles'] = [pdbx_smiles] + + mol = assign_atom_names_from_graph(mol, keep_existing_names=True) + + for atom_idx, atom in enumerate(mol.GetAtoms()): + element = atom.GetSymbol() + if not include_hydrogens and element in ('H', 'D'): + continue + + mol_cif['_chem_comp_atom.comp_id'].append(component_id) + mol_cif['_chem_comp_atom.atom_id'].append(atom.GetProp('atom_name')) + mol_cif['_chem_comp_atom.type_symbol'].append(atom.GetSymbol().upper()) + mol_cif['_chem_comp_atom.charge'].append(str(atom.GetFormalCharge())) + if ideal_conformer is not None: + coords = ideal_conformer[atom_idx] + mol_cif['_chem_comp_atom.pdbx_model_Cartn_x_ideal'].append(coords[0]) + mol_cif['_chem_comp_atom.pdbx_model_Cartn_y_ideal'].append(coords[1]) + mol_cif['_chem_comp_atom.pdbx_model_Cartn_z_ideal'].append(coords[2]) + + for bond in mol.GetBonds(): + atom1 = bond.GetBeginAtom() + atom2 = bond.GetEndAtom() + if not include_hydrogens and ( + atom1.GetSymbol() in ('H', 'D') or atom2.GetSymbol() in ('H', 'D') + ): + continue + mol_cif['_chem_comp_bond.comp_id'].append(component_id) + mol_cif['_chem_comp_bond.atom_id_1'].append( + bond.GetBeginAtom().GetProp('atom_name') + ) + mol_cif['_chem_comp_bond.atom_id_2'].append( + bond.GetEndAtom().GetProp('atom_name') + ) + try: + bond_type = bond.GetBondType() + # Older versions of RDKit did not have a DATIVE bond type. Convert it to + # SINGLE to match the AF3 training setup. + if bond_type == rd_chem.BondType.DATIVE: + bond_type = rd_chem.BondType.SINGLE + mol_cif['_chem_comp_bond.value_order'].append( + _RDKIT_BOND_TYPE_TO_MMCIF[bond_type] + ) + mol_cif['_chem_comp_bond.pdbx_stereo_config'].append( + _RDKIT_BOND_STEREO_TO_MMCIF[bond.GetStereo()] + ) + except KeyError as e: + raise UnsupportedMolBondError from e + mol_cif['_chem_comp_bond.pdbx_aromatic_flag'].append( + 'Y' if bond.GetIsAromatic() else 'N' + ) + + return cif_dict.CifDict(mol_cif) + + +def _format_atom_name(atom_name: str, atom_type: str) -> str: + """Formats an atom name to fit in the four characters specified in PDB. + + See for example the following note on atom name formatting in PDB files: + https://www.cgl.ucsf.edu/chimera/docs/UsersGuide/tutorials/pdbintro.html#note1 + + Args: + atom_name: The unformatted atom name. + atom_type: The atom element symbol. + + Returns: + formatted_atom_name: The formatted 4-character atom name. + """ + atom_name = atom_name.strip() + atom_type = atom_type.strip().upper() + if len(atom_name) == 1: + return atom_name.rjust(2).ljust(4) + elif len(atom_name) == 2: + if atom_name == atom_type: + return atom_name.ljust(4) + return atom_name.center(4) + elif len(atom_name) == 3: + if atom_name[:2] == atom_type: + return atom_name.ljust(4) + return atom_name.rjust(4) + elif len(atom_name) == 4: + return atom_name + else: + raise ValueError( + f'Atom name `{atom_name}` has more than four characters ' + 'or is an empty string.' + ) + + +def parse_atom_data( + mol_cif: cif_dict.CifDict | Mapping[str, Sequence[str]], force_parse: bool +) -> tuple[Sequence[str], Sequence[str], Sequence[int], Sequence[str]]: + """Parses atoms. If force_parse is True, fix deuterium and missing charge.""" + atom_types = [t.capitalize() for t in mol_cif['_chem_comp_atom.type_symbol']] + atom_names = mol_cif['_chem_comp_atom.atom_id'] + atom_charges = mol_cif['_chem_comp_atom.charge'] + atom_leaving_flags = ['?'] * len(atom_names) + if '_chem_comp_atom.pdbx_leaving_atom_flag' in mol_cif: + atom_leaving_flags = mol_cif['_chem_comp_atom.pdbx_leaving_atom_flag'] + + if force_parse: + # Replace missing charges with 0. + atom_charges = [charge if charge != '?' else '0' for charge in atom_charges] + # Deuterium for hydrogen. + atom_types = [type_ if type_ != 'D' else 'H' for type_ in atom_types] + + atom_charges = [int(atom_charge) for atom_charge in atom_charges] + return atom_names, atom_types, atom_charges, atom_leaving_flags + + +def parse_bond_data( + mol_cif: cif_dict.CifDict | Mapping[str, Sequence[str]], force_parse: bool +) -> tuple[ + Sequence[str], Sequence[str], Sequence[rd_chem.BondType], Sequence[bool] +]: + """Parses bond data. If force_parse is True, ignore missing aromatic flags.""" + # The bond table isn't present if there are no bonds. Use [] in that case. + begin_atoms = mol_cif.get('_chem_comp_bond.atom_id_1', []) + end_atoms = mol_cif.get('_chem_comp_bond.atom_id_2', []) + orders = mol_cif.get('_chem_comp_bond.value_order', []) + bond_types = [_RDKIT_MMCIF_TO_BOND_TYPE[order] for order in orders] + + try: + aromatic_flags = mol_cif.get('_chem_comp_bond.pdbx_aromatic_flag', []) + is_aromatic = [{'Y': True, 'N': False}[flag] for flag in aromatic_flags] + except KeyError: + if force_parse: + # Set them all to not aromatic. + is_aromatic = [False for _ in begin_atoms] + else: + raise + + return begin_atoms, end_atoms, bond_types, is_aromatic + + +def _parse_ideal_conformer(mol_cif: cif_dict.CifDict) -> rd_chem.Conformer: + """Builds a conformer containing the ideal coordinates from the CCD. + + Args: + mol_cif: An mmcif object representing a molecule. + + Returns: + An rdkit conformer filled with the ideal positions from the mmcif. + + Raises: + ValueError: if the positions can't be interpreted. + """ + atom_x = [ + float(x) for x in mol_cif['_chem_comp_atom.pdbx_model_Cartn_x_ideal'] + ] + atom_y = [ + float(y) for y in mol_cif['_chem_comp_atom.pdbx_model_Cartn_y_ideal'] + ] + atom_z = [ + float(z) for z in mol_cif['_chem_comp_atom.pdbx_model_Cartn_z_ideal'] + ] + atom_positions = zip(atom_x, atom_y, atom_z, strict=True) + + conformer = rd_chem.Conformer(len(atom_x)) + for atom_index, atom_position in enumerate(atom_positions): + conformer.SetAtomPosition(atom_index, atom_position) + + return conformer + + +def sort_atoms_by_name(mol: rd_chem.Mol) -> rd_chem.Mol: + """Sorts the atoms in the molecule by their names.""" + atom_names = { + atom.GetProp('atom_name'): atom.GetIdx() for atom in mol.GetAtoms() + } + + # Sort the name, int tuples by the names. + sorted_atom_names = sorted(atom_names.items()) + + # Zip these tuples back together to the sorted indices. + _, new_order = zip(*sorted_atom_names, strict=True) + + # Reorder the molecule. + # new_order is effectively an argsort of the names. + return rd_chem.RenumberAtoms(mol, new_order) + + +def assign_atom_names_from_graph( + mol: rd_chem.Mol, + keep_existing_names: bool = False, +) -> rd_chem.Mol: + """Assigns atom names from the molecular graph. + + The atom name is stored as an atom property 'atom_name', accessible + with atom.GetProp('atom_name'). If the property is already specified, and + keep_existing_names is True we keep the original name. + + We traverse the graph in the order of the rdkit atom index and give each atom + a name equal to '{ELEMENT_TYPE}{INDEX}'. E.g. C5 is the name for the fifth + unnamed carbon encountered. + + NOTE: A new mol is returned, the original is not changed in place. + + Args: + mol: Mol object. + keep_existing_names: If True, atoms that already have the atom_name property + will keep their assigned names. + + Returns: + A new mol, with potentially new 'atom_name' properties. + """ + mol = rd_chem.Mol(mol) + + specified_atom_names = { + atom.GetProp('atom_name') + for atom in mol.GetAtoms() + if atom.HasProp('atom_name') and keep_existing_names + } + + element_counts = collections.Counter() + for atom in mol.GetAtoms(): + if not atom.HasProp('atom_name') or not keep_existing_names: + element = atom.GetSymbol() + while True: + element_counts[element] += 1 + # Standardize names by using uppercase element type, as in CCD. Only + # effects elements with more than one letter, e.g. 'Cl' becomes 'CL'. + new_name = f'{element.upper()}{element_counts[element]}' + if new_name not in specified_atom_names: + break + atom.SetProp('atom_name', new_name) + + return mol + + +def get_random_conformer( + mol: rd_chem.Mol, + random_seed: int, + max_iterations: int | None, + logging_name: str, +) -> rd_chem.Conformer | None: + """Stochastic conformer search method using V3 ETK.""" + params = rd_all_chem.ETKDGv3() + params.randomSeed = random_seed + if max_iterations is not None: # Override default value. + params.maxIterations = max_iterations + mol_copy = rd_chem.Mol(mol) + try: + conformer_id = rd_all_chem.EmbedMolecule(mol_copy, params) + conformer = mol_copy.GetConformer(conformer_id) + except ValueError: + logging.warning('Failed to generate conformer for: %s', logging_name) + conformer = None + return conformer diff --git a/flax_model/alphafold3/data/tools/shards.py b/flax_model/alphafold3/data/tools/shards.py new file mode 100644 index 0000000000000000000000000000000000000000..09e2387003dc3eb0989cebb6780dc1a08b9fead8 --- /dev/null +++ b/flax_model/alphafold3/data/tools/shards.py @@ -0,0 +1,94 @@ +# Copyright 2025 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 + +"""A library to handle shards of the format file_path@NUM_SHARDS. + +For instance, /path/to/file@20 will generate the following shards: + +- /path/to/file-00000-of-00020 +- /path/to/file-00001-of-00020 +- ... +- /path/to/file-00019-of-00020 + +This also supports @* pattern, which will determine the number of shards based +on the filesystem content. +""" + +from collections.abc import Sequence +import dataclasses +import pathlib +import re + + +_MAX_NUM_SHARDS = 99_999 +_SHARD_RE = re.compile( + r""" + ^(?P[^\?\],\*]+)@ + (?P(\d{1,5})|\*) + (?P[\._][^\?\]@\*\/]*)? + $""", + re.X, +) + + +@dataclasses.dataclass(frozen=True) +class ShardSpec: + prefix: str + num_shards: int + suffix: str + + +def parse_shard_spec(path: str) -> ShardSpec | None: + """Returns the shard spec or None if the path is not a shard spec. + + For instance, if the shard spec is '/path/to/file@20', the output will be + ('/path/to/file', 20). + + Args: + path: the path to parse, e.g. /path/to/file@20 or /path/to/file@*. + """ + parsed = re.fullmatch(_SHARD_RE, path) + if not parsed: + return None + prefix = parsed.group('prefix') + shards = parsed.group('shards') + suffix = parsed.group('suffix') or '' + + if shards != '*': + return ShardSpec(prefix=prefix, num_shards=int(shards), suffix=suffix) + shard_slice = slice(len(prefix) + 10, len(prefix) + 15) + shard_path = pathlib.Path(f'{prefix}-00000-of-?????{suffix}') + for shard in sorted(shard_path.parent.glob(shard_path.name), reverse=True): + try: + num_shards = int(str(shard)[shard_slice]) + return ShardSpec(prefix=prefix, num_shards=num_shards, suffix=suffix) + except ValueError: + continue + return None + + +def get_sharded_paths(shard_spec: str) -> Sequence[str] | None: + """Returns a list of file path or None if the input is not a shard spec. + + Args: + shard_spec: the specifications of the shard, e.g. /path/to/file@20. + """ + parsed_spec = parse_shard_spec(shard_spec) + if not parsed_spec: + return None + + prefix = parsed_spec.prefix + num_shards = parsed_spec.num_shards + suffix = parsed_spec.suffix + if num_shards > _MAX_NUM_SHARDS: + raise ValueError(f'Shard count for {shard_spec} exceeds {_MAX_NUM_SHARDS}') + return [ + f'{prefix}-{i:05d}-of-{num_shards:05d}{suffix}' for i in range(num_shards) + ] diff --git a/flax_model/alphafold3/data/tools/subprocess_utils.py b/flax_model/alphafold3/data/tools/subprocess_utils.py new file mode 100644 index 0000000000000000000000000000000000000000..b375d691e5dc106050e6515a3cd120654649e7f8 --- /dev/null +++ b/flax_model/alphafold3/data/tools/subprocess_utils.py @@ -0,0 +1,112 @@ + + +"""Helper functions for launching external tools.""" + +from collections.abc import Sequence +import os +import subprocess +import time +from typing import Any + +from absl import logging + + +def create_query_fasta_file(sequence: str, path: str, linewidth: int = 80): + """Creates a fasta file with the sequence with line width limit.""" + with open(path, 'w') as f: + f.write('>query\n') + + i = 0 + while i < len(sequence): + f.write(f'{sequence[i:(i + linewidth)]}\n') + i += linewidth + + +def check_binary_exists(path: str, name: str) -> None: + """Checks if a binary exists on the given path and raises otherwise.""" + if not os.path.exists(path): + raise RuntimeError(f'{name} binary not found at {path}') + + +def jackhmmer_seq_limit_supported(jackhmmer_path: str) -> bool: + """Checks if Jackhmmer supports the --seq-limit flag.""" + try: + subprocess.run( + [jackhmmer_path, '-h', '--seq_limit', '1'], + stdout=subprocess.DEVNULL, + stderr=subprocess.DEVNULL, + check=True, + ) + except subprocess.CalledProcessError: + return False + return True + + +def run( + cmd: Sequence[str], + cmd_name: str, + log_on_process_error: bool = False, + log_stderr: bool = False, + log_stdout: bool = False, + max_out_streams_len: int | None = 500_000, + **run_kwargs, +) -> subprocess.CompletedProcess[Any]: + """Launches a subprocess, times it, and checks for errors. + + Args: + cmd: Command to launch. + cmd_name: Human-readable command name to be used in logs. + log_on_process_error: Whether to use `logging.error` to log the process' + stderr on failure. + log_stderr: Whether to log the stderr of the command. + log_stdout: Whether to log the stdout of the command. + max_out_streams_len: Max length of prefix of stdout and stderr included in + the exception message. Set to `None` to disable truncation. + **run_kwargs: Any other kwargs for `subprocess.run`. + + Returns: + The completed process object. + + Raises: + RuntimeError: if the process completes with a non-zero return code. + """ + + logging.info('Launching subprocess "%s"', ' '.join(cmd)) + + start_time = time.time() + try: + completed_process = subprocess.run( + cmd, + check=True, + stderr=subprocess.PIPE, + stdout=subprocess.PIPE, + text=True, + **run_kwargs, + ) + except subprocess.CalledProcessError as e: + if log_on_process_error: + # Logs have a 15k character limit, so log the error line by line. + logging.error('%s failed. %s stderr begin:', cmd_name, cmd_name) + for error_line in e.stderr.splitlines(): + if stripped_error_line := error_line.strip(): + logging.error(stripped_error_line) + logging.error('%s stderr end.', cmd_name) + + error_msg = ( + f'{cmd_name} failed' + f'\nstdout:\n{e.stdout[:max_out_streams_len]}\n' + f'\nstderr:\n{e.stderr[:max_out_streams_len]}' + ) + raise RuntimeError(error_msg) from e + end_time = time.time() + + logging.info('Finished %s in %.3f seconds', cmd_name, end_time - start_time) + stdout, stderr = completed_process.stdout, completed_process.stderr + + if log_stdout and stdout: + logging.info('%s stdout:\n%s', cmd_name, stdout) + + if log_stderr and stderr: + logging.info('%s stderr:\n%s', cmd_name, stderr) + + return completed_process diff --git a/flax_model/alphafold3/jax/__init__.py b/flax_model/alphafold3/jax/__init__.py new file mode 100644 index 0000000000000000000000000000000000000000..e69de29bb2d1d6434b8b29ae775ad8c2e48c5391 diff --git a/flax_model/alphafold3/jax/attention/__init__.py b/flax_model/alphafold3/jax/attention/__init__.py new file mode 100644 index 0000000000000000000000000000000000000000..e69de29bb2d1d6434b8b29ae775ad8c2e48c5391 diff --git a/flax_model/alphafold3/jax/attention/attention_base.py b/flax_model/alphafold3/jax/attention/attention_base.py new file mode 100644 index 0000000000000000000000000000000000000000..9d77386bfbf82c647ade29b474e19523f075a2d9 --- /dev/null +++ b/flax_model/alphafold3/jax/attention/attention_base.py @@ -0,0 +1,355 @@ + + +"""Common types and utilities for attention kernels.""" + +import abc +import dataclasses +import enum +import functools +import math +from typing import Any, Self + +from flax_model.alphafold3.jax.common import array_view +from flax_model.alphafold3.jax.common import precision as precision_lib +import jax +import jax.numpy as jnp +from jax.typing import DTypeLike # pylint: disable=g-importing-member +import jaxtyping +from jaxtyping import Array, Bool, Float, Int # pylint: disable=g-multiple-import,g-importing-member +import typeguard + + +class AUTO: # Used as a sentinel value. + pass + + +DotPrecisionLike = jax.lax.Precision | precision_lib.DotPrecision + + +@jax.tree_util.register_pytree_node_class +@dataclasses.dataclass(frozen=True) +class Mask: + """An attention mask. + + `k_start` (inclusive) and `k_end` (exclusive) define range of enabled + k-sequence values for each row of logits. + + For example, a local attention mask could be defined as follows: + ``` + seq_len_q = seq_len_k = 4 + window_size = 2 + k_start = jnp.maximum(0, jnp.arange(seq_len_q) + 1 - window_size) + mask = Mask(k_start=k_start, is_causal=True) + assert mask.as_array(seq_len_q, seq_len_k) == jnp.array( + [[1, 0, 0, 0], + [1, 1, 0, 0], + [0, 1, 1, 0], + [0, 0, 1, 1]], dtype=bool) + ``` + Or equivalently (but less efficiently): + ``` + k_end = jnp.arange(seq_len_q) + 1 + k_start = jnp.maximum(0, k_end - window_size) + mask = Mask(k_start=k_start, k_end=k_end) + assert mask.as_array(seq_len_q, seq_len_k) == jnp.array( + [[1, 0, 0, 0], + [1, 1, 0, 0], + [0, 1, 1, 0], + [0, 0, 1, 1]], dtype=bool) + ``` + + A mask for two independent causal sequences could be defined as follows: + ``` + k_start = jnp.array([0, 0, 2, 2]) + mask = Mask(k_start=k_start, is_causal=True) + assert mask.as_array(seq_len_q, seq_len_k) == jnp.array( + [[1, 0, 0, 0], + [1, 1, 0, 0], + [0, 0, 1, 0], + [0, 0, 1, 1]], dtype=bool) + ``` + """ + + bool_mask: Bool[Array, "*#B #T #t"] | None = None + _: dataclasses.KW_ONLY + q_start: Int[Array, "*#B #t"] | None = None + q_end: Int[Array, "*#B #t"] | None = None + k_start: Int[Array, "*#B #T"] | None = None + k_end: Int[Array, "*#B #T"] | None = None + is_causal: bool = False + + def tree_flatten(self): + return ( + self.bool_mask, + self.q_start, + self.q_end, + self.k_start, + self.k_end, + ), (self.is_causal,) + + @classmethod + def tree_unflatten(cls, aux, children) -> Self: + (is_causal,) = aux + bool_mask, q_start, q_end, k_start, k_end = children + return cls( + bool_mask, + q_start=q_start, + q_end=q_end, + k_start=k_start, + k_end=k_end, + is_causal=is_causal, + ) + + def as_array( + self, + q_len_or_indices: int | Int[Array, "*#B T"], + k_len_or_indices: int | Int[Array, "*#B t"], + ) -> Bool[Array, "*#B #T #t"] | None: + """Returns the mask as a boolean array.""" + if isinstance(q_len_or_indices, int): + q_indices = jnp.arange(q_len_or_indices) + else: + q_indices = q_len_or_indices + + if isinstance(k_len_or_indices, int): + k_indices = jnp.arange(k_len_or_indices) + else: + k_indices = k_len_or_indices + + q_indices = q_indices[..., None] + k_indices = k_indices[..., None, :] + + mask = [] + if self.bool_mask is not None: + mask.append(self.bool_mask) + # Check `bool_mask` shape is compatible with `{q,kv}_indices`. + _ = jnp.broadcast_shapes( + q_indices.shape, k_indices.shape, self.bool_mask.shape + ) + + if self.q_start is not None: + mask.append(q_indices >= self.q_start[..., None, :]) + + if self.q_end is not None: + mask.append(q_indices < self.q_end[..., None, :]) + + if self.k_start is not None: + mask.append(k_indices >= self.k_start[..., None]) + + if self.k_end is not None: + mask.append(k_indices < self.k_end[..., None]) + + if self.is_causal: + mask.append(q_indices >= k_indices) + + logical_and = functools.partial(functools.reduce, jnp.logical_and) + return jax.lax.broadcast_to_rank(logical_and(mask), 3) if mask else None + + def take(self, *attrs: str) -> tuple[Any, ...]: + """Returns a mask with attrs removed and the removed attrs.""" + default_mask = type(self)() + replacements = {attr: getattr(default_mask, attr) for attr in attrs} + values = (getattr(self, attr) for attr in attrs) + return dataclasses.replace(self, **replacements), *values + + def __and__(self, other: "Bool[Array, '*#B #T #t'] | Mask") -> "Mask": # pylint: disable=g-inconsistent-quotes + """Returns the intersection of two masks.""" + if not isinstance(other, Mask): + other = Mask(other) + + def combine(op): + return lambda a, b: b if a is None else a if b is None else op(a, b) + + return Mask( + bool_mask=combine(jnp.logical_and)(self.bool_mask, other.bool_mask), + q_end=combine(jnp.minimum)(self.q_end, other.q_end), + k_start=combine(jnp.maximum)(self.k_start, other.k_start), + k_end=combine(jnp.minimum)(self.k_end, other.k_end), + is_causal=self.is_causal or other.is_causal, + ) + + +CAUSAL_MASK = Mask(is_causal=True) + + +SoftmaxResidual = ( + tuple[Float[Array, "*B H T"], Float[Array, "*B H T"]] + | Float[Array, "*B H T"] +) + + +@enum.unique +class SoftmaxResidualMode(enum.Enum): + """The mode of storing softmax residuals for the backwards pass. + + The stable softmax calculation performs two reductions calculating: + - the maximum input value (`x_max`), + - the sum of exponentiated values (`denom`). + + We can store these values as residuals to avoid the need to recompute them + in the backwards pass. + + It is also possible to combine the two residuals into a single residual, + `res = x_max + log(denom)`, as `exp(x - res) === exp(x - x_max - log(denom)) + === exp(x - x_max) / denom`. Combining the residuals reduces the memory usage + of the residuals, but will reduce the accuracy of the backwards pass if + `abs(x_max) >> log(denom)`. + """ + + SEPARATE = "separate" + COMBINED = "combined" + + def conform(self, aux: SoftmaxResidual) -> SoftmaxResidual | None: + match self, aux: + case None, _: + return None + case SoftmaxResidualMode.SEPARATE, (_, _): + return aux + case SoftmaxResidualMode.SEPARATE, _: # pytype: disable=redundant-match # b/300135240 + raise ValueError("`aux` has been combined.") + case SoftmaxResidualMode.COMBINED, (x_max, denom): + return x_max + jnp.log(denom) + case SoftmaxResidualMode.COMBINED, _: # pytype: disable=redundant-match # b/300135240 + return aux + + +class DotProductAttention(abc.ABC): + """Dot product attention function.""" + + @jaxtyping.jaxtyped(typechecker=typeguard.typechecked) + def __call__( + self, + query: Float[Array | array_view.ArrayView, "*B T H D"], + key: Float[Array | array_view.ArrayView, "*B t h D"], + value: Float[Array | array_view.ArrayView, "*B t h D"], + *, + precision: ( + DotPrecisionLike | tuple[DotPrecisionLike, DotPrecisionLike] + ) = jax.lax.Precision.DEFAULT, + logits_dtype: DTypeLike | type[AUTO] = AUTO, + bias: Float[Array, "*#B #H #T #t"] | None = None, + mask: Bool[Array, "*#B #H #T #t"] | Mask | None = None, + q_indices: Int[Array, "*#B #H T"] | None = None, + k_indices: Int[Array, "*#B #H t"] | None = None, + ) -> Float[Array, "*B T H D"]: + """Performs scaled dot-product attention. + + Scaled dot-product attention from "Attention is all you need" + https://arxiv.org/abs/1706.03762. + + Computes self- or cross-attention. The following is computed: + softmax(qk_scale * query @ key^T + bias) @ value. + + Supports both multi-head and multi-query attention + (https://arxiv.org/abs/1911.02150). + + Arguments: + query: Query array of shape `[batch, seq_len_q, num_heads_q, head_dim]`. + It must be a multiple of num_heads_kv. + Here's an example of how q/kv heads are interleaved: + For 8 key/value heads and 4 query heads: + - key/value heads [0, 1] see query head 0 + - key/value heads [2, 3] see query head 1 + - key/value heads [4, 5] see query head 2 + key: Key array of shape `[batch, seq_len_kv, num_heads_kv, head_dim]`. It + must be divisible by num_heads_q. + value: Value array of shape `[batch, seq_len_kv, num_heads_kv, head_dim]`. + precision: The precision for the dot products. Either a tuple `( + query_key_dot_precision, weights_value_dot_precision)` or a single + precision applied to both dot products. + logits_dtype: Data type for attention logits (`query @ key^T`). If `AUTO` + is passed (the default), the accumulator type from the `query @ key^T` + dot product will be used. + bias: Optional bias array, broadcastable to shape `[batch, num_heads, + seq_len_q, seq_len_kv]`. + mask: Optional boolean mask, broadcastable to `[batch, num_heads, + seq_len_q, seq_len_kv]`. Attention weights are masked out if the + corresponding mask value is `False`. + q_indices: Optional indices for each token in query sequence. + k_indices: Optional indices for each token in key/value sequence. + + Returns: + An array with the same shape as `query`. + """ # fmt: skip + return self.fwd( + query, + key, + value, + precision=precision, + logits_dtype=logits_dtype, + bias=bias, + mask=mask, + q_indices=q_indices, + k_indices=k_indices, + ) + + @jaxtyping.jaxtyped(typechecker=typeguard.typechecked) + def fwd( + self, + query: Float[Array | array_view.ArrayView, "*B T H D"], + key: Float[Array | array_view.ArrayView, "*B t h D"], + value: Float[Array | array_view.ArrayView, "*B t h D"], + *, + precision: ( + DotPrecisionLike | tuple[DotPrecisionLike, DotPrecisionLike] + ) = jax.lax.Precision.DEFAULT, + logits_dtype: DTypeLike | type[AUTO] = AUTO, + bias: Float[Array, "*#B #H #T #t"] | None = None, + mask: Bool[Array, "*#B #H #T #t"] | Mask | None = None, + q_indices: Int[Array, "*#B #H T"] | None = None, + k_indices: Int[Array, "*#B #H t"] | None = None, + ) -> Float[Array, "*B T H D"]: + """Performs attention.""" + if not isinstance(precision, tuple): + precision = (precision, precision) + + q_k_dot_precision, weights_v_dot_precision = precision + + if not isinstance(q_k_dot_precision, precision_lib.DotPrecision): + q_k_dot_precision = precision_lib.get_equivalent_dot_precision( + query.dtype, key.dtype, q_k_dot_precision + ) + + if not isinstance(weights_v_dot_precision, precision_lib.DotPrecision): + weights_v_dot_precision = precision_lib.get_equivalent_dot_precision( + value.dtype, value.dtype, weights_v_dot_precision + ) + + if logits_dtype is AUTO: + logits_dtype = q_k_dot_precision.accumulator_dtype + + if not isinstance(mask, Mask): + mask = Mask(mask) + + return self._fwd( + array_view.as_array_view(query), + array_view.as_array_view(key), + array_view.as_array_view(value), + q_k_dot_precision=q_k_dot_precision, + logits_dtype=jnp.dtype(logits_dtype), + logits_scale=1 / math.sqrt(query.shape[-1]), + bias=bias, + mask=mask, + weights_v_dot_precision=weights_v_dot_precision, + q_indices=q_indices, + k_indices=k_indices, + ) + + @abc.abstractmethod + def _fwd( + self, + q: Float[array_view.ArrayView, "*B T H D"], + k: Float[array_view.ArrayView, "*B t h D"], + v: Float[array_view.ArrayView, "*B t h D"], + *, + q_k_dot_precision: precision_lib.DotPrecision, + logits_dtype: jnp.dtype, + logits_scale: float, + bias: Float[Array, "*#B #H #T #t"] | None, + mask: Mask | None, + weights_v_dot_precision: precision_lib.DotPrecision, + q_indices: Int[Array, "*#B #H T"] | None = None, + k_indices: Int[Array, "*#B #H t"] | None = None, + ) -> Float[Array, "*B T H D"]: + """Performs attention.""" + ... diff --git a/flax_model/alphafold3/jax/attention/flash_attention.py b/flax_model/alphafold3/jax/attention/flash_attention.py new file mode 100644 index 0000000000000000000000000000000000000000..6cd28bbd3a4d792466844c20f2b406773e397bf3 --- /dev/null +++ b/flax_model/alphafold3/jax/attention/flash_attention.py @@ -0,0 +1,697 @@ + + +"""Triton FlashAttention implementation.""" + +import dataclasses +import functools + +from flax_model.alphafold3.jax.attention import attention_base as base +from flax_model.alphafold3.jax.common import array_view +from flax_model.alphafold3.jax.common import precision as precision_lib +from flax_model.alphafold3.jax.common import triton_utils +import jax +import jax.numpy as jnp +import jax_triton as jt +import jaxtyping +from jaxtyping import Array, Bool, Float, Int # pylint: disable=g-multiple-import,g-importing-member +import triton +import triton.language as tl +import typeguard + + +@triton.jit +def _fwd_kernel_inner( + start_loop, + end_loop, + q, + span_q, + k_block_ptr, + v_block_ptr, + bias_block_ptr, + mask_block_ptr, + k_start, + k_end, + seq_len_k, + acc, + m_i, + l_i, + bias_advance: tl.constexpr, + mask_advance: tl.constexpr, + is_causal: tl.constexpr, + use_attention_mask: tl.constexpr, + use_k_start: tl.constexpr, + use_k_end: tl.constexpr, + use_bias: tl.constexpr, + block_k: tl.constexpr, + use_mask_k: tl.constexpr, + k_boundary_check: tl.constexpr, + v_boundary_check: tl.constexpr, + dot_fn_qk: tl.constexpr, + dot_fn_kv: tl.constexpr, +): + """Triton MHA forward kernel's inner loop.""" + + for start_k in range(start_loop, end_loop, block_k): + start_k = tl.multiple_of(start_k, block_k) + span_k = start_k + tl.arange(0, block_k) + + k = tl.load( + k_block_ptr, + boundary_check=k_boundary_check, + padding_option="zero" if len(k_boundary_check.value) else "", + ) + v = tl.load( + v_block_ptr, + boundary_check=v_boundary_check, + padding_option="zero" if len(v_boundary_check.value) else "", + ) + + if use_bias: + bias = tl.load(bias_block_ptr) + + qk = dot_fn_qk(q.to(k.dtype), k) # [block_q, block_k] + + if use_bias: + # Prevent dot accumulating into the bias tensor. It appears that Triton + # doesn't pipeline the bias load as it does the `k` load, so the bias load + # blocks the matmul if the add is merged. + qk = qk.to(tl.uint32, bitcast=True) & 0xFFFFFFFF + qk = qk.to(tl.float32, bitcast=True) + qk += bias + + if use_attention_mask | use_k_start | use_k_end: + mask_value = float(jnp.finfo(jnp.float32).min) + + if use_attention_mask: + mask = tl.load(mask_block_ptr) + qk = tl.where(mask, qk, mask_value) + + if use_k_start: + # This check is there to work around a triton compiler bug, but it + # shouldn't be strictly needed. + if tl.sum(k_start) != 0: + qk = tl.where(k_start[:, None] <= span_k[None, :], qk, mask_value) + if is_causal: + qk = tl.where(span_q[:, None] >= span_k[None, :], qk, float("-inf")) + elif use_k_end: + # When called with k_end and is_causal=True, the causal mask gets folded + # into k_end and is_causal is set to False. + qk = tl.where(k_end[:, None] > span_k[None, :], qk, mask_value) + + if use_mask_k: + qk = tl.where((span_k < seq_len_k)[None, :], qk, float("-inf")) + + m_ij = tl.maximum(m_i, tl.max(qk, axis=1)) # Shape [block_q]. + p = tl.exp(qk - m_ij[:, None]) # Shape [block_q, block_k]. + alpha = tl.exp(m_i - m_ij) + m_i = m_ij + acc *= alpha[:, None] + l_i *= alpha + l_i += tl.sum(p, axis=1) + + # Add the new block of attention weights. + acc += dot_fn_kv(p.to(v.dtype), v) + + k_block_ptr = tl.advance(k_block_ptr, (0, block_k)) + v_block_ptr = tl.advance(v_block_ptr, (block_k, 0)) + bias_block_ptr = tl.advance(bias_block_ptr, bias_advance.value) + mask_block_ptr = tl.advance(mask_block_ptr, mask_advance.value) + + return ( + k_block_ptr, + v_block_ptr, + bias_block_ptr, + mask_block_ptr, + acc, + m_i, + l_i, + ) + + +# Based on Algorithm 1 of https://arxiv.org/abs/2205.14135. +# Inspired by the official Triton tutorial implementation +# https://triton-lang.org/main/getting-started/tutorials/06-fused-attention.html +@triton.jit +def _fwd_kernel( + # Input arrays. + q_ptr, + k_ptr, + v_ptr, + bias_ptr, + mask_ptr, + k_start_ptr, + k_end_ptr, + # Scalar inputs. + q_offset, + k_offset, + v_offset, + q_stride_b, + q_stride_s, + q_stride_h, + q_stride_d, + k_stride_b, + k_stride_s, + k_stride_h, + k_stride_d, + v_stride_b, + v_stride_s, + v_stride_h, + v_stride_d, + bias_stride_b, + bias_stride_h, + bias_stride_sq, + bias_stride_sk, + mask_stride_b, + mask_stride_h, + mask_stride_sq, + mask_stride_sk, + k_start_stride_b, + k_start_stride_h, + k_start_stride_sq, + k_end_stride_b, + k_end_stride_h, + k_end_stride_sq, + o_stride_b, + o_stride_s, + o_stride_h, + o_stride_d, + num_heads_q, + num_heads_k, + seq_len_q, + seq_len_k, + # Output arrays. + o_ptr, + # Compile-time constants. + is_causal: tl.constexpr, + use_attention_mask: tl.constexpr, + use_k_start: tl.constexpr, + use_k_end: tl.constexpr, + use_bias: tl.constexpr, + sm_scale: tl.constexpr, + block_q: tl.constexpr, + block_k: tl.constexpr, + head_dim: tl.constexpr, + use_mask_q: tl.constexpr, + use_mask_k: tl.constexpr, + bias_bcast_sq: tl.constexpr, + mask_bcast_sq: tl.constexpr, + dot_fn_qk: tl.constexpr, + dot_fn_kv: tl.constexpr, +): + """Triton MHA forward kernel.""" + # pytype: disable=annotation-type-mismatch,unsupported-operands + #block_d: tl.constexpr = jt.utils.next_power_of_2(head_dim.value) + a: tl.constexpr = jt.utils.next_power_of_2(head_dim.value) + block_d: tl.constexpr = a if a>16 else 32 + + # Each thread block processes one batch element (b) and one head (h). + start_q = tl.program_id(1) * block_q + off_h = tl.program_id(0) # int in [0, num_heads_o). + off_b = tl.program_id(2) # int in [0, batch_size) + + off_h_k = off_h // (num_heads_q // num_heads_k) + + q_ptr += off_h * q_stride_h + off_b * q_stride_b + q_offset + k_ptr += off_h_k * k_stride_h + off_b * k_stride_b + k_offset + v_ptr += off_h_k * v_stride_h + off_b * v_stride_b + v_offset + o_ptr += off_h * o_stride_h + off_b * o_stride_b + + if use_bias: + bias_ptr += off_b * bias_stride_b + off_h * bias_stride_h + if use_attention_mask: + mask_ptr += off_b * mask_stride_b + off_h * mask_stride_h + if use_k_start: + k_start_ptr += off_b * k_start_stride_b + off_h * k_start_stride_h + if use_k_end: + k_end_ptr += off_b * k_end_stride_b + off_h * k_end_stride_h + + q_block_ptr = tl.make_block_ptr( + q_ptr, + shape=(seq_len_q, head_dim), + strides=(q_stride_s, q_stride_d), + offsets=(start_q, 0), + block_shape=(block_q, block_d), + order=(1, 0), + ) + k_block_ptr = tl.make_block_ptr( + k_ptr, + shape=(head_dim, seq_len_k), + strides=(k_stride_d, k_stride_s), + offsets=(0, 0), + block_shape=(block_d, block_k), + order=(0, 1), + ) + v_block_ptr = tl.make_block_ptr( + v_ptr, + shape=(seq_len_k, head_dim), + strides=(v_stride_s, v_stride_d), + offsets=(0, 0), + block_shape=(block_k, block_d), + order=(1, 0), + ) + + q_boundary_check0: tl.constexpr = (0,) if use_mask_q else () + q_boundary_check1: tl.constexpr = (1,) if head_dim != block_d else () + q_boundary_check: tl.constexpr = q_boundary_check0 + q_boundary_check1 + q_padding_option: tl.constexpr = "zero" if len(q_boundary_check.value) else "" + k_boundary_check: tl.constexpr = (0,) if head_dim != block_d else () + v_boundary_check: tl.constexpr = (0,) if use_mask_k else () + + # If broadcasting in a given dim, use a 1D block (observed to be faster). + bias_start_dim: tl.constexpr = 1 if bias_bcast_sq else 0 + bias_block_ptr = tl.make_block_ptr( + bias_ptr, + shape=(seq_len_q, seq_len_k)[bias_start_dim:], + strides=(bias_stride_sq, bias_stride_sk)[bias_start_dim:], + offsets=(start_q, 0)[bias_start_dim:], + block_shape=(block_q, block_k)[bias_start_dim:], + order=(1, 0)[bias_start_dim:], + ) + bias_advance: tl.constexpr = (0, block_k)[bias_start_dim:] + + mask_start_dim: tl.constexpr = 1 if mask_bcast_sq else 0 + mask_block_ptr = tl.make_block_ptr( + mask_ptr, + shape=(seq_len_q, seq_len_k)[mask_start_dim:], + strides=(mask_stride_sq, mask_stride_sk)[mask_start_dim:], + offsets=(start_q, 0)[mask_start_dim:], + block_shape=(block_q, block_k)[mask_start_dim:], + order=(1, 0)[mask_start_dim:], + ) + mask_advance: tl.constexpr = (0, block_k)[mask_start_dim:] + + k_start_block_ptr = tl.make_block_ptr( + k_start_ptr, + shape=(seq_len_q,), + strides=(k_start_stride_sq,), + offsets=(start_q,), + block_shape=(block_q,), + order=(0,), + ) + k_end_block_ptr = tl.make_block_ptr( + k_end_ptr, + shape=(seq_len_q,), + strides=(k_end_stride_sq,), + offsets=(start_q,), + block_shape=(block_q,), + order=(0,), + ) + # pytype: enable=annotation-type-mismatch,unsupported-operands + + # Each thread block processes a block of block_q queries. + span_q = start_q + tl.arange(0, block_q) + + # m_i and l_i (see FlashAttention paper) are updated during the k,v loop. + m_i = tl.full([block_q], float("-inf"), dtype=tl.float32) + l_i = tl.zeros([block_q], dtype=tl.float32) + # acc is the buffer where we accumulate the output on sram. + acc = tl.zeros([block_q, block_d], dtype=tl.float32) + + # Load q: it will stay in smem throughout. Indices form a matrix because we + # read, compute, and write all in 2d chunks. 1 element ~= 1 CUDA thread index. + q = tl.load( + q_block_ptr, + boundary_check=q_boundary_check, + padding_option=q_padding_option, + ) + q *= sm_scale + + # In FlashAttention algorithm 1 there are 2 loops: slow over tiles of kv (size + # (Bc == block_k here), and fast over blocks of q (size Br == block_q here). + # Here we only loop over blocks of kv to process entire seq_len, the loop over + # blocks of q is carried out by the grid. + k_start = None + if use_k_start: + k_start = tl.load(k_start_block_ptr) + start_loop = tl.maximum(tl.min(k_start), 0) + blocks_to_skip = start_loop // block_k + start_loop = block_k * blocks_to_skip # Floor to multiple of block_k. + for _ in range(blocks_to_skip): + # Advance all block pointers to the first valid block. + k_block_ptr = tl.advance(k_block_ptr, (0, block_k)) + v_block_ptr = tl.advance(v_block_ptr, (block_k, 0)) + bias_block_ptr = tl.advance(bias_block_ptr, bias_advance.value) + mask_block_ptr = tl.advance(mask_block_ptr, mask_advance.value) + else: + start_loop = 0 + + k_end = None + if is_causal: + end_loop = tl.minimum((start_q // block_k) * block_k, seq_len_k) + elif use_k_end: + k_end = tl.load(k_end_block_ptr) + end_loop = tl.minimum(tl.max(k_end), seq_len_k) + else: + end_loop = seq_len_k + + ( + k_block_ptr, + v_block_ptr, + bias_block_ptr, + mask_block_ptr, + acc, + m_i, + l_i, + ) = _fwd_kernel_inner( + start_loop, + end_loop, + q, + span_q, + k_block_ptr, + v_block_ptr, + bias_block_ptr, + mask_block_ptr, + k_start, + k_end, + seq_len_k, + acc, + m_i, + l_i, + bias_advance, + mask_advance, + False, # is_causal + use_attention_mask, + use_k_start, + use_k_end, + use_bias, + block_k, + use_mask_k, + k_boundary_check, + v_boundary_check, + dot_fn_qk, + dot_fn_kv, + ) + + if is_causal: + tl.debug_barrier() # Help compiler schedule loops independently. + start_loop, end_loop = end_loop, tl.minimum(end_loop + block_k, seq_len_k) + + _, _, _, _, acc, _, l_i = _fwd_kernel_inner( + start_loop, + end_loop, + q, + span_q, + k_block_ptr, + v_block_ptr, + bias_block_ptr, + mask_block_ptr, + k_start, + k_end, + seq_len_k, + acc, + m_i, + l_i, + bias_advance, + mask_advance, + True, # is_causal + use_attention_mask, + use_k_start, + use_k_end, + use_bias, + block_k, + use_mask_k, + k_boundary_check, + v_boundary_check, + dot_fn_qk, + dot_fn_kv, + ) + + # It is possible that every value in a row was masked to f32 min or that the + # main loop has been completely optimised out, and that `l_i` is `0` for that + # row. Add epsilon value to avoid NaNs from `0 / 0`. + l_i += float(jnp.finfo(jnp.float32).tiny) + + acc /= l_i[:, None] + + # Write output to dram. + o_block_ptr = tl.make_block_ptr( + o_ptr, + shape=(seq_len_q, head_dim), + strides=(o_stride_s, o_stride_d), + offsets=(start_q, 0), + block_shape=(block_q, block_d), + order=(1, 0), + ) + acc = acc.to(o_ptr.dtype.element_ty) + tl.store(o_block_ptr, acc, boundary_check=q_boundary_check) + + +@jaxtyping.jaxtyped(typechecker=typeguard.typechecked) +def _fwd( + q: Float[array_view.ArrayView, "*B T H D"], + k: Float[array_view.ArrayView, "*B t h D"], + v: Float[array_view.ArrayView, "*B t h D"], + bias: Float[Array, "*#B #H #T #t"] | None, + mask: Bool[Array, "*#B #H #T #t"] | None, + k_start: Int[Array, "*#B #H #T"] | None, + k_end: Int[Array, "*#B #H #T"] | None, + *, + logits_scale: float, + is_causal: bool, + q_k_dot_precision: precision_lib.DotPrecision, + weights_v_dot_precision: precision_lib.DotPrecision, +) -> Float[Array, "*B T H D"]: + """Forward pass of Triton FlashAttention.""" + + orig_q_shape = q.shape + q = q.collapse(0, -3, allow_copy=True) + batch_size, seq_len_q, num_heads_q, head_dim = q.shape + *_, seq_len_k, num_heads_kv, _ = k.shape + # Maybe broadcast `k`/`v` heads dimension. + kv_shape = (batch_size, seq_len_k, num_heads_kv, head_dim) + k = k.collapse(0, -3, allow_copy=True).broadcast_to(kv_shape) + v = v.collapse(0, -3, allow_copy=True).broadcast_to(kv_shape) + + def get_bias_mask_view(x, dtype): + if x is None: + x = jnp.array([], dtype=dtype) + return array_view.ArrayView(x, shape=(0, 0, 0, 0), strides=(0, 0, 0, 0)) + + shape = orig_q_shape[:-3] + (num_heads_q, seq_len_q, seq_len_k) + return ( + array_view.ArrayView(x) + .broadcast_to(shape) + .collapse(0, -3, allow_copy=True) + ) + + bias = get_bias_mask_view(bias, dtype=q.dtype) + mask = get_bias_mask_view(mask, dtype=jnp.bool_) + + def get_range_view(x, seq_len): + if x is None: + x = jnp.array([], dtype=jnp.int32) + return array_view.ArrayView(x, shape=(0, 0, 0), strides=(0, 0, 0)) + + shape = orig_q_shape[:-3] + (num_heads_q, seq_len) + return ( + array_view.ArrayView(x) + .broadcast_to(shape) + .collapse(0, -2, allow_copy=True) + ) + + k_start = get_range_view(k_start, seq_len_q) + k_end = get_range_view(k_end, seq_len_q) + + block_q = 64 + block_k = 64 + + return jt.triton_call( + q.base, + k.base, + v.base, + bias.base, + mask.base, + k_start.base, + k_end.base, + q.offset, + k.offset, + v.offset, + *q.strides, + *k.strides, + *v.strides, + *bias.strides, + *mask.strides, + k_start.strides, + k_end.strides, + *jt.utils.strides_from_shape(q.shape), # out strides. + num_heads_q, + num_heads_kv, + seq_len_q, + seq_len_k, + kernel=_fwd_kernel, + name="triton_flash_attention", + out_shape=jax.ShapeDtypeStruct(q.shape, q.dtype), + grid=(num_heads_q, triton.cdiv(seq_len_q, block_q), batch_size), + num_stages=1, + num_warps=4, + is_causal=is_causal, + use_attention_mask=(mask.size != 0), + use_k_start=(k_start.size != 0), + use_k_end=(k_end.size != 0), + use_bias=(bias.size != 0), + sm_scale=logits_scale, + block_q=block_q, + block_k=block_k, + head_dim=head_dim, + use_mask_q=(seq_len_q % block_q != 0), + use_mask_k=(seq_len_k % block_q != 0), + bias_bcast_sq=(bias.strides[-2] == 0), + mask_bcast_sq=(mask.strides[-2] == 0), + dot_fn_qk=triton_utils.get_tl_dot_fn(q_k_dot_precision), + dot_fn_kv=triton_utils.get_tl_dot_fn(weights_v_dot_precision), + ).reshape(orig_q_shape) + + +def _as_batched_array_view(x, axis_size): + batched_shape = (axis_size,) + x.shape + batched_strides = (x.base.size // axis_size,) + x.strides + return dataclasses.replace(x, shape=batched_shape, strides=batched_strides) + + +def _fwd_vmap_rule( + axis_size, in_batched, *args, fn: jax.custom_batching.custom_vmap +): + """`vmap` rule for Triton FlashAttention forward op.""" + q, k, v, bias, mask, k_start, k_end = args + ( + q_batched, + k_batched, + v_batched, + bias_batched, + mask_batched, + k_start_batched, + k_end_batched, + ) = in_batched + + if q_batched.base: + q = _as_batched_array_view(q, axis_size) + if k_batched.base: + k = _as_batched_array_view(k, axis_size) + if v_batched.base: + v = _as_batched_array_view(v, axis_size) + + # Triton op requires `q`, `k`, `v` batch dims to be identical. + if q_batched.base and k_batched.base and v_batched.base: + if bias is not None and not bias_batched: + bias = jax.lax.broadcast_to_rank(bias, bias.ndim + 1) + if mask is not None and not mask_batched: + mask = jax.lax.broadcast_to_rank(mask, mask.ndim + 1) + if k_start is not None and not k_start_batched: + k_start = jax.lax.broadcast_to_rank(k_start, k_start.ndim + 1) + if k_end is not None and not k_end_batched: + k_end = jax.lax.broadcast_to_rank(k_end, k_end.ndim + 1) + out = fn(q, k, v, bias, mask, k_start, k_end) + out_batched = True + return out, out_batched + + # Fallback to sequential loop. + q, k, v = map(jnp.asarray, (q, k, v)) + in_batched = [ + q_batched.base, + k_batched.base, + v_batched.base, + bias_batched, + mask_batched, + k_start_batched, + k_end_batched, + ] + + def f(q, k, v, *args, **kwargs): + q, k, v = map(array_view.ArrayView, (q, k, v)) + return fn.fun(q, k, v, *args, **kwargs) + + sequential_vmap = jax.custom_batching.sequential_vmap(f) + return sequential_vmap.vmap_rule(axis_size, in_batched, q, k, v, *args[3:]) + + +def _decompose_mask(mask, q, k, q_indices, k_indices): + """Decomposes `mask` into a mask array, `is_causal`, `k_start` and `k_end`.""" + if mask is None: + return None, False, None, None + + is_causal = False + k_start = None + k_end = None + if q_indices is None and k_indices is None: + mask, is_causal, k_start, k_end = mask.take("is_causal", "k_start", "k_end") + if k_start is not None: + k_start = jax.lax.broadcast_to_rank(k_start, 2) + if k_end is not None: + k_end = jax.lax.broadcast_to_rank(k_end, 2) + if is_causal: # Fold is_causal into k_end + k_end = jnp.minimum(k_end, jnp.arange(1, q.shape[-3] + 1)) + is_causal = False + + q_len_or_indices = q.shape[-3] if q_indices is None else q_indices + k_len_or_indices = k.shape[-3] if k_indices is None else k_indices + return ( + mask.as_array(q_len_or_indices, k_len_or_indices), + is_causal, + k_start, + k_end, + ) + + +@dataclasses.dataclass(frozen=True) +class TritonFlashAttention(base.DotProductAttention): + """Triton FlashAttention implementation.""" + + @jaxtyping.jaxtyped(typechecker=typeguard.typechecked) + def _fwd( + self, + q: Float[array_view.ArrayView, "*B T H D"], + k: Float[array_view.ArrayView, "*B t h D"], + v: Float[array_view.ArrayView, "*B t h D"], + bias: Float[Array, "*#B #H #T #t"] | None, + *, + q_k_dot_precision: precision_lib.DotPrecision, + logits_dtype: jnp.dtype, + logits_scale: float, + mask: base.Mask | None, + weights_v_dot_precision: precision_lib.DotPrecision, + q_indices: Int[Array, "*#B #H T"] | None = None, + k_indices: Int[Array, "*#B #H t"] | None = None, + ) -> Float[Array, "*B T H D"]: + if logits_dtype != jnp.float32: + raise ValueError("`logits_dtype` must be float32.") + + kwargs = dict( + logits_scale=logits_scale, + q_k_dot_precision=q_k_dot_precision, + weights_v_dot_precision=weights_v_dot_precision, + ) + + def attend_fwd( + q, + k, + v, + bias, + mask_, + q_indices, + k_indices, + ): + + mask, is_causal, k_start, k_end = _decompose_mask( + mask_, q, k, q_indices, k_indices + ) + + fwd_closed_kwargs = dict( + is_causal=is_causal, + **kwargs, + ) + + fwd_closed = functools.partial(_fwd, **fwd_closed_kwargs) + fwd_closed = jax.custom_batching.custom_vmap(fwd_closed) + fwd_closed.def_vmap(functools.partial(_fwd_vmap_rule, fn=fwd_closed)) + + return fwd_closed(q, k, v, bias, mask, k_start, k_end) + + return attend_fwd( + q, + k, + v, + bias, + mask, + q_indices, + k_indices, + ) diff --git a/flax_model/alphafold3/jax/attention/xla_attention.py b/flax_model/alphafold3/jax/attention/xla_attention.py new file mode 100644 index 0000000000000000000000000000000000000000..cb15cabd7af82f101283238b8d9791747a788dff --- /dev/null +++ b/flax_model/alphafold3/jax/attention/xla_attention.py @@ -0,0 +1,132 @@ + + +"""XLA implementation of scaled dot-product attention.""" + +import dataclasses + +from flax_model.alphafold3.jax.attention import attention_base as base +from flax_model.alphafold3.jax.common import array_view +from flax_model.alphafold3.jax.common import precision as precision_lib +import jax +import jax.numpy as jnp +import jaxtyping +from jaxtyping import Array, Float, Int # pylint: disable=g-multiple-import,g-importing-member +import typeguard + + +def _get_precision( + backend: str, precision: precision_lib.DotPrecision +) -> jax.lax.Precision: + if backend == "gpu" and precision == precision_lib.DotPrecision.F32_F32: + return jax.lax.Precision.HIGHEST + return jax.lax.Precision.DEFAULT + + +def einsum_with_dot_precision( + subscript: str, + a: jax.Array, + b: jax.Array, + *, + precision: precision_lib.DotPrecision, +) -> jax.Array: + """Evaluate `fn` with the given precision.""" + result = jnp.einsum( + subscript, + a.astype(precision.operand_dtype), + b.astype(precision.operand_dtype), + precision=_get_precision(jax.default_backend().lower(), precision), + preferred_element_type=precision.accumulator_dtype, + ) + assert result.dtype == precision.accumulator_dtype + return result + + +def _softmax(x: jax.Array) -> jax.Array: + """Computes softmax.""" + # Always perform reductions in at least f32 precision. + dtype = jnp.promote_types(x.dtype, jnp.float32) + x_max = jnp.max(x.astype(dtype), axis=-1, keepdims=True) + unnormalized = jnp.exp(x - x_max) + denom = jnp.sum(unnormalized, axis=-1, keepdims=True) + return unnormalized / denom + + +@jaxtyping.jaxtyped(typechecker=typeguard.typechecked) +def _attend( + q: Float[array_view.ArrayView, "*B T H D"], + k: Float[array_view.ArrayView, "*B t #H D"], + v: Float[array_view.ArrayView, "*B t #H D"], + *, + q_k_dot_precision: precision_lib.DotPrecision, + logits_dtype: jnp.dtype, + logits_scale: float, + bias: Float[Array, "*#B #H #T #t"] | None, + mask: base.Mask | None, + weights_v_dot_precision: precision_lib.DotPrecision, + q_indices: Int[Array, "*#B #H T"] | None, + k_indices: Int[Array, "*#B #H t"] | None, +) -> Float[Array, "*B T H D"]: + """Computes attention.""" + logits = einsum_with_dot_precision( + "...qhd,...khd->...hqk", q, k, precision=q_k_dot_precision + ).astype(logits_dtype) + + logits *= logits_scale + + if bias is not None: + logits += bias + + if mask is not None: + q_len_or_indices = q.shape[-3] if q_indices is None else q_indices + k_len_or_indices = k.shape[-3] if k_indices is None else k_indices + mask = mask.as_array(q_len_or_indices, k_len_or_indices) + + if mask is not None: + mask_value = float(jnp.finfo(logits.dtype).min) + + logits = jnp.where(jnp.asarray(mask), logits, mask_value) + + weights = _softmax(logits) + + weights = weights.astype(v.dtype) + out = einsum_with_dot_precision( + "...hqk,...khd->...qhd", weights, v, precision=weights_v_dot_precision + ).astype(q.dtype) + return out + + +@dataclasses.dataclass(frozen=True) +class XlaDotProductAttention(base.DotProductAttention): + """XLA dot product attention function.""" + + _: dataclasses.KW_ONLY + + def _fwd( + self, + q: Float[array_view.ArrayView, "*B T H D"], + k: Float[array_view.ArrayView, "*B t #H D"], + v: Float[array_view.ArrayView, "*B t #H D"], + *, + q_k_dot_precision: precision_lib.DotPrecision, + logits_dtype: jnp.dtype, + logits_scale: float, + bias: Float[Array, "*#B #H #T #t"] | None, + mask: base.Mask | None, + weights_v_dot_precision: precision_lib.DotPrecision, + q_indices: Int[Array, "*#B #H T"] | None = None, + k_indices: Int[Array, "*#B #H t"] | None = None, + ) -> Float[Array, "*B T H D"]: + + return _attend( + q, + k, + v, + bias=bias, + mask=mask, + q_indices=q_indices, + k_indices=k_indices, + q_k_dot_precision=q_k_dot_precision, + logits_dtype=logits_dtype, + logits_scale=logits_scale, + weights_v_dot_precision=weights_v_dot_precision, + ) diff --git a/flax_model/alphafold3/jax/common/__init__.py b/flax_model/alphafold3/jax/common/__init__.py new file mode 100644 index 0000000000000000000000000000000000000000..e69de29bb2d1d6434b8b29ae775ad8c2e48c5391 diff --git a/flax_model/alphafold3/jax/common/triton_utils.py b/flax_model/alphafold3/jax/common/triton_utils.py new file mode 100644 index 0000000000000000000000000000000000000000..275c79aa2a03699635dd9e521bc37b068205e59d --- /dev/null +++ b/flax_model/alphafold3/jax/common/triton_utils.py @@ -0,0 +1,118 @@ + + +"""Triton utils.""" + +from collections.abc import Callable, Mapping + +from flax_model.alphafold3.jax.common import precision as precision_lib +import jax +import jax.numpy as jnp +import triton +import triton.language as tl + + +_JNP_TO_TL_DTYPES: Mapping[jnp.dtype, tl.dtype] = { + jnp.bool_: tl.int1, + jnp.int8: tl.int8, + jnp.int16: tl.int16, + jnp.int32: tl.int32, + jnp.int64: tl.int64, + jnp.uint8: tl.uint8, + jnp.uint16: tl.uint16, + jnp.uint32: tl.uint32, + jnp.uint64: tl.uint64, + jnp.float16: tl.float16, + jnp.bfloat16: tl.bfloat16, + jnp.float32: tl.float32, + jnp.float64: tl.float64, +} + + +def jnp_to_tl_dtype(jnp_dtype: jnp.dtype) -> tl.dtype: + return _JNP_TO_TL_DTYPES[jnp_dtype] + + +def get_tl_dot_fn( + precision: precision_lib.DotPrecision, +) -> Callable[..., tl.tensor]: + """Returns a tl `dot` implementation with the specified precision. + + Args: + precision: The `dot` precision. + """ + if not is_precision_supported(precision): + raise ValueError(f'Unsupported dot precision: {precision}') + + if precision == precision_lib.DotPrecision.TF32_F32_3X: + return _dot_tf32_f32_3x + + in_dtype = jnp_to_tl_dtype(precision.operand_dtype) + out_dtype = jnp_to_tl_dtype(precision.accumulator_dtype) + allow_tf32 = precision == precision_lib.DotPrecision.TF32_F32 + + @tl.core.extern + def _dot_fn( + a: tl.core.tensor, + b: tl.core.tensor, + *, + trans_a: bool = False, + trans_b: bool = False, + _builder, + ): + if in_dtype == tl.float32: + tl.static_assert(a.dtype == tl.float32, _builder=_builder) + tl.static_assert(b.dtype == tl.float32, _builder=_builder) + else: + tl.static_assert(a.dtype.is_standard_floating(), _builder=_builder) + tl.static_assert(b.dtype.is_standard_floating(), _builder=_builder) + a = a.to(in_dtype, _builder=_builder) + b = b.to(in_dtype, _builder=_builder) + a = tl.trans(a, _builder=_builder) if trans_a else a + b = tl.trans(b, _builder=_builder) if trans_b else b + return tl.dot( + a, b, allow_tf32=allow_tf32, out_dtype=out_dtype, _builder=_builder + ) + + return _dot_fn + + +def is_precision_supported(precision: precision_lib.DotPrecision) -> bool: + return precision in { + precision_lib.DotPrecision.F32_F32, + precision_lib.DotPrecision.TF32_F32, + precision_lib.DotPrecision.F16_F32, + precision_lib.DotPrecision.BF16_F32, + precision_lib.DotPrecision.TF32_F32_3X, + } + + +@triton.jit +def _dot_tf32_f32_3x(a, b, trans_a=False, trans_b=False): + """Perform the 3-pass tf32 dot function.""" + tl.static_assert(a.dtype == tl.float32) + tl.static_assert(b.dtype == tl.float32) + a_ = (a.to(tl.uint32, bitcast=True) & 0xFFFFE000).to(tl.float32, bitcast=True) + b_ = (b.to(tl.uint32, bitcast=True) & 0xFFFFE000).to(tl.float32, bitcast=True) + a_err = a - a_ + b_err = b - b_ + if trans_a: + a_ = tl.trans(a_) + a_err = tl.trans(a_err) + if trans_b: + b_ = tl.trans(b_) + b_err = tl.trans(b_err) + # Add smallest terms first for better accuracy. + return tl.dot(a_, b_, out_dtype=tl.float32) + ( + tl.dot(a_, b_err, out_dtype=tl.float32) + + tl.dot(a_err, b_, out_dtype=tl.float32) + ) + + +def has_triton_support() -> bool: + """Returns True if Triton is supported by the default JAX device.""" + if jax.default_backend() != 'gpu': + return False + + # Only currently supported for Ampere and above. + # return float(jax.devices()[0].compute_capability) >= 8.0 + return True diff --git a/flax_model/alphafold3/jax/gated_linear_unit/block.py b/flax_model/alphafold3/jax/gated_linear_unit/block.py new file mode 100644 index 0000000000000000000000000000000000000000..5e86ec24e49973ef7a196d012c424728904464bc --- /dev/null +++ b/flax_model/alphafold3/jax/gated_linear_unit/block.py @@ -0,0 +1,118 @@ + + +"""Pallas block load / store utilities.""" + +from collections.abc import Sequence +from typing import Any, TypeAlias + +from flax_model.alphafold3.jax.common import array_view +import jax +import jax.experimental +from jax.experimental import pallas as pl +import jax.numpy as jnp +import jaxtyping +from jaxtyping import Int # pylint: disable=g-importing-member +import numpy as np +import typeguard + +ArrayT: TypeAlias = Any +ScalarInt: TypeAlias = ( + Int[ArrayT, ""] | Int[np.generic, ""] | Int[jnp.generic, ""] +) + + +@jaxtyping.jaxtyped(typechecker=typeguard.typechecked) +def load_block( + ref, + idx: Sequence[int | ScalarInt], + *, + block_shape: Sequence[int | None], + other=None, + **kwargs, +) -> jax.Array: + """Loads a block from the given `ref`, masking where necessary.""" + idx, mask = _get_block_indexer_and_mask(ref, idx, block_shape=block_shape) + if isinstance(ref, array_view.ArrayView): + idx = ref[idx].offsets + ref = ref.base + other = None if mask is None else other + with jax.experimental.enable_x64(): + return pl.load(ref, idx, mask=mask, other=other, **kwargs) + + +@jaxtyping.jaxtyped(typechecker=typeguard.typechecked) +def store_block( + ref, + val: jax.Array, + idx: Sequence[int | ScalarInt], + *, + block_shape: Sequence[int | None] | None = None, + **kwargs, +): + """Stores a block from the given `ref`, masking where necessary.""" + if block_shape is None: + block_shape = val.shape + idx, mask = _get_block_indexer_and_mask(ref, idx, block_shape=block_shape) + if isinstance(ref, array_view.ArrayView): + idx = ref[idx].offsets + ref = ref.base + with jax.experimental.enable_x64(): + pl.store(ref, idx, val.astype(ref.dtype), mask=mask, **kwargs) + + +def in_bounds_mask( + idx: Sequence[int | slice | pl.Slice | jax.Array], + shape: Sequence[int], + *, + check: Sequence[bool] | None = None, +) -> jax.Array | None: + """Returns a boolean mask denoting which indices are within bounds. + + Args: + idx: Indices for each dimension. + shape: Shape designating the valid bounds. + check: Whether or not to check bounds in each dimension. Useful for ignoring + indices known to be in bounds. Defaults to all True. + """ + if check is None: + check = [True] * len(shape) + + # Remove `int` indexed dims (mask shape must match slice result shape). + shape = [dim for i, dim in enumerate(shape) if not isinstance(idx[i], int)] + check = [chk for i, chk in enumerate(check) if not isinstance(idx[i], int)] + idx = [idx for idx in idx if not isinstance(idx, int)] + + mask = None + for i, (dim_idx, dim, chk) in enumerate(zip(idx, shape, check, strict=True)): + if not chk: + continue + + if isinstance(dim_idx, slice): + dim_idx = pl.Slice.from_slice(dim_idx, dim) + if isinstance(dim_idx, pl.Slice): + dim_idx = dim_idx.start + dim_idx.stride * jnp.arange(dim_idx.size) + if dim_idx.ndim != 1: + raise NotImplementedError("Only one-dimensional indices are supported.") + + bcast_axes = [a for a in range(len(shape)) if a != i] + dim_mask = jnp.expand_dims(dim_idx < dim, bcast_axes) + mask = dim_mask if mask is None else (mask & dim_mask) + return mask + + +def _get_block_indexer_and_mask( + ref, idx: Sequence[int | ScalarInt], *, block_shape: Sequence[int | None] +) -> tuple[tuple[int | slice | pl.Slice, ...], jax.Array | None]: + """Return indices and mask for loading / storing a block.""" + shape = ref.shape + idxs = [] + check = [] + for dim, block_idx, block_dim in zip(shape, idx, block_shape, strict=True): + if block_dim is None: + idxs.append(block_idx) + check.append(False) + else: + idxs.append(pl.dslice(block_dim * block_idx, block_dim)) + check.append(dim % block_dim != 0) + + return tuple(idxs), in_bounds_mask(idxs, shape, check=check) diff --git a/flax_model/alphafold3/jax/gated_linear_unit/gated_linear_unit.py b/flax_model/alphafold3/jax/gated_linear_unit/gated_linear_unit.py new file mode 100644 index 0000000000000000000000000000000000000000..782d8fca76aefb8fef1407a5fa46af5ee5dd1736 --- /dev/null +++ b/flax_model/alphafold3/jax/gated_linear_unit/gated_linear_unit.py @@ -0,0 +1,116 @@ + + +"""Public API for gated linear unit functions.""" + +from collections.abc import Callable +import typing +from typing import Literal, TypeAlias + +from flax_model.alphafold3.jax.common import array_view +from flax_model.alphafold3.jax.common import triton_utils +from flax_model.alphafold3.jax.gated_linear_unit import gated_linear_unit_base +from flax_model.alphafold3.jax.gated_linear_unit import matmul_ext +import jax +import jaxtyping +from jaxtyping import Array, Float # pylint: disable=g-importing-member,g-multiple-import +import typeguard + +Implementation: TypeAlias = Literal['xla', 'triton'] + + +class PallasGatedLinearUnit(gated_linear_unit_base.GatedLinearUnit): + """Pallas gated linear unit.""" + + def _fwd(self, x, weight, *, activation, precision): + weight_view = array_view.ArrayView(weight) + return self.apply_vmap_rule_forward( + matmul_ext.gated_linear_unit, + activation=activation, + precision=precision, + )( + x, + weight_view[:, 1], + weight_view[:, 0], + ) + + +@jaxtyping.jaxtyped(typechecker=typeguard.typechecked) +def gated_linear_unit( + x: Float[Array, '*B M K'], + weight: Float[Array, 'K 2 N'], + *, + activation: Callable[[jax.Array], jax.Array] | None = None, + precision: jax.lax.Precision | None = None, + implementation: Implementation | None = None, +) -> Float[Array, '*B M N']: + """Applies a gated linear unit (https://arxiv.org/abs/1612.08083). + + Computes `activation(x @ weight[:, 0]) * x @ weight[:, 1]`. + + This is SwiGLU when `activation=jax.nn.swish`, GEGLU when + `activation=jax.nn.gelu`, REGLU when `activation=jax.nn.relu`, and GLU when + `activation=jax.nn.sigmoid` (https://arxiv.org/abs/2002.05202). + + Args: + x: the input array. + weight: the combined weight array. + activation: optional activation function. + precision: specifies the matrix multiplication precision. Either `None` + (default), which means the default precision for the backend, or a + `jax.lax.Precision` enum. + implementation: if `None` (default), an implementation is automatically + chosen. 'xla' will use standard XLA and work on any platform, and 'triton' + will use a fused Triton GPU kernel. Only a subset of data types, shapes + and GPUs are supported by 'triton', with an exception thrown in this case. + + Raises: + NotImplementedError: if `implementation='triton'` does not support a given + input or device. + ValueError: if the arguments are invalid. + + Returns: + The output array. + """ + + match implementation: + case 'triton': + if not triton_utils.has_triton_support(): + raise NotImplementedError('Triton not supported on this platform.') + case _: + ... + + if x.dtype.name != weight.dtype.name: + raise ValueError( + f'Input and weight must have the same dtype. {x.dtype} !=' + f' {weight.dtype}' + ) + + if implementation is not None: + named_args = typing.get_args(Implementation) + if implementation not in named_args: + raise ValueError( + f'Unsupported named implementation. Must be one of {named_args}.' + ) + + # if implementation is None or implementation == 'triton': + # try: + # return PallasGatedLinearUnit()( + # x=x, + # weight=weight, + # activation=activation, + # precision=precision, + # ) + # # When `implementation=None`, we must catch any exception, and use XLA + # # as a fallback. As we rely on a third-party library (Triton), it might + # # not be possible to enumerate all possible exceptions that could be + # # thrown, hence catching the broadest possible one. + # except Exception as e: # pylint: disable=broad-exception-caught + # if implementation == 'triton': + # raise e + + return gated_linear_unit_base.gated_linear_unit_xla( + x=x, + weight=weight, + activation=activation, + precision=precision, + ) diff --git a/flax_model/alphafold3/jax/gated_linear_unit/matmul_config.py b/flax_model/alphafold3/jax/gated_linear_unit/matmul_config.py new file mode 100644 index 0000000000000000000000000000000000000000..d9c21ef10e38a3a7179b84344feee22337140eb0 --- /dev/null +++ b/flax_model/alphafold3/jax/gated_linear_unit/matmul_config.py @@ -0,0 +1,70 @@ + + +"""Auto-tuned configs for matmul.""" + +import dataclasses +import functools +import math + +import jax +from jax.experimental import pallas as pl + + +@dataclasses.dataclass(frozen=True, kw_only=True) +class Config: + block_m: int + block_n: int + block_k: int + num_warps: int + num_stages: int + + +@functools.cache +def _get_best_block_size( + m: int, n: int, k: int, core_count: int +) -> tuple[int, int, int]: + """Returns the best block size for the given shape.""" + min_block_dim = 32 + block_m = min(max(min_block_dim, pl.next_power_of_2(m)), 128) + block_n = min(max(min_block_dim, pl.next_power_of_2(n)), 256) + block_n = min(block_n, (128 * 128) // block_m) + block_k = 32 + split_k = 1 + num_blocks = pl.cdiv(m, block_m) * pl.cdiv(n, block_n) + while num_blocks < core_count: + if block_m > min_block_dim: + block_m //= 2 + num_blocks = pl.cdiv(m, block_m) * pl.cdiv(n, block_n) + elif split_k * block_k < pl.next_power_of_2(k): + split_k *= 2 + num_blocks *= 2 + else: + break + return block_m, block_n, block_k + + +def _abstractify(x): + return jax.api_util.shaped_abstractify(x) if isinstance(x, jax.Array) else x + + +def get_config( + x: jax.Array, w: jax.Array, core_count: int | None = None +) -> Config: + """Returns a config for the given args.""" + if core_count is None: + core_count = jax.devices()[0].core_count + x = _abstractify(x) + w = _abstractify(w) + m, k = math.prod(x.shape[:-1]), x.shape[-1] + n = w.shape[1] + if n >= m: # Prefer `block_n` > `block_m`. + block_m, block_n, block_k = _get_best_block_size(m, n, k, core_count) + else: + block_n, block_m, block_k = _get_best_block_size(n, m, k, core_count) + return Config( + block_m=block_m, + block_n=block_n // 2, # Halve `block_n` as we read two `w` blocks. + block_k=block_k, + num_warps=4, + num_stages=4, + ) diff --git a/flax_model/alphafold3/jax/geometry/__init__.py b/flax_model/alphafold3/jax/geometry/__init__.py new file mode 100644 index 0000000000000000000000000000000000000000..9abd43838ed31f4617535c2bf757353921faf7c3 --- /dev/null +++ b/flax_model/alphafold3/jax/geometry/__init__.py @@ -0,0 +1,20 @@ + + +"""Geometry Module.""" + +from flax_model.alphafold3.jax.geometry import rigid_matrix_vector +from flax_model.alphafold3.jax.geometry import rotation_matrix +from flax_model.alphafold3.jax.geometry import struct_of_array +from flax_model.alphafold3.jax.geometry import vector + +Rot3Array = rotation_matrix.Rot3Array +Rigid3Array = rigid_matrix_vector.Rigid3Array + +StructOfArray = struct_of_array.StructOfArray + +Vec3Array = vector.Vec3Array +square_euclidean_distance = vector.square_euclidean_distance +euclidean_distance = vector.euclidean_distance +dihedral_angle = vector.dihedral_angle +dot = vector.dot +cross = vector.cross 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/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/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/weight/_dep/abseil-cpp/.github/ISSUE_TEMPLATE/config.yml b/weight/_dep/abseil-cpp/.github/ISSUE_TEMPLATE/config.yml new file mode 100644 index 0000000000000000000000000000000000000000..c690fd9a51b44c77dcb128b1b0ebec57b801394f --- /dev/null +++ b/weight/_dep/abseil-cpp/.github/ISSUE_TEMPLATE/config.yml @@ -0,0 +1,5 @@ +blank_issues_enabled: false +contact_links: + - name: Question + url: https://github.com/abseil/abseil-cpp/discussions + about: Have a question? Ask us anything! :-) diff --git a/weight/_dep/abseil-cpp/.github/PULL_REQUEST_TEMPLATE.md b/weight/_dep/abseil-cpp/.github/PULL_REQUEST_TEMPLATE.md new file mode 100644 index 0000000000000000000000000000000000000000..ff55e35294505f0bd96bff9ac48a646c3b036a9a --- /dev/null +++ b/weight/_dep/abseil-cpp/.github/PULL_REQUEST_TEMPLATE.md @@ -0,0 +1,8 @@ +Thank you for your contribution to Abseil! + +Before submitting this PR, please be sure to read our [contributing +guidelines](https://github.com/abseil/abseil-cpp/blob/master/CONTRIBUTING.md). + +If you are a Googler, please also note that it is required that you send us a +Piper CL instead of using the GitHub pull-request process. The code propagation +process will deliver the change to GitHub. diff --git a/weight/_dep/abseil-cpp/BUILD.bazel b/weight/_dep/abseil-cpp/BUILD.bazel new file mode 100644 index 0000000000000000000000000000000000000000..79fb0ecd73ef622aa4a6ef991c37ec24c064896f --- /dev/null +++ b/weight/_dep/abseil-cpp/BUILD.bazel @@ -0,0 +1,25 @@ +# +# Copyright 2020 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. +# + +package(default_visibility = ["//visibility:public"]) + +licenses(["notice"]) # Apache 2.0 + +# Expose license for external usage through bazel. +exports_files([ + "AUTHORS", + "LICENSE", +]) diff --git a/weight/_dep/abseil-cpp/CMake/Googletest/CMakeLists.txt.in b/weight/_dep/abseil-cpp/CMake/Googletest/CMakeLists.txt.in new file mode 100644 index 0000000000000000000000000000000000000000..75691b1117be30ba0d6da6746ba4c1cb76367717 --- /dev/null +++ b/weight/_dep/abseil-cpp/CMake/Googletest/CMakeLists.txt.in @@ -0,0 +1,14 @@ +cmake_minimum_required(VERSION 3.10) + +project(googletest-external NONE) + +include(ExternalProject) +ExternalProject_Add(googletest + URL "${absl_gtest_download_url}" # May be empty + SOURCE_DIR "${absl_gtest_src_dir}" + BINARY_DIR "${absl_gtest_build_dir}" + CONFIGURE_COMMAND "" + BUILD_COMMAND "" + INSTALL_COMMAND "" + TEST_COMMAND "" +) diff --git a/weight/_dep/abseil-cpp/CMake/Googletest/DownloadGTest.cmake b/weight/_dep/abseil-cpp/CMake/Googletest/DownloadGTest.cmake new file mode 100644 index 0000000000000000000000000000000000000000..9d071c9170116945c30e057f1ed5ffbf628d8d85 --- /dev/null +++ b/weight/_dep/abseil-cpp/CMake/Googletest/DownloadGTest.cmake @@ -0,0 +1,41 @@ +# Integrates googletest at configure time. Based on the instructions at +# https://github.com/google/googletest/tree/master/googletest#incorporating-into-an-existing-cmake-project + +# Set up the external googletest project, downloading the latest from Github +# master if requested. +configure_file( + ${CMAKE_CURRENT_LIST_DIR}/CMakeLists.txt.in + ${CMAKE_BINARY_DIR}/googletest-external/CMakeLists.txt +) + +set(ABSL_SAVE_CMAKE_CXX_FLAGS ${CMAKE_CXX_FLAGS}) +set(ABSL_SAVE_CMAKE_RUNTIME_OUTPUT_DIRECTORY ${CMAKE_RUNTIME_OUTPUT_DIRECTORY}) +if (BUILD_SHARED_LIBS) + set(CMAKE_RUNTIME_OUTPUT_DIRECTORY ${CMAKE_BINARY_DIR}/bin) + set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -DGTEST_CREATE_SHARED_LIBRARY=1") +endif() + +# Configure and build the googletest source. +execute_process(COMMAND ${CMAKE_COMMAND} -G "${CMAKE_GENERATOR}" . + RESULT_VARIABLE result + WORKING_DIRECTORY ${CMAKE_BINARY_DIR}/googletest-external ) +if(result) + message(FATAL_ERROR "CMake step for googletest failed: ${result}") +endif() + +execute_process(COMMAND ${CMAKE_COMMAND} --build . + RESULT_VARIABLE result + WORKING_DIRECTORY ${CMAKE_BINARY_DIR}/googletest-external) +if(result) + message(FATAL_ERROR "Build step for googletest failed: ${result}") +endif() + +set(CMAKE_CXX_FLAGS ${ABSL_SAVE_CMAKE_CXX_FLAGS}) +set(CMAKE_RUNTIME_OUTPUT_DIRECTORY ${ABSL_SAVE_CMAKE_RUNTIME_OUTPUT_DIRECTORY}) + +# Prevent overriding the parent project's compiler/linker settings on Windows +set(gtest_force_shared_crt ON CACHE BOOL "" FORCE) + +# Add googletest directly to our build. This defines the gtest and gtest_main +# targets. +add_subdirectory(${absl_gtest_src_dir} ${absl_gtest_build_dir} EXCLUDE_FROM_ALL) diff --git a/weight/_dep/abseil-cpp/CMake/README.md b/weight/_dep/abseil-cpp/CMake/README.md new file mode 100644 index 0000000000000000000000000000000000000000..c7ddee644069df46a3d6ac0e8acc252844e699ea --- /dev/null +++ b/weight/_dep/abseil-cpp/CMake/README.md @@ -0,0 +1,188 @@ +# Abseil CMake Build Instructions + +Abseil comes with a CMake build script ([CMakeLists.txt](../CMakeLists.txt)) +that can be used on a wide range of platforms ("C" stands for cross-platform.). +If you don't have CMake installed already, you can download it for free from +. + +CMake works by generating native makefiles or build projects that can +be used in the compiler environment of your choice. + +For API/ABI compatibility reasons, we strongly recommend building Abseil in a +subdirectory of your project or as an embedded dependency. + +## Incorporating Abseil Into a CMake Project + +The recommendations below are similar to those for using CMake within the +googletest framework +() + +### Step-by-Step Instructions + +1. If you want to build the Abseil tests, integrate the Abseil dependency +[Google Test](https://github.com/google/googletest) into your CMake +project. To disable Abseil tests, you have to pass either +`-DBUILD_TESTING=OFF` or `-DABSL_BUILD_TESTING=OFF` when configuring your +project with CMake. + +2. Download Abseil and copy it into a subdirectory in your CMake project or add +Abseil as a [git submodule](https://git-scm.com/docs/git-submodule) in your +CMake project. + +3. You can then use the CMake command +[`add_subdirectory()`](https://cmake.org/cmake/help/latest/command/add_subdirectory.html) +to include Abseil directly in your CMake project. + +4. Add the **absl::** target you wish to use to the +[`target_link_libraries()`](https://cmake.org/cmake/help/latest/command/target_link_libraries.html) +section of your executable or of your library.
+Here is a short CMakeLists.txt example of an application project using Abseil. + +```cmake +cmake_minimum_required(VERSION 3.10) +project(my_app_project) + +# Pick the C++ standard to compile with. +# Abseil currently supports C++14, C++17, and C++20. +set(CMAKE_CXX_STANDARD 14) +set(CMAKE_CXX_STANDARD_REQUIRED ON) + +add_subdirectory(abseil-cpp) + +add_executable(my_exe source.cpp) +target_link_libraries(my_exe absl::base absl::synchronization absl::strings) +``` + +Note that if you are developing a library designed for use by other clients, you +should instead leave `CMAKE_CXX_STANDARD` unset (or only set if being built as +the current top-level CMake project) and configure the minimum required C++ +standard at the target level. If you require a later minimum C++ standard than +Abseil does, it's a good idea to also enforce that `CMAKE_CXX_STANDARD` (which +will control Abseil library targets) is set to at least that minimum. For +example: + +```cmake +cmake_minimum_required(VERSION 3.10) +project(my_lib_project) + +# Leave C++ standard up to the root application, so set it only if this is the +# current top-level CMake project. +if(CMAKE_SOURCE_DIR STREQUAL my_lib_project_SOURCE_DIR) + set(CMAKE_CXX_STANDARD 17) + set(CMAKE_CXX_STANDARD_REQUIRED ON) +endif() + +add_subdirectory(abseil-cpp) + +add_library(my_lib source.cpp) +target_link_libraries(my_lib absl::base absl::synchronization absl::strings) + +# Enforce that my_lib requires C++17. Important to document for clients that they +# must set CMAKE_CXX_STANDARD to 17 or higher for proper Abseil ABI compatibility +# (since otherwise, Abseil library targets could be compiled with a lower C++ +# standard than my_lib). +target_compile_features(my_lib PUBLIC cxx_std_17) +if(CMAKE_CXX_STANDARD LESS 17) + message(FATAL_ERROR + "my_lib_project requires CMAKE_CXX_STANDARD >= 17 (got: ${CMAKE_CXX_STANDARD})") +endif() +``` + +Then the top-level application project that uses your library is responsible for +setting a consistent `CMAKE_CXX_STANDARD` that is sufficiently high. + +### Running Abseil Tests with CMake + +Use the `-DABSL_BUILD_TESTING=ON` flag to run Abseil tests. Note that +BUILD_TESTING must also be on (the default). + +You will need to provide Abseil with a Googletest dependency. There are two +options for how to do this: + +* Use `-DABSL_USE_GOOGLETEST_HEAD`. This will automatically download the latest +Googletest source into the build directory at configure time. Googletest will +then be compiled directly alongside Abseil's tests. +* Manually integrate Googletest with your build. See +https://github.com/google/googletest/blob/master/googletest/README.md#using-cmake +for more information on using Googletest in a CMake project. + +For example, to run just the Abseil tests, you could use this script: + +``` +cd path/to/abseil-cpp +mkdir build +cd build +cmake -DABSL_BUILD_TESTING=ON -DABSL_USE_GOOGLETEST_HEAD=ON .. +make -j +ctest +``` + +Currently, we only run our tests with CMake in a Linux environment, but we are +working on the rest of our supported platforms. See +https://github.com/abseil/abseil-cpp/projects/1 and +https://github.com/abseil/abseil-cpp/issues/109 for more information. + +### Available Abseil CMake Public Targets + +Here's a non-exhaustive list of Abseil CMake public targets: + +```cmake +absl::algorithm +absl::base +absl::debugging +absl::flat_hash_map +absl::flags +absl::memory +absl::meta +absl::numeric +absl::random_random +absl::strings +absl::synchronization +absl::time +absl::utility +``` + +## Traditional CMake Set-Up + +For larger projects, it may make sense to use the traditional CMake set-up where you build and install projects separately. + +First, you'd need to build and install Google Test: +``` +cmake -S /source/googletest -B /build/googletest -DCMAKE_BUILD_TYPE=Release -DCMAKE_INSTALL_PREFIX=/installation/dir -DBUILD_GMOCK=ON +cmake --build /build/googletest --target install +``` + +Then you need to configure and build Abseil. Make sure you enable `ABSL_USE_EXTERNAL_GOOGLETEST` and `ABSL_FIND_GOOGLETEST`. You also need to enable `ABSL_ENABLE_INSTALL` so that you can install Abseil itself. +``` +cmake -S /source/abseil-cpp -B /build/abseil-cpp -DCMAKE_PREFIX_PATH=/installation/dir -DCMAKE_INSTALL_PREFIX=/installation/dir -DABSL_ENABLE_INSTALL=ON -DABSL_USE_EXTERNAL_GOOGLETEST=ON -DABSL_FIND_GOOGLETEST=ON +cmake --build /temporary/build/abseil-cpp +``` + +(`CMAKE_PREFIX_PATH` is where you already have Google Test installed; `CMAKE_INSTALL_PREFIX` is where you want to have Abseil installed; they can be different.) + +Run the tests: +``` +ctest --test-dir /temporary/build/abseil-cpp +``` + +And finally install: +``` +cmake --build /temporary/build/abseil-cpp --target install +``` + +# CMake Option Synopsis + +## Enable Standard CMake Installation + +`-DABSL_ENABLE_INSTALL=ON` + +## Google Test Options + +`-DABSL_BUILD_TESTING=ON` must be set to enable testing + +- Have Abseil download and build Google Test for you: `-DABSL_USE_EXTERNAL_GOOGLETEST=OFF` (default) + - Download and build latest Google Test: `-DABSL_USE_GOOGLETEST_HEAD=ON` + - Download specific Google Test version (ZIP archive): `-DABSL_GOOGLETEST_DOWNLOAD_URL=https://.../version.zip` + - Use Google Test from specific local directory: `-DABSL_LOCAL_GOOGLETEST_DIR=/path/to/googletest` +- Use Google Test included elsewhere in your project: `-DABSL_USE_EXTERNAL_GOOGLETEST=ON` +- Use standard CMake `find_package(CTest)` to find installed Google Test: `-DABSL_USE_EXTERNAL_GOOGLETEST=ON -DABSL_FIND_GOOGLETEST=ON` diff --git a/weight/_dep/abseil-cpp/CMake/install_test_project/CMakeLists.txt b/weight/_dep/abseil-cpp/CMake/install_test_project/CMakeLists.txt new file mode 100644 index 0000000000000000000000000000000000000000..30c23b2c6b806317586530915507a6c0477ac716 --- /dev/null +++ b/weight/_dep/abseil-cpp/CMake/install_test_project/CMakeLists.txt @@ -0,0 +1,25 @@ +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +# A simple CMakeLists.txt for testing cmake installation + +cmake_minimum_required(VERSION 3.10) +project(absl_cmake_testing CXX) + +add_executable(simple simple.cc) + +find_package(absl REQUIRED) + +target_link_libraries(simple absl::strings absl::config) diff --git a/weight/_dep/abseil-cpp/CMake/install_test_project/simple.cc b/weight/_dep/abseil-cpp/CMake/install_test_project/simple.cc new file mode 100644 index 0000000000000000000000000000000000000000..7daa7f09017cb560fdf0e7c4b94cf6a0c6e33715 --- /dev/null +++ b/weight/_dep/abseil-cpp/CMake/install_test_project/simple.cc @@ -0,0 +1,32 @@ +// +// Copyright 2019 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include +#include "absl/base/config.h" +#include "absl/strings/substitute.h" + +#if !defined(ABSL_LTS_RELEASE_VERSION) || ABSL_LTS_RELEASE_VERSION != 99998877 +#error ABSL_LTS_RELEASE_VERSION is not set correctly. +#endif + +#if !defined(ABSL_LTS_RELEASE_PATCH_LEVEL) || ABSL_LTS_RELEASE_PATCH_LEVEL != 0 +#error ABSL_LTS_RELEASE_PATCH_LEVEL is not set correctly. +#endif + +int main(int argc, char** argv) { + for (int i = 0; i < argc; ++i) { + std::cout << absl::Substitute("Arg $0: $1\n", i, argv[i]); + } +} diff --git a/weight/_dep/abseil-cpp/CMake/install_test_project/test.sh b/weight/_dep/abseil-cpp/CMake/install_test_project/test.sh new file mode 100644 index 0000000000000000000000000000000000000000..cc028bac861647dc670479dab973f9ae9e884e06 --- /dev/null +++ b/weight/_dep/abseil-cpp/CMake/install_test_project/test.sh @@ -0,0 +1,112 @@ +#!/bin/bash +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. +# +# Unit and integration tests for Abseil LTS CMake installation + +# Fail on any error. Treat unset variables an error. Print commands as executed. +set -euox pipefail + +absl_dir=/abseil-cpp +absl_build_dir=/buildfs +googletest_builddir=/googletest_builddir +project_dir="${absl_dir}"/CMake/install_test_project +project_build_dir=/buildfs/project-build + +build_shared_libs="OFF" +if [ "${LINK_TYPE:-}" = "DYNAMIC" ]; then + build_shared_libs="ON" +fi + +# Build and install GoogleTest +mkdir "${googletest_builddir}" +pushd "${googletest_builddir}" +curl -L "${ABSL_GOOGLETEST_DOWNLOAD_URL}" --output "${ABSL_GOOGLETEST_COMMIT}".zip +unzip "${ABSL_GOOGLETEST_COMMIT}".zip +pushd "googletest-${ABSL_GOOGLETEST_COMMIT}" +mkdir build +pushd build +cmake -DCMAKE_BUILD_TYPE=Release -DBUILD_SHARED_LIBS="${build_shared_libs}" .. +make -j $(nproc) +make install +ldconfig +popd +popd +popd + +# Run the LTS transformations +./create_lts.py 99998877 + +# Build and install Abseil +pushd "${absl_build_dir}" +cmake "${absl_dir}" \ + -DABSL_USE_EXTERNAL_GOOGLETEST=ON \ + -DABSL_FIND_GOOGLETEST=ON \ + -DCMAKE_BUILD_TYPE=Release \ + -DABSL_BUILD_TESTING=ON \ + -DBUILD_SHARED_LIBS="${build_shared_libs}" +make -j $(nproc) +ctest -j $(nproc) --output-on-failure +make install +ldconfig +popd + +# Test the project against the installed Abseil +mkdir -p "${project_build_dir}" +pushd "${project_build_dir}" +cmake "${project_dir}" +cmake --build . --target simple + +output="$(${project_build_dir}/simple "printme" 2>&1)" +if [[ "${output}" != *"Arg 1: printme"* ]]; then + echo "Faulty output on simple project:" + echo "${output}" + exit 1 +fi + +popd + +if ! grep absl::strings "/usr/local/lib/cmake/absl/abslTargets.cmake"; then + cat "/usr/local/lib/cmake/absl/abslTargets.cmake" + echo "CMake targets named incorrectly" + exit 1 +fi + +pushd "${HOME}" +cat > hello-abseil.cc << EOF +#include + +#include "absl/strings/str_format.h" + +int main(int argc, char **argv) { + absl::PrintF("Hello Abseil!\n"); + return EXIT_SUCCESS; +} +EOF + +if [ "${LINK_TYPE:-}" != "DYNAMIC" ]; then + pc_args=($(pkg-config --cflags --libs --static absl_str_format)) + g++ -static -o hello-abseil hello-abseil.cc "${pc_args[@]}" +else + pc_args=($(pkg-config --cflags --libs absl_str_format)) + g++ -o hello-abseil hello-abseil.cc "${pc_args[@]}" +fi +hello="$(./hello-abseil)" +[[ "${hello}" == "Hello Abseil!" ]] + +popd + +echo "Install test complete!" +exit 0 diff --git a/weight/_dep/abseil-cpp/CMakeLists.txt b/weight/_dep/abseil-cpp/CMakeLists.txt new file mode 100644 index 0000000000000000000000000000000000000000..194f87086831d11d2ba78811a827d2f86620ceb9 --- /dev/null +++ b/weight/_dep/abseil-cpp/CMakeLists.txt @@ -0,0 +1,270 @@ +# +# Copyright 2017 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. +# + +# https://github.com/google/oss-policies-info/blob/main/foundational-cxx-support-matrix.md +# As of 2022-09-06, CMake 3.10 is the minimum supported version. +cmake_minimum_required(VERSION 3.10) + +# Compiler id for Apple Clang is now AppleClang. +if (POLICY CMP0025) + cmake_policy(SET CMP0025 NEW) +endif (POLICY CMP0025) + +# if command can use IN_LIST +if (POLICY CMP0057) + cmake_policy(SET CMP0057 NEW) +endif (POLICY CMP0057) + +# Project version variables are the empty string if version is unspecified +if (POLICY CMP0048) + cmake_policy(SET CMP0048 NEW) +endif (POLICY CMP0048) + +# Honor the GTest_ROOT variable if specified +if (POLICY CMP0074) + cmake_policy(SET CMP0074 NEW) +endif (POLICY CMP0074) + +# option() honor variables +if (POLICY CMP0077) + cmake_policy(SET CMP0077 NEW) +endif (POLICY CMP0077) + +# Allow the user to specify the MSVC runtime +if (POLICY CMP0091) + cmake_policy(SET CMP0091 NEW) +endif (POLICY CMP0091) + +# try_compile() honors the CMAKE_CXX_STANDARD value +if (POLICY CMP0067) + cmake_policy(SET CMP0067 NEW) +endif (POLICY CMP0067) + +# Allow the user to specify the CMAKE_MSVC_DEBUG_INFORMATION_FORMAT +if (POLICY CMP0141) + cmake_policy(SET CMP0141 NEW) +endif (POLICY CMP0141) + +project(absl LANGUAGES CXX VERSION 20240116) +include(CTest) + +# Output directory is correct by default for most build setups. However, when +# building Abseil as a DLL, it is important to have the DLL in the same +# directory as the executable using it. Thus, we put all executables in a single +# /bin directory. +set(CMAKE_RUNTIME_OUTPUT_DIRECTORY ${CMAKE_BINARY_DIR}/bin) + +# when absl is included as subproject (i.e. using add_subdirectory(abseil-cpp)) +# in the source tree of a project that uses it, install rules are disabled. +if(NOT CMAKE_SOURCE_DIR STREQUAL PROJECT_SOURCE_DIR) + option(ABSL_ENABLE_INSTALL "Enable install rule" OFF) +else() + option(ABSL_ENABLE_INSTALL "Enable install rule" ON) +endif() + +option(ABSL_PROPAGATE_CXX_STD + "Use CMake C++ standard meta features (e.g. cxx_std_14) that propagate to targets that link to Abseil" + OFF) # TODO: Default to ON for CMake 3.8 and greater. +if(NOT ABSL_PROPAGATE_CXX_STD) + message(WARNING "A future Abseil release will default ABSL_PROPAGATE_CXX_STD to ON for CMake 3.8 and up. We recommend enabling this option to ensure your project still builds correctly.") +endif() + +option(ABSL_USE_SYSTEM_INCLUDES + "Silence warnings in Abseil headers by marking them as SYSTEM includes" + OFF) + +list(APPEND CMAKE_MODULE_PATH + ${CMAKE_CURRENT_LIST_DIR}/CMake + ${CMAKE_CURRENT_LIST_DIR}/absl/copts +) + +include(CMakePackageConfigHelpers) +include(GNUInstallDirs) +include(AbseilDll) +include(AbseilHelpers) + + +## +## Using absl targets +## +## all public absl targets are +## exported with the absl:: prefix +## +## e.g absl::base absl::synchronization absl::strings .... +## +## DO NOT rely on the internal targets outside of the prefix + + +# include current path +list(APPEND ABSL_COMMON_INCLUDE_DIRS ${CMAKE_CURRENT_SOURCE_DIR}) + +if("${CMAKE_CXX_COMPILER_ID}" MATCHES "Clang") + set(ABSL_USING_CLANG ON) +else() + set(ABSL_USING_CLANG OFF) +endif() + +# find dependencies +## pthread +find_package(Threads REQUIRED) + +include(CMakeDependentOption) + +option(ABSL_BUILD_TESTING + "If ON, Abseil will build all of Abseil's own tests." OFF) + +option(ABSL_BUILD_TEST_HELPERS + "If ON, Abseil will build libraries that you can use to write tests against Abseil code. This option requires that Abseil is configured to use GoogleTest." + OFF) + +option(ABSL_USE_EXTERNAL_GOOGLETEST + "If ON, Abseil will assume that the targets for GoogleTest are already provided by the including project. This makes sense when Abseil is used with add_subdirectory." OFF) + +cmake_dependent_option(ABSL_FIND_GOOGLETEST + "If ON, Abseil will use find_package(GTest) rather than assuming that GoogleTest is already provided by the including project." + ON + "ABSL_USE_EXTERNAL_GOOGLETEST" + OFF) + + +option(ABSL_USE_GOOGLETEST_HEAD + "If ON, abseil will download HEAD from GoogleTest at config time." OFF) + +set(ABSL_GOOGLETEST_DOWNLOAD_URL "" CACHE STRING "If set, download GoogleTest from this URL") + +set(ABSL_LOCAL_GOOGLETEST_DIR "/usr/src/googletest" CACHE PATH + "If ABSL_USE_GOOGLETEST_HEAD is OFF and ABSL_GOOGLETEST_URL is not set, specifies the directory of a local GoogleTest checkout." + ) + +if((BUILD_TESTING AND ABSL_BUILD_TESTING) OR ABSL_BUILD_TEST_HELPERS) + if (ABSL_USE_EXTERNAL_GOOGLETEST) + if (ABSL_FIND_GOOGLETEST) + find_package(GTest REQUIRED) + elseif(NOT TARGET GTest::gtest) + if(TARGET gtest) + # When Google Test is included directly rather than through find_package, the aliases are missing. + add_library(GTest::gtest ALIAS gtest) + add_library(GTest::gtest_main ALIAS gtest_main) + add_library(GTest::gmock ALIAS gmock) + add_library(GTest::gmock_main ALIAS gmock_main) + else() + message(FATAL_ERROR "ABSL_USE_EXTERNAL_GOOGLETEST is ON and ABSL_FIND_GOOGLETEST is OFF, which means that the top-level project must build the Google Test project. However, the target gtest was not found.") + endif() + endif() + else() + set(absl_gtest_build_dir ${CMAKE_BINARY_DIR}/googletest-build) + if(ABSL_USE_GOOGLETEST_HEAD AND ABSL_GOOGLETEST_DOWNLOAD_URL) + message(FATAL_ERROR "Do not set both ABSL_USE_GOOGLETEST_HEAD and ABSL_GOOGLETEST_DOWNLOAD_URL") + endif() + if(ABSL_USE_GOOGLETEST_HEAD) + set(absl_gtest_download_url "https://github.com/google/googletest/archive/main.zip") + elseif(ABSL_GOOGLETEST_DOWNLOAD_URL) + set(absl_gtest_download_url ${ABSL_GOOGLETEST_DOWNLOAD_URL}) + endif() + if(absl_gtest_download_url) + set(absl_gtest_src_dir ${CMAKE_BINARY_DIR}/googletest-src) + else() + set(absl_gtest_src_dir ${ABSL_LOCAL_GOOGLETEST_DIR}) + endif() + include(CMake/Googletest/DownloadGTest.cmake) + endif() +endif() + +add_subdirectory(absl) + +if(ABSL_ENABLE_INSTALL) + + + # install as a subdirectory only + install(EXPORT ${PROJECT_NAME}Targets + NAMESPACE absl:: + DESTINATION "${CMAKE_INSTALL_LIBDIR}/cmake/${PROJECT_NAME}" + ) + + configure_package_config_file( + CMake/abslConfig.cmake.in + "${PROJECT_BINARY_DIR}/${PROJECT_NAME}Config.cmake" + INSTALL_DESTINATION "${CMAKE_INSTALL_LIBDIR}/cmake/${PROJECT_NAME}" + ) + install(FILES "${PROJECT_BINARY_DIR}/${PROJECT_NAME}Config.cmake" + DESTINATION "${CMAKE_INSTALL_LIBDIR}/cmake/${PROJECT_NAME}" + ) + + # Abseil only has a version in LTS releases. This mechanism is accomplished + # Abseil's internal Copybara (https://github.com/google/copybara) workflows and + # isn't visible in the CMake buildsystem itself. + if(absl_VERSION) + write_basic_package_version_file( + "${PROJECT_BINARY_DIR}/${PROJECT_NAME}ConfigVersion.cmake" + COMPATIBILITY ExactVersion + ) + + install(FILES "${PROJECT_BINARY_DIR}/${PROJECT_NAME}ConfigVersion.cmake" + DESTINATION "${CMAKE_INSTALL_LIBDIR}/cmake/${PROJECT_NAME}" + ) + endif() # absl_VERSION + + install(DIRECTORY absl + DESTINATION ${CMAKE_INSTALL_INCLUDEDIR} + FILES_MATCHING + PATTERN "*.inc" + PATTERN "*.h" + PATTERN "copts" EXCLUDE + PATTERN "testdata" EXCLUDE + ) + + # Rewrite options.h to use the compiled ABI. + file(READ "absl/base/options.h" ABSL_INTERNAL_OPTIONS_H_CONTENTS) + + # Handle features that require at least C++20. + if (ABSL_INTERNAL_AT_LEAST_CXX20) + foreach(FEATURE "ORDERING") + string(REPLACE + "#define ABSL_OPTION_USE_STD_${FEATURE} 2" + "#define ABSL_OPTION_USE_STD_${FEATURE} 1" + ABSL_INTERNAL_OPTIONS_H_PINNED + "${ABSL_INTERNAL_OPTIONS_H_CONTENTS}") + set(ABSL_INTERNAL_OPTIONS_H_CONTENTS "${ABSL_INTERNAL_OPTIONS_H_PINNED}") + endforeach() + endif() + + # Handle features that require at least C++17. + if (ABSL_INTERNAL_AT_LEAST_CXX17) + foreach(FEATURE "ANY" "OPTIONAL" "STRING_VIEW" "VARIANT") + string(REPLACE + "#define ABSL_OPTION_USE_STD_${FEATURE} 2" + "#define ABSL_OPTION_USE_STD_${FEATURE} 1" + ABSL_INTERNAL_OPTIONS_H_PINNED + "${ABSL_INTERNAL_OPTIONS_H_CONTENTS}") + set(ABSL_INTERNAL_OPTIONS_H_CONTENTS "${ABSL_INTERNAL_OPTIONS_H_PINNED}") + endforeach() + endif() + + # Any feature that still has the value of 2 (because it was not handled above) + # should be set to 0. + string(REGEX REPLACE + "#define ABSL_OPTION_USE_STD_([^ ]*) 2" + "#define ABSL_OPTION_USE_STD_\\1 0" + ABSL_INTERNAL_OPTIONS_H_PINNED + "${ABSL_INTERNAL_OPTIONS_H_CONTENTS}") + + file(WRITE "${CMAKE_BINARY_DIR}/options-pinned.h" "${ABSL_INTERNAL_OPTIONS_H_PINNED}") + + install(FILES "${CMAKE_BINARY_DIR}/options-pinned.h" + DESTINATION ${CMAKE_INSTALL_INCLUDEDIR}/absl/base + RENAME "options.h") + +endif() # ABSL_ENABLE_INSTALL diff --git a/weight/_dep/abseil-cpp/CONTRIBUTING.md b/weight/_dep/abseil-cpp/CONTRIBUTING.md new file mode 100644 index 0000000000000000000000000000000000000000..a87254c503571f530304796dddff567d4e36e018 --- /dev/null +++ b/weight/_dep/abseil-cpp/CONTRIBUTING.md @@ -0,0 +1,141 @@ +# How to Contribute to Abseil + +We'd love to accept your patches and contributions to this project. There are +just a few small guidelines you need to follow. + +NOTE: If you are new to GitHub, please start by reading [Pull Request +howto](https://help.github.com/articles/about-pull-requests/) + +## Contributor License Agreement + +Contributions to this project must be accompanied by a Contributor License +Agreement. You (or your employer) retain the copyright to your contribution, +this simply gives us permission to use and redistribute your contributions as +part of the project. Head over to to see +your current agreements on file or to sign a new one. + +You generally only need to submit a CLA once, so if you've already submitted one +(even if it was for a different project), you probably don't need to do it +again. + +## Contribution Guidelines + +Potential contributors sometimes ask us if the Abseil project is the appropriate +home for their utility library code or for specific functions implementing +missing portions of the standard. Often, the answer to this question is "no". +We’d like to articulate our thinking on this issue so that our choices can be +understood by everyone and so that contributors can have a better intuition +about whether Abseil might be interested in adopting a new library. + +### Priorities + +Although our mission is to augment the C++ standard library, our goal is not to +provide a full forward-compatible implementation of the latest standard. For us +to consider a library for inclusion in Abseil, it is not enough that a library +is useful. We generally choose to release a library when it meets at least one +of the following criteria: + +* **Widespread usage** - Using our internal codebase to help gauge usage, most + of the libraries we've released have tens of thousands of users. +* **Anticipated widespread usage** - Pre-adoption of some standard-compliant + APIs may not have broad adoption initially but can be expected to pick up + usage when it replaces legacy APIs. `absl::from_chars`, for example, + replaces existing code that converts strings to numbers and will therefore + likely see usage growth. +* **High impact** - APIs that provide a key solution to a specific problem, + such as `absl::FixedArray`, have higher impact than usage numbers may signal + and are released because of their importance. +* **Direct support for a library that falls under one of the above** - When we + want access to a smaller library as an implementation detail for a + higher-priority library we plan to release, we may release it, as we did + with portions of `absl/meta/type_traits.h`. One consequence of this is that + the presence of a library in Abseil does not necessarily mean that other + similar libraries would be a high priority. + +### API Freeze Consequences + +Via the +[Abseil Compatibility Guidelines](https://abseil.io/about/compatibility), we +have promised a large degree of API stability. In particular, we will not make +backward-incompatible changes to released APIs without also shipping a tool or +process that can upgrade our users' code. We are not yet at the point of easily +releasing such tools. Therefore, at this time, shipping a library establishes an +API contract which is borderline unchangeable. (We can add new functionality, +but we cannot easily change existing behavior.) This constraint forces us to +very carefully review all APIs that we ship. + + +## Coding Style + +To keep the source consistent, readable, diffable and easy to merge, we use a +fairly rigid coding style, as defined by the +[google-styleguide](https://github.com/google/styleguide) project. All patches +will be expected to conform to the style outlined +[here](https://google.github.io/styleguide/cppguide.html). + +## Guidelines for Pull Requests + +* If you are a Googler, it is required that you send us a Piper CL instead of + using the GitHub pull-request process. The code propagation process will + deliver the change to GitHub. + +* Create **small PRs** that are narrowly focused on **addressing a single + concern**. We often receive PRs that are trying to fix several things at a + time, but if only one fix is considered acceptable, nothing gets merged and + both author's & review's time is wasted. Create more PRs to address + different concerns and everyone will be happy. + +* For speculative changes, consider opening an [Abseil + issue](https://github.com/abseil/abseil-cpp/issues) and discussing it first. + If you are suggesting a behavioral or API change, consider starting with an + [Abseil proposal template](ABSEIL_ISSUE_TEMPLATE.md). + +* Provide a good **PR description** as a record of **what** change is being + made and **why** it was made. Link to a GitHub issue if it exists. + +* Don't fix code style and formatting unless you are already changing that + line to address an issue. Formatting of modified lines may be done using + `git clang-format`. PRs with irrelevant changes won't be merged. If + you do want to fix formatting or style, do that in a separate PR. + +* Unless your PR is trivial, you should expect there will be reviewer comments + that you'll need to address before merging. We expect you to be reasonably + responsive to those comments, otherwise the PR will be closed after 2-3 + weeks of inactivity. + +* Maintain **clean commit history** and use **meaningful commit messages**. + PRs with messy commit history are difficult to review and won't be merged. + Use `rebase -i upstream/master` to curate your commit history and/or to + bring in latest changes from master (but avoid rebasing in the middle of a + code review). + +* Keep your PR up to date with upstream/master (if there are merge conflicts, + we can't really merge your change). + +* **All tests need to be passing** before your change can be merged. We + recommend you **run tests locally** (see below) + +* Exceptions to the rules can be made if there's a compelling reason for doing + so. That is - the rules are here to serve us, not the other way around, and + the rules need to be serving their intended purpose to be valuable. + +* All submissions, including submissions by project members, require review. + +## Running Tests + +If you have [Bazel](https://bazel.build/) installed, use `bazel test +--test_tag_filters="-benchmark" ...` to run the unit tests. + +If you are running the Linux operating system and have +[Docker](https://www.docker.com/) installed, you can also run the `linux_*.sh` +scripts under the `ci/`(https://github.com/abseil/abseil-cpp/tree/master/ci) +directory to test Abseil under a variety of conditions. + +## Abseil Committers + +The current members of the Abseil engineering team are the only committers at +present. + +## Release Process + +Abseil lives at head, where latest-and-greatest code can be found. diff --git a/weight/_dep/abseil-cpp/FAQ.md b/weight/_dep/abseil-cpp/FAQ.md new file mode 100644 index 0000000000000000000000000000000000000000..fbd92ce97576c09868f12ff2617ea536809d5635 --- /dev/null +++ b/weight/_dep/abseil-cpp/FAQ.md @@ -0,0 +1,167 @@ +# Abseil FAQ + +## Is Abseil the right home for my utility library? + +Most often the answer to the question is "no." As both the [About +Abseil](https://abseil.io/about/) page and our [contributing +guidelines](https://github.com/abseil/abseil-cpp/blob/master/CONTRIBUTING.md#contribution-guidelines) +explain, Abseil contains a variety of core C++ library code that is widely used +at [Google](https://www.google.com/). As such, Abseil's primary purpose is to be +used as a dependency by Google's open source C++ projects. While we do hope that +Abseil is also useful to the C++ community at large, this added constraint also +means that we are unlikely to accept a contribution of utility code that isn't +already widely used by Google. + +## How to I set the C++ dialect used to build Abseil? + +The short answer is that whatever mechanism you choose, you need to make sure +that you set this option consistently at the global level for your entire +project. If, for example, you want to set the C++ dialect to C++17, with +[Bazel](https://bazel/build/) as the build system and `gcc` or `clang` as the +compiler, there several ways to do this: +* Pass `--cxxopt=-std=c++17` on the command line (for example, `bazel build + --cxxopt=-std=c++17 ...`) +* Set the environment variable `BAZEL_CXXOPTS` (for example, + `BAZEL_CXXOPTS=-std=c++17`) +* Add `build --cxxopt=-std=c++17` to your [`.bazelrc` + file](https://docs.bazel.build/versions/master/guide.html#bazelrc) + +If you are using CMake as the build system, you'll need to add a line like +`set(CMAKE_CXX_STANDARD 17)` to your top level `CMakeLists.txt` file. If you +are developing a library designed to be used by other clients, you should +instead leave `CMAKE_CXX_STANDARD` unset and configure the minimum C++ standard +required by each of your library targets via `target_compile_features`. See the +[CMake build +instructions](https://github.com/abseil/abseil-cpp/blob/master/CMake/README.md) +for more information. + +For a longer answer to this question and to understand why some other approaches +don't work, see the answer to ["What is ABI and why don't you recommend using a +pre-compiled version of +Abseil?"](#what-is-abi-and-why-dont-you-recommend-using-a-pre-compiled-version-of-abseil) + +## What is ABI and why don't you recommend using a pre-compiled version of Abseil? + +For the purposes of this discussion, you can think of +[ABI](https://en.wikipedia.org/wiki/Application_binary_interface) as the +compiled representation of the interfaces in code. This is in contrast to +[API](https://en.wikipedia.org/wiki/Application_programming_interface), which +you can think of as the interfaces as defined by the code itself. [Abseil has a +strong promise of API compatibility, but does not make any promise of ABI +compatibility](https://abseil.io/about/compatibility). Let's take a look at what +this means in practice. + +You might be tempted to do something like this in a +[Bazel](https://bazel.build/) `BUILD` file: + +``` +# DON'T DO THIS!!! +cc_library( + name = "my_library", + srcs = ["my_library.cc"], + copts = ["-std=c++17"], # May create a mixed-mode compile! + deps = ["@com_google_absl//absl/strings"], +) +``` + +Applying `-std=c++17` to an individual target in your `BUILD` file is going to +compile that specific target in C++17 mode, but it isn't going to ensure the +Abseil library is built in C++17 mode, since the Abseil library itself is a +different build target. If your code includes an Abseil header, then your +program may contain conflicting definitions of the same +class/function/variable/enum, etc. As a rule, all compile options that affect +the ABI of a program need to be applied to the entire build on a global basis. + +C++ has something called the [One Definition +Rule](https://en.wikipedia.org/wiki/One_Definition_Rule) (ODR). C++ doesn't +allow multiple definitions of the same class/function/variable/enum, etc. ODR +violations sometimes result in linker errors, but linkers do not always catch +violations. Uncaught ODR violations can result in strange runtime behaviors or +crashes that can be hard to debug. + +If you build the Abseil library and your code using different compile options +that affect ABI, there is a good chance you will run afoul of the One Definition +Rule. Examples of GCC compile options that affect ABI include (but aren't +limited to) language dialect (e.g. `-std=`), optimization level (e.g. `-O2`), +code generation flags (e.g. `-fexceptions`), and preprocessor defines +(e.g. `-DNDEBUG`). + +If you use a pre-compiled version of Abseil, (for example, from your Linux +distribution package manager or from something like +[vcpkg](https://github.com/microsoft/vcpkg)) you have to be very careful to +ensure ABI compatibility across the components of your program. The only way you +can be sure your program is going to be correct regarding ABI is to ensure +you've used the exact same compile options as were used to build the +pre-compiled library. This does not mean that Abseil cannot work as part of a +Linux distribution since a knowledgeable binary packager will have ensured that +all packages have been built with consistent compile options. This is one of the +reasons we warn against - though do not outright reject - using Abseil as a +pre-compiled library. + +Another possible way that you might afoul of ABI issues is if you accidentally +include two versions of Abseil in your program. Multiple versions of Abseil can +end up within the same binary if your program uses the Abseil library and +another library also transitively depends on Abseil (resulting in what is +sometimes called the diamond dependency problem). In cases such as this you must +structure your build so that all libraries use the same version of Abseil. +[Abseil's strong promise of API compatibility between +releases](https://abseil.io/about/compatibility) means the latest "HEAD" release +of Abseil is almost certainly the right choice if you are doing as we recommend +and building all of your code from source. + +For these reasons we recommend you avoid pre-compiled code and build the Abseil +library yourself in a consistent manner with the rest of your code. + +## What is "live at head" and how do I do it? + +From Abseil's point-of-view, "live at head" means that every Abseil source +release (which happens on an almost daily basis) is either API compatible with +the previous release, or comes with an automated tool that you can run over code +to make it compatible. In practice, the need to use an automated tool is +extremely rare. This means that upgrading from one source release to another +should be a routine practice that can and should be performed often. + +We recommend you update to the [latest commit in the `master` branch of +Abseil](https://github.com/abseil/abseil-cpp/commits/master) as often as +possible. Not only will you pick up bug fixes more quickly, but if you have good +automated testing, you will catch and be able to fix any [Hyrum's +Law](https://www.hyrumslaw.com/) dependency problems on an incremental basis +instead of being overwhelmed by them and having difficulty isolating them if you +wait longer between updates. + +If you are using the [Bazel](https://bazel.build/) build system and its +[external dependencies](https://docs.bazel.build/versions/master/external.html) +feature, updating the +[`http_archive`](https://docs.bazel.build/versions/master/repo/http.html#http_archive) +rule in your +[`WORKSPACE`](https://docs.bazel.build/versions/master/be/workspace.html) for +`com_google_abseil` to point to the [latest commit in the `master` branch of +Abseil](https://github.com/abseil/abseil-cpp/commits/master) is all you need to +do. For example, on February 11, 2020, the latest commit to the master branch +was `98eb410c93ad059f9bba1bf43f5bb916fc92a5ea`. To update to this commit, you +would add the following snippet to your `WORKSPACE` file: + +``` +http_archive( + name = "com_google_absl", + urls = ["https://github.com/abseil/abseil-cpp/archive/98eb410c93ad059f9bba1bf43f5bb916fc92a5ea.zip"], # 2020-02-11T18:50:53Z + strip_prefix = "abseil-cpp-98eb410c93ad059f9bba1bf43f5bb916fc92a5ea", + sha256 = "aabf6c57e3834f8dc3873a927f37eaf69975d4b28117fc7427dfb1c661542a87", +) +``` + +To get the `sha256` of this URL, run `curl -sL --output - +https://github.com/abseil/abseil-cpp/archive/98eb410c93ad059f9bba1bf43f5bb916fc92a5ea.zip +| sha256sum -`. + +You can commit the updated `WORKSPACE` file to your source control every time +you update, and if you have good automated testing, you might even consider +automating this. + +One thing we don't recommend is using GitHub's `master.zip` files (for example +[https://github.com/abseil/abseil-cpp/archive/master.zip](https://github.com/abseil/abseil-cpp/archive/master.zip)), +which are always the latest commit in the `master` branch, to implement live at +head. Since these `master.zip` URLs are not versioned, you will lose build +reproducibility. In addition, some build systems, including Bazel, will simply +cache this file, which means you won't actually be updating to the latest +release until your cache is cleared or invalidated. diff --git a/weight/_dep/abseil-cpp/MODULE.bazel b/weight/_dep/abseil-cpp/MODULE.bazel new file mode 100644 index 0000000000000000000000000000000000000000..9d60905a302404d60909412dfb832263da9e7942 --- /dev/null +++ b/weight/_dep/abseil-cpp/MODULE.bazel @@ -0,0 +1,39 @@ +# Copyright 2024 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +# https://bazel.build/external/overview#bzlmod + +module( + name = "abseil-cpp", + version = "20240116.2", + compatibility_level = 1, +) + +# Only direct dependencies need to be listed below. +# Please keep the versions in sync with the versions in the WORKSPACE file. + +bazel_dep(name = "bazel_skylib", + version = "1.5.0") + +bazel_dep(name = "google_benchmark", + version = "1.8.3", + repo_name = "com_github_google_benchmark", + dev_dependency = True) + +bazel_dep(name = "googletest", + version = "1.14.0.bcr.1", + repo_name = "com_google_googletest") + +bazel_dep(name = "platforms", + version = "0.0.8") diff --git a/weight/_dep/abseil-cpp/PrivacyInfo.xcprivacy b/weight/_dep/abseil-cpp/PrivacyInfo.xcprivacy new file mode 100644 index 0000000000000000000000000000000000000000..6af16412a006d0250437af6c04c85c9e174b7ae0 --- /dev/null +++ b/weight/_dep/abseil-cpp/PrivacyInfo.xcprivacy @@ -0,0 +1,14 @@ + + + + + NSPrivacyTracking + + NSPrivacyCollectedDataTypes + + NSPrivacyTrackingDomains + + NSPrivacyAccessedAPITypes + + + diff --git a/weight/_dep/abseil-cpp/UPGRADES.md b/weight/_dep/abseil-cpp/UPGRADES.md new file mode 100644 index 0000000000000000000000000000000000000000..3cac141d0f4fdf6bfa67cbe0cc6109285f01b0ec --- /dev/null +++ b/weight/_dep/abseil-cpp/UPGRADES.md @@ -0,0 +1,17 @@ +# C++ Upgrade Tools + +Abseil may occasionally release API-breaking changes. As noted in our +[Compatibility Guidelines][compatibility-guide], we will aim to provide a tool +to do the work of effecting such API-breaking changes, when absolutely +necessary. + +These tools will be listed on the [C++ Upgrade Tools][upgrade-tools] guide on +https://abseil.io. + +For more information, the [C++ Automated Upgrade Guide][api-upgrades-guide] +outlines this process. + +[compatibility-guide]: https://abseil.io/about/compatibility +[api-upgrades-guide]: https://abseil.io/docs/cpp/tools/api-upgrades +[upgrade-tools]: https://abseil.io/docs/cpp/tools/upgrades/ + diff --git a/weight/_dep/abseil-cpp/WORKSPACE b/weight/_dep/abseil-cpp/WORKSPACE new file mode 100644 index 0000000000000000000000000000000000000000..0d8860914d03d3ff545bf2b2608e9bb12d013969 --- /dev/null +++ b/weight/_dep/abseil-cpp/WORKSPACE @@ -0,0 +1,59 @@ +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. +# + +workspace(name = "com_google_absl") + +load("@bazel_tools//tools/build_defs/repo:http.bzl", "http_archive") + +# GoogleTest/GoogleMock framework. Used by most unit-tests. +http_archive( + name = "com_google_googletest", + sha256 = "8ad598c73ad796e0d8280b082cebd82a630d73e73cd3c70057938a6501bba5d7", + strip_prefix = "googletest-1.14.0", + # Keep this URL in sync with ABSL_GOOGLETEST_COMMIT in ci/cmake_common.sh and + # ci/windows_msvc_cmake.bat. + urls = ["https://github.com/google/googletest/archive/refs/tags/v1.14.0.tar.gz"], +) + +# RE2 (the regular expression library used by GoogleTest) +http_archive( + name = "com_googlesource_code_re2", + sha256 = "828341ad08524618a626167bd320b0c2acc97bd1c28eff693a9ea33a7ed2a85f", + strip_prefix = "re2-2023-11-01", + urls = ["https://github.com/google/re2/releases/download/2023-11-01/re2-2023-11-01.zip"], +) + +# Google benchmark. +http_archive( + name = "com_github_google_benchmark", + sha256 = "6bc180a57d23d4d9515519f92b0c83d61b05b5bab188961f36ac7b06b0d9e9ce", + strip_prefix = "benchmark-1.8.3", + urls = ["https://github.com/google/benchmark/archive/refs/tags/v1.8.3.tar.gz"], +) + +# Bazel Skylib. +http_archive( + name = "bazel_skylib", + sha256 = "cd55a062e763b9349921f0f5db8c3933288dc8ba4f76dd9416aac68acee3cb94", + urls = ["https://github.com/bazelbuild/bazel-skylib/releases/download/1.5.0/bazel-skylib-1.5.0.tar.gz"], +) + +# Bazel platform rules. +http_archive( + name = "platforms", + sha256 = "8150406605389ececb6da07cbcb509d5637a3ab9a24bc69b1101531367d89d74", + urls = ["https://github.com/bazelbuild/platforms/releases/download/0.0.8/platforms-0.0.8.tar.gz"], +) diff --git a/weight/_dep/abseil-cpp/absl/BUILD.bazel b/weight/_dep/abseil-cpp/absl/BUILD.bazel new file mode 100644 index 0000000000000000000000000000000000000000..14c30b38cd78198cd2527b0e6d49f82d0b52ec1d --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/BUILD.bazel @@ -0,0 +1,162 @@ +# +# Copyright 2017 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. +# + +load("@bazel_skylib//lib:selects.bzl", "selects") + +package(default_visibility = ["//visibility:public"]) + +licenses(["notice"]) + +config_setting( + name = "clang_compiler", + flag_values = { + "@bazel_tools//tools/cpp:compiler": "clang", + }, + visibility = [":__subpackages__"], +) + +config_setting( + name = "gcc_compiler", + flag_values = { + "@bazel_tools//tools/cpp:compiler": "gcc", + }, + visibility = [":__subpackages__"], +) + +config_setting( + name = "mingw_unspecified_compiler", + flag_values = { + "@bazel_tools//tools/cpp:compiler": "mingw", + }, + visibility = [":__subpackages__"], +) + +config_setting( + name = "mingw-gcc_compiler", + flag_values = { + "@bazel_tools//tools/cpp:compiler": "mingw-gcc", + }, + visibility = [":__subpackages__"], +) + +config_setting( + name = "msvc_compiler", + flag_values = { + "@bazel_tools//tools/cpp:compiler": "msvc-cl", + }, + visibility = [":__subpackages__"], +) + +config_setting( + name = "clang-cl_compiler", + flag_values = { + "@bazel_tools//tools/cpp:compiler": "clang-cl", + }, + visibility = [":__subpackages__"], +) + +# x64_windows-clang-cl - used for selecting clang-cl for CI builds +platform( + name = "x64_windows-clang-cl", + constraint_values = [ + "@platforms//cpu:x86_64", + "@platforms//os:windows", + "@bazel_tools//tools/cpp:clang-cl", + ], + visibility = [":__subpackages__"], +) + +config_setting( + name = "osx", + constraint_values = [ + "@platforms//os:osx", + ], +) + +config_setting( + name = "ios", + constraint_values = [ + "@platforms//os:ios", + ], +) + +config_setting( + name = "ppc", + values = { + "cpu": "ppc", + }, + visibility = [":__subpackages__"], +) + +config_setting( + name = "cpu_wasm", + values = { + "cpu": "wasm", + }, + visibility = [":__subpackages__"], +) + +config_setting( + name = "cpu_wasm32", + values = { + "cpu": "wasm32", + }, + visibility = [":__subpackages__"], +) + +config_setting( + name = "platforms_wasm32", + constraint_values = [ + "@platforms//cpu:wasm32", + ], + visibility = [":__subpackages__"], +) + +config_setting( + name = "platforms_wasm64", + constraint_values = [ + "@platforms//cpu:wasm64", + ], + visibility = [":__subpackages__"], +) + +selects.config_setting_group( + name = "wasm", + match_any = [ + ":cpu_wasm", + ":cpu_wasm32", + ":platforms_wasm32", + ":platforms_wasm64", + ], + visibility = [":__subpackages__"], +) + +config_setting( + name = "fuchsia", + values = { + "cpu": "fuchsia", + }, + visibility = [":__subpackages__"], +) + +selects.config_setting_group( + name = "mingw_compiler", + match_any = [ + ":mingw_unspecified_compiler", + ":mingw-gcc_compiler", + ], + visibility = [":__subpackages__"], +) diff --git a/weight/_dep/abseil-cpp/absl/CMakeLists.txt b/weight/_dep/abseil-cpp/absl/CMakeLists.txt new file mode 100644 index 0000000000000000000000000000000000000000..3a7c12fe99c93114cebeb5a33df321848b46ff61 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/CMakeLists.txt @@ -0,0 +1,44 @@ +# +# Copyright 2017 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. +# + +add_subdirectory(base) +add_subdirectory(algorithm) +add_subdirectory(cleanup) +add_subdirectory(container) +add_subdirectory(crc) +add_subdirectory(debugging) +add_subdirectory(flags) +add_subdirectory(functional) +add_subdirectory(hash) +add_subdirectory(log) +add_subdirectory(memory) +add_subdirectory(meta) +add_subdirectory(numeric) +add_subdirectory(profiling) +add_subdirectory(random) +add_subdirectory(status) +add_subdirectory(strings) +add_subdirectory(synchronization) +add_subdirectory(time) +add_subdirectory(types) +add_subdirectory(utility) + +if (${ABSL_BUILD_DLL}) + absl_make_dll() + if (${ABSL_BUILD_TEST_HELPERS}) + absl_make_dll(TEST ON) + endif() +endif() diff --git a/weight/_dep/abseil-cpp/absl/algorithm/BUILD.bazel b/weight/_dep/abseil-cpp/absl/algorithm/BUILD.bazel new file mode 100644 index 0000000000000000000000000000000000000000..ddf9e11f42a21bafaddf6e0323642bf902780438 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/algorithm/BUILD.bazel @@ -0,0 +1,88 @@ +# +# Copyright 2017 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. +# + +load( + "//absl:copts/configure_copts.bzl", + "ABSL_DEFAULT_COPTS", + "ABSL_DEFAULT_LINKOPTS", + "ABSL_TEST_COPTS", +) + +package( + default_visibility = ["//visibility:public"], + features = [ + "header_modules", + "layering_check", + "parse_headers", + ], +) + +licenses(["notice"]) + +cc_library( + name = "algorithm", + hdrs = ["algorithm.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + "//absl/base:config", + ], +) + +cc_test( + name = "algorithm_test", + size = "small", + srcs = ["algorithm_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":algorithm", + "//absl/base:config", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "container", + hdrs = [ + "container.h", + ], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":algorithm", + "//absl/base:core_headers", + "//absl/base:nullability", + "//absl/meta:type_traits", + ], +) + +cc_test( + name = "container_test", + srcs = ["container_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":container", + "//absl/base", + "//absl/base:core_headers", + "//absl/memory", + "//absl/types:span", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) diff --git a/weight/_dep/abseil-cpp/absl/algorithm/CMakeLists.txt b/weight/_dep/abseil-cpp/absl/algorithm/CMakeLists.txt new file mode 100644 index 0000000000000000000000000000000000000000..5577164dcb6f003af756a819ace1946afcf06a31 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/algorithm/CMakeLists.txt @@ -0,0 +1,71 @@ +# +# Copyright 2017 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. +# + +absl_cc_library( + NAME + algorithm + HDRS + "algorithm.h" + COPTS + ${ABSL_DEFAULT_COPTS} + DEPS + absl::config + PUBLIC +) + +absl_cc_test( + NAME + algorithm_test + SRCS + "algorithm_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::algorithm + absl::config + GTest::gmock_main +) + +absl_cc_library( + NAME + algorithm_container + HDRS + "container.h" + COPTS + ${ABSL_DEFAULT_COPTS} + DEPS + absl::algorithm + absl::core_headers + absl::meta + absl::nullability + PUBLIC +) + +absl_cc_test( + NAME + container_test + SRCS + "container_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::algorithm_container + absl::base + absl::core_headers + absl::memory + absl::span + GTest::gmock_main +) diff --git a/weight/_dep/abseil-cpp/absl/algorithm/container.h b/weight/_dep/abseil-cpp/absl/algorithm/container.h new file mode 100644 index 0000000000000000000000000000000000000000..c7bafae1477cf2bb88928b92d0248cb8a146814c --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/algorithm/container.h @@ -0,0 +1,1760 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// ----------------------------------------------------------------------------- +// File: container.h +// ----------------------------------------------------------------------------- +// +// This header file provides Container-based versions of algorithmic functions +// within the C++ standard library. The following standard library sets of +// functions are covered within this file: +// +// * Algorithmic functions +// * Algorithmic functions +// * functions +// +// The standard library functions operate on iterator ranges; the functions +// within this API operate on containers, though many return iterator ranges. +// +// All functions within this API are named with a `c_` prefix. Calls such as +// `absl::c_xx(container, ...) are equivalent to std:: functions such as +// `std::xx(std::begin(cont), std::end(cont), ...)`. Functions that act on +// iterators but not conceptually on iterator ranges (e.g. `std::iter_swap`) +// have no equivalent here. +// +// For template parameter and variable naming, `C` indicates the container type +// to which the function is applied, `Pred` indicates the predicate object type +// to be used by the function and `T` indicates the applicable element type. + +#ifndef ABSL_ALGORITHM_CONTAINER_H_ +#define ABSL_ALGORITHM_CONTAINER_H_ + +#include +#include +#include +#include +#include +#include +#include +#include +#include + +#include "absl/algorithm/algorithm.h" +#include "absl/base/macros.h" +#include "absl/base/nullability.h" +#include "absl/meta/type_traits.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace container_algorithm_internal { + +// NOTE: it is important to defer to ADL lookup for building with C++ modules, +// especially for headers like which are not visible from this file +// but specialize std::begin and std::end. +using std::begin; +using std::end; + +// The type of the iterator given by begin(c) (possibly std::begin(c)). +// ContainerIter> gives vector::const_iterator, +// while ContainerIter> gives vector::iterator. +template +using ContainerIter = decltype(begin(std::declval())); + +// An MSVC bug involving template parameter substitution requires us to use +// decltype() here instead of just std::pair. +template +using ContainerIterPairType = + decltype(std::make_pair(ContainerIter(), ContainerIter())); + +template +using ContainerDifferenceType = decltype(std::distance( + std::declval>(), std::declval>())); + +template +using ContainerPointerType = + typename std::iterator_traits>::pointer; + +// container_algorithm_internal::c_begin and +// container_algorithm_internal::c_end are abbreviations for proper ADL +// lookup of std::begin and std::end, i.e. +// using std::begin; +// using std::end; +// std::foo(begin(c), end(c)); +// becomes +// std::foo(container_algorithm_internal::begin(c), +// container_algorithm_internal::end(c)); +// These are meant for internal use only. + +template +ContainerIter c_begin(C& c) { + return begin(c); +} + +template +ContainerIter c_end(C& c) { + return end(c); +} + +template +struct IsUnorderedContainer : std::false_type {}; + +template +struct IsUnorderedContainer< + std::unordered_map> : std::true_type {}; + +template +struct IsUnorderedContainer> + : std::true_type {}; + +} // namespace container_algorithm_internal + +// PUBLIC API + +//------------------------------------------------------------------------------ +// Abseil algorithm.h functions +//------------------------------------------------------------------------------ + +// c_linear_search() +// +// Container-based version of absl::linear_search() for performing a linear +// search within a container. +template +bool c_linear_search(const C& c, EqualityComparable&& value) { + return linear_search(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(value)); +} + +//------------------------------------------------------------------------------ +// algorithms +//------------------------------------------------------------------------------ + +// c_distance() +// +// Container-based version of the `std::distance()` function to +// return the number of elements within a container. +template +container_algorithm_internal::ContainerDifferenceType c_distance( + const C& c) { + return std::distance(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c)); +} + +//------------------------------------------------------------------------------ +// Non-modifying sequence operations +//------------------------------------------------------------------------------ + +// c_all_of() +// +// Container-based version of the `std::all_of()` function to +// test if all elements within a container satisfy a condition. +template +bool c_all_of(const C& c, Pred&& pred) { + return std::all_of(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(pred)); +} + +// c_any_of() +// +// Container-based version of the `std::any_of()` function to +// test if any element in a container fulfills a condition. +template +bool c_any_of(const C& c, Pred&& pred) { + return std::any_of(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(pred)); +} + +// c_none_of() +// +// Container-based version of the `std::none_of()` function to +// test if no elements in a container fulfill a condition. +template +bool c_none_of(const C& c, Pred&& pred) { + return std::none_of(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(pred)); +} + +// c_for_each() +// +// Container-based version of the `std::for_each()` function to +// apply a function to a container's elements. +template +decay_t c_for_each(C&& c, Function&& f) { + return std::for_each(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(f)); +} + +// c_find() +// +// Container-based version of the `std::find()` function to find +// the first element containing the passed value within a container value. +template +container_algorithm_internal::ContainerIter c_find(C& c, T&& value) { + return std::find(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(value)); +} + +// c_find_if() +// +// Container-based version of the `std::find_if()` function to find +// the first element in a container matching the given condition. +template +container_algorithm_internal::ContainerIter c_find_if(C& c, Pred&& pred) { + return std::find_if(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(pred)); +} + +// c_find_if_not() +// +// Container-based version of the `std::find_if_not()` function to +// find the first element in a container not matching the given condition. +template +container_algorithm_internal::ContainerIter c_find_if_not(C& c, + Pred&& pred) { + return std::find_if_not(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(pred)); +} + +// c_find_end() +// +// Container-based version of the `std::find_end()` function to +// find the last subsequence within a container. +template +container_algorithm_internal::ContainerIter c_find_end( + Sequence1& sequence, Sequence2& subsequence) { + return std::find_end(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + container_algorithm_internal::c_begin(subsequence), + container_algorithm_internal::c_end(subsequence)); +} + +// Overload of c_find_end() for using a predicate evaluation other than `==` as +// the function's test condition. +template +container_algorithm_internal::ContainerIter c_find_end( + Sequence1& sequence, Sequence2& subsequence, BinaryPredicate&& pred) { + return std::find_end(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + container_algorithm_internal::c_begin(subsequence), + container_algorithm_internal::c_end(subsequence), + std::forward(pred)); +} + +// c_find_first_of() +// +// Container-based version of the `std::find_first_of()` function to +// find the first element within the container that is also within the options +// container. +template +container_algorithm_internal::ContainerIter c_find_first_of(C1& container, + C2& options) { + return std::find_first_of(container_algorithm_internal::c_begin(container), + container_algorithm_internal::c_end(container), + container_algorithm_internal::c_begin(options), + container_algorithm_internal::c_end(options)); +} + +// Overload of c_find_first_of() for using a predicate evaluation other than +// `==` as the function's test condition. +template +container_algorithm_internal::ContainerIter c_find_first_of( + C1& container, C2& options, BinaryPredicate&& pred) { + return std::find_first_of(container_algorithm_internal::c_begin(container), + container_algorithm_internal::c_end(container), + container_algorithm_internal::c_begin(options), + container_algorithm_internal::c_end(options), + std::forward(pred)); +} + +// c_adjacent_find() +// +// Container-based version of the `std::adjacent_find()` function to +// find equal adjacent elements within a container. +template +container_algorithm_internal::ContainerIter c_adjacent_find( + Sequence& sequence) { + return std::adjacent_find(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence)); +} + +// Overload of c_adjacent_find() for using a predicate evaluation other than +// `==` as the function's test condition. +template +container_algorithm_internal::ContainerIter c_adjacent_find( + Sequence& sequence, BinaryPredicate&& pred) { + return std::adjacent_find(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + std::forward(pred)); +} + +// c_count() +// +// Container-based version of the `std::count()` function to count +// values that match within a container. +template +container_algorithm_internal::ContainerDifferenceType c_count( + const C& c, T&& value) { + return std::count(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(value)); +} + +// c_count_if() +// +// Container-based version of the `std::count_if()` function to +// count values matching a condition within a container. +template +container_algorithm_internal::ContainerDifferenceType c_count_if( + const C& c, Pred&& pred) { + return std::count_if(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(pred)); +} + +// c_mismatch() +// +// Container-based version of the `std::mismatch()` function to +// return the first element where two ordered containers differ. Applies `==` to +// the first N elements of `c1` and `c2`, where N = min(size(c1), size(c2)). +template +container_algorithm_internal::ContainerIterPairType c_mismatch(C1& c1, + C2& c2) { + return std::mismatch(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2)); +} + +// Overload of c_mismatch() for using a predicate evaluation other than `==` as +// the function's test condition. Applies `pred`to the first N elements of `c1` +// and `c2`, where N = min(size(c1), size(c2)). +template +container_algorithm_internal::ContainerIterPairType c_mismatch( + C1& c1, C2& c2, BinaryPredicate pred) { + return std::mismatch(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), pred); +} + +// c_equal() +// +// Container-based version of the `std::equal()` function to +// test whether two containers are equal. +template +bool c_equal(const C1& c1, const C2& c2) { + return std::equal(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2)); +} + +// Overload of c_equal() for using a predicate evaluation other than `==` as +// the function's test condition. +template +bool c_equal(const C1& c1, const C2& c2, BinaryPredicate&& pred) { + return std::equal(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), + std::forward(pred)); +} + +// c_is_permutation() +// +// Container-based version of the `std::is_permutation()` function +// to test whether a container is a permutation of another. +template +bool c_is_permutation(const C1& c1, const C2& c2) { + return std::is_permutation(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2)); +} + +// Overload of c_is_permutation() for using a predicate evaluation other than +// `==` as the function's test condition. +template +bool c_is_permutation(const C1& c1, const C2& c2, BinaryPredicate&& pred) { + return std::is_permutation(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), + std::forward(pred)); +} + +// c_search() +// +// Container-based version of the `std::search()` function to search +// a container for a subsequence. +template +container_algorithm_internal::ContainerIter c_search( + Sequence1& sequence, Sequence2& subsequence) { + return std::search(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + container_algorithm_internal::c_begin(subsequence), + container_algorithm_internal::c_end(subsequence)); +} + +// Overload of c_search() for using a predicate evaluation other than +// `==` as the function's test condition. +template +container_algorithm_internal::ContainerIter c_search( + Sequence1& sequence, Sequence2& subsequence, BinaryPredicate&& pred) { + return std::search(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + container_algorithm_internal::c_begin(subsequence), + container_algorithm_internal::c_end(subsequence), + std::forward(pred)); +} + +// c_search_n() +// +// Container-based version of the `std::search_n()` function to +// search a container for the first sequence of N elements. +template +container_algorithm_internal::ContainerIter c_search_n( + Sequence& sequence, Size count, T&& value) { + return std::search_n(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), count, + std::forward(value)); +} + +// Overload of c_search_n() for using a predicate evaluation other than +// `==` as the function's test condition. +template +container_algorithm_internal::ContainerIter c_search_n( + Sequence& sequence, Size count, T&& value, BinaryPredicate&& pred) { + return std::search_n(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), count, + std::forward(value), + std::forward(pred)); +} + +//------------------------------------------------------------------------------ +// Modifying sequence operations +//------------------------------------------------------------------------------ + +// c_copy() +// +// Container-based version of the `std::copy()` function to copy a +// container's elements into an iterator. +template +OutputIterator c_copy(const InputSequence& input, OutputIterator output) { + return std::copy(container_algorithm_internal::c_begin(input), + container_algorithm_internal::c_end(input), output); +} + +// c_copy_n() +// +// Container-based version of the `std::copy_n()` function to copy a +// container's first N elements into an iterator. +template +OutputIterator c_copy_n(const C& input, Size n, OutputIterator output) { + return std::copy_n(container_algorithm_internal::c_begin(input), n, output); +} + +// c_copy_if() +// +// Container-based version of the `std::copy_if()` function to copy +// a container's elements satisfying some condition into an iterator. +template +OutputIterator c_copy_if(const InputSequence& input, OutputIterator output, + Pred&& pred) { + return std::copy_if(container_algorithm_internal::c_begin(input), + container_algorithm_internal::c_end(input), output, + std::forward(pred)); +} + +// c_copy_backward() +// +// Container-based version of the `std::copy_backward()` function to +// copy a container's elements in reverse order into an iterator. +template +BidirectionalIterator c_copy_backward(const C& src, + BidirectionalIterator dest) { + return std::copy_backward(container_algorithm_internal::c_begin(src), + container_algorithm_internal::c_end(src), dest); +} + +// c_move() +// +// Container-based version of the `std::move()` function to move +// a container's elements into an iterator. +template +OutputIterator c_move(C&& src, OutputIterator dest) { + return std::move(container_algorithm_internal::c_begin(src), + container_algorithm_internal::c_end(src), dest); +} + +// c_move_backward() +// +// Container-based version of the `std::move_backward()` function to +// move a container's elements into an iterator in reverse order. +template +BidirectionalIterator c_move_backward(C&& src, BidirectionalIterator dest) { + return std::move_backward(container_algorithm_internal::c_begin(src), + container_algorithm_internal::c_end(src), dest); +} + +// c_swap_ranges() +// +// Container-based version of the `std::swap_ranges()` function to +// swap a container's elements with another container's elements. Swaps the +// first N elements of `c1` and `c2`, where N = min(size(c1), size(c2)). +template +container_algorithm_internal::ContainerIter c_swap_ranges(C1& c1, C2& c2) { + auto first1 = container_algorithm_internal::c_begin(c1); + auto last1 = container_algorithm_internal::c_end(c1); + auto first2 = container_algorithm_internal::c_begin(c2); + auto last2 = container_algorithm_internal::c_end(c2); + + using std::swap; + for (; first1 != last1 && first2 != last2; ++first1, (void)++first2) { + swap(*first1, *first2); + } + return first2; +} + +// c_transform() +// +// Container-based version of the `std::transform()` function to +// transform a container's elements using the unary operation, storing the +// result in an iterator pointing to the last transformed element in the output +// range. +template +OutputIterator c_transform(const InputSequence& input, OutputIterator output, + UnaryOp&& unary_op) { + return std::transform(container_algorithm_internal::c_begin(input), + container_algorithm_internal::c_end(input), output, + std::forward(unary_op)); +} + +// Overload of c_transform() for performing a transformation using a binary +// predicate. Applies `binary_op` to the first N elements of `c1` and `c2`, +// where N = min(size(c1), size(c2)). +template +OutputIterator c_transform(const InputSequence1& input1, + const InputSequence2& input2, OutputIterator output, + BinaryOp&& binary_op) { + auto first1 = container_algorithm_internal::c_begin(input1); + auto last1 = container_algorithm_internal::c_end(input1); + auto first2 = container_algorithm_internal::c_begin(input2); + auto last2 = container_algorithm_internal::c_end(input2); + for (; first1 != last1 && first2 != last2; + ++first1, (void)++first2, ++output) { + *output = binary_op(*first1, *first2); + } + + return output; +} + +// c_replace() +// +// Container-based version of the `std::replace()` function to +// replace a container's elements of some value with a new value. The container +// is modified in place. +template +void c_replace(Sequence& sequence, const T& old_value, const T& new_value) { + std::replace(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), old_value, + new_value); +} + +// c_replace_if() +// +// Container-based version of the `std::replace_if()` function to +// replace a container's elements of some value with a new value based on some +// condition. The container is modified in place. +template +void c_replace_if(C& c, Pred&& pred, T&& new_value) { + std::replace_if(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(pred), std::forward(new_value)); +} + +// c_replace_copy() +// +// Container-based version of the `std::replace_copy()` function to +// replace a container's elements of some value with a new value and return the +// results within an iterator. +template +OutputIterator c_replace_copy(const C& c, OutputIterator result, T&& old_value, + T&& new_value) { + return std::replace_copy(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), result, + std::forward(old_value), + std::forward(new_value)); +} + +// c_replace_copy_if() +// +// Container-based version of the `std::replace_copy_if()` function +// to replace a container's elements of some value with a new value based on +// some condition, and return the results within an iterator. +template +OutputIterator c_replace_copy_if(const C& c, OutputIterator result, Pred&& pred, + const T& new_value) { + return std::replace_copy_if(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), result, + std::forward(pred), new_value); +} + +// c_fill() +// +// Container-based version of the `std::fill()` function to fill a +// container with some value. +template +void c_fill(C& c, const T& value) { + std::fill(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), value); +} + +// c_fill_n() +// +// Container-based version of the `std::fill_n()` function to fill +// the first N elements in a container with some value. +template +void c_fill_n(C& c, Size n, const T& value) { + std::fill_n(container_algorithm_internal::c_begin(c), n, value); +} + +// c_generate() +// +// Container-based version of the `std::generate()` function to +// assign a container's elements to the values provided by the given generator. +template +void c_generate(C& c, Generator&& gen) { + std::generate(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(gen)); +} + +// c_generate_n() +// +// Container-based version of the `std::generate_n()` function to +// assign a container's first N elements to the values provided by the given +// generator. +template +container_algorithm_internal::ContainerIter c_generate_n(C& c, Size n, + Generator&& gen) { + return std::generate_n(container_algorithm_internal::c_begin(c), n, + std::forward(gen)); +} + +// Note: `c_xx()` container versions for `remove()`, `remove_if()`, +// and `unique()` are omitted, because it's not clear whether or not such +// functions should call erase on their supplied sequences afterwards. Either +// behavior would be surprising for a different set of users. + +// c_remove_copy() +// +// Container-based version of the `std::remove_copy()` function to +// copy a container's elements while removing any elements matching the given +// `value`. +template +OutputIterator c_remove_copy(const C& c, OutputIterator result, + const T& value) { + return std::remove_copy(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), result, + value); +} + +// c_remove_copy_if() +// +// Container-based version of the `std::remove_copy_if()` function +// to copy a container's elements while removing any elements matching the given +// condition. +template +OutputIterator c_remove_copy_if(const C& c, OutputIterator result, + Pred&& pred) { + return std::remove_copy_if(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), result, + std::forward(pred)); +} + +// c_unique_copy() +// +// Container-based version of the `std::unique_copy()` function to +// copy a container's elements while removing any elements containing duplicate +// values. +template +OutputIterator c_unique_copy(const C& c, OutputIterator result) { + return std::unique_copy(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), result); +} + +// Overload of c_unique_copy() for using a predicate evaluation other than +// `==` for comparing uniqueness of the element values. +template +OutputIterator c_unique_copy(const C& c, OutputIterator result, + BinaryPredicate&& pred) { + return std::unique_copy(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), result, + std::forward(pred)); +} + +// c_reverse() +// +// Container-based version of the `std::reverse()` function to +// reverse a container's elements. +template +void c_reverse(Sequence& sequence) { + std::reverse(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence)); +} + +// c_reverse_copy() +// +// Container-based version of the `std::reverse()` function to +// reverse a container's elements and write them to an iterator range. +template +OutputIterator c_reverse_copy(const C& sequence, OutputIterator result) { + return std::reverse_copy(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + result); +} + +// c_rotate() +// +// Container-based version of the `std::rotate()` function to +// shift a container's elements leftward such that the `middle` element becomes +// the first element in the container. +template > +Iterator c_rotate(C& sequence, Iterator middle) { + return absl::rotate(container_algorithm_internal::c_begin(sequence), middle, + container_algorithm_internal::c_end(sequence)); +} + +// c_rotate_copy() +// +// Container-based version of the `std::rotate_copy()` function to +// shift a container's elements leftward such that the `middle` element becomes +// the first element in a new iterator range. +template +OutputIterator c_rotate_copy( + const C& sequence, + container_algorithm_internal::ContainerIter middle, + OutputIterator result) { + return std::rotate_copy(container_algorithm_internal::c_begin(sequence), + middle, container_algorithm_internal::c_end(sequence), + result); +} + +// c_shuffle() +// +// Container-based version of the `std::shuffle()` function to +// randomly shuffle elements within the container using a `gen()` uniform random +// number generator. +template +void c_shuffle(RandomAccessContainer& c, UniformRandomBitGenerator&& gen) { + std::shuffle(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(gen)); +} + +// c_sample() +// +// Container-based version of the `std::sample()` function to +// randomly sample elements from the container without replacement using a +// `gen()` uniform random number generator and write them to an iterator range. +template +OutputIterator c_sample(const C& c, OutputIterator result, Distance n, + UniformRandomBitGenerator&& gen) { +#if defined(__cpp_lib_sample) && __cpp_lib_sample >= 201603L + return std::sample(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), result, n, + std::forward(gen)); +#else + // Fall back to a stable selection-sampling implementation. + auto first = container_algorithm_internal::c_begin(c); + Distance unsampled_elements = c_distance(c); + n = (std::min)(n, unsampled_elements); + for (; n != 0; ++first) { + Distance r = + std::uniform_int_distribution(0, --unsampled_elements)(gen); + if (r < n) { + *result++ = *first; + --n; + } + } + return result; +#endif +} + +//------------------------------------------------------------------------------ +// Partition functions +//------------------------------------------------------------------------------ + +// c_is_partitioned() +// +// Container-based version of the `std::is_partitioned()` function +// to test whether all elements in the container for which `pred` returns `true` +// precede those for which `pred` is `false`. +template +bool c_is_partitioned(const C& c, Pred&& pred) { + return std::is_partitioned(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(pred)); +} + +// c_partition() +// +// Container-based version of the `std::partition()` function +// to rearrange all elements in a container in such a way that all elements for +// which `pred` returns `true` precede all those for which it returns `false`, +// returning an iterator to the first element of the second group. +template +container_algorithm_internal::ContainerIter c_partition(C& c, Pred&& pred) { + return std::partition(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(pred)); +} + +// c_stable_partition() +// +// Container-based version of the `std::stable_partition()` function +// to rearrange all elements in a container in such a way that all elements for +// which `pred` returns `true` precede all those for which it returns `false`, +// preserving the relative ordering between the two groups. The function returns +// an iterator to the first element of the second group. +template +container_algorithm_internal::ContainerIter c_stable_partition(C& c, + Pred&& pred) { + return std::stable_partition(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(pred)); +} + +// c_partition_copy() +// +// Container-based version of the `std::partition_copy()` function +// to partition a container's elements and return them into two iterators: one +// for which `pred` returns `true`, and one for which `pred` returns `false.` + +template +std::pair c_partition_copy( + const C& c, OutputIterator1 out_true, OutputIterator2 out_false, + Pred&& pred) { + return std::partition_copy(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), out_true, + out_false, std::forward(pred)); +} + +// c_partition_point() +// +// Container-based version of the `std::partition_point()` function +// to return the first element of an already partitioned container for which +// the given `pred` is not `true`. +template +container_algorithm_internal::ContainerIter c_partition_point(C& c, + Pred&& pred) { + return std::partition_point(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(pred)); +} + +//------------------------------------------------------------------------------ +// Sorting functions +//------------------------------------------------------------------------------ + +// c_sort() +// +// Container-based version of the `std::sort()` function +// to sort elements in ascending order of their values. +template +void c_sort(C& c) { + std::sort(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c)); +} + +// Overload of c_sort() for performing a `comp` comparison other than the +// default `operator<`. +template +void c_sort(C& c, LessThan&& comp) { + std::sort(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(comp)); +} + +// c_stable_sort() +// +// Container-based version of the `std::stable_sort()` function +// to sort elements in ascending order of their values, preserving the order +// of equivalents. +template +void c_stable_sort(C& c) { + std::stable_sort(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c)); +} + +// Overload of c_stable_sort() for performing a `comp` comparison other than the +// default `operator<`. +template +void c_stable_sort(C& c, LessThan&& comp) { + std::stable_sort(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(comp)); +} + +// c_is_sorted() +// +// Container-based version of the `std::is_sorted()` function +// to evaluate whether the given container is sorted in ascending order. +template +bool c_is_sorted(const C& c) { + return std::is_sorted(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c)); +} + +// c_is_sorted() overload for performing a `comp` comparison other than the +// default `operator<`. +template +bool c_is_sorted(const C& c, LessThan&& comp) { + return std::is_sorted(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(comp)); +} + +// c_partial_sort() +// +// Container-based version of the `std::partial_sort()` function +// to rearrange elements within a container such that elements before `middle` +// are sorted in ascending order. +template +void c_partial_sort( + RandomAccessContainer& sequence, + container_algorithm_internal::ContainerIter middle) { + std::partial_sort(container_algorithm_internal::c_begin(sequence), middle, + container_algorithm_internal::c_end(sequence)); +} + +// Overload of c_partial_sort() for performing a `comp` comparison other than +// the default `operator<`. +template +void c_partial_sort( + RandomAccessContainer& sequence, + container_algorithm_internal::ContainerIter middle, + LessThan&& comp) { + std::partial_sort(container_algorithm_internal::c_begin(sequence), middle, + container_algorithm_internal::c_end(sequence), + std::forward(comp)); +} + +// c_partial_sort_copy() +// +// Container-based version of the `std::partial_sort_copy()` +// function to sort the elements in the given range `result` within the larger +// `sequence` in ascending order (and using `result` as the output parameter). +// At most min(result.last - result.first, sequence.last - sequence.first) +// elements from the sequence will be stored in the result. +template +container_algorithm_internal::ContainerIter +c_partial_sort_copy(const C& sequence, RandomAccessContainer& result) { + return std::partial_sort_copy(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + container_algorithm_internal::c_begin(result), + container_algorithm_internal::c_end(result)); +} + +// Overload of c_partial_sort_copy() for performing a `comp` comparison other +// than the default `operator<`. +template +container_algorithm_internal::ContainerIter +c_partial_sort_copy(const C& sequence, RandomAccessContainer& result, + LessThan&& comp) { + return std::partial_sort_copy(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + container_algorithm_internal::c_begin(result), + container_algorithm_internal::c_end(result), + std::forward(comp)); +} + +// c_is_sorted_until() +// +// Container-based version of the `std::is_sorted_until()` function +// to return the first element within a container that is not sorted in +// ascending order as an iterator. +template +container_algorithm_internal::ContainerIter c_is_sorted_until(C& c) { + return std::is_sorted_until(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c)); +} + +// Overload of c_is_sorted_until() for performing a `comp` comparison other than +// the default `operator<`. +template +container_algorithm_internal::ContainerIter c_is_sorted_until( + C& c, LessThan&& comp) { + return std::is_sorted_until(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(comp)); +} + +// c_nth_element() +// +// Container-based version of the `std::nth_element()` function +// to rearrange the elements within a container such that the `nth` element +// would be in that position in an ordered sequence; other elements may be in +// any order, except that all preceding `nth` will be less than that element, +// and all following `nth` will be greater than that element. +template +void c_nth_element( + RandomAccessContainer& sequence, + container_algorithm_internal::ContainerIter nth) { + std::nth_element(container_algorithm_internal::c_begin(sequence), nth, + container_algorithm_internal::c_end(sequence)); +} + +// Overload of c_nth_element() for performing a `comp` comparison other than +// the default `operator<`. +template +void c_nth_element( + RandomAccessContainer& sequence, + container_algorithm_internal::ContainerIter nth, + LessThan&& comp) { + std::nth_element(container_algorithm_internal::c_begin(sequence), nth, + container_algorithm_internal::c_end(sequence), + std::forward(comp)); +} + +//------------------------------------------------------------------------------ +// Binary Search +//------------------------------------------------------------------------------ + +// c_lower_bound() +// +// Container-based version of the `std::lower_bound()` function +// to return an iterator pointing to the first element in a sorted container +// which does not compare less than `value`. +template +container_algorithm_internal::ContainerIter c_lower_bound( + Sequence& sequence, const T& value) { + return std::lower_bound(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), value); +} + +// Overload of c_lower_bound() for performing a `comp` comparison other than +// the default `operator<`. +template +container_algorithm_internal::ContainerIter c_lower_bound( + Sequence& sequence, const T& value, LessThan&& comp) { + return std::lower_bound(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), value, + std::forward(comp)); +} + +// c_upper_bound() +// +// Container-based version of the `std::upper_bound()` function +// to return an iterator pointing to the first element in a sorted container +// which is greater than `value`. +template +container_algorithm_internal::ContainerIter c_upper_bound( + Sequence& sequence, const T& value) { + return std::upper_bound(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), value); +} + +// Overload of c_upper_bound() for performing a `comp` comparison other than +// the default `operator<`. +template +container_algorithm_internal::ContainerIter c_upper_bound( + Sequence& sequence, const T& value, LessThan&& comp) { + return std::upper_bound(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), value, + std::forward(comp)); +} + +// c_equal_range() +// +// Container-based version of the `std::equal_range()` function +// to return an iterator pair pointing to the first and last elements in a +// sorted container which compare equal to `value`. +template +container_algorithm_internal::ContainerIterPairType +c_equal_range(Sequence& sequence, const T& value) { + return std::equal_range(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), value); +} + +// Overload of c_equal_range() for performing a `comp` comparison other than +// the default `operator<`. +template +container_algorithm_internal::ContainerIterPairType +c_equal_range(Sequence& sequence, const T& value, LessThan&& comp) { + return std::equal_range(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), value, + std::forward(comp)); +} + +// c_binary_search() +// +// Container-based version of the `std::binary_search()` function +// to test if any element in the sorted container contains a value equivalent to +// 'value'. +template +bool c_binary_search(const Sequence& sequence, const T& value) { + return std::binary_search(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + value); +} + +// Overload of c_binary_search() for performing a `comp` comparison other than +// the default `operator<`. +template +bool c_binary_search(const Sequence& sequence, const T& value, + LessThan&& comp) { + return std::binary_search(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + value, std::forward(comp)); +} + +//------------------------------------------------------------------------------ +// Merge functions +//------------------------------------------------------------------------------ + +// c_merge() +// +// Container-based version of the `std::merge()` function +// to merge two sorted containers into a single sorted iterator. +template +OutputIterator c_merge(const C1& c1, const C2& c2, OutputIterator result) { + return std::merge(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), result); +} + +// Overload of c_merge() for performing a `comp` comparison other than +// the default `operator<`. +template +OutputIterator c_merge(const C1& c1, const C2& c2, OutputIterator result, + LessThan&& comp) { + return std::merge(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), result, + std::forward(comp)); +} + +// c_inplace_merge() +// +// Container-based version of the `std::inplace_merge()` function +// to merge a supplied iterator `middle` into a container. +template +void c_inplace_merge(C& c, + container_algorithm_internal::ContainerIter middle) { + std::inplace_merge(container_algorithm_internal::c_begin(c), middle, + container_algorithm_internal::c_end(c)); +} + +// Overload of c_inplace_merge() for performing a merge using a `comp` other +// than `operator<`. +template +void c_inplace_merge(C& c, + container_algorithm_internal::ContainerIter middle, + LessThan&& comp) { + std::inplace_merge(container_algorithm_internal::c_begin(c), middle, + container_algorithm_internal::c_end(c), + std::forward(comp)); +} + +// c_includes() +// +// Container-based version of the `std::includes()` function +// to test whether a sorted container `c1` entirely contains another sorted +// container `c2`. +template +bool c_includes(const C1& c1, const C2& c2) { + return std::includes(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2)); +} + +// Overload of c_includes() for performing a merge using a `comp` other than +// `operator<`. +template +bool c_includes(const C1& c1, const C2& c2, LessThan&& comp) { + return std::includes(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), + std::forward(comp)); +} + +// c_set_union() +// +// Container-based version of the `std::set_union()` function +// to return an iterator containing the union of two containers; duplicate +// values are not copied into the output. +template ::value, + void>::type, + typename = typename std::enable_if< + !container_algorithm_internal::IsUnorderedContainer::value, + void>::type> +OutputIterator c_set_union(const C1& c1, const C2& c2, OutputIterator output) { + return std::set_union(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), output); +} + +// Overload of c_set_union() for performing a merge using a `comp` other than +// `operator<`. +template ::value, + void>::type, + typename = typename std::enable_if< + !container_algorithm_internal::IsUnorderedContainer::value, + void>::type> +OutputIterator c_set_union(const C1& c1, const C2& c2, OutputIterator output, + LessThan&& comp) { + return std::set_union(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), output, + std::forward(comp)); +} + +// c_set_intersection() +// +// Container-based version of the `std::set_intersection()` function +// to return an iterator containing the intersection of two sorted containers. +template ::value, + void>::type, + typename = typename std::enable_if< + !container_algorithm_internal::IsUnorderedContainer::value, + void>::type> +OutputIterator c_set_intersection(const C1& c1, const C2& c2, + OutputIterator output) { + // In debug builds, ensure that both containers are sorted with respect to the + // default comparator. std::set_intersection requires the containers be sorted + // using operator<. + assert(absl::c_is_sorted(c1)); + assert(absl::c_is_sorted(c2)); + return std::set_intersection(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), output); +} + +// Overload of c_set_intersection() for performing a merge using a `comp` other +// than `operator<`. +template ::value, + void>::type, + typename = typename std::enable_if< + !container_algorithm_internal::IsUnorderedContainer::value, + void>::type> +OutputIterator c_set_intersection(const C1& c1, const C2& c2, + OutputIterator output, LessThan&& comp) { + // In debug builds, ensure that both containers are sorted with respect to the + // default comparator. std::set_intersection requires the containers be sorted + // using the same comparator. + assert(absl::c_is_sorted(c1, comp)); + assert(absl::c_is_sorted(c2, comp)); + return std::set_intersection(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), output, + std::forward(comp)); +} + +// c_set_difference() +// +// Container-based version of the `std::set_difference()` function +// to return an iterator containing elements present in the first container but +// not in the second. +template ::value, + void>::type, + typename = typename std::enable_if< + !container_algorithm_internal::IsUnorderedContainer::value, + void>::type> +OutputIterator c_set_difference(const C1& c1, const C2& c2, + OutputIterator output) { + return std::set_difference(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), output); +} + +// Overload of c_set_difference() for performing a merge using a `comp` other +// than `operator<`. +template ::value, + void>::type, + typename = typename std::enable_if< + !container_algorithm_internal::IsUnorderedContainer::value, + void>::type> +OutputIterator c_set_difference(const C1& c1, const C2& c2, + OutputIterator output, LessThan&& comp) { + return std::set_difference(container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), output, + std::forward(comp)); +} + +// c_set_symmetric_difference() +// +// Container-based version of the `std::set_symmetric_difference()` +// function to return an iterator containing elements present in either one +// container or the other, but not both. +template ::value, + void>::type, + typename = typename std::enable_if< + !container_algorithm_internal::IsUnorderedContainer::value, + void>::type> +OutputIterator c_set_symmetric_difference(const C1& c1, const C2& c2, + OutputIterator output) { + return std::set_symmetric_difference( + container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), output); +} + +// Overload of c_set_symmetric_difference() for performing a merge using a +// `comp` other than `operator<`. +template ::value, + void>::type, + typename = typename std::enable_if< + !container_algorithm_internal::IsUnorderedContainer::value, + void>::type> +OutputIterator c_set_symmetric_difference(const C1& c1, const C2& c2, + OutputIterator output, + LessThan&& comp) { + return std::set_symmetric_difference( + container_algorithm_internal::c_begin(c1), + container_algorithm_internal::c_end(c1), + container_algorithm_internal::c_begin(c2), + container_algorithm_internal::c_end(c2), output, + std::forward(comp)); +} + +//------------------------------------------------------------------------------ +// Heap functions +//------------------------------------------------------------------------------ + +// c_push_heap() +// +// Container-based version of the `std::push_heap()` function +// to push a value onto a container heap. +template +void c_push_heap(RandomAccessContainer& sequence) { + std::push_heap(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence)); +} + +// Overload of c_push_heap() for performing a push operation on a heap using a +// `comp` other than `operator<`. +template +void c_push_heap(RandomAccessContainer& sequence, LessThan&& comp) { + std::push_heap(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + std::forward(comp)); +} + +// c_pop_heap() +// +// Container-based version of the `std::pop_heap()` function +// to pop a value from a heap container. +template +void c_pop_heap(RandomAccessContainer& sequence) { + std::pop_heap(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence)); +} + +// Overload of c_pop_heap() for performing a pop operation on a heap using a +// `comp` other than `operator<`. +template +void c_pop_heap(RandomAccessContainer& sequence, LessThan&& comp) { + std::pop_heap(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + std::forward(comp)); +} + +// c_make_heap() +// +// Container-based version of the `std::make_heap()` function +// to make a container a heap. +template +void c_make_heap(RandomAccessContainer& sequence) { + std::make_heap(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence)); +} + +// Overload of c_make_heap() for performing heap comparisons using a +// `comp` other than `operator<` +template +void c_make_heap(RandomAccessContainer& sequence, LessThan&& comp) { + std::make_heap(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + std::forward(comp)); +} + +// c_sort_heap() +// +// Container-based version of the `std::sort_heap()` function +// to sort a heap into ascending order (after which it is no longer a heap). +template +void c_sort_heap(RandomAccessContainer& sequence) { + std::sort_heap(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence)); +} + +// Overload of c_sort_heap() for performing heap comparisons using a +// `comp` other than `operator<` +template +void c_sort_heap(RandomAccessContainer& sequence, LessThan&& comp) { + std::sort_heap(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + std::forward(comp)); +} + +// c_is_heap() +// +// Container-based version of the `std::is_heap()` function +// to check whether the given container is a heap. +template +bool c_is_heap(const RandomAccessContainer& sequence) { + return std::is_heap(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence)); +} + +// Overload of c_is_heap() for performing heap comparisons using a +// `comp` other than `operator<` +template +bool c_is_heap(const RandomAccessContainer& sequence, LessThan&& comp) { + return std::is_heap(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + std::forward(comp)); +} + +// c_is_heap_until() +// +// Container-based version of the `std::is_heap_until()` function +// to find the first element in a given container which is not in heap order. +template +container_algorithm_internal::ContainerIter +c_is_heap_until(RandomAccessContainer& sequence) { + return std::is_heap_until(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence)); +} + +// Overload of c_is_heap_until() for performing heap comparisons using a +// `comp` other than `operator<` +template +container_algorithm_internal::ContainerIter +c_is_heap_until(RandomAccessContainer& sequence, LessThan&& comp) { + return std::is_heap_until(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + std::forward(comp)); +} + +//------------------------------------------------------------------------------ +// Min/max +//------------------------------------------------------------------------------ + +// c_min_element() +// +// Container-based version of the `std::min_element()` function +// to return an iterator pointing to the element with the smallest value, using +// `operator<` to make the comparisons. +template +container_algorithm_internal::ContainerIter c_min_element( + Sequence& sequence) { + return std::min_element(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence)); +} + +// Overload of c_min_element() for performing a `comp` comparison other than +// `operator<`. +template +container_algorithm_internal::ContainerIter c_min_element( + Sequence& sequence, LessThan&& comp) { + return std::min_element(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + std::forward(comp)); +} + +// c_max_element() +// +// Container-based version of the `std::max_element()` function +// to return an iterator pointing to the element with the largest value, using +// `operator<` to make the comparisons. +template +container_algorithm_internal::ContainerIter c_max_element( + Sequence& sequence) { + return std::max_element(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence)); +} + +// Overload of c_max_element() for performing a `comp` comparison other than +// `operator<`. +template +container_algorithm_internal::ContainerIter c_max_element( + Sequence& sequence, LessThan&& comp) { + return std::max_element(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + std::forward(comp)); +} + +// c_minmax_element() +// +// Container-based version of the `std::minmax_element()` function +// to return a pair of iterators pointing to the elements containing the +// smallest and largest values, respectively, using `operator<` to make the +// comparisons. +template +container_algorithm_internal::ContainerIterPairType c_minmax_element( + C& c) { + return std::minmax_element(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c)); +} + +// Overload of c_minmax_element() for performing `comp` comparisons other than +// `operator<`. +template +container_algorithm_internal::ContainerIterPairType c_minmax_element( + C& c, LessThan&& comp) { + return std::minmax_element(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(comp)); +} + +//------------------------------------------------------------------------------ +// Lexicographical Comparisons +//------------------------------------------------------------------------------ + +// c_lexicographical_compare() +// +// Container-based version of the `std::lexicographical_compare()` +// function to lexicographically compare (e.g. sort words alphabetically) two +// container sequences. The comparison is performed using `operator<`. Note +// that capital letters ("A-Z") have ASCII values less than lowercase letters +// ("a-z"). +template +bool c_lexicographical_compare(const Sequence1& sequence1, + const Sequence2& sequence2) { + return std::lexicographical_compare( + container_algorithm_internal::c_begin(sequence1), + container_algorithm_internal::c_end(sequence1), + container_algorithm_internal::c_begin(sequence2), + container_algorithm_internal::c_end(sequence2)); +} + +// Overload of c_lexicographical_compare() for performing a lexicographical +// comparison using a `comp` operator instead of `operator<`. +template +bool c_lexicographical_compare(const Sequence1& sequence1, + const Sequence2& sequence2, LessThan&& comp) { + return std::lexicographical_compare( + container_algorithm_internal::c_begin(sequence1), + container_algorithm_internal::c_end(sequence1), + container_algorithm_internal::c_begin(sequence2), + container_algorithm_internal::c_end(sequence2), + std::forward(comp)); +} + +// c_next_permutation() +// +// Container-based version of the `std::next_permutation()` function +// to rearrange a container's elements into the next lexicographically greater +// permutation. +template +bool c_next_permutation(C& c) { + return std::next_permutation(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c)); +} + +// Overload of c_next_permutation() for performing a lexicographical +// comparison using a `comp` operator instead of `operator<`. +template +bool c_next_permutation(C& c, LessThan&& comp) { + return std::next_permutation(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(comp)); +} + +// c_prev_permutation() +// +// Container-based version of the `std::prev_permutation()` function +// to rearrange a container's elements into the next lexicographically lesser +// permutation. +template +bool c_prev_permutation(C& c) { + return std::prev_permutation(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c)); +} + +// Overload of c_prev_permutation() for performing a lexicographical +// comparison using a `comp` operator instead of `operator<`. +template +bool c_prev_permutation(C& c, LessThan&& comp) { + return std::prev_permutation(container_algorithm_internal::c_begin(c), + container_algorithm_internal::c_end(c), + std::forward(comp)); +} + +//------------------------------------------------------------------------------ +// algorithms +//------------------------------------------------------------------------------ + +// c_iota() +// +// Container-based version of the `std::iota()` function +// to compute successive values of `value`, as if incremented with `++value` +// after each element is written, and write them to the container. +template +void c_iota(Sequence& sequence, const T& value) { + std::iota(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), value); +} + +// c_accumulate() +// +// Container-based version of the `std::accumulate()` function +// to accumulate the element values of a container to `init` and return that +// accumulation by value. +// +// Note: Due to a language technicality this function has return type +// absl::decay_t. As a user of this function you can casually read +// this as "returns T by value" and assume it does the right thing. +template +decay_t c_accumulate(const Sequence& sequence, T&& init) { + return std::accumulate(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + std::forward(init)); +} + +// Overload of c_accumulate() for using a binary operations other than +// addition for computing the accumulation. +template +decay_t c_accumulate(const Sequence& sequence, T&& init, + BinaryOp&& binary_op) { + return std::accumulate(container_algorithm_internal::c_begin(sequence), + container_algorithm_internal::c_end(sequence), + std::forward(init), + std::forward(binary_op)); +} + +// c_inner_product() +// +// Container-based version of the `std::inner_product()` function +// to compute the cumulative inner product of container element pairs. +// +// Note: Due to a language technicality this function has return type +// absl::decay_t. As a user of this function you can casually read +// this as "returns T by value" and assume it does the right thing. +template +decay_t c_inner_product(const Sequence1& factors1, const Sequence2& factors2, + T&& sum) { + return std::inner_product(container_algorithm_internal::c_begin(factors1), + container_algorithm_internal::c_end(factors1), + container_algorithm_internal::c_begin(factors2), + std::forward(sum)); +} + +// Overload of c_inner_product() for using binary operations other than +// `operator+` (for computing the accumulation) and `operator*` (for computing +// the product between the two container's element pair). +template +decay_t c_inner_product(const Sequence1& factors1, const Sequence2& factors2, + T&& sum, BinaryOp1&& op1, BinaryOp2&& op2) { + return std::inner_product(container_algorithm_internal::c_begin(factors1), + container_algorithm_internal::c_end(factors1), + container_algorithm_internal::c_begin(factors2), + std::forward(sum), std::forward(op1), + std::forward(op2)); +} + +// c_adjacent_difference() +// +// Container-based version of the `std::adjacent_difference()` +// function to compute the difference between each element and the one preceding +// it and write it to an iterator. +template +OutputIt c_adjacent_difference(const InputSequence& input, + OutputIt output_first) { + return std::adjacent_difference(container_algorithm_internal::c_begin(input), + container_algorithm_internal::c_end(input), + output_first); +} + +// Overload of c_adjacent_difference() for using a binary operation other than +// subtraction to compute the adjacent difference. +template +OutputIt c_adjacent_difference(const InputSequence& input, + OutputIt output_first, BinaryOp&& op) { + return std::adjacent_difference(container_algorithm_internal::c_begin(input), + container_algorithm_internal::c_end(input), + output_first, std::forward(op)); +} + +// c_partial_sum() +// +// Container-based version of the `std::partial_sum()` function +// to compute the partial sum of the elements in a sequence and write them +// to an iterator. The partial sum is the sum of all element values so far in +// the sequence. +template +OutputIt c_partial_sum(const InputSequence& input, OutputIt output_first) { + return std::partial_sum(container_algorithm_internal::c_begin(input), + container_algorithm_internal::c_end(input), + output_first); +} + +// Overload of c_partial_sum() for using a binary operation other than addition +// to compute the "partial sum". +template +OutputIt c_partial_sum(const InputSequence& input, OutputIt output_first, + BinaryOp&& op) { + return std::partial_sum(container_algorithm_internal::c_begin(input), + container_algorithm_internal::c_end(input), + output_first, std::forward(op)); +} + +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_ALGORITHM_CONTAINER_H_ diff --git a/weight/_dep/abseil-cpp/absl/algorithm/container_test.cc b/weight/_dep/abseil-cpp/absl/algorithm/container_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..c01f5fc017be60e679572385228dbd725695f9ae --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/algorithm/container_test.cc @@ -0,0 +1,1147 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/algorithm/container.h" + +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include + +#include "gmock/gmock.h" +#include "gtest/gtest.h" +#include "absl/base/casts.h" +#include "absl/base/macros.h" +#include "absl/memory/memory.h" +#include "absl/types/span.h" + +namespace { + +using ::testing::Each; +using ::testing::ElementsAre; +using ::testing::Gt; +using ::testing::IsNull; +using ::testing::IsSubsetOf; +using ::testing::Lt; +using ::testing::Pointee; +using ::testing::SizeIs; +using ::testing::Truly; +using ::testing::UnorderedElementsAre; + +// Most of these tests just check that the code compiles, not that it +// does the right thing. That's fine since the functions just forward +// to the STL implementation. +class NonMutatingTest : public testing::Test { + protected: + std::unordered_set container_ = {1, 2, 3}; + std::list sequence_ = {1, 2, 3}; + std::vector vector_ = {1, 2, 3}; + int array_[3] = {1, 2, 3}; +}; + +struct AccumulateCalls { + void operator()(int value) { calls.push_back(value); } + std::vector calls; +}; + +bool Predicate(int value) { return value < 3; } +bool BinPredicate(int v1, int v2) { return v1 < v2; } +bool Equals(int v1, int v2) { return v1 == v2; } +bool IsOdd(int x) { return x % 2 != 0; } + +TEST_F(NonMutatingTest, Distance) { + EXPECT_EQ(container_.size(), + static_cast(absl::c_distance(container_))); + EXPECT_EQ(sequence_.size(), static_cast(absl::c_distance(sequence_))); + EXPECT_EQ(vector_.size(), static_cast(absl::c_distance(vector_))); + EXPECT_EQ(ABSL_ARRAYSIZE(array_), + static_cast(absl::c_distance(array_))); + + // Works with a temporary argument. + EXPECT_EQ(vector_.size(), + static_cast(absl::c_distance(std::vector(vector_)))); +} + +TEST_F(NonMutatingTest, Distance_OverloadedBeginEnd) { + // Works with classes which have custom ADL-selected overloads of std::begin + // and std::end. + std::initializer_list a = {1, 2, 3}; + std::valarray b = {1, 2, 3}; + EXPECT_EQ(3, absl::c_distance(a)); + EXPECT_EQ(3, absl::c_distance(b)); + + // It is assumed that other c_* functions use the same mechanism for + // ADL-selecting begin/end overloads. +} + +TEST_F(NonMutatingTest, ForEach) { + AccumulateCalls c = absl::c_for_each(container_, AccumulateCalls()); + // Don't rely on the unordered_set's order. + std::sort(c.calls.begin(), c.calls.end()); + EXPECT_EQ(vector_, c.calls); + + // Works with temporary container, too. + AccumulateCalls c2 = + absl::c_for_each(std::unordered_set(container_), AccumulateCalls()); + std::sort(c2.calls.begin(), c2.calls.end()); + EXPECT_EQ(vector_, c2.calls); +} + +TEST_F(NonMutatingTest, FindReturnsCorrectType) { + auto it = absl::c_find(container_, 3); + EXPECT_EQ(3, *it); + absl::c_find(absl::implicit_cast&>(sequence_), 3); +} + +TEST_F(NonMutatingTest, FindIf) { absl::c_find_if(container_, Predicate); } + +TEST_F(NonMutatingTest, FindIfNot) { + absl::c_find_if_not(container_, Predicate); +} + +TEST_F(NonMutatingTest, FindEnd) { + absl::c_find_end(sequence_, vector_); + absl::c_find_end(vector_, sequence_); +} + +TEST_F(NonMutatingTest, FindEndWithPredicate) { + absl::c_find_end(sequence_, vector_, BinPredicate); + absl::c_find_end(vector_, sequence_, BinPredicate); +} + +TEST_F(NonMutatingTest, FindFirstOf) { + absl::c_find_first_of(container_, sequence_); + absl::c_find_first_of(sequence_, container_); +} + +TEST_F(NonMutatingTest, FindFirstOfWithPredicate) { + absl::c_find_first_of(container_, sequence_, BinPredicate); + absl::c_find_first_of(sequence_, container_, BinPredicate); +} + +TEST_F(NonMutatingTest, AdjacentFind) { absl::c_adjacent_find(sequence_); } + +TEST_F(NonMutatingTest, AdjacentFindWithPredicate) { + absl::c_adjacent_find(sequence_, BinPredicate); +} + +TEST_F(NonMutatingTest, Count) { EXPECT_EQ(1, absl::c_count(container_, 3)); } + +TEST_F(NonMutatingTest, CountIf) { + EXPECT_EQ(2, absl::c_count_if(container_, Predicate)); + const std::unordered_set& const_container = container_; + EXPECT_EQ(2, absl::c_count_if(const_container, Predicate)); +} + +TEST_F(NonMutatingTest, Mismatch) { + // Testing necessary as absl::c_mismatch executes logic. + { + auto result = absl::c_mismatch(vector_, sequence_); + EXPECT_EQ(result.first, vector_.end()); + EXPECT_EQ(result.second, sequence_.end()); + } + { + auto result = absl::c_mismatch(sequence_, vector_); + EXPECT_EQ(result.first, sequence_.end()); + EXPECT_EQ(result.second, vector_.end()); + } + + sequence_.back() = 5; + { + auto result = absl::c_mismatch(vector_, sequence_); + EXPECT_EQ(result.first, std::prev(vector_.end())); + EXPECT_EQ(result.second, std::prev(sequence_.end())); + } + { + auto result = absl::c_mismatch(sequence_, vector_); + EXPECT_EQ(result.first, std::prev(sequence_.end())); + EXPECT_EQ(result.second, std::prev(vector_.end())); + } + + sequence_.pop_back(); + { + auto result = absl::c_mismatch(vector_, sequence_); + EXPECT_EQ(result.first, std::prev(vector_.end())); + EXPECT_EQ(result.second, sequence_.end()); + } + { + auto result = absl::c_mismatch(sequence_, vector_); + EXPECT_EQ(result.first, sequence_.end()); + EXPECT_EQ(result.second, std::prev(vector_.end())); + } + { + struct NoNotEquals { + constexpr bool operator==(NoNotEquals) const { return true; } + constexpr bool operator!=(NoNotEquals) const = delete; + }; + std::vector first; + std::list second; + + // Check this still compiles. + absl::c_mismatch(first, second); + } +} + +TEST_F(NonMutatingTest, MismatchWithPredicate) { + // Testing necessary as absl::c_mismatch executes logic. + { + auto result = absl::c_mismatch(vector_, sequence_, BinPredicate); + EXPECT_EQ(result.first, vector_.begin()); + EXPECT_EQ(result.second, sequence_.begin()); + } + { + auto result = absl::c_mismatch(sequence_, vector_, BinPredicate); + EXPECT_EQ(result.first, sequence_.begin()); + EXPECT_EQ(result.second, vector_.begin()); + } + + sequence_.front() = 0; + { + auto result = absl::c_mismatch(vector_, sequence_, BinPredicate); + EXPECT_EQ(result.first, vector_.begin()); + EXPECT_EQ(result.second, sequence_.begin()); + } + { + auto result = absl::c_mismatch(sequence_, vector_, BinPredicate); + EXPECT_EQ(result.first, std::next(sequence_.begin())); + EXPECT_EQ(result.second, std::next(vector_.begin())); + } + + sequence_.clear(); + { + auto result = absl::c_mismatch(vector_, sequence_, BinPredicate); + EXPECT_EQ(result.first, vector_.begin()); + EXPECT_EQ(result.second, sequence_.end()); + } + { + auto result = absl::c_mismatch(sequence_, vector_, BinPredicate); + EXPECT_EQ(result.first, sequence_.end()); + EXPECT_EQ(result.second, vector_.begin()); + } +} + +TEST_F(NonMutatingTest, Equal) { + EXPECT_TRUE(absl::c_equal(vector_, sequence_)); + EXPECT_TRUE(absl::c_equal(sequence_, vector_)); + EXPECT_TRUE(absl::c_equal(sequence_, array_)); + EXPECT_TRUE(absl::c_equal(array_, vector_)); + + // Test that behavior appropriately differs from that of equal(). + std::vector vector_plus = {1, 2, 3}; + vector_plus.push_back(4); + EXPECT_FALSE(absl::c_equal(vector_plus, sequence_)); + EXPECT_FALSE(absl::c_equal(sequence_, vector_plus)); + EXPECT_FALSE(absl::c_equal(array_, vector_plus)); +} + +TEST_F(NonMutatingTest, EqualWithPredicate) { + EXPECT_TRUE(absl::c_equal(vector_, sequence_, Equals)); + EXPECT_TRUE(absl::c_equal(sequence_, vector_, Equals)); + EXPECT_TRUE(absl::c_equal(array_, sequence_, Equals)); + EXPECT_TRUE(absl::c_equal(vector_, array_, Equals)); + + // Test that behavior appropriately differs from that of equal(). + std::vector vector_plus = {1, 2, 3}; + vector_plus.push_back(4); + EXPECT_FALSE(absl::c_equal(vector_plus, sequence_, Equals)); + EXPECT_FALSE(absl::c_equal(sequence_, vector_plus, Equals)); + EXPECT_FALSE(absl::c_equal(vector_plus, array_, Equals)); +} + +TEST_F(NonMutatingTest, IsPermutation) { + auto vector_permut_ = vector_; + std::next_permutation(vector_permut_.begin(), vector_permut_.end()); + EXPECT_TRUE(absl::c_is_permutation(vector_permut_, sequence_)); + EXPECT_TRUE(absl::c_is_permutation(sequence_, vector_permut_)); + + // Test that behavior appropriately differs from that of is_permutation(). + std::vector vector_plus = {1, 2, 3}; + vector_plus.push_back(4); + EXPECT_FALSE(absl::c_is_permutation(vector_plus, sequence_)); + EXPECT_FALSE(absl::c_is_permutation(sequence_, vector_plus)); +} + +TEST_F(NonMutatingTest, IsPermutationWithPredicate) { + auto vector_permut_ = vector_; + std::next_permutation(vector_permut_.begin(), vector_permut_.end()); + EXPECT_TRUE(absl::c_is_permutation(vector_permut_, sequence_, Equals)); + EXPECT_TRUE(absl::c_is_permutation(sequence_, vector_permut_, Equals)); + + // Test that behavior appropriately differs from that of is_permutation(). + std::vector vector_plus = {1, 2, 3}; + vector_plus.push_back(4); + EXPECT_FALSE(absl::c_is_permutation(vector_plus, sequence_, Equals)); + EXPECT_FALSE(absl::c_is_permutation(sequence_, vector_plus, Equals)); +} + +TEST_F(NonMutatingTest, Search) { + absl::c_search(sequence_, vector_); + absl::c_search(vector_, sequence_); + absl::c_search(array_, sequence_); +} + +TEST_F(NonMutatingTest, SearchWithPredicate) { + absl::c_search(sequence_, vector_, BinPredicate); + absl::c_search(vector_, sequence_, BinPredicate); +} + +TEST_F(NonMutatingTest, SearchN) { absl::c_search_n(sequence_, 3, 1); } + +TEST_F(NonMutatingTest, SearchNWithPredicate) { + absl::c_search_n(sequence_, 3, 1, BinPredicate); +} + +TEST_F(NonMutatingTest, LowerBound) { + std::list::iterator i = absl::c_lower_bound(sequence_, 3); + ASSERT_TRUE(i != sequence_.end()); + EXPECT_EQ(2, std::distance(sequence_.begin(), i)); + EXPECT_EQ(3, *i); +} + +TEST_F(NonMutatingTest, LowerBoundWithPredicate) { + std::vector v(vector_); + std::sort(v.begin(), v.end(), std::greater()); + std::vector::iterator i = absl::c_lower_bound(v, 3, std::greater()); + EXPECT_TRUE(i == v.begin()); + EXPECT_EQ(3, *i); +} + +TEST_F(NonMutatingTest, UpperBound) { + std::list::iterator i = absl::c_upper_bound(sequence_, 1); + ASSERT_TRUE(i != sequence_.end()); + EXPECT_EQ(1, std::distance(sequence_.begin(), i)); + EXPECT_EQ(2, *i); +} + +TEST_F(NonMutatingTest, UpperBoundWithPredicate) { + std::vector v(vector_); + std::sort(v.begin(), v.end(), std::greater()); + std::vector::iterator i = absl::c_upper_bound(v, 1, std::greater()); + EXPECT_EQ(3, i - v.begin()); + EXPECT_TRUE(i == v.end()); +} + +TEST_F(NonMutatingTest, EqualRange) { + std::pair::iterator, std::list::iterator> p = + absl::c_equal_range(sequence_, 2); + EXPECT_EQ(1, std::distance(sequence_.begin(), p.first)); + EXPECT_EQ(2, std::distance(sequence_.begin(), p.second)); +} + +TEST_F(NonMutatingTest, EqualRangeArray) { + auto p = absl::c_equal_range(array_, 2); + EXPECT_EQ(1, std::distance(std::begin(array_), p.first)); + EXPECT_EQ(2, std::distance(std::begin(array_), p.second)); +} + +TEST_F(NonMutatingTest, EqualRangeWithPredicate) { + std::vector v(vector_); + std::sort(v.begin(), v.end(), std::greater()); + std::pair::iterator, std::vector::iterator> p = + absl::c_equal_range(v, 2, std::greater()); + EXPECT_EQ(1, std::distance(v.begin(), p.first)); + EXPECT_EQ(2, std::distance(v.begin(), p.second)); +} + +TEST_F(NonMutatingTest, BinarySearch) { + EXPECT_TRUE(absl::c_binary_search(vector_, 2)); + EXPECT_TRUE(absl::c_binary_search(std::vector(vector_), 2)); +} + +TEST_F(NonMutatingTest, BinarySearchWithPredicate) { + std::vector v(vector_); + std::sort(v.begin(), v.end(), std::greater()); + EXPECT_TRUE(absl::c_binary_search(v, 2, std::greater())); + EXPECT_TRUE( + absl::c_binary_search(std::vector(v), 2, std::greater())); +} + +TEST_F(NonMutatingTest, MinElement) { + std::list::iterator i = absl::c_min_element(sequence_); + ASSERT_TRUE(i != sequence_.end()); + EXPECT_EQ(*i, 1); +} + +TEST_F(NonMutatingTest, MinElementWithPredicate) { + std::list::iterator i = + absl::c_min_element(sequence_, std::greater()); + ASSERT_TRUE(i != sequence_.end()); + EXPECT_EQ(*i, 3); +} + +TEST_F(NonMutatingTest, MaxElement) { + std::list::iterator i = absl::c_max_element(sequence_); + ASSERT_TRUE(i != sequence_.end()); + EXPECT_EQ(*i, 3); +} + +TEST_F(NonMutatingTest, MaxElementWithPredicate) { + std::list::iterator i = + absl::c_max_element(sequence_, std::greater()); + ASSERT_TRUE(i != sequence_.end()); + EXPECT_EQ(*i, 1); +} + +TEST_F(NonMutatingTest, LexicographicalCompare) { + EXPECT_FALSE(absl::c_lexicographical_compare(sequence_, sequence_)); + + std::vector v; + v.push_back(1); + v.push_back(2); + v.push_back(4); + + EXPECT_TRUE(absl::c_lexicographical_compare(sequence_, v)); + EXPECT_TRUE(absl::c_lexicographical_compare(std::list(sequence_), v)); +} + +TEST_F(NonMutatingTest, LexicographicalCopmareWithPredicate) { + EXPECT_FALSE(absl::c_lexicographical_compare(sequence_, sequence_, + std::greater())); + + std::vector v; + v.push_back(1); + v.push_back(2); + v.push_back(4); + + EXPECT_TRUE( + absl::c_lexicographical_compare(v, sequence_, std::greater())); + EXPECT_TRUE(absl::c_lexicographical_compare( + std::vector(v), std::list(sequence_), std::greater())); +} + +TEST_F(NonMutatingTest, Includes) { + std::set s(vector_.begin(), vector_.end()); + s.insert(4); + EXPECT_TRUE(absl::c_includes(s, vector_)); +} + +TEST_F(NonMutatingTest, IncludesWithPredicate) { + std::vector v = {3, 2, 1}; + std::set> s(v.begin(), v.end()); + s.insert(4); + EXPECT_TRUE(absl::c_includes(s, v, std::greater())); +} + +class NumericMutatingTest : public testing::Test { + protected: + std::list list_ = {1, 2, 3}; + std::vector output_; +}; + +TEST_F(NumericMutatingTest, Iota) { + absl::c_iota(list_, 5); + std::list expected{5, 6, 7}; + EXPECT_EQ(list_, expected); +} + +TEST_F(NonMutatingTest, Accumulate) { + EXPECT_EQ(absl::c_accumulate(sequence_, 4), 1 + 2 + 3 + 4); +} + +TEST_F(NonMutatingTest, AccumulateWithBinaryOp) { + EXPECT_EQ(absl::c_accumulate(sequence_, 4, std::multiplies()), + 1 * 2 * 3 * 4); +} + +TEST_F(NonMutatingTest, AccumulateLvalueInit) { + int lvalue = 4; + EXPECT_EQ(absl::c_accumulate(sequence_, lvalue), 1 + 2 + 3 + 4); +} + +TEST_F(NonMutatingTest, AccumulateWithBinaryOpLvalueInit) { + int lvalue = 4; + EXPECT_EQ(absl::c_accumulate(sequence_, lvalue, std::multiplies()), + 1 * 2 * 3 * 4); +} + +TEST_F(NonMutatingTest, InnerProduct) { + EXPECT_EQ(absl::c_inner_product(sequence_, vector_, 1000), + 1000 + 1 * 1 + 2 * 2 + 3 * 3); +} + +TEST_F(NonMutatingTest, InnerProductWithBinaryOps) { + EXPECT_EQ(absl::c_inner_product(sequence_, vector_, 10, + std::multiplies(), std::plus()), + 10 * (1 + 1) * (2 + 2) * (3 + 3)); +} + +TEST_F(NonMutatingTest, InnerProductLvalueInit) { + int lvalue = 1000; + EXPECT_EQ(absl::c_inner_product(sequence_, vector_, lvalue), + 1000 + 1 * 1 + 2 * 2 + 3 * 3); +} + +TEST_F(NonMutatingTest, InnerProductWithBinaryOpsLvalueInit) { + int lvalue = 10; + EXPECT_EQ(absl::c_inner_product(sequence_, vector_, lvalue, + std::multiplies(), std::plus()), + 10 * (1 + 1) * (2 + 2) * (3 + 3)); +} + +TEST_F(NumericMutatingTest, AdjacentDifference) { + auto last = absl::c_adjacent_difference(list_, std::back_inserter(output_)); + *last = 1000; + std::vector expected{1, 2 - 1, 3 - 2, 1000}; + EXPECT_EQ(output_, expected); +} + +TEST_F(NumericMutatingTest, AdjacentDifferenceWithBinaryOp) { + auto last = absl::c_adjacent_difference(list_, std::back_inserter(output_), + std::multiplies()); + *last = 1000; + std::vector expected{1, 2 * 1, 3 * 2, 1000}; + EXPECT_EQ(output_, expected); +} + +TEST_F(NumericMutatingTest, PartialSum) { + auto last = absl::c_partial_sum(list_, std::back_inserter(output_)); + *last = 1000; + std::vector expected{1, 1 + 2, 1 + 2 + 3, 1000}; + EXPECT_EQ(output_, expected); +} + +TEST_F(NumericMutatingTest, PartialSumWithBinaryOp) { + auto last = absl::c_partial_sum(list_, std::back_inserter(output_), + std::multiplies()); + *last = 1000; + std::vector expected{1, 1 * 2, 1 * 2 * 3, 1000}; + EXPECT_EQ(output_, expected); +} + +TEST_F(NonMutatingTest, LinearSearch) { + EXPECT_TRUE(absl::c_linear_search(container_, 3)); + EXPECT_FALSE(absl::c_linear_search(container_, 4)); +} + +TEST_F(NonMutatingTest, AllOf) { + const std::vector& v = vector_; + EXPECT_FALSE(absl::c_all_of(v, [](int x) { return x > 1; })); + EXPECT_TRUE(absl::c_all_of(v, [](int x) { return x > 0; })); +} + +TEST_F(NonMutatingTest, AnyOf) { + const std::vector& v = vector_; + EXPECT_TRUE(absl::c_any_of(v, [](int x) { return x > 2; })); + EXPECT_FALSE(absl::c_any_of(v, [](int x) { return x > 5; })); +} + +TEST_F(NonMutatingTest, NoneOf) { + const std::vector& v = vector_; + EXPECT_FALSE(absl::c_none_of(v, [](int x) { return x > 2; })); + EXPECT_TRUE(absl::c_none_of(v, [](int x) { return x > 5; })); +} + +TEST_F(NonMutatingTest, MinMaxElementLess) { + std::pair::const_iterator, std::vector::const_iterator> + p = absl::c_minmax_element(vector_, std::less()); + EXPECT_TRUE(p.first == vector_.begin()); + EXPECT_TRUE(p.second == vector_.begin() + 2); +} + +TEST_F(NonMutatingTest, MinMaxElementGreater) { + std::pair::const_iterator, std::vector::const_iterator> + p = absl::c_minmax_element(vector_, std::greater()); + EXPECT_TRUE(p.first == vector_.begin() + 2); + EXPECT_TRUE(p.second == vector_.begin()); +} + +TEST_F(NonMutatingTest, MinMaxElementNoPredicate) { + std::pair::const_iterator, std::vector::const_iterator> + p = absl::c_minmax_element(vector_); + EXPECT_TRUE(p.first == vector_.begin()); + EXPECT_TRUE(p.second == vector_.begin() + 2); +} + +class SortingTest : public testing::Test { + protected: + std::list sorted_ = {1, 2, 3, 4}; + std::list unsorted_ = {2, 4, 1, 3}; + std::list reversed_ = {4, 3, 2, 1}; +}; + +TEST_F(SortingTest, IsSorted) { + EXPECT_TRUE(absl::c_is_sorted(sorted_)); + EXPECT_FALSE(absl::c_is_sorted(unsorted_)); + EXPECT_FALSE(absl::c_is_sorted(reversed_)); +} + +TEST_F(SortingTest, IsSortedWithPredicate) { + EXPECT_FALSE(absl::c_is_sorted(sorted_, std::greater())); + EXPECT_FALSE(absl::c_is_sorted(unsorted_, std::greater())); + EXPECT_TRUE(absl::c_is_sorted(reversed_, std::greater())); +} + +TEST_F(SortingTest, IsSortedUntil) { + EXPECT_EQ(1, *absl::c_is_sorted_until(unsorted_)); + EXPECT_EQ(4, *absl::c_is_sorted_until(unsorted_, std::greater())); +} + +TEST_F(SortingTest, NthElement) { + std::vector unsorted = {2, 4, 1, 3}; + absl::c_nth_element(unsorted, unsorted.begin() + 2); + EXPECT_THAT(unsorted, ElementsAre(Lt(3), Lt(3), 3, Gt(3))); + absl::c_nth_element(unsorted, unsorted.begin() + 2, std::greater()); + EXPECT_THAT(unsorted, ElementsAre(Gt(2), Gt(2), 2, Lt(2))); +} + +TEST(MutatingTest, IsPartitioned) { + EXPECT_TRUE( + absl::c_is_partitioned(std::vector{1, 3, 5, 2, 4, 6}, IsOdd)); + EXPECT_FALSE( + absl::c_is_partitioned(std::vector{1, 2, 3, 4, 5, 6}, IsOdd)); + EXPECT_FALSE( + absl::c_is_partitioned(std::vector{2, 4, 6, 1, 3, 5}, IsOdd)); +} + +TEST(MutatingTest, Partition) { + std::vector actual = {1, 2, 3, 4, 5}; + absl::c_partition(actual, IsOdd); + EXPECT_THAT(actual, Truly([](const std::vector& c) { + return absl::c_is_partitioned(c, IsOdd); + })); +} + +TEST(MutatingTest, StablePartition) { + std::vector actual = {1, 2, 3, 4, 5}; + absl::c_stable_partition(actual, IsOdd); + EXPECT_THAT(actual, ElementsAre(1, 3, 5, 2, 4)); +} + +TEST(MutatingTest, PartitionCopy) { + const std::vector initial = {1, 2, 3, 4, 5}; + std::vector odds, evens; + auto ends = absl::c_partition_copy(initial, back_inserter(odds), + back_inserter(evens), IsOdd); + *ends.first = 7; + *ends.second = 6; + EXPECT_THAT(odds, ElementsAre(1, 3, 5, 7)); + EXPECT_THAT(evens, ElementsAre(2, 4, 6)); +} + +TEST(MutatingTest, PartitionPoint) { + const std::vector initial = {1, 3, 5, 2, 4}; + auto middle = absl::c_partition_point(initial, IsOdd); + EXPECT_EQ(2, *middle); +} + +TEST(MutatingTest, CopyMiddle) { + const std::vector initial = {4, -1, -2, -3, 5}; + const std::list input = {1, 2, 3}; + const std::vector expected = {4, 1, 2, 3, 5}; + + std::list test_list(initial.begin(), initial.end()); + absl::c_copy(input, ++test_list.begin()); + EXPECT_EQ(std::list(expected.begin(), expected.end()), test_list); + + std::vector test_vector = initial; + absl::c_copy(input, test_vector.begin() + 1); + EXPECT_EQ(expected, test_vector); +} + +TEST(MutatingTest, CopyFrontInserter) { + const std::list initial = {4, 5}; + const std::list input = {1, 2, 3}; + const std::list expected = {3, 2, 1, 4, 5}; + + std::list test_list = initial; + absl::c_copy(input, std::front_inserter(test_list)); + EXPECT_EQ(expected, test_list); +} + +TEST(MutatingTest, CopyBackInserter) { + const std::vector initial = {4, 5}; + const std::list input = {1, 2, 3}; + const std::vector expected = {4, 5, 1, 2, 3}; + + std::list test_list(initial.begin(), initial.end()); + absl::c_copy(input, std::back_inserter(test_list)); + EXPECT_EQ(std::list(expected.begin(), expected.end()), test_list); + + std::vector test_vector = initial; + absl::c_copy(input, std::back_inserter(test_vector)); + EXPECT_EQ(expected, test_vector); +} + +TEST(MutatingTest, CopyN) { + const std::vector initial = {1, 2, 3, 4, 5}; + const std::vector expected = {1, 2}; + std::vector actual; + absl::c_copy_n(initial, 2, back_inserter(actual)); + EXPECT_EQ(expected, actual); +} + +TEST(MutatingTest, CopyIf) { + const std::list input = {1, 2, 3}; + std::vector output; + absl::c_copy_if(input, std::back_inserter(output), + [](int i) { return i != 2; }); + EXPECT_THAT(output, ElementsAre(1, 3)); +} + +TEST(MutatingTest, CopyBackward) { + std::vector actual = {1, 2, 3, 4, 5}; + std::vector expected = {1, 2, 1, 2, 3}; + absl::c_copy_backward(absl::MakeSpan(actual.data(), 3), actual.end()); + EXPECT_EQ(expected, actual); +} + +TEST(MutatingTest, Move) { + std::vector> src; + src.emplace_back(absl::make_unique(1)); + src.emplace_back(absl::make_unique(2)); + src.emplace_back(absl::make_unique(3)); + src.emplace_back(absl::make_unique(4)); + src.emplace_back(absl::make_unique(5)); + + std::vector> dest = {}; + absl::c_move(src, std::back_inserter(dest)); + EXPECT_THAT(src, Each(IsNull())); + EXPECT_THAT(dest, ElementsAre(Pointee(1), Pointee(2), Pointee(3), Pointee(4), + Pointee(5))); +} + +TEST(MutatingTest, MoveBackward) { + std::vector> actual; + actual.emplace_back(absl::make_unique(1)); + actual.emplace_back(absl::make_unique(2)); + actual.emplace_back(absl::make_unique(3)); + actual.emplace_back(absl::make_unique(4)); + actual.emplace_back(absl::make_unique(5)); + auto subrange = absl::MakeSpan(actual.data(), 3); + absl::c_move_backward(subrange, actual.end()); + EXPECT_THAT(actual, ElementsAre(IsNull(), IsNull(), Pointee(1), Pointee(2), + Pointee(3))); +} + +TEST(MutatingTest, MoveWithRvalue) { + auto MakeRValueSrc = [] { + std::vector> src; + src.emplace_back(absl::make_unique(1)); + src.emplace_back(absl::make_unique(2)); + src.emplace_back(absl::make_unique(3)); + return src; + }; + + std::vector> dest = MakeRValueSrc(); + absl::c_move(MakeRValueSrc(), std::back_inserter(dest)); + EXPECT_THAT(dest, ElementsAre(Pointee(1), Pointee(2), Pointee(3), Pointee(1), + Pointee(2), Pointee(3))); +} + +TEST(MutatingTest, SwapRanges) { + std::vector odds = {2, 4, 6}; + std::vector evens = {1, 3, 5}; + absl::c_swap_ranges(odds, evens); + EXPECT_THAT(odds, ElementsAre(1, 3, 5)); + EXPECT_THAT(evens, ElementsAre(2, 4, 6)); + + odds.pop_back(); + absl::c_swap_ranges(odds, evens); + EXPECT_THAT(odds, ElementsAre(2, 4)); + EXPECT_THAT(evens, ElementsAre(1, 3, 6)); + + absl::c_swap_ranges(evens, odds); + EXPECT_THAT(odds, ElementsAre(1, 3)); + EXPECT_THAT(evens, ElementsAre(2, 4, 6)); +} + +TEST_F(NonMutatingTest, Transform) { + std::vector x{0, 2, 4}, y, z; + auto end = absl::c_transform(x, back_inserter(y), std::negate()); + EXPECT_EQ(std::vector({0, -2, -4}), y); + *end = 7; + EXPECT_EQ(std::vector({0, -2, -4, 7}), y); + + y = {1, 3, 0}; + end = absl::c_transform(x, y, back_inserter(z), std::plus()); + EXPECT_EQ(std::vector({1, 5, 4}), z); + *end = 7; + EXPECT_EQ(std::vector({1, 5, 4, 7}), z); + + z.clear(); + y.pop_back(); + end = absl::c_transform(x, y, std::back_inserter(z), std::plus()); + EXPECT_EQ(std::vector({1, 5}), z); + *end = 7; + EXPECT_EQ(std::vector({1, 5, 7}), z); + + z.clear(); + std::swap(x, y); + end = absl::c_transform(x, y, std::back_inserter(z), std::plus()); + EXPECT_EQ(std::vector({1, 5}), z); + *end = 7; + EXPECT_EQ(std::vector({1, 5, 7}), z); +} + +TEST(MutatingTest, Replace) { + const std::vector initial = {1, 2, 3, 1, 4, 5}; + const std::vector expected = {4, 2, 3, 4, 4, 5}; + + std::vector test_vector = initial; + absl::c_replace(test_vector, 1, 4); + EXPECT_EQ(expected, test_vector); + + std::list test_list(initial.begin(), initial.end()); + absl::c_replace(test_list, 1, 4); + EXPECT_EQ(std::list(expected.begin(), expected.end()), test_list); +} + +TEST(MutatingTest, ReplaceIf) { + std::vector actual = {1, 2, 3, 4, 5}; + const std::vector expected = {0, 2, 0, 4, 0}; + + absl::c_replace_if(actual, IsOdd, 0); + EXPECT_EQ(expected, actual); +} + +TEST(MutatingTest, ReplaceCopy) { + const std::vector initial = {1, 2, 3, 1, 4, 5}; + const std::vector expected = {4, 2, 3, 4, 4, 5}; + + std::vector actual; + absl::c_replace_copy(initial, back_inserter(actual), 1, 4); + EXPECT_EQ(expected, actual); +} + +TEST(MutatingTest, Sort) { + std::vector test_vector = {2, 3, 1, 4}; + absl::c_sort(test_vector); + EXPECT_THAT(test_vector, ElementsAre(1, 2, 3, 4)); +} + +TEST(MutatingTest, SortWithPredicate) { + std::vector test_vector = {2, 3, 1, 4}; + absl::c_sort(test_vector, std::greater()); + EXPECT_THAT(test_vector, ElementsAre(4, 3, 2, 1)); +} + +// For absl::c_stable_sort tests. Needs an operator< that does not cover all +// fields so that the test can check the sort preserves order of equal elements. +struct Element { + int key; + int value; + friend bool operator<(const Element& e1, const Element& e2) { + return e1.key < e2.key; + } + // Make gmock print useful diagnostics. + friend std::ostream& operator<<(std::ostream& o, const Element& e) { + return o << "{" << e.key << ", " << e.value << "}"; + } +}; + +MATCHER_P2(IsElement, key, value, "") { + return arg.key == key && arg.value == value; +} + +TEST(MutatingTest, StableSort) { + std::vector test_vector = {{1, 1}, {2, 1}, {2, 0}, {1, 0}, {2, 2}}; + absl::c_stable_sort(test_vector); + EXPECT_THAT(test_vector, + ElementsAre(IsElement(1, 1), IsElement(1, 0), IsElement(2, 1), + IsElement(2, 0), IsElement(2, 2))); +} + +TEST(MutatingTest, StableSortWithPredicate) { + std::vector test_vector = {{1, 1}, {2, 1}, {2, 0}, {1, 0}, {2, 2}}; + absl::c_stable_sort(test_vector, [](const Element& e1, const Element& e2) { + return e2 < e1; + }); + EXPECT_THAT(test_vector, + ElementsAre(IsElement(2, 1), IsElement(2, 0), IsElement(2, 2), + IsElement(1, 1), IsElement(1, 0))); +} + +TEST(MutatingTest, ReplaceCopyIf) { + const std::vector initial = {1, 2, 3, 4, 5}; + const std::vector expected = {0, 2, 0, 4, 0}; + + std::vector actual; + absl::c_replace_copy_if(initial, back_inserter(actual), IsOdd, 0); + EXPECT_EQ(expected, actual); +} + +TEST(MutatingTest, Fill) { + std::vector actual(5); + absl::c_fill(actual, 1); + EXPECT_THAT(actual, ElementsAre(1, 1, 1, 1, 1)); +} + +TEST(MutatingTest, FillN) { + std::vector actual(5, 0); + absl::c_fill_n(actual, 2, 1); + EXPECT_THAT(actual, ElementsAre(1, 1, 0, 0, 0)); +} + +TEST(MutatingTest, Generate) { + std::vector actual(5); + int x = 0; + absl::c_generate(actual, [&x]() { return ++x; }); + EXPECT_THAT(actual, ElementsAre(1, 2, 3, 4, 5)); +} + +TEST(MutatingTest, GenerateN) { + std::vector actual(5, 0); + int x = 0; + absl::c_generate_n(actual, 3, [&x]() { return ++x; }); + EXPECT_THAT(actual, ElementsAre(1, 2, 3, 0, 0)); +} + +TEST(MutatingTest, RemoveCopy) { + std::vector actual; + absl::c_remove_copy(std::vector{1, 2, 3}, back_inserter(actual), 2); + EXPECT_THAT(actual, ElementsAre(1, 3)); +} + +TEST(MutatingTest, RemoveCopyIf) { + std::vector actual; + absl::c_remove_copy_if(std::vector{1, 2, 3}, back_inserter(actual), + IsOdd); + EXPECT_THAT(actual, ElementsAre(2)); +} + +TEST(MutatingTest, UniqueCopy) { + std::vector actual; + absl::c_unique_copy(std::vector{1, 2, 2, 2, 3, 3, 2}, + back_inserter(actual)); + EXPECT_THAT(actual, ElementsAre(1, 2, 3, 2)); +} + +TEST(MutatingTest, UniqueCopyWithPredicate) { + std::vector actual; + absl::c_unique_copy(std::vector{1, 2, 3, -1, -2, -3, 1}, + back_inserter(actual), + [](int x, int y) { return (x < 0) == (y < 0); }); + EXPECT_THAT(actual, ElementsAre(1, -1, 1)); +} + +TEST(MutatingTest, Reverse) { + std::vector test_vector = {1, 2, 3, 4}; + absl::c_reverse(test_vector); + EXPECT_THAT(test_vector, ElementsAre(4, 3, 2, 1)); + + std::list test_list = {1, 2, 3, 4}; + absl::c_reverse(test_list); + EXPECT_THAT(test_list, ElementsAre(4, 3, 2, 1)); +} + +TEST(MutatingTest, ReverseCopy) { + std::vector actual; + absl::c_reverse_copy(std::vector{1, 2, 3, 4}, back_inserter(actual)); + EXPECT_THAT(actual, ElementsAre(4, 3, 2, 1)); +} + +TEST(MutatingTest, Rotate) { + std::vector actual = {1, 2, 3, 4}; + auto it = absl::c_rotate(actual, actual.begin() + 2); + EXPECT_THAT(actual, testing::ElementsAreArray({3, 4, 1, 2})); + EXPECT_EQ(*it, 1); +} + +TEST(MutatingTest, RotateCopy) { + std::vector initial = {1, 2, 3, 4}; + std::vector actual; + auto end = + absl::c_rotate_copy(initial, initial.begin() + 2, back_inserter(actual)); + *end = 5; + EXPECT_THAT(actual, ElementsAre(3, 4, 1, 2, 5)); +} + +template +T RandomlySeededPrng() { + std::random_device rdev; + std::seed_seq::result_type data[T::state_size]; + std::generate_n(data, T::state_size, std::ref(rdev)); + std::seed_seq prng_seed(data, data + T::state_size); + return T(prng_seed); +} + +TEST(MutatingTest, Shuffle) { + std::vector actual = {1, 2, 3, 4, 5}; + absl::c_shuffle(actual, RandomlySeededPrng()); + EXPECT_THAT(actual, UnorderedElementsAre(1, 2, 3, 4, 5)); +} + +TEST(MutatingTest, Sample) { + std::vector actual; + absl::c_sample(std::vector{1, 2, 3, 4, 5}, std::back_inserter(actual), 3, + RandomlySeededPrng()); + EXPECT_THAT(actual, IsSubsetOf({1, 2, 3, 4, 5})); + EXPECT_THAT(actual, SizeIs(3)); +} + +TEST(MutatingTest, PartialSort) { + std::vector sequence{5, 3, 42, 0}; + absl::c_partial_sort(sequence, sequence.begin() + 2); + EXPECT_THAT(absl::MakeSpan(sequence.data(), 2), ElementsAre(0, 3)); + absl::c_partial_sort(sequence, sequence.begin() + 2, std::greater()); + EXPECT_THAT(absl::MakeSpan(sequence.data(), 2), ElementsAre(42, 5)); +} + +TEST(MutatingTest, PartialSortCopy) { + const std::vector initial = {5, 3, 42, 0}; + std::vector actual(2); + absl::c_partial_sort_copy(initial, actual); + EXPECT_THAT(actual, ElementsAre(0, 3)); + absl::c_partial_sort_copy(initial, actual, std::greater()); + EXPECT_THAT(actual, ElementsAre(42, 5)); +} + +TEST(MutatingTest, Merge) { + std::vector actual; + absl::c_merge(std::vector{1, 3, 5}, std::vector{2, 4}, + back_inserter(actual)); + EXPECT_THAT(actual, ElementsAre(1, 2, 3, 4, 5)); +} + +TEST(MutatingTest, MergeWithComparator) { + std::vector actual; + absl::c_merge(std::vector{5, 3, 1}, std::vector{4, 2}, + back_inserter(actual), std::greater()); + EXPECT_THAT(actual, ElementsAre(5, 4, 3, 2, 1)); +} + +TEST(MutatingTest, InplaceMerge) { + std::vector actual = {1, 3, 5, 2, 4}; + absl::c_inplace_merge(actual, actual.begin() + 3); + EXPECT_THAT(actual, ElementsAre(1, 2, 3, 4, 5)); +} + +TEST(MutatingTest, InplaceMergeWithComparator) { + std::vector actual = {5, 3, 1, 4, 2}; + absl::c_inplace_merge(actual, actual.begin() + 3, std::greater()); + EXPECT_THAT(actual, ElementsAre(5, 4, 3, 2, 1)); +} + +class SetOperationsTest : public testing::Test { + protected: + std::vector a_ = {1, 2, 3}; + std::vector b_ = {1, 3, 5}; + + std::vector a_reversed_ = {3, 2, 1}; + std::vector b_reversed_ = {5, 3, 1}; +}; + +TEST_F(SetOperationsTest, SetUnion) { + std::vector actual; + absl::c_set_union(a_, b_, back_inserter(actual)); + EXPECT_THAT(actual, ElementsAre(1, 2, 3, 5)); +} + +TEST_F(SetOperationsTest, SetUnionWithComparator) { + std::vector actual; + absl::c_set_union(a_reversed_, b_reversed_, back_inserter(actual), + std::greater()); + EXPECT_THAT(actual, ElementsAre(5, 3, 2, 1)); +} + +TEST_F(SetOperationsTest, SetIntersection) { + std::vector actual; + absl::c_set_intersection(a_, b_, back_inserter(actual)); + EXPECT_THAT(actual, ElementsAre(1, 3)); +} + +TEST_F(SetOperationsTest, SetIntersectionWithComparator) { + std::vector actual; + absl::c_set_intersection(a_reversed_, b_reversed_, back_inserter(actual), + std::greater()); + EXPECT_THAT(actual, ElementsAre(3, 1)); +} + +TEST_F(SetOperationsTest, SetDifference) { + std::vector actual; + absl::c_set_difference(a_, b_, back_inserter(actual)); + EXPECT_THAT(actual, ElementsAre(2)); +} + +TEST_F(SetOperationsTest, SetDifferenceWithComparator) { + std::vector actual; + absl::c_set_difference(a_reversed_, b_reversed_, back_inserter(actual), + std::greater()); + EXPECT_THAT(actual, ElementsAre(2)); +} + +TEST_F(SetOperationsTest, SetSymmetricDifference) { + std::vector actual; + absl::c_set_symmetric_difference(a_, b_, back_inserter(actual)); + EXPECT_THAT(actual, ElementsAre(2, 5)); +} + +TEST_F(SetOperationsTest, SetSymmetricDifferenceWithComparator) { + std::vector actual; + absl::c_set_symmetric_difference(a_reversed_, b_reversed_, + back_inserter(actual), std::greater()); + EXPECT_THAT(actual, ElementsAre(5, 2)); +} + +TEST(HeapOperationsTest, WithoutComparator) { + std::vector heap = {1, 2, 3}; + EXPECT_FALSE(absl::c_is_heap(heap)); + absl::c_make_heap(heap); + EXPECT_TRUE(absl::c_is_heap(heap)); + heap.push_back(4); + EXPECT_EQ(3, absl::c_is_heap_until(heap) - heap.begin()); + absl::c_push_heap(heap); + EXPECT_EQ(4, heap[0]); + absl::c_pop_heap(heap); + EXPECT_EQ(4, heap[3]); + absl::c_make_heap(heap); + absl::c_sort_heap(heap); + EXPECT_THAT(heap, ElementsAre(1, 2, 3, 4)); + EXPECT_FALSE(absl::c_is_heap(heap)); +} + +TEST(HeapOperationsTest, WithComparator) { + using greater = std::greater; + std::vector heap = {3, 2, 1}; + EXPECT_FALSE(absl::c_is_heap(heap, greater())); + absl::c_make_heap(heap, greater()); + EXPECT_TRUE(absl::c_is_heap(heap, greater())); + heap.push_back(0); + EXPECT_EQ(3, absl::c_is_heap_until(heap, greater()) - heap.begin()); + absl::c_push_heap(heap, greater()); + EXPECT_EQ(0, heap[0]); + absl::c_pop_heap(heap, greater()); + EXPECT_EQ(0, heap[3]); + absl::c_make_heap(heap, greater()); + absl::c_sort_heap(heap, greater()); + EXPECT_THAT(heap, ElementsAre(3, 2, 1, 0)); + EXPECT_FALSE(absl::c_is_heap(heap, greater())); +} + +TEST(MutatingTest, PermutationOperations) { + std::vector initial = {1, 2, 3, 4}; + std::vector permuted = initial; + + absl::c_next_permutation(permuted); + EXPECT_TRUE(absl::c_is_permutation(initial, permuted)); + EXPECT_TRUE(absl::c_is_permutation(initial, permuted, std::equal_to())); + + std::vector permuted2 = initial; + absl::c_prev_permutation(permuted2, std::greater()); + EXPECT_EQ(permuted, permuted2); + + absl::c_prev_permutation(permuted); + EXPECT_EQ(initial, permuted); +} + +} // namespace diff --git a/weight/_dep/abseil-cpp/absl/base/CMakeLists.txt b/weight/_dep/abseil-cpp/absl/base/CMakeLists.txt new file mode 100644 index 0000000000000000000000000000000000000000..4cfc22858c0d6d75e07fba15e6b0afc702f3dfea --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/CMakeLists.txt @@ -0,0 +1,739 @@ +# +# Copyright 2017 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. +# + +find_library(LIBRT rt) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + atomic_hook + HDRS + "internal/atomic_hook.h" + DEPS + absl::config + absl::core_headers + COPTS + ${ABSL_DEFAULT_COPTS} +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + errno_saver + HDRS + "internal/errno_saver.h" + DEPS + absl::config + COPTS + ${ABSL_DEFAULT_COPTS} +) + +absl_cc_library( + NAME + log_severity + HDRS + "log_severity.h" + SRCS + "log_severity.cc" + DEPS + absl::config + absl::core_headers + COPTS + ${ABSL_DEFAULT_COPTS} +) + +absl_cc_library( + NAME + no_destructor + HDRS + "no_destructor.h" + DEPS + absl::config + COPTS + ${ABSL_DEFAULT_COPTS} +) + +absl_cc_library( + NAME + nullability + HDRS + "nullability.h" + SRCS + "internal/nullability_impl.h" + DEPS + absl::core_headers + absl::type_traits + COPTS + ${ABSL_DEFAULT_COPTS} +) + +absl_cc_test( + NAME + nullability_test + SRCS + "nullability_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::core_headers + absl::nullability + GTest::gtest_main +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + raw_logging_internal + HDRS + "internal/raw_logging.h" + SRCS + "internal/raw_logging.cc" + DEPS + absl::atomic_hook + absl::config + absl::core_headers + absl::errno_saver + absl::log_severity + COPTS + ${ABSL_DEFAULT_COPTS} +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + spinlock_wait + HDRS + "internal/spinlock_wait.h" + SRCS + "internal/spinlock_akaros.inc" + "internal/spinlock_linux.inc" + "internal/spinlock_posix.inc" + "internal/spinlock_wait.cc" + "internal/spinlock_win32.inc" + COPTS + ${ABSL_DEFAULT_COPTS} + DEPS + absl::base_internal + absl::core_headers + absl::errno_saver +) + +absl_cc_library( + NAME + config + HDRS + "config.h" + "options.h" + "policy_checks.h" + COPTS + ${ABSL_DEFAULT_COPTS} + PUBLIC +) + +absl_cc_library( + NAME + dynamic_annotations + HDRS + "dynamic_annotations.h" + SRCS + "internal/dynamic_annotations.h" + COPTS + ${ABSL_DEFAULT_COPTS} + DEPS + absl::config + PUBLIC +) + +absl_cc_library( + NAME + core_headers + HDRS + "attributes.h" + "const_init.h" + "macros.h" + "optimization.h" + "port.h" + "thread_annotations.h" + COPTS + ${ABSL_DEFAULT_COPTS} + DEPS + absl::config + PUBLIC +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + malloc_internal + HDRS + "internal/direct_mmap.h" + "internal/low_level_alloc.h" + SRCS + "internal/low_level_alloc.cc" + COPTS + ${ABSL_DEFAULT_COPTS} + DEPS + absl::base + absl::base_internal + absl::config + absl::core_headers + absl::dynamic_annotations + absl::raw_logging_internal + Threads::Threads +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + base_internal + HDRS + "internal/hide_ptr.h" + "internal/identity.h" + "internal/inline_variable.h" + "internal/invoke.h" + "internal/scheduling_mode.h" + COPTS + ${ABSL_DEFAULT_COPTS} + DEPS + absl::config + absl::type_traits +) + +absl_cc_library( + NAME + base + HDRS + "call_once.h" + "casts.h" + "internal/cycleclock.h" + "internal/cycleclock_config.h" + "internal/low_level_scheduling.h" + "internal/per_thread_tls.h" + "internal/spinlock.h" + "internal/sysinfo.h" + "internal/thread_identity.h" + "internal/tsan_mutex_interface.h" + "internal/unscaledcycleclock.h" + "internal/unscaledcycleclock_config.h" + SRCS + "internal/cycleclock.cc" + "internal/spinlock.cc" + "internal/sysinfo.cc" + "internal/thread_identity.cc" + "internal/unscaledcycleclock.cc" + COPTS + ${ABSL_DEFAULT_COPTS} + LINKOPTS + ${ABSL_DEFAULT_LINKOPTS} + $<$:-lrt> + $<$:-ladvapi32> + DEPS + absl::atomic_hook + absl::base_internal + absl::config + absl::core_headers + absl::dynamic_annotations + absl::log_severity + absl::nullability + absl::raw_logging_internal + absl::spinlock_wait + absl::type_traits + Threads::Threads + PUBLIC +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + throw_delegate + HDRS + "internal/throw_delegate.h" + SRCS + "internal/throw_delegate.cc" + COPTS + ${ABSL_DEFAULT_COPTS} + DEPS + absl::config + absl::raw_logging_internal +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + exception_testing + HDRS + "internal/exception_testing.h" + COPTS + ${ABSL_DEFAULT_COPTS} + DEPS + absl::config + GTest::gtest + TESTONLY +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + pretty_function + HDRS + "internal/pretty_function.h" + COPTS + ${ABSL_DEFAULT_COPTS} +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + exception_safety_testing + HDRS + "internal/exception_safety_testing.h" + SRCS + "internal/exception_safety_testing.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::config + absl::pretty_function + absl::memory + absl::meta + absl::strings + absl::utility + GTest::gtest + TESTONLY +) + +absl_cc_test( + NAME + absl_exception_safety_testing_test + SRCS + "exception_safety_testing_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::exception_safety_testing + absl::memory + GTest::gtest_main +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + atomic_hook_test_helper + SRCS + "internal/atomic_hook_test_helper.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::atomic_hook + absl::core_headers + TESTONLY +) + +absl_cc_test( + NAME + atomic_hook_test + SRCS + "internal/atomic_hook_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::atomic_hook_test_helper + absl::atomic_hook + absl::core_headers + GTest::gmock + GTest::gtest_main +) + +absl_cc_test( + NAME + bit_cast_test + SRCS + "bit_cast_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::base + absl::core_headers + GTest::gtest_main +) + +absl_cc_test( + NAME + errno_saver_test + SRCS + "internal/errno_saver_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::errno_saver + absl::strerror + GTest::gmock + GTest::gtest_main +) + +absl_cc_test( + NAME + throw_delegate_test + SRCS + "throw_delegate_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::base + absl::config + absl::throw_delegate + GTest::gtest_main +) + +absl_cc_test( + NAME + inline_variable_test + SRCS + "internal/inline_variable_testing.h" + "inline_variable_test.cc" + "inline_variable_test_a.cc" + "inline_variable_test_b.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::base_internal + GTest::gtest_main +) + +absl_cc_test( + NAME + invoke_test + SRCS + "invoke_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::base_internal + absl::memory + absl::strings + GTest::gmock + GTest::gtest_main +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + spinlock_test_common + SRCS + "spinlock_test_common.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::base + absl::config + absl::base_internal + absl::core_headers + absl::synchronization + GTest::gtest + TESTONLY +) + +# On bazel BUILD this target use "alwayslink = 1" which is not implemented here +absl_cc_test( + NAME + spinlock_test + SRCS + "spinlock_test_common.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::base + absl::base_internal + absl::config + absl::core_headers + absl::synchronization + GTest::gtest_main +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + endian + HDRS + "internal/endian.h" + "internal/unaligned_access.h" + COPTS + ${ABSL_DEFAULT_COPTS} + DEPS + absl::base + absl::config + absl::core_headers + absl::nullability + PUBLIC +) + +absl_cc_test( + NAME + endian_test + SRCS + "internal/endian_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::base + absl::config + absl::endian + GTest::gtest_main +) + +absl_cc_test( + NAME + config_test + SRCS + "config_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::config + absl::synchronization + GTest::gtest_main +) + +absl_cc_test( + NAME + call_once_test + SRCS + "call_once_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::base + absl::core_headers + absl::synchronization + GTest::gtest_main +) + +absl_cc_test( + NAME + no_destructor_test + SRCS + "no_destructor_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::no_destructor + absl::config + absl::raw_logging_internal + GTest::gtest_main +) + +absl_cc_test( + NAME + raw_logging_test + SRCS + "raw_logging_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::raw_logging_internal + absl::strings + GTest::gtest_main +) + +absl_cc_test( + NAME + sysinfo_test + SRCS + "internal/sysinfo_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::base + absl::synchronization + GTest::gtest_main +) + +absl_cc_test( + NAME + low_level_alloc_test + SRCS + "internal/low_level_alloc_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::malloc_internal + absl::node_hash_map + Threads::Threads +) + +absl_cc_test( + NAME + thread_identity_test + SRCS + "internal/thread_identity_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::base + absl::core_headers + absl::synchronization + Threads::Threads + GTest::gtest_main +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + scoped_set_env + SRCS + "internal/scoped_set_env.cc" + HDRS + "internal/scoped_set_env.h" + COPTS + ${ABSL_DEFAULT_COPTS} + DEPS + absl::config + absl::raw_logging_internal +) + +absl_cc_test( + NAME + scoped_set_env_test + SRCS + "internal/scoped_set_env_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::scoped_set_env + GTest::gtest_main +) + +absl_cc_test( + NAME + cmake_thread_test + SRCS + "internal/cmake_thread_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::base +) + +absl_cc_test( + NAME + log_severity_test + SRCS + "log_severity_test.cc" + DEPS + absl::flags_internal + absl::flags_marshalling + absl::log_severity + absl::strings + GTest::gmock + GTest::gtest_main +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + strerror + SRCS + "internal/strerror.cc" + HDRS + "internal/strerror.h" + COPTS + ${ABSL_DEFAULT_COPTS} + LINKOPTS + ${ABSL_DEFAULT_LINKOPTS} + DEPS + absl::config + absl::core_headers + absl::errno_saver +) + +absl_cc_test( + NAME + strerror_test + SRCS + "internal/strerror_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::strerror + absl::strings + GTest::gmock + GTest::gtest_main +) + +# Internal-only target, do not depend on directly. +absl_cc_library( + NAME + fast_type_id + HDRS + "internal/fast_type_id.h" + COPTS + ${ABSL_DEFAULT_COPTS} + LINKOPTS + ${ABSL_DEFAULT_LINKOPTS} + DEPS + absl::config +) + +absl_cc_test( + NAME + fast_type_id_test + SRCS + "internal/fast_type_id_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::fast_type_id + GTest::gtest_main +) + +absl_cc_library( + NAME + prefetch + HDRS + "prefetch.h" + COPTS + ${ABSL_DEFAULT_COPTS} + LINKOPTS + ${ABSL_DEFAULT_LINKOPTS} + DEPS + absl::config + absl::core_headers +) + +absl_cc_test( + NAME + prefetch_test + SRCS + "prefetch_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::prefetch + GTest::gtest_main +) + +absl_cc_test( + NAME + optimization_test + SRCS + "optimization_test.cc" + COPTS + ${ABSL_TEST_COPTS} + DEPS + absl::core_headers + absl::optional + GTest::gtest_main +) diff --git a/weight/_dep/abseil-cpp/absl/base/call_once.h b/weight/_dep/abseil-cpp/absl/base/call_once.h new file mode 100644 index 0000000000000000000000000000000000000000..7b0e69ccd52962f2015888a73360e1df4e755fc1 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/call_once.h @@ -0,0 +1,225 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// ----------------------------------------------------------------------------- +// File: call_once.h +// ----------------------------------------------------------------------------- +// +// This header file provides an Abseil version of `std::call_once` for invoking +// a given function at most once, across all threads. This Abseil version is +// faster than the C++11 version and incorporates the C++17 argument-passing +// fix, so that (for example) non-const references may be passed to the invoked +// function. + +#ifndef ABSL_BASE_CALL_ONCE_H_ +#define ABSL_BASE_CALL_ONCE_H_ + +#include +#include +#include +#include +#include + +#include "absl/base/internal/invoke.h" +#include "absl/base/internal/low_level_scheduling.h" +#include "absl/base/internal/raw_logging.h" +#include "absl/base/internal/scheduling_mode.h" +#include "absl/base/internal/spinlock_wait.h" +#include "absl/base/macros.h" +#include "absl/base/nullability.h" +#include "absl/base/optimization.h" +#include "absl/base/port.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN + +class once_flag; + +namespace base_internal { +absl::Nonnull*> ControlWord( + absl::Nonnull flag); +} // namespace base_internal + +// call_once() +// +// For all invocations using a given `once_flag`, invokes a given `fn` exactly +// once across all threads. The first call to `call_once()` with a particular +// `once_flag` argument (that does not throw an exception) will run the +// specified function with the provided `args`; other calls with the same +// `once_flag` argument will not run the function, but will wait +// for the provided function to finish running (if it is still running). +// +// This mechanism provides a safe, simple, and fast mechanism for one-time +// initialization in a multi-threaded process. +// +// Example: +// +// class MyInitClass { +// public: +// ... +// mutable absl::once_flag once_; +// +// MyInitClass* init() const { +// absl::call_once(once_, &MyInitClass::Init, this); +// return ptr_; +// } +// +template +void call_once(absl::once_flag& flag, Callable&& fn, Args&&... args); + +// once_flag +// +// Objects of this type are used to distinguish calls to `call_once()` and +// ensure the provided function is only invoked once across all threads. This +// type is not copyable or movable. However, it has a `constexpr` +// constructor, and is safe to use as a namespace-scoped global variable. +class once_flag { + public: + constexpr once_flag() : control_(0) {} + once_flag(const once_flag&) = delete; + once_flag& operator=(const once_flag&) = delete; + + private: + friend absl::Nonnull*> base_internal::ControlWord( + absl::Nonnull flag); + std::atomic control_; +}; + +//------------------------------------------------------------------------------ +// End of public interfaces. +// Implementation details follow. +//------------------------------------------------------------------------------ + +namespace base_internal { + +// Like call_once, but uses KERNEL_ONLY scheduling. Intended to be used to +// initialize entities used by the scheduler implementation. +template +void LowLevelCallOnce(absl::Nonnull flag, Callable&& fn, + Args&&... args); + +// Disables scheduling while on stack when scheduling mode is non-cooperative. +// No effect for cooperative scheduling modes. +class SchedulingHelper { + public: + explicit SchedulingHelper(base_internal::SchedulingMode mode) : mode_(mode) { + if (mode_ == base_internal::SCHEDULE_KERNEL_ONLY) { + guard_result_ = base_internal::SchedulingGuard::DisableRescheduling(); + } + } + + ~SchedulingHelper() { + if (mode_ == base_internal::SCHEDULE_KERNEL_ONLY) { + base_internal::SchedulingGuard::EnableRescheduling(guard_result_); + } + } + + private: + base_internal::SchedulingMode mode_; + bool guard_result_ = false; +}; + +// Bit patterns for call_once state machine values. Internal implementation +// detail, not for use by clients. +// +// The bit patterns are arbitrarily chosen from unlikely values, to aid in +// debugging. However, kOnceInit must be 0, so that a zero-initialized +// once_flag will be valid for immediate use. +enum { + kOnceInit = 0, + kOnceRunning = 0x65C2937B, + kOnceWaiter = 0x05A308D2, + // A very small constant is chosen for kOnceDone so that it fit in a single + // compare with immediate instruction for most common ISAs. This is verified + // for x86, POWER and ARM. + kOnceDone = 221, // Random Number +}; + +template +ABSL_ATTRIBUTE_NOINLINE void CallOnceImpl( + absl::Nonnull*> control, + base_internal::SchedulingMode scheduling_mode, Callable&& fn, + Args&&... args) { +#ifndef NDEBUG + { + uint32_t old_control = control->load(std::memory_order_relaxed); + if (old_control != kOnceInit && + old_control != kOnceRunning && + old_control != kOnceWaiter && + old_control != kOnceDone) { + ABSL_RAW_LOG(FATAL, "Unexpected value for control word: 0x%lx", + static_cast(old_control)); // NOLINT + } + } +#endif // NDEBUG + static const base_internal::SpinLockWaitTransition trans[] = { + {kOnceInit, kOnceRunning, true}, + {kOnceRunning, kOnceWaiter, false}, + {kOnceDone, kOnceDone, true}}; + + // Must do this before potentially modifying control word's state. + base_internal::SchedulingHelper maybe_disable_scheduling(scheduling_mode); + // Short circuit the simplest case to avoid procedure call overhead. + // The base_internal::SpinLockWait() call returns either kOnceInit or + // kOnceDone. If it returns kOnceDone, it must have loaded the control word + // with std::memory_order_acquire and seen a value of kOnceDone. + uint32_t old_control = kOnceInit; + if (control->compare_exchange_strong(old_control, kOnceRunning, + std::memory_order_relaxed) || + base_internal::SpinLockWait(control, ABSL_ARRAYSIZE(trans), trans, + scheduling_mode) == kOnceInit) { + base_internal::invoke(std::forward(fn), + std::forward(args)...); + old_control = + control->exchange(base_internal::kOnceDone, std::memory_order_release); + if (old_control == base_internal::kOnceWaiter) { + base_internal::SpinLockWake(control, true); + } + } // else *control is already kOnceDone +} + +inline absl::Nonnull*> ControlWord( + absl::Nonnull flag) { + return &flag->control_; +} + +template +void LowLevelCallOnce(absl::Nonnull flag, Callable&& fn, + Args&&... args) { + std::atomic* once = base_internal::ControlWord(flag); + uint32_t s = once->load(std::memory_order_acquire); + if (ABSL_PREDICT_FALSE(s != base_internal::kOnceDone)) { + base_internal::CallOnceImpl(once, base_internal::SCHEDULE_KERNEL_ONLY, + std::forward(fn), + std::forward(args)...); + } +} + +} // namespace base_internal + +template +void call_once(absl::once_flag& flag, Callable&& fn, Args&&... args) { + std::atomic* once = base_internal::ControlWord(&flag); + uint32_t s = once->load(std::memory_order_acquire); + if (ABSL_PREDICT_FALSE(s != base_internal::kOnceDone)) { + base_internal::CallOnceImpl( + once, base_internal::SCHEDULE_COOPERATIVE_AND_KERNEL, + std::forward(fn), std::forward(args)...); + } +} + +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_CALL_ONCE_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/config.h b/weight/_dep/abseil-cpp/absl/base/config.h new file mode 100644 index 0000000000000000000000000000000000000000..3933a3dbe29122424c345e0e68e99afe2434f898 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/config.h @@ -0,0 +1,1004 @@ +// +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// ----------------------------------------------------------------------------- +// File: config.h +// ----------------------------------------------------------------------------- +// +// This header file defines a set of macros for checking the presence of +// important compiler and platform features. Such macros can be used to +// produce portable code by parameterizing compilation based on the presence or +// lack of a given feature. +// +// We define a "feature" as some interface we wish to program to: for example, +// a library function or system call. A value of `1` indicates support for +// that feature; any other value indicates the feature support is undefined. +// +// Example: +// +// Suppose a programmer wants to write a program that uses the 'mmap()' system +// call. The Abseil macro for that feature (`ABSL_HAVE_MMAP`) allows you to +// selectively include the `mmap.h` header and bracket code using that feature +// in the macro: +// +// #include "absl/base/config.h" +// +// #ifdef ABSL_HAVE_MMAP +// #include "sys/mman.h" +// #endif //ABSL_HAVE_MMAP +// +// ... +// #ifdef ABSL_HAVE_MMAP +// void *ptr = mmap(...); +// ... +// #endif // ABSL_HAVE_MMAP + +#ifndef ABSL_BASE_CONFIG_H_ +#define ABSL_BASE_CONFIG_H_ + +// Included for the __GLIBC__ macro (or similar macros on other systems). +#include + +#ifdef __cplusplus +// Included for __GLIBCXX__, _LIBCPP_VERSION +#include +#endif // __cplusplus + +// ABSL_INTERNAL_CPLUSPLUS_LANG +// +// MSVC does not set the value of __cplusplus correctly, but instead uses +// _MSVC_LANG as a stand-in. +// https://docs.microsoft.com/en-us/cpp/preprocessor/predefined-macros +// +// However, there are reports that MSVC even sets _MSVC_LANG incorrectly at +// times, for example: +// https://github.com/microsoft/vscode-cpptools/issues/1770 +// https://reviews.llvm.org/D70996 +// +// For this reason, this symbol is considered INTERNAL and code outside of +// Abseil must not use it. +#if defined(_MSVC_LANG) +#define ABSL_INTERNAL_CPLUSPLUS_LANG _MSVC_LANG +#elif defined(__cplusplus) +#define ABSL_INTERNAL_CPLUSPLUS_LANG __cplusplus +#endif + +#if defined(ABSL_INTERNAL_CPLUSPLUS_LANG) && \ + ABSL_INTERNAL_CPLUSPLUS_LANG >= 202002L +// Include library feature test macros. +#include +#endif + +#if defined(__APPLE__) +// Included for TARGET_OS_IPHONE, __IPHONE_OS_VERSION_MIN_REQUIRED, +// __IPHONE_8_0. +#include +#include +#endif + +#include "absl/base/options.h" +#include "absl/base/policy_checks.h" + +// Abseil long-term support (LTS) releases will define +// `ABSL_LTS_RELEASE_VERSION` to the integer representing the date string of the +// LTS release version, and will define `ABSL_LTS_RELEASE_PATCH_LEVEL` to the +// integer representing the patch-level for that release. +// +// For example, for LTS release version "20300401.2", this would give us +// ABSL_LTS_RELEASE_VERSION == 20300401 && ABSL_LTS_RELEASE_PATCH_LEVEL == 2 +// +// These symbols will not be defined in non-LTS code. +// +// Abseil recommends that clients live-at-head. Therefore, if you are using +// these symbols to assert a minimum version requirement, we recommend you do it +// as +// +// #if defined(ABSL_LTS_RELEASE_VERSION) && ABSL_LTS_RELEASE_VERSION < 20300401 +// #error Project foo requires Abseil LTS version >= 20300401 +// #endif +// +// The `defined(ABSL_LTS_RELEASE_VERSION)` part of the check excludes +// live-at-head clients from the minimum version assertion. +// +// See https://abseil.io/about/releases for more information on Abseil release +// management. +// +// LTS releases can be obtained from +// https://github.com/abseil/abseil-cpp/releases. +#define ABSL_LTS_RELEASE_VERSION 20240116 +#define ABSL_LTS_RELEASE_PATCH_LEVEL 2 + +// Helper macro to convert a CPP variable to a string literal. +#define ABSL_INTERNAL_DO_TOKEN_STR(x) #x +#define ABSL_INTERNAL_TOKEN_STR(x) ABSL_INTERNAL_DO_TOKEN_STR(x) + +// ----------------------------------------------------------------------------- +// Abseil namespace annotations +// ----------------------------------------------------------------------------- + +// ABSL_NAMESPACE_BEGIN/ABSL_NAMESPACE_END +// +// An annotation placed at the beginning/end of each `namespace absl` scope. +// This is used to inject an inline namespace. +// +// The proper way to write Abseil code in the `absl` namespace is: +// +// namespace absl { +// ABSL_NAMESPACE_BEGIN +// +// void Foo(); // absl::Foo(). +// +// ABSL_NAMESPACE_END +// } // namespace absl +// +// Users of Abseil should not use these macros, because users of Abseil should +// not write `namespace absl {` in their own code for any reason. (Abseil does +// not support forward declarations of its own types, nor does it support +// user-provided specialization of Abseil templates. Code that violates these +// rules may be broken without warning.) +#if !defined(ABSL_OPTION_USE_INLINE_NAMESPACE) || \ + !defined(ABSL_OPTION_INLINE_NAMESPACE_NAME) +#error options.h is misconfigured. +#endif + +// Check that ABSL_OPTION_INLINE_NAMESPACE_NAME is neither "head" nor "" +#if defined(__cplusplus) && ABSL_OPTION_USE_INLINE_NAMESPACE == 1 + +#define ABSL_INTERNAL_INLINE_NAMESPACE_STR \ + ABSL_INTERNAL_TOKEN_STR(ABSL_OPTION_INLINE_NAMESPACE_NAME) + +static_assert(ABSL_INTERNAL_INLINE_NAMESPACE_STR[0] != '\0', + "options.h misconfigured: ABSL_OPTION_INLINE_NAMESPACE_NAME must " + "not be empty."); +static_assert(ABSL_INTERNAL_INLINE_NAMESPACE_STR[0] != 'h' || + ABSL_INTERNAL_INLINE_NAMESPACE_STR[1] != 'e' || + ABSL_INTERNAL_INLINE_NAMESPACE_STR[2] != 'a' || + ABSL_INTERNAL_INLINE_NAMESPACE_STR[3] != 'd' || + ABSL_INTERNAL_INLINE_NAMESPACE_STR[4] != '\0', + "options.h misconfigured: ABSL_OPTION_INLINE_NAMESPACE_NAME must " + "be changed to a new, unique identifier name."); + +#endif + +#if ABSL_OPTION_USE_INLINE_NAMESPACE == 0 +#define ABSL_NAMESPACE_BEGIN +#define ABSL_NAMESPACE_END +#define ABSL_INTERNAL_C_SYMBOL(x) x +#elif ABSL_OPTION_USE_INLINE_NAMESPACE == 1 +#define ABSL_NAMESPACE_BEGIN \ + inline namespace ABSL_OPTION_INLINE_NAMESPACE_NAME { +#define ABSL_NAMESPACE_END } +#define ABSL_INTERNAL_C_SYMBOL_HELPER_2(x, v) x##_##v +#define ABSL_INTERNAL_C_SYMBOL_HELPER_1(x, v) \ + ABSL_INTERNAL_C_SYMBOL_HELPER_2(x, v) +#define ABSL_INTERNAL_C_SYMBOL(x) \ + ABSL_INTERNAL_C_SYMBOL_HELPER_1(x, ABSL_OPTION_INLINE_NAMESPACE_NAME) +#else +#error options.h is misconfigured. +#endif + +// ----------------------------------------------------------------------------- +// Compiler Feature Checks +// ----------------------------------------------------------------------------- + +// ABSL_HAVE_BUILTIN() +// +// Checks whether the compiler supports a Clang Feature Checking Macro, and if +// so, checks whether it supports the provided builtin function "x" where x +// is one of the functions noted in +// https://clang.llvm.org/docs/LanguageExtensions.html +// +// Note: Use this macro to avoid an extra level of #ifdef __has_builtin check. +// http://releases.llvm.org/3.3/tools/clang/docs/LanguageExtensions.html +#ifdef __has_builtin +#define ABSL_HAVE_BUILTIN(x) __has_builtin(x) +#else +#define ABSL_HAVE_BUILTIN(x) 0 +#endif + +#ifdef __has_feature +#define ABSL_HAVE_FEATURE(f) __has_feature(f) +#else +#define ABSL_HAVE_FEATURE(f) 0 +#endif + +// Portable check for GCC minimum version: +// https://gcc.gnu.org/onlinedocs/cpp/Common-Predefined-Macros.html +#if defined(__GNUC__) && defined(__GNUC_MINOR__) +#define ABSL_INTERNAL_HAVE_MIN_GNUC_VERSION(x, y) \ + (__GNUC__ > (x) || __GNUC__ == (x) && __GNUC_MINOR__ >= (y)) +#else +#define ABSL_INTERNAL_HAVE_MIN_GNUC_VERSION(x, y) 0 +#endif + +#if defined(__clang__) && defined(__clang_major__) && defined(__clang_minor__) +#define ABSL_INTERNAL_HAVE_MIN_CLANG_VERSION(x, y) \ + (__clang_major__ > (x) || __clang_major__ == (x) && __clang_minor__ >= (y)) +#else +#define ABSL_INTERNAL_HAVE_MIN_CLANG_VERSION(x, y) 0 +#endif + +// ABSL_HAVE_TLS is defined to 1 when __thread should be supported. +// We assume __thread is supported on Linux or Asylo when compiled with Clang or +// compiled against libstdc++ with _GLIBCXX_HAVE_TLS defined. +#ifdef ABSL_HAVE_TLS +#error ABSL_HAVE_TLS cannot be directly set +#elif (defined(__linux__) || defined(__ASYLO__)) && \ + (defined(__clang__) || defined(_GLIBCXX_HAVE_TLS)) +#define ABSL_HAVE_TLS 1 +#endif + +// ABSL_HAVE_STD_IS_TRIVIALLY_DESTRUCTIBLE +// +// Checks whether `std::is_trivially_destructible` is supported. +#ifdef ABSL_HAVE_STD_IS_TRIVIALLY_DESTRUCTIBLE +#error ABSL_HAVE_STD_IS_TRIVIALLY_DESTRUCTIBLE cannot be directly set +#define ABSL_HAVE_STD_IS_TRIVIALLY_DESTRUCTIBLE 1 +#endif + +// ABSL_HAVE_STD_IS_TRIVIALLY_CONSTRUCTIBLE +// +// Checks whether `std::is_trivially_default_constructible` and +// `std::is_trivially_copy_constructible` are supported. +#ifdef ABSL_HAVE_STD_IS_TRIVIALLY_CONSTRUCTIBLE +#error ABSL_HAVE_STD_IS_TRIVIALLY_CONSTRUCTIBLE cannot be directly set +#else +#define ABSL_HAVE_STD_IS_TRIVIALLY_CONSTRUCTIBLE 1 +#endif + +// ABSL_HAVE_STD_IS_TRIVIALLY_ASSIGNABLE +// +// Checks whether `std::is_trivially_copy_assignable` is supported. +#ifdef ABSL_HAVE_STD_IS_TRIVIALLY_ASSIGNABLE +#error ABSL_HAVE_STD_IS_TRIVIALLY_ASSIGNABLE cannot be directly set +#else +#define ABSL_HAVE_STD_IS_TRIVIALLY_ASSIGNABLE 1 +#endif + +// ABSL_HAVE_STD_IS_TRIVIALLY_COPYABLE +// +// Checks whether `std::is_trivially_copyable` is supported. +#ifdef ABSL_HAVE_STD_IS_TRIVIALLY_COPYABLE +#error ABSL_HAVE_STD_IS_TRIVIALLY_COPYABLE cannot be directly set +#define ABSL_HAVE_STD_IS_TRIVIALLY_COPYABLE 1 +#endif + +// ABSL_HAVE_THREAD_LOCAL +// +// Checks whether C++11's `thread_local` storage duration specifier is +// supported. +#ifdef ABSL_HAVE_THREAD_LOCAL +#error ABSL_HAVE_THREAD_LOCAL cannot be directly set +#elif defined(__APPLE__) +// Notes: +// * Xcode's clang did not support `thread_local` until version 8, and +// even then not for all iOS < 9.0. +// * Xcode 9.3 started disallowing `thread_local` for 32-bit iOS simulator +// targeting iOS 9.x. +// * Xcode 10 moves the deployment target check for iOS < 9.0 to link time +// making ABSL_HAVE_FEATURE unreliable there. +// +#if ABSL_HAVE_FEATURE(cxx_thread_local) && \ + !(TARGET_OS_IPHONE && __IPHONE_OS_VERSION_MIN_REQUIRED < __IPHONE_9_0) +#define ABSL_HAVE_THREAD_LOCAL 1 +#endif +#else // !defined(__APPLE__) +#define ABSL_HAVE_THREAD_LOCAL 1 +#endif + +// There are platforms for which TLS should not be used even though the compiler +// makes it seem like it's supported (Android NDK < r12b for example). +// This is primarily because of linker problems and toolchain misconfiguration: +// Abseil does not intend to support this indefinitely. Currently, the newest +// toolchain that we intend to support that requires this behavior is the +// r11 NDK - allowing for a 5 year support window on that means this option +// is likely to be removed around June of 2021. +// TLS isn't supported until NDK r12b per +// https://developer.android.com/ndk/downloads/revision_history.html +// Since NDK r16, `__NDK_MAJOR__` and `__NDK_MINOR__` are defined in +// . For NDK < r16, users should define these macros, +// e.g. `-D__NDK_MAJOR__=11 -D__NKD_MINOR__=0` for NDK r11. +#if defined(__ANDROID__) && defined(__clang__) +#if __has_include() +#include +#endif // __has_include() +#if defined(__ANDROID__) && defined(__clang__) && defined(__NDK_MAJOR__) && \ + defined(__NDK_MINOR__) && \ + ((__NDK_MAJOR__ < 12) || ((__NDK_MAJOR__ == 12) && (__NDK_MINOR__ < 1))) +#undef ABSL_HAVE_TLS +#undef ABSL_HAVE_THREAD_LOCAL +#endif +#endif // defined(__ANDROID__) && defined(__clang__) + +// ABSL_HAVE_INTRINSIC_INT128 +// +// Checks whether the __int128 compiler extension for a 128-bit integral type is +// supported. +// +// Note: __SIZEOF_INT128__ is defined by Clang and GCC when __int128 is +// supported, but we avoid using it in certain cases: +// * On Clang: +// * Building using Clang for Windows, where the Clang runtime library has +// 128-bit support only on LP64 architectures, but Windows is LLP64. +// * On Nvidia's nvcc: +// * nvcc also defines __GNUC__ and __SIZEOF_INT128__, but not all versions +// actually support __int128. +#ifdef ABSL_HAVE_INTRINSIC_INT128 +#error ABSL_HAVE_INTRINSIC_INT128 cannot be directly set +#elif defined(__SIZEOF_INT128__) +#if (defined(__clang__) && !defined(_WIN32)) || \ + (defined(__CUDACC__) && __CUDACC_VER_MAJOR__ >= 9) || \ + (defined(__GNUC__) && !defined(__clang__) && !defined(__CUDACC__)) +#define ABSL_HAVE_INTRINSIC_INT128 1 +#elif defined(__CUDACC__) +// __CUDACC_VER__ is a full version number before CUDA 9, and is defined to a +// string explaining that it has been removed starting with CUDA 9. We use +// nested #ifs because there is no short-circuiting in the preprocessor. +// NOTE: `__CUDACC__` could be undefined while `__CUDACC_VER__` is defined. +#if __CUDACC_VER__ >= 70000 +#define ABSL_HAVE_INTRINSIC_INT128 1 +#endif // __CUDACC_VER__ >= 70000 +#endif // defined(__CUDACC__) +#endif // ABSL_HAVE_INTRINSIC_INT128 + +// ABSL_HAVE_EXCEPTIONS +// +// Checks whether the compiler both supports and enables exceptions. Many +// compilers support a "no exceptions" mode that disables exceptions. +// +// Generally, when ABSL_HAVE_EXCEPTIONS is not defined: +// +// * Code using `throw` and `try` may not compile. +// * The `noexcept` specifier will still compile and behave as normal. +// * The `noexcept` operator may still return `false`. +// +// For further details, consult the compiler's documentation. +#ifdef ABSL_HAVE_EXCEPTIONS +#error ABSL_HAVE_EXCEPTIONS cannot be directly set. +#elif ABSL_INTERNAL_HAVE_MIN_CLANG_VERSION(3, 6) +// Clang >= 3.6 +#if ABSL_HAVE_FEATURE(cxx_exceptions) +#define ABSL_HAVE_EXCEPTIONS 1 +#endif // ABSL_HAVE_FEATURE(cxx_exceptions) +#elif defined(__clang__) +// Clang < 3.6 +// http://releases.llvm.org/3.6.0/tools/clang/docs/ReleaseNotes.html#the-exceptions-macro +#if defined(__EXCEPTIONS) && ABSL_HAVE_FEATURE(cxx_exceptions) +#define ABSL_HAVE_EXCEPTIONS 1 +#endif // defined(__EXCEPTIONS) && ABSL_HAVE_FEATURE(cxx_exceptions) +// Handle remaining special cases and default to exceptions being supported. +#elif !(defined(__GNUC__) && (__GNUC__ < 5) && !defined(__EXCEPTIONS)) && \ + !(ABSL_INTERNAL_HAVE_MIN_GNUC_VERSION(5, 0) && \ + !defined(__cpp_exceptions)) && \ + !(defined(_MSC_VER) && !defined(_CPPUNWIND)) +#define ABSL_HAVE_EXCEPTIONS 1 +#endif + +// ----------------------------------------------------------------------------- +// Platform Feature Checks +// ----------------------------------------------------------------------------- + +// Currently supported operating systems and associated preprocessor +// symbols: +// +// Linux and Linux-derived __linux__ +// Android __ANDROID__ (implies __linux__) +// Linux (non-Android) __linux__ && !__ANDROID__ +// Darwin (macOS and iOS) __APPLE__ +// Akaros (http://akaros.org) __ros__ +// Windows _WIN32 +// NaCL __native_client__ +// AsmJS __asmjs__ +// WebAssembly (Emscripten) __EMSCRIPTEN__ +// Fuchsia __Fuchsia__ +// +// Note that since Android defines both __ANDROID__ and __linux__, one +// may probe for either Linux or Android by simply testing for __linux__. + +// ABSL_HAVE_MMAP +// +// Checks whether the platform has an mmap(2) implementation as defined in +// POSIX.1-2001. +#ifdef ABSL_HAVE_MMAP +#error ABSL_HAVE_MMAP cannot be directly set +#elif defined(__linux__) || defined(__APPLE__) || defined(__FreeBSD__) || \ + defined(_AIX) || defined(__ros__) || defined(__native_client__) || \ + defined(__asmjs__) || defined(__EMSCRIPTEN__) || defined(__Fuchsia__) || \ + defined(__sun) || defined(__ASYLO__) || defined(__myriad2__) || \ + defined(__HAIKU__) || defined(__OpenBSD__) || defined(__NetBSD__) || \ + defined(__QNX__) || defined(__VXWORKS__) || defined(__hexagon__) +#define ABSL_HAVE_MMAP 1 +#endif + +// ABSL_HAVE_PTHREAD_GETSCHEDPARAM +// +// Checks whether the platform implements the pthread_(get|set)schedparam(3) +// functions as defined in POSIX.1-2001. +#ifdef ABSL_HAVE_PTHREAD_GETSCHEDPARAM +#error ABSL_HAVE_PTHREAD_GETSCHEDPARAM cannot be directly set +#elif defined(__linux__) || defined(__APPLE__) || defined(__FreeBSD__) || \ + defined(_AIX) || defined(__ros__) || defined(__OpenBSD__) || \ + defined(__NetBSD__) || defined(__VXWORKS__) +#define ABSL_HAVE_PTHREAD_GETSCHEDPARAM 1 +#endif + +// ABSL_HAVE_SCHED_GETCPU +// +// Checks whether sched_getcpu is available. +#ifdef ABSL_HAVE_SCHED_GETCPU +#error ABSL_HAVE_SCHED_GETCPU cannot be directly set +#elif defined(__linux__) +#define ABSL_HAVE_SCHED_GETCPU 1 +#endif + +// ABSL_HAVE_SCHED_YIELD +// +// Checks whether the platform implements sched_yield(2) as defined in +// POSIX.1-2001. +#ifdef ABSL_HAVE_SCHED_YIELD +#error ABSL_HAVE_SCHED_YIELD cannot be directly set +#elif defined(__linux__) || defined(__ros__) || defined(__native_client__) || \ + defined(__VXWORKS__) +#define ABSL_HAVE_SCHED_YIELD 1 +#endif + +// ABSL_HAVE_SEMAPHORE_H +// +// Checks whether the platform supports the header and sem_init(3) +// family of functions as standardized in POSIX.1-2001. +// +// Note: While Apple provides for both iOS and macOS, it is +// explicitly deprecated and will cause build failures if enabled for those +// platforms. We side-step the issue by not defining it here for Apple +// platforms. +#ifdef ABSL_HAVE_SEMAPHORE_H +#error ABSL_HAVE_SEMAPHORE_H cannot be directly set +#elif defined(__linux__) || defined(__ros__) || defined(__VXWORKS__) +#define ABSL_HAVE_SEMAPHORE_H 1 +#endif + +// ABSL_HAVE_ALARM +// +// Checks whether the platform supports the header and alarm(2) +// function as standardized in POSIX.1-2001. +#ifdef ABSL_HAVE_ALARM +#error ABSL_HAVE_ALARM cannot be directly set +#elif defined(__GOOGLE_GRTE_VERSION__) +// feature tests for Google's GRTE +#define ABSL_HAVE_ALARM 1 +#elif defined(__GLIBC__) +// feature test for glibc +#define ABSL_HAVE_ALARM 1 +#elif defined(_MSC_VER) +// feature tests for Microsoft's library +#elif defined(__MINGW32__) +// mingw32 doesn't provide alarm(2): +// https://osdn.net/projects/mingw/scm/git/mingw-org-wsl/blobs/5.2-trunk/mingwrt/include/unistd.h +// mingw-w64 provides a no-op implementation: +// https://sourceforge.net/p/mingw-w64/mingw-w64/ci/master/tree/mingw-w64-crt/misc/alarm.c +#elif defined(__EMSCRIPTEN__) +// emscripten doesn't support signals +#elif defined(__wasi__) +// WASI doesn't support signals +#elif defined(__Fuchsia__) +// Signals don't exist on fuchsia. +#elif defined(__native_client__) +// Signals don't exist on hexagon/QuRT +#elif defined(__hexagon__) +#else +// other standard libraries +#define ABSL_HAVE_ALARM 1 +#endif + +// ABSL_IS_LITTLE_ENDIAN +// ABSL_IS_BIG_ENDIAN +// +// Checks the endianness of the platform. +// +// Notes: uses the built in endian macros provided by GCC (since 4.6) and +// Clang (since 3.2); see +// https://gcc.gnu.org/onlinedocs/cpp/Common-Predefined-Macros.html. +// Otherwise, if _WIN32, assume little endian. Otherwise, bail with an error. +#if defined(ABSL_IS_BIG_ENDIAN) +#error "ABSL_IS_BIG_ENDIAN cannot be directly set." +#endif +#if defined(ABSL_IS_LITTLE_ENDIAN) +#error "ABSL_IS_LITTLE_ENDIAN cannot be directly set." +#endif + +#if (defined(__BYTE_ORDER__) && defined(__ORDER_LITTLE_ENDIAN__) && \ + __BYTE_ORDER__ == __ORDER_LITTLE_ENDIAN__) +#define ABSL_IS_LITTLE_ENDIAN 1 +#elif defined(__BYTE_ORDER__) && defined(__ORDER_BIG_ENDIAN__) && \ + __BYTE_ORDER__ == __ORDER_BIG_ENDIAN__ +#define ABSL_IS_BIG_ENDIAN 1 +#elif defined(_WIN32) +#define ABSL_IS_LITTLE_ENDIAN 1 +#else +#error "absl endian detection needs to be set up for your compiler" +#endif + +// macOS < 10.13 and iOS < 12 don't support , , or +// because the libc++ shared library shipped on the system doesn't have the +// requisite exported symbols. See +// https://github.com/abseil/abseil-cpp/issues/207 and +// https://developer.apple.com/documentation/xcode_release_notes/xcode_10_release_notes +// +// libc++ spells out the availability requirements in the file +// llvm-project/libcxx/include/__config via the #define +// _LIBCPP_AVAILABILITY_BAD_OPTIONAL_ACCESS. The set of versions has been +// modified a few times, via +// https://github.com/llvm/llvm-project/commit/7fb40e1569dd66292b647f4501b85517e9247953 +// and +// https://github.com/llvm/llvm-project/commit/0bc451e7e137c4ccadcd3377250874f641ca514a +// The second has the actually correct versions, thus, is what we copy here. +#if defined(__APPLE__) && \ + ((defined(__ENVIRONMENT_MAC_OS_X_VERSION_MIN_REQUIRED__) && \ + __ENVIRONMENT_MAC_OS_X_VERSION_MIN_REQUIRED__ < 101300) || \ + (defined(__ENVIRONMENT_IPHONE_OS_VERSION_MIN_REQUIRED__) && \ + __ENVIRONMENT_IPHONE_OS_VERSION_MIN_REQUIRED__ < 120000) || \ + (defined(__ENVIRONMENT_WATCH_OS_VERSION_MIN_REQUIRED__) && \ + __ENVIRONMENT_WATCH_OS_VERSION_MIN_REQUIRED__ < 50000) || \ + (defined(__ENVIRONMENT_TV_OS_VERSION_MIN_REQUIRED__) && \ + __ENVIRONMENT_TV_OS_VERSION_MIN_REQUIRED__ < 120000)) +#define ABSL_INTERNAL_APPLE_CXX17_TYPES_UNAVAILABLE 1 +#else +#define ABSL_INTERNAL_APPLE_CXX17_TYPES_UNAVAILABLE 0 +#endif + +// ABSL_HAVE_STD_ANY +// +// Checks whether C++17 std::any is available. +#ifdef ABSL_HAVE_STD_ANY +#error "ABSL_HAVE_STD_ANY cannot be directly set." +#elif defined(__cpp_lib_any) && __cpp_lib_any >= 201606L +#define ABSL_HAVE_STD_ANY 1 +#elif defined(ABSL_INTERNAL_CPLUSPLUS_LANG) && \ + ABSL_INTERNAL_CPLUSPLUS_LANG >= 201703L && \ + !ABSL_INTERNAL_APPLE_CXX17_TYPES_UNAVAILABLE +#define ABSL_HAVE_STD_ANY 1 +#endif + +// ABSL_HAVE_STD_OPTIONAL +// +// Checks whether C++17 std::optional is available. +#ifdef ABSL_HAVE_STD_OPTIONAL +#error "ABSL_HAVE_STD_OPTIONAL cannot be directly set." +#elif defined(__cpp_lib_optional) && __cpp_lib_optional >= 202106L +#define ABSL_HAVE_STD_OPTIONAL 1 +#elif defined(ABSL_INTERNAL_CPLUSPLUS_LANG) && \ + ABSL_INTERNAL_CPLUSPLUS_LANG >= 201703L && \ + !ABSL_INTERNAL_APPLE_CXX17_TYPES_UNAVAILABLE +#define ABSL_HAVE_STD_OPTIONAL 1 +#endif + +// ABSL_HAVE_STD_VARIANT +// +// Checks whether C++17 std::variant is available. +#ifdef ABSL_HAVE_STD_VARIANT +#error "ABSL_HAVE_STD_VARIANT cannot be directly set." +#elif defined(__cpp_lib_variant) && __cpp_lib_variant >= 201606L +#define ABSL_HAVE_STD_VARIANT 1 +#elif defined(ABSL_INTERNAL_CPLUSPLUS_LANG) && \ + ABSL_INTERNAL_CPLUSPLUS_LANG >= 201703L && \ + !ABSL_INTERNAL_APPLE_CXX17_TYPES_UNAVAILABLE +#define ABSL_HAVE_STD_VARIANT 1 +#endif + +// ABSL_HAVE_STD_STRING_VIEW +// +// Checks whether C++17 std::string_view is available. +#ifdef ABSL_HAVE_STD_STRING_VIEW +#error "ABSL_HAVE_STD_STRING_VIEW cannot be directly set." +#elif defined(__cpp_lib_string_view) && __cpp_lib_string_view >= 201606L +#define ABSL_HAVE_STD_STRING_VIEW 1 +#elif defined(ABSL_INTERNAL_CPLUSPLUS_LANG) && \ + ABSL_INTERNAL_CPLUSPLUS_LANG >= 201703L +#define ABSL_HAVE_STD_STRING_VIEW 1 +#endif + +// ABSL_HAVE_STD_ORDERING +// +// Checks whether C++20 std::{partial,weak,strong}_ordering are available. +// +// __cpp_lib_three_way_comparison is missing on libc++ +// (https://github.com/llvm/llvm-project/issues/73953) so treat it as defined +// when building in C++20 mode. +#ifdef ABSL_HAVE_STD_ORDERING +#error "ABSL_HAVE_STD_ORDERING cannot be directly set." +#elif (defined(__cpp_lib_three_way_comparison) && \ + __cpp_lib_three_way_comparison >= 201907L) || \ + (defined(ABSL_INTERNAL_CPLUSPLUS_LANG) && \ + ABSL_INTERNAL_CPLUSPLUS_LANG >= 202002L) +#define ABSL_HAVE_STD_ORDERING 1 +#endif + +// ABSL_USES_STD_ANY +// +// Indicates whether absl::any is an alias for std::any. +#if !defined(ABSL_OPTION_USE_STD_ANY) +#error options.h is misconfigured. +#elif ABSL_OPTION_USE_STD_ANY == 0 || \ + (ABSL_OPTION_USE_STD_ANY == 2 && !defined(ABSL_HAVE_STD_ANY)) +#undef ABSL_USES_STD_ANY +#elif ABSL_OPTION_USE_STD_ANY == 1 || \ + (ABSL_OPTION_USE_STD_ANY == 2 && defined(ABSL_HAVE_STD_ANY)) +#define ABSL_USES_STD_ANY 1 +#else +#error options.h is misconfigured. +#endif + +// ABSL_USES_STD_OPTIONAL +// +// Indicates whether absl::optional is an alias for std::optional. +#if !defined(ABSL_OPTION_USE_STD_OPTIONAL) +#error options.h is misconfigured. +#elif ABSL_OPTION_USE_STD_OPTIONAL == 0 || \ + (ABSL_OPTION_USE_STD_OPTIONAL == 2 && !defined(ABSL_HAVE_STD_OPTIONAL)) +#undef ABSL_USES_STD_OPTIONAL +#elif ABSL_OPTION_USE_STD_OPTIONAL == 1 || \ + (ABSL_OPTION_USE_STD_OPTIONAL == 2 && defined(ABSL_HAVE_STD_OPTIONAL)) +#define ABSL_USES_STD_OPTIONAL 1 +#else +#error options.h is misconfigured. +#endif + +// ABSL_USES_STD_VARIANT +// +// Indicates whether absl::variant is an alias for std::variant. +#if !defined(ABSL_OPTION_USE_STD_VARIANT) +#error options.h is misconfigured. +#elif ABSL_OPTION_USE_STD_VARIANT == 0 || \ + (ABSL_OPTION_USE_STD_VARIANT == 2 && !defined(ABSL_HAVE_STD_VARIANT)) +#undef ABSL_USES_STD_VARIANT +#elif ABSL_OPTION_USE_STD_VARIANT == 1 || \ + (ABSL_OPTION_USE_STD_VARIANT == 2 && defined(ABSL_HAVE_STD_VARIANT)) +#define ABSL_USES_STD_VARIANT 1 +#else +#error options.h is misconfigured. +#endif + +// ABSL_USES_STD_STRING_VIEW +// +// Indicates whether absl::string_view is an alias for std::string_view. +#if !defined(ABSL_OPTION_USE_STD_STRING_VIEW) +#error options.h is misconfigured. +#elif ABSL_OPTION_USE_STD_STRING_VIEW == 0 || \ + (ABSL_OPTION_USE_STD_STRING_VIEW == 2 && \ + !defined(ABSL_HAVE_STD_STRING_VIEW)) +#undef ABSL_USES_STD_STRING_VIEW +#elif ABSL_OPTION_USE_STD_STRING_VIEW == 1 || \ + (ABSL_OPTION_USE_STD_STRING_VIEW == 2 && \ + defined(ABSL_HAVE_STD_STRING_VIEW)) +#define ABSL_USES_STD_STRING_VIEW 1 +#else +#error options.h is misconfigured. +#endif + +// ABSL_USES_STD_ORDERING +// +// Indicates whether absl::{partial,weak,strong}_ordering are aliases for the +// std:: ordering types. +#if !defined(ABSL_OPTION_USE_STD_ORDERING) +#error options.h is misconfigured. +#elif ABSL_OPTION_USE_STD_ORDERING == 0 || \ + (ABSL_OPTION_USE_STD_ORDERING == 2 && !defined(ABSL_HAVE_STD_ORDERING)) +#undef ABSL_USES_STD_ORDERING +#elif ABSL_OPTION_USE_STD_ORDERING == 1 || \ + (ABSL_OPTION_USE_STD_ORDERING == 2 && defined(ABSL_HAVE_STD_ORDERING)) +#define ABSL_USES_STD_ORDERING 1 +#else +#error options.h is misconfigured. +#endif + +// In debug mode, MSVC 2017's std::variant throws a EXCEPTION_ACCESS_VIOLATION +// SEH exception from emplace for variant when constructing the +// struct can throw. This defeats some of variant_test and +// variant_exception_safety_test. +#if defined(_MSC_VER) && _MSC_VER >= 1700 && defined(_DEBUG) +#define ABSL_INTERNAL_MSVC_2017_DBG_MODE +#endif + +// ABSL_INTERNAL_MANGLED_NS +// ABSL_INTERNAL_MANGLED_BACKREFERENCE +// +// Internal macros for building up mangled names in our internal fork of CCTZ. +// This implementation detail is only needed and provided for the MSVC build. +// +// These macros both expand to string literals. ABSL_INTERNAL_MANGLED_NS is +// the mangled spelling of the `absl` namespace, and +// ABSL_INTERNAL_MANGLED_BACKREFERENCE is a back-reference integer representing +// the proper count to skip past the CCTZ fork namespace names. (This number +// is one larger when there is an inline namespace name to skip.) +#if defined(_MSC_VER) +#if ABSL_OPTION_USE_INLINE_NAMESPACE == 0 +#define ABSL_INTERNAL_MANGLED_NS "absl" +#define ABSL_INTERNAL_MANGLED_BACKREFERENCE "5" +#else +#define ABSL_INTERNAL_MANGLED_NS \ + ABSL_INTERNAL_TOKEN_STR(ABSL_OPTION_INLINE_NAMESPACE_NAME) "@absl" +#define ABSL_INTERNAL_MANGLED_BACKREFERENCE "6" +#endif +#endif + +// ABSL_DLL +// +// When building Abseil as a DLL, this macro expands to `__declspec(dllexport)` +// so we can annotate symbols appropriately as being exported. When used in +// headers consuming a DLL, this macro expands to `__declspec(dllimport)` so +// that consumers know the symbol is defined inside the DLL. In all other cases, +// the macro expands to nothing. +#if defined(_MSC_VER) +#if defined(ABSL_BUILD_DLL) +#define ABSL_DLL __declspec(dllexport) +#elif defined(ABSL_CONSUME_DLL) +#define ABSL_DLL __declspec(dllimport) +#else +#define ABSL_DLL +#endif +#else +#define ABSL_DLL +#endif // defined(_MSC_VER) + +#if defined(_MSC_VER) +#if defined(ABSL_BUILD_TEST_DLL) +#define ABSL_TEST_DLL __declspec(dllexport) +#elif defined(ABSL_CONSUME_TEST_DLL) +#define ABSL_TEST_DLL __declspec(dllimport) +#else +#define ABSL_TEST_DLL +#endif +#else +#define ABSL_TEST_DLL +#endif // defined(_MSC_VER) + +// ABSL_HAVE_MEMORY_SANITIZER +// +// MemorySanitizer (MSan) is a detector of uninitialized reads. It consists of +// a compiler instrumentation module and a run-time library. +#ifdef ABSL_HAVE_MEMORY_SANITIZER +#error "ABSL_HAVE_MEMORY_SANITIZER cannot be directly set." +#elif !defined(__native_client__) && ABSL_HAVE_FEATURE(memory_sanitizer) +#define ABSL_HAVE_MEMORY_SANITIZER 1 +#endif + +// ABSL_HAVE_THREAD_SANITIZER +// +// ThreadSanitizer (TSan) is a fast data race detector. +#ifdef ABSL_HAVE_THREAD_SANITIZER +#error "ABSL_HAVE_THREAD_SANITIZER cannot be directly set." +#elif defined(__SANITIZE_THREAD__) +#define ABSL_HAVE_THREAD_SANITIZER 1 +#elif ABSL_HAVE_FEATURE(thread_sanitizer) +#define ABSL_HAVE_THREAD_SANITIZER 1 +#endif + +// ABSL_HAVE_ADDRESS_SANITIZER +// +// AddressSanitizer (ASan) is a fast memory error detector. +#ifdef ABSL_HAVE_ADDRESS_SANITIZER +#error "ABSL_HAVE_ADDRESS_SANITIZER cannot be directly set." +#elif defined(__SANITIZE_ADDRESS__) +#define ABSL_HAVE_ADDRESS_SANITIZER 1 +#elif ABSL_HAVE_FEATURE(address_sanitizer) +#define ABSL_HAVE_ADDRESS_SANITIZER 1 +#endif + +// ABSL_HAVE_HWADDRESS_SANITIZER +// +// Hardware-Assisted AddressSanitizer (or HWASAN) is even faster than asan +// memory error detector which can use CPU features like ARM TBI, Intel LAM or +// AMD UAI. +#ifdef ABSL_HAVE_HWADDRESS_SANITIZER +#error "ABSL_HAVE_HWADDRESS_SANITIZER cannot be directly set." +#elif defined(__SANITIZE_HWADDRESS__) +#define ABSL_HAVE_HWADDRESS_SANITIZER 1 +#elif ABSL_HAVE_FEATURE(hwaddress_sanitizer) +#define ABSL_HAVE_HWADDRESS_SANITIZER 1 +#endif + +// ABSL_HAVE_DATAFLOW_SANITIZER +// +// Dataflow Sanitizer (or DFSAN) is a generalised dynamic data flow analysis. +#ifdef ABSL_HAVE_DATAFLOW_SANITIZER +#error "ABSL_HAVE_DATAFLOW_SANITIZER cannot be directly set." +#elif defined(DATAFLOW_SANITIZER) +// GCC provides no method for detecting the presence of the standalone +// DataFlowSanitizer (-fsanitize=dataflow), so GCC users of -fsanitize=dataflow +// should also use -DDATAFLOW_SANITIZER. +#define ABSL_HAVE_DATAFLOW_SANITIZER 1 +#elif ABSL_HAVE_FEATURE(dataflow_sanitizer) +#define ABSL_HAVE_DATAFLOW_SANITIZER 1 +#endif + +// ABSL_HAVE_LEAK_SANITIZER +// +// LeakSanitizer (or lsan) is a detector of memory leaks. +// https://clang.llvm.org/docs/LeakSanitizer.html +// https://github.com/google/sanitizers/wiki/AddressSanitizerLeakSanitizer +// +// The macro ABSL_HAVE_LEAK_SANITIZER can be used to detect at compile-time +// whether the LeakSanitizer is potentially available. However, just because the +// LeakSanitizer is available does not mean it is active. Use the +// always-available run-time interface in //absl/debugging/leak_check.h for +// interacting with LeakSanitizer. +#ifdef ABSL_HAVE_LEAK_SANITIZER +#error "ABSL_HAVE_LEAK_SANITIZER cannot be directly set." +#elif defined(LEAK_SANITIZER) +// GCC provides no method for detecting the presence of the standalone +// LeakSanitizer (-fsanitize=leak), so GCC users of -fsanitize=leak should also +// use -DLEAK_SANITIZER. +#define ABSL_HAVE_LEAK_SANITIZER 1 +// Clang standalone LeakSanitizer (-fsanitize=leak) +#elif ABSL_HAVE_FEATURE(leak_sanitizer) +#define ABSL_HAVE_LEAK_SANITIZER 1 +#elif defined(ABSL_HAVE_ADDRESS_SANITIZER) +// GCC or Clang using the LeakSanitizer integrated into AddressSanitizer. +#define ABSL_HAVE_LEAK_SANITIZER 1 +#endif + +// ABSL_HAVE_CLASS_TEMPLATE_ARGUMENT_DEDUCTION +// +// Class template argument deduction is a language feature added in C++17. +#ifdef ABSL_HAVE_CLASS_TEMPLATE_ARGUMENT_DEDUCTION +#error "ABSL_HAVE_CLASS_TEMPLATE_ARGUMENT_DEDUCTION cannot be directly set." +#elif defined(__cpp_deduction_guides) +#define ABSL_HAVE_CLASS_TEMPLATE_ARGUMENT_DEDUCTION 1 +#endif + +// ABSL_INTERNAL_NEED_REDUNDANT_CONSTEXPR_DECL +// +// Prior to C++17, static constexpr variables defined in classes required a +// separate definition outside of the class body, for example: +// +// class Foo { +// static constexpr int kBar = 0; +// }; +// constexpr int Foo::kBar; +// +// In C++17, these variables defined in classes are considered inline variables, +// and the extra declaration is redundant. Since some compilers warn on the +// extra declarations, ABSL_INTERNAL_NEED_REDUNDANT_CONSTEXPR_DECL can be used +// conditionally ignore them: +// +// #ifdef ABSL_INTERNAL_NEED_REDUNDANT_CONSTEXPR_DECL +// constexpr int Foo::kBar; +// #endif +#if defined(ABSL_INTERNAL_CPLUSPLUS_LANG) && \ + ABSL_INTERNAL_CPLUSPLUS_LANG < 201703L +#define ABSL_INTERNAL_NEED_REDUNDANT_CONSTEXPR_DECL 1 +#endif + +// `ABSL_INTERNAL_HAS_RTTI` determines whether abseil is being compiled with +// RTTI support. +#ifdef ABSL_INTERNAL_HAS_RTTI +#error ABSL_INTERNAL_HAS_RTTI cannot be directly set +#elif ABSL_HAVE_FEATURE(cxx_rtti) +#define ABSL_INTERNAL_HAS_RTTI 1 +#elif defined(__GNUC__) && defined(__GXX_RTTI) +#define ABSL_INTERNAL_HAS_RTTI 1 +#elif defined(_MSC_VER) && defined(_CPPRTTI) +#define ABSL_INTERNAL_HAS_RTTI 1 +#elif !defined(__GNUC__) && !defined(_MSC_VER) +// Unknown compiler, default to RTTI +#define ABSL_INTERNAL_HAS_RTTI 1 +#endif + +// `ABSL_INTERNAL_HAS_CXA_DEMANGLE` determines whether `abi::__cxa_demangle` is +// available. +#ifdef ABSL_INTERNAL_HAS_CXA_DEMANGLE +#error ABSL_INTERNAL_HAS_CXA_DEMANGLE cannot be directly set +#elif defined(OS_ANDROID) && (defined(__i386__) || defined(__x86_64__)) +#define ABSL_INTERNAL_HAS_CXA_DEMANGLE 0 +#elif defined(__GNUC__) && defined(__GNUC_MINOR__) && \ + (__GNUC__ >= 4 || (__GNUC__ >= 3 && __GNUC_MINOR__ >= 4)) && \ + !defined(__mips__) +#define ABSL_INTERNAL_HAS_CXA_DEMANGLE 1 +#elif defined(__clang__) && !defined(_MSC_VER) +#define ABSL_INTERNAL_HAS_CXA_DEMANGLE 1 +#endif + +// ABSL_INTERNAL_HAVE_SSE is used for compile-time detection of SSE support. +// See https://gcc.gnu.org/onlinedocs/gcc/x86-Options.html for an overview of +// which architectures support the various x86 instruction sets. +#ifdef ABSL_INTERNAL_HAVE_SSE +#error ABSL_INTERNAL_HAVE_SSE cannot be directly set +#elif defined(__SSE__) +#define ABSL_INTERNAL_HAVE_SSE 1 +#elif (defined(_M_X64) || (defined(_M_IX86_FP) && _M_IX86_FP >= 1)) && \ + !defined(_M_ARM64EC) +// MSVC only defines _M_IX86_FP for x86 32-bit code, and _M_IX86_FP >= 1 +// indicates that at least SSE was targeted with the /arch:SSE option. +// All x86-64 processors support SSE, so support can be assumed. +// https://docs.microsoft.com/en-us/cpp/preprocessor/predefined-macros +#define ABSL_INTERNAL_HAVE_SSE 1 +#endif + +// ABSL_INTERNAL_HAVE_SSE2 is used for compile-time detection of SSE2 support. +// See https://gcc.gnu.org/onlinedocs/gcc/x86-Options.html for an overview of +// which architectures support the various x86 instruction sets. +#ifdef ABSL_INTERNAL_HAVE_SSE2 +#error ABSL_INTERNAL_HAVE_SSE2 cannot be directly set +#elif defined(__SSE2__) +#define ABSL_INTERNAL_HAVE_SSE2 1 +#elif (defined(_M_X64) || (defined(_M_IX86_FP) && _M_IX86_FP >= 2)) && \ + !defined(_M_ARM64EC) +// MSVC only defines _M_IX86_FP for x86 32-bit code, and _M_IX86_FP >= 2 +// indicates that at least SSE2 was targeted with the /arch:SSE2 option. +// All x86-64 processors support SSE2, so support can be assumed. +// https://docs.microsoft.com/en-us/cpp/preprocessor/predefined-macros +#define ABSL_INTERNAL_HAVE_SSE2 1 +#endif + +// ABSL_INTERNAL_HAVE_SSSE3 is used for compile-time detection of SSSE3 support. +// See https://gcc.gnu.org/onlinedocs/gcc/x86-Options.html for an overview of +// which architectures support the various x86 instruction sets. +// +// MSVC does not have a mode that targets SSSE3 at compile-time. To use SSSE3 +// with MSVC requires either assuming that the code will only every run on CPUs +// that support SSSE3, otherwise __cpuid() can be used to detect support at +// runtime and fallback to a non-SSSE3 implementation when SSSE3 is unsupported +// by the CPU. +#ifdef ABSL_INTERNAL_HAVE_SSSE3 +#error ABSL_INTERNAL_HAVE_SSSE3 cannot be directly set +#elif defined(__SSSE3__) +#define ABSL_INTERNAL_HAVE_SSSE3 1 +#endif + +// ABSL_INTERNAL_HAVE_ARM_NEON is used for compile-time detection of NEON (ARM +// SIMD). +// +// If __CUDA_ARCH__ is defined, then we are compiling CUDA code in device mode. +// In device mode, NEON intrinsics are not available, regardless of host +// platform. +// https://llvm.org/docs/CompileCudaWithLLVM.html#detecting-clang-vs-nvcc-from-code +#ifdef ABSL_INTERNAL_HAVE_ARM_NEON +#error ABSL_INTERNAL_HAVE_ARM_NEON cannot be directly set +#elif defined(__ARM_NEON) && !defined(__CUDA_ARCH__) +#define ABSL_INTERNAL_HAVE_ARM_NEON 1 +#endif + +// ABSL_HAVE_CONSTANT_EVALUATED is used for compile-time detection of +// constant evaluation support through `absl::is_constant_evaluated`. +#ifdef ABSL_HAVE_CONSTANT_EVALUATED +#error ABSL_HAVE_CONSTANT_EVALUATED cannot be directly set +#endif +#ifdef __cpp_lib_is_constant_evaluated +#define ABSL_HAVE_CONSTANT_EVALUATED 1 +#elif ABSL_HAVE_BUILTIN(__builtin_is_constant_evaluated) +#define ABSL_HAVE_CONSTANT_EVALUATED 1 +#endif + +// ABSL_INTERNAL_EMSCRIPTEN_VERSION combines Emscripten's three version macros +// into an integer that can be compared against. +#ifdef ABSL_INTERNAL_EMSCRIPTEN_VERSION +#error ABSL_INTERNAL_EMSCRIPTEN_VERSION cannot be directly set +#endif +#ifdef __EMSCRIPTEN__ +#include +#ifdef __EMSCRIPTEN_major__ +#if __EMSCRIPTEN_minor__ >= 1000 +#error __EMSCRIPTEN_minor__ is too big to fit in ABSL_INTERNAL_EMSCRIPTEN_VERSION +#endif +#if __EMSCRIPTEN_tiny__ >= 1000 +#error __EMSCRIPTEN_tiny__ is too big to fit in ABSL_INTERNAL_EMSCRIPTEN_VERSION +#endif +#define ABSL_INTERNAL_EMSCRIPTEN_VERSION \ + ((__EMSCRIPTEN_major__) * 1000000 + (__EMSCRIPTEN_minor__) * 1000 + \ + (__EMSCRIPTEN_tiny__)) +#endif +#endif + +#endif // ABSL_BASE_CONFIG_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/config_test.cc b/weight/_dep/abseil-cpp/absl/base/config_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..7e0c033de59fcb97c89111344110c51a3cd56c60 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/config_test.cc @@ -0,0 +1,60 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/config.h" + +#include + +#include "gtest/gtest.h" +#include "absl/synchronization/internal/thread_pool.h" + +namespace { + +TEST(ConfigTest, Endianness) { + union { + uint32_t value; + uint8_t data[sizeof(uint32_t)]; + } number; + number.data[0] = 0x00; + number.data[1] = 0x01; + number.data[2] = 0x02; + number.data[3] = 0x03; +#if defined(ABSL_IS_LITTLE_ENDIAN) && defined(ABSL_IS_BIG_ENDIAN) +#error Both ABSL_IS_LITTLE_ENDIAN and ABSL_IS_BIG_ENDIAN are defined +#elif defined(ABSL_IS_LITTLE_ENDIAN) + EXPECT_EQ(UINT32_C(0x03020100), number.value); +#elif defined(ABSL_IS_BIG_ENDIAN) + EXPECT_EQ(UINT32_C(0x00010203), number.value); +#else +#error Unknown endianness +#endif +} + +#if defined(ABSL_HAVE_THREAD_LOCAL) +TEST(ConfigTest, ThreadLocal) { + static thread_local int mine_mine_mine = 16; + EXPECT_EQ(16, mine_mine_mine); + { + absl::synchronization_internal::ThreadPool pool(1); + pool.Schedule([&] { + EXPECT_EQ(16, mine_mine_mine); + mine_mine_mine = 32; + EXPECT_EQ(32, mine_mine_mine); + }); + } + EXPECT_EQ(16, mine_mine_mine); +} +#endif + +} // namespace diff --git a/weight/_dep/abseil-cpp/absl/base/const_init.h b/weight/_dep/abseil-cpp/absl/base/const_init.h new file mode 100644 index 0000000000000000000000000000000000000000..16520b61d95b6ee0cb60e66ae7c7be4aeb40aa3d --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/const_init.h @@ -0,0 +1,76 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// ----------------------------------------------------------------------------- +// kConstInit +// ----------------------------------------------------------------------------- +// +// A constructor tag used to mark an object as safe for use as a global +// variable, avoiding the usual lifetime issues that can affect globals. + +#ifndef ABSL_BASE_CONST_INIT_H_ +#define ABSL_BASE_CONST_INIT_H_ + +#include "absl/base/config.h" + +// In general, objects with static storage duration (such as global variables) +// can trigger tricky object lifetime situations. Attempting to access them +// from the constructors or destructors of other global objects can result in +// undefined behavior, unless their constructors and destructors are designed +// with this issue in mind. +// +// The normal way to deal with this issue in C++11 is to use constant +// initialization and trivial destructors. +// +// Constant initialization is guaranteed to occur before any other code +// executes. Constructors that are declared 'constexpr' are eligible for +// constant initialization. You can annotate a variable declaration with the +// ABSL_CONST_INIT macro to express this intent. For compilers that support +// it, this annotation will cause a compilation error for declarations that +// aren't subject to constant initialization (perhaps because a runtime value +// was passed as a constructor argument). +// +// On program shutdown, lifetime issues can be avoided on global objects by +// ensuring that they contain trivial destructors. A class has a trivial +// destructor unless it has a user-defined destructor, a virtual method or base +// class, or a data member or base class with a non-trivial destructor of its +// own. Objects with static storage duration and a trivial destructor are not +// cleaned up on program shutdown, and are thus safe to access from other code +// running during shutdown. +// +// For a few core Abseil classes, we make a best effort to allow for safe global +// instances, even though these classes have non-trivial destructors. These +// objects can be created with the absl::kConstInit tag. For example: +// ABSL_CONST_INIT absl::Mutex global_mutex(absl::kConstInit); +// +// The line above declares a global variable of type absl::Mutex which can be +// accessed at any point during startup or shutdown. global_mutex's destructor +// will still run, but will not invalidate the object. Note that C++ specifies +// that accessing an object after its destructor has run results in undefined +// behavior, but this pattern works on the toolchains we support. +// +// The absl::kConstInit tag should only be used to define objects with static +// or thread_local storage duration. + +namespace absl { +ABSL_NAMESPACE_BEGIN + +enum ConstInitType { + kConstInit, +}; + +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_CONST_INIT_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/dynamic_annotations.h b/weight/_dep/abseil-cpp/absl/base/dynamic_annotations.h new file mode 100644 index 0000000000000000000000000000000000000000..7ba8912ea6386f8892d9ff438c0bfdcefe8a1cbd --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/dynamic_annotations.h @@ -0,0 +1,496 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// This file defines dynamic annotations for use with dynamic analysis tool +// such as valgrind, PIN, etc. +// +// Dynamic annotation is a source code annotation that affects the generated +// code (that is, the annotation is not a comment). Each such annotation is +// attached to a particular instruction and/or to a particular object (address) +// in the program. +// +// The annotations that should be used by users are macros in all upper-case +// (e.g., ABSL_ANNOTATE_THREAD_NAME). +// +// Actual implementation of these macros may differ depending on the dynamic +// analysis tool being used. +// +// This file supports the following configurations: +// - Dynamic Annotations enabled (with static thread-safety warnings disabled). +// In this case, macros expand to functions implemented by Thread Sanitizer, +// when building with TSan. When not provided an external implementation, +// dynamic_annotations.cc provides no-op implementations. +// +// - Static Clang thread-safety warnings enabled. +// When building with a Clang compiler that supports thread-safety warnings, +// a subset of annotations can be statically-checked at compile-time. We +// expand these macros to static-inline functions that can be analyzed for +// thread-safety, but afterwards elided when building the final binary. +// +// - All annotations are disabled. +// If neither Dynamic Annotations nor Clang thread-safety warnings are +// enabled, then all annotation-macros expand to empty. + +#ifndef ABSL_BASE_DYNAMIC_ANNOTATIONS_H_ +#define ABSL_BASE_DYNAMIC_ANNOTATIONS_H_ + +#include +#include + +#include "absl/base/attributes.h" +#include "absl/base/config.h" +#ifdef __cplusplus +#include "absl/base/macros.h" +#endif + +#ifdef ABSL_HAVE_HWADDRESS_SANITIZER +#include +#endif + +// TODO(rogeeff): Remove after the backward compatibility period. +#include "absl/base/internal/dynamic_annotations.h" // IWYU pragma: export + +// ------------------------------------------------------------------------- +// Decide which features are enabled. + +#ifdef ABSL_HAVE_THREAD_SANITIZER + +#define ABSL_INTERNAL_RACE_ANNOTATIONS_ENABLED 1 +#define ABSL_INTERNAL_READS_ANNOTATIONS_ENABLED 1 +#define ABSL_INTERNAL_WRITES_ANNOTATIONS_ENABLED 1 +#define ABSL_INTERNAL_ANNOTALYSIS_ENABLED 0 +#define ABSL_INTERNAL_READS_WRITES_ANNOTATIONS_ENABLED 1 + +#else + +#define ABSL_INTERNAL_RACE_ANNOTATIONS_ENABLED 0 +#define ABSL_INTERNAL_READS_ANNOTATIONS_ENABLED 0 +#define ABSL_INTERNAL_WRITES_ANNOTATIONS_ENABLED 0 + +// Clang provides limited support for static thread-safety analysis through a +// feature called Annotalysis. We configure macro-definitions according to +// whether Annotalysis support is available. When running in opt-mode, GCC +// will issue a warning, if these attributes are compiled. Only include them +// when compiling using Clang. + +#if defined(__clang__) +#define ABSL_INTERNAL_ANNOTALYSIS_ENABLED 1 +#if !defined(SWIG) +#define ABSL_INTERNAL_IGNORE_READS_ATTRIBUTE_ENABLED 1 +#endif +#else +#define ABSL_INTERNAL_ANNOTALYSIS_ENABLED 0 +#endif + +// Read/write annotations are enabled in Annotalysis mode; disabled otherwise. +#define ABSL_INTERNAL_READS_WRITES_ANNOTATIONS_ENABLED \ + ABSL_INTERNAL_ANNOTALYSIS_ENABLED + +#endif // ABSL_HAVE_THREAD_SANITIZER + +#ifdef __cplusplus +#define ABSL_INTERNAL_BEGIN_EXTERN_C extern "C" { +#define ABSL_INTERNAL_END_EXTERN_C } // extern "C" +#define ABSL_INTERNAL_GLOBAL_SCOPED(F) ::F +#define ABSL_INTERNAL_STATIC_INLINE inline +#else +#define ABSL_INTERNAL_BEGIN_EXTERN_C // empty +#define ABSL_INTERNAL_END_EXTERN_C // empty +#define ABSL_INTERNAL_GLOBAL_SCOPED(F) F +#define ABSL_INTERNAL_STATIC_INLINE static inline +#endif + +// ------------------------------------------------------------------------- +// Define race annotations. + +#if ABSL_INTERNAL_RACE_ANNOTATIONS_ENABLED == 1 +// Some of the symbols used in this section (e.g. AnnotateBenignRaceSized) are +// defined by the compiler-based sanitizer implementation, not by the Abseil +// library. Therefore they do not use ABSL_INTERNAL_C_SYMBOL. + +// ------------------------------------------------------------- +// Annotations that suppress errors. It is usually better to express the +// program's synchronization using the other annotations, but these can be used +// when all else fails. + +// Report that we may have a benign race at `pointer`, with size +// "sizeof(*(pointer))". `pointer` must be a non-void* pointer. Insert at the +// point where `pointer` has been allocated, preferably close to the point +// where the race happens. See also ABSL_ANNOTATE_BENIGN_RACE_STATIC. +#define ABSL_ANNOTATE_BENIGN_RACE(pointer, description) \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateBenignRaceSized) \ + (__FILE__, __LINE__, pointer, sizeof(*(pointer)), description) + +// Same as ABSL_ANNOTATE_BENIGN_RACE(`address`, `description`), but applies to +// the memory range [`address`, `address`+`size`). +#define ABSL_ANNOTATE_BENIGN_RACE_SIZED(address, size, description) \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateBenignRaceSized) \ + (__FILE__, __LINE__, address, size, description) + +// Enable (`enable`!=0) or disable (`enable`==0) race detection for all threads. +// This annotation could be useful if you want to skip expensive race analysis +// during some period of program execution, e.g. during initialization. +#define ABSL_ANNOTATE_ENABLE_RACE_DETECTION(enable) \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateEnableRaceDetection) \ + (__FILE__, __LINE__, enable) + +// ------------------------------------------------------------- +// Annotations useful for debugging. + +// Report the current thread `name` to a race detector. +#define ABSL_ANNOTATE_THREAD_NAME(name) \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateThreadName)(__FILE__, __LINE__, name) + +// ------------------------------------------------------------- +// Annotations useful when implementing locks. They are not normally needed by +// modules that merely use locks. The `lock` argument is a pointer to the lock +// object. + +// Report that a lock has been created at address `lock`. +#define ABSL_ANNOTATE_RWLOCK_CREATE(lock) \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateRWLockCreate)(__FILE__, __LINE__, lock) + +// Report that a linker initialized lock has been created at address `lock`. +#ifdef ABSL_HAVE_THREAD_SANITIZER +#define ABSL_ANNOTATE_RWLOCK_CREATE_STATIC(lock) \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateRWLockCreateStatic) \ + (__FILE__, __LINE__, lock) +#else +#define ABSL_ANNOTATE_RWLOCK_CREATE_STATIC(lock) \ + ABSL_ANNOTATE_RWLOCK_CREATE(lock) +#endif + +// Report that the lock at address `lock` is about to be destroyed. +#define ABSL_ANNOTATE_RWLOCK_DESTROY(lock) \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateRWLockDestroy)(__FILE__, __LINE__, lock) + +// Report that the lock at address `lock` has been acquired. +// `is_w`=1 for writer lock, `is_w`=0 for reader lock. +#define ABSL_ANNOTATE_RWLOCK_ACQUIRED(lock, is_w) \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateRWLockAcquired) \ + (__FILE__, __LINE__, lock, is_w) + +// Report that the lock at address `lock` is about to be released. +// `is_w`=1 for writer lock, `is_w`=0 for reader lock. +#define ABSL_ANNOTATE_RWLOCK_RELEASED(lock, is_w) \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateRWLockReleased) \ + (__FILE__, __LINE__, lock, is_w) + +// Apply ABSL_ANNOTATE_BENIGN_RACE_SIZED to a static variable `static_var`. +#define ABSL_ANNOTATE_BENIGN_RACE_STATIC(static_var, description) \ + namespace { \ + class static_var##_annotator { \ + public: \ + static_var##_annotator() { \ + ABSL_ANNOTATE_BENIGN_RACE_SIZED(&static_var, sizeof(static_var), \ + #static_var ": " description); \ + } \ + }; \ + static static_var##_annotator the##static_var##_annotator; \ + } // namespace + +// Function prototypes of annotations provided by the compiler-based sanitizer +// implementation. +ABSL_INTERNAL_BEGIN_EXTERN_C +void AnnotateRWLockCreate(const char* file, int line, + const volatile void* lock); +void AnnotateRWLockCreateStatic(const char* file, int line, + const volatile void* lock); +void AnnotateRWLockDestroy(const char* file, int line, + const volatile void* lock); +void AnnotateRWLockAcquired(const char* file, int line, + const volatile void* lock, long is_w); // NOLINT +void AnnotateRWLockReleased(const char* file, int line, + const volatile void* lock, long is_w); // NOLINT +void AnnotateBenignRace(const char* file, int line, + const volatile void* address, const char* description); +void AnnotateBenignRaceSized(const char* file, int line, + const volatile void* address, size_t size, + const char* description); +void AnnotateThreadName(const char* file, int line, const char* name); +void AnnotateEnableRaceDetection(const char* file, int line, int enable); +ABSL_INTERNAL_END_EXTERN_C + +#else // ABSL_INTERNAL_RACE_ANNOTATIONS_ENABLED == 0 + +#define ABSL_ANNOTATE_RWLOCK_CREATE(lock) // empty +#define ABSL_ANNOTATE_RWLOCK_CREATE_STATIC(lock) // empty +#define ABSL_ANNOTATE_RWLOCK_DESTROY(lock) // empty +#define ABSL_ANNOTATE_RWLOCK_ACQUIRED(lock, is_w) // empty +#define ABSL_ANNOTATE_RWLOCK_RELEASED(lock, is_w) // empty +#define ABSL_ANNOTATE_BENIGN_RACE(address, description) // empty +#define ABSL_ANNOTATE_BENIGN_RACE_SIZED(address, size, description) // empty +#define ABSL_ANNOTATE_THREAD_NAME(name) // empty +#define ABSL_ANNOTATE_ENABLE_RACE_DETECTION(enable) // empty +#define ABSL_ANNOTATE_BENIGN_RACE_STATIC(static_var, description) // empty + +#endif // ABSL_INTERNAL_RACE_ANNOTATIONS_ENABLED + +// ------------------------------------------------------------------------- +// Define memory annotations. + +#ifdef ABSL_HAVE_MEMORY_SANITIZER + +#include + +#define ABSL_ANNOTATE_MEMORY_IS_INITIALIZED(address, size) \ + __msan_unpoison(address, size) + +#define ABSL_ANNOTATE_MEMORY_IS_UNINITIALIZED(address, size) \ + __msan_allocated_memory(address, size) + +#else // !defined(ABSL_HAVE_MEMORY_SANITIZER) + +// TODO(rogeeff): remove this branch +#ifdef ABSL_HAVE_THREAD_SANITIZER +#define ABSL_ANNOTATE_MEMORY_IS_INITIALIZED(address, size) \ + do { \ + (void)(address); \ + (void)(size); \ + } while (0) +#define ABSL_ANNOTATE_MEMORY_IS_UNINITIALIZED(address, size) \ + do { \ + (void)(address); \ + (void)(size); \ + } while (0) +#else + +#define ABSL_ANNOTATE_MEMORY_IS_INITIALIZED(address, size) // empty +#define ABSL_ANNOTATE_MEMORY_IS_UNINITIALIZED(address, size) // empty + +#endif + +#endif // ABSL_HAVE_MEMORY_SANITIZER + +// ------------------------------------------------------------------------- +// Define IGNORE_READS_BEGIN/_END attributes. + +#if defined(ABSL_INTERNAL_IGNORE_READS_ATTRIBUTE_ENABLED) + +#define ABSL_INTERNAL_IGNORE_READS_BEGIN_ATTRIBUTE \ + __attribute((exclusive_lock_function("*"))) +#define ABSL_INTERNAL_IGNORE_READS_END_ATTRIBUTE \ + __attribute((unlock_function("*"))) + +#else // !defined(ABSL_INTERNAL_IGNORE_READS_ATTRIBUTE_ENABLED) + +#define ABSL_INTERNAL_IGNORE_READS_BEGIN_ATTRIBUTE // empty +#define ABSL_INTERNAL_IGNORE_READS_END_ATTRIBUTE // empty + +#endif // defined(ABSL_INTERNAL_IGNORE_READS_ATTRIBUTE_ENABLED) + +// ------------------------------------------------------------------------- +// Define IGNORE_READS_BEGIN/_END annotations. + +#if ABSL_INTERNAL_READS_ANNOTATIONS_ENABLED == 1 +// Some of the symbols used in this section (e.g. AnnotateIgnoreReadsBegin) are +// defined by the compiler-based implementation, not by the Abseil +// library. Therefore they do not use ABSL_INTERNAL_C_SYMBOL. + +// Request the analysis tool to ignore all reads in the current thread until +// ABSL_ANNOTATE_IGNORE_READS_END is called. Useful to ignore intentional racey +// reads, while still checking other reads and all writes. +// See also ABSL_ANNOTATE_UNPROTECTED_READ. +#define ABSL_ANNOTATE_IGNORE_READS_BEGIN() \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateIgnoreReadsBegin) \ + (__FILE__, __LINE__) + +// Stop ignoring reads. +#define ABSL_ANNOTATE_IGNORE_READS_END() \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateIgnoreReadsEnd) \ + (__FILE__, __LINE__) + +// Function prototypes of annotations provided by the compiler-based sanitizer +// implementation. +ABSL_INTERNAL_BEGIN_EXTERN_C +void AnnotateIgnoreReadsBegin(const char* file, int line) + ABSL_INTERNAL_IGNORE_READS_BEGIN_ATTRIBUTE; +void AnnotateIgnoreReadsEnd(const char* file, + int line) ABSL_INTERNAL_IGNORE_READS_END_ATTRIBUTE; +ABSL_INTERNAL_END_EXTERN_C + +#elif defined(ABSL_INTERNAL_ANNOTALYSIS_ENABLED) + +// When Annotalysis is enabled without Dynamic Annotations, the use of +// static-inline functions allows the annotations to be read at compile-time, +// while still letting the compiler elide the functions from the final build. +// +// TODO(delesley) -- The exclusive lock here ignores writes as well, but +// allows IGNORE_READS_AND_WRITES to work properly. + +#define ABSL_ANNOTATE_IGNORE_READS_BEGIN() \ + ABSL_INTERNAL_GLOBAL_SCOPED( \ + ABSL_INTERNAL_C_SYMBOL(AbslInternalAnnotateIgnoreReadsBegin)) \ + () + +#define ABSL_ANNOTATE_IGNORE_READS_END() \ + ABSL_INTERNAL_GLOBAL_SCOPED( \ + ABSL_INTERNAL_C_SYMBOL(AbslInternalAnnotateIgnoreReadsEnd)) \ + () + +ABSL_INTERNAL_STATIC_INLINE void ABSL_INTERNAL_C_SYMBOL( + AbslInternalAnnotateIgnoreReadsBegin)() + ABSL_INTERNAL_IGNORE_READS_BEGIN_ATTRIBUTE {} + +ABSL_INTERNAL_STATIC_INLINE void ABSL_INTERNAL_C_SYMBOL( + AbslInternalAnnotateIgnoreReadsEnd)() + ABSL_INTERNAL_IGNORE_READS_END_ATTRIBUTE {} + +#else + +#define ABSL_ANNOTATE_IGNORE_READS_BEGIN() // empty +#define ABSL_ANNOTATE_IGNORE_READS_END() // empty + +#endif + +// ------------------------------------------------------------------------- +// Define IGNORE_WRITES_BEGIN/_END annotations. + +#if ABSL_INTERNAL_WRITES_ANNOTATIONS_ENABLED == 1 + +// Similar to ABSL_ANNOTATE_IGNORE_READS_BEGIN, but ignore writes instead. +#define ABSL_ANNOTATE_IGNORE_WRITES_BEGIN() \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateIgnoreWritesBegin)(__FILE__, __LINE__) + +// Stop ignoring writes. +#define ABSL_ANNOTATE_IGNORE_WRITES_END() \ + ABSL_INTERNAL_GLOBAL_SCOPED(AnnotateIgnoreWritesEnd)(__FILE__, __LINE__) + +// Function prototypes of annotations provided by the compiler-based sanitizer +// implementation. +ABSL_INTERNAL_BEGIN_EXTERN_C +void AnnotateIgnoreWritesBegin(const char* file, int line); +void AnnotateIgnoreWritesEnd(const char* file, int line); +ABSL_INTERNAL_END_EXTERN_C + +#else + +#define ABSL_ANNOTATE_IGNORE_WRITES_BEGIN() // empty +#define ABSL_ANNOTATE_IGNORE_WRITES_END() // empty + +#endif + +// ------------------------------------------------------------------------- +// Define the ABSL_ANNOTATE_IGNORE_READS_AND_WRITES_* annotations using the more +// primitive annotations defined above. +// +// Instead of doing +// ABSL_ANNOTATE_IGNORE_READS_BEGIN(); +// ... = x; +// ABSL_ANNOTATE_IGNORE_READS_END(); +// one can use +// ... = ABSL_ANNOTATE_UNPROTECTED_READ(x); + +#if defined(ABSL_INTERNAL_READS_WRITES_ANNOTATIONS_ENABLED) + +// Start ignoring all memory accesses (both reads and writes). +#define ABSL_ANNOTATE_IGNORE_READS_AND_WRITES_BEGIN() \ + do { \ + ABSL_ANNOTATE_IGNORE_READS_BEGIN(); \ + ABSL_ANNOTATE_IGNORE_WRITES_BEGIN(); \ + } while (0) + +// Stop ignoring both reads and writes. +#define ABSL_ANNOTATE_IGNORE_READS_AND_WRITES_END() \ + do { \ + ABSL_ANNOTATE_IGNORE_WRITES_END(); \ + ABSL_ANNOTATE_IGNORE_READS_END(); \ + } while (0) + +#ifdef __cplusplus +// ABSL_ANNOTATE_UNPROTECTED_READ is the preferred way to annotate racey reads. +#define ABSL_ANNOTATE_UNPROTECTED_READ(x) \ + absl::base_internal::AnnotateUnprotectedRead(x) + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { + +template +inline T AnnotateUnprotectedRead(const volatile T& x) { // NOLINT + ABSL_ANNOTATE_IGNORE_READS_BEGIN(); + T res = x; + ABSL_ANNOTATE_IGNORE_READS_END(); + return res; +} + +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl +#endif + +#else + +#define ABSL_ANNOTATE_IGNORE_READS_AND_WRITES_BEGIN() // empty +#define ABSL_ANNOTATE_IGNORE_READS_AND_WRITES_END() // empty +#define ABSL_ANNOTATE_UNPROTECTED_READ(x) (x) + +#endif + +// ------------------------------------------------------------------------- +// Address sanitizer annotations + +#ifdef ABSL_HAVE_ADDRESS_SANITIZER +// Describe the current state of a contiguous container such as e.g. +// std::vector or std::string. For more details see +// sanitizer/common_interface_defs.h, which is provided by the compiler. +#include + +#define ABSL_ANNOTATE_CONTIGUOUS_CONTAINER(beg, end, old_mid, new_mid) \ + __sanitizer_annotate_contiguous_container(beg, end, old_mid, new_mid) +#define ABSL_ADDRESS_SANITIZER_REDZONE(name) \ + struct { \ + alignas(8) char x[8]; \ + } name + +#else + +#define ABSL_ANNOTATE_CONTIGUOUS_CONTAINER(beg, end, old_mid, new_mid) // empty +#define ABSL_ADDRESS_SANITIZER_REDZONE(name) static_assert(true, "") + +#endif // ABSL_HAVE_ADDRESS_SANITIZER + +// ------------------------------------------------------------------------- +// HWAddress sanitizer annotations + +#ifdef __cplusplus +namespace absl { +#ifdef ABSL_HAVE_HWADDRESS_SANITIZER +// Under HWASAN changes the tag of the pointer. +template +T* HwasanTagPointer(T* ptr, uintptr_t tag) { + return reinterpret_cast(__hwasan_tag_pointer(ptr, tag)); +} +#else +template +T* HwasanTagPointer(T* ptr, uintptr_t) { + return ptr; +} +#endif +} // namespace absl +#endif + +// ------------------------------------------------------------------------- +// Undefine the macros intended only for this file. + +#undef ABSL_INTERNAL_RACE_ANNOTATIONS_ENABLED +#undef ABSL_INTERNAL_READS_ANNOTATIONS_ENABLED +#undef ABSL_INTERNAL_WRITES_ANNOTATIONS_ENABLED +#undef ABSL_INTERNAL_ANNOTALYSIS_ENABLED +#undef ABSL_INTERNAL_READS_WRITES_ANNOTATIONS_ENABLED +#undef ABSL_INTERNAL_BEGIN_EXTERN_C +#undef ABSL_INTERNAL_END_EXTERN_C +#undef ABSL_INTERNAL_STATIC_INLINE + +#endif // ABSL_BASE_DYNAMIC_ANNOTATIONS_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/exception_safety_testing_test.cc b/weight/_dep/abseil-cpp/absl/base/exception_safety_testing_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..bf5aa7cf888b4711861e2c91667dae8a10e15fc9 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/exception_safety_testing_test.cc @@ -0,0 +1,962 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/internal/exception_safety_testing.h" + +#ifdef ABSL_HAVE_EXCEPTIONS + +#include +#include +#include +#include +#include +#include + +#include "gtest/gtest-spi.h" +#include "gtest/gtest.h" +#include "absl/memory/memory.h" + +namespace testing { + +namespace { + +using ::testing::exceptions_internal::SetCountdown; +using ::testing::exceptions_internal::TestException; +using ::testing::exceptions_internal::UnsetCountdown; + +// EXPECT_NO_THROW can't inspect the thrown inspection in general. +template +void ExpectNoThrow(const F& f) { + try { + f(); + } catch (const TestException& e) { + ADD_FAILURE() << "Unexpected exception thrown from " << e.what(); + } +} + +TEST(ThrowingValueTest, Throws) { + SetCountdown(); + EXPECT_THROW(ThrowingValue<> bomb, TestException); + + // It's not guaranteed that every operator only throws *once*. The default + // ctor only throws once, though, so use it to make sure we only throw when + // the countdown hits 0 + SetCountdown(2); + ExpectNoThrow([]() { ThrowingValue<> bomb; }); + ExpectNoThrow([]() { ThrowingValue<> bomb; }); + EXPECT_THROW(ThrowingValue<> bomb, TestException); + + UnsetCountdown(); +} + +// Tests that an operation throws when the countdown is at 0, doesn't throw when +// the countdown doesn't hit 0, and doesn't modify the state of the +// ThrowingValue if it throws +template +void TestOp(const F& f) { + ExpectNoThrow(f); + + SetCountdown(); + EXPECT_THROW(f(), TestException); + UnsetCountdown(); +} + +TEST(ThrowingValueTest, ThrowingCtors) { + ThrowingValue<> bomb; + + TestOp([]() { ThrowingValue<> bomb(1); }); + TestOp([&]() { ThrowingValue<> bomb1 = bomb; }); + TestOp([&]() { ThrowingValue<> bomb1 = std::move(bomb); }); +} + +TEST(ThrowingValueTest, ThrowingAssignment) { + ThrowingValue<> bomb, bomb1; + + TestOp([&]() { bomb = bomb1; }); + TestOp([&]() { bomb = std::move(bomb1); }); + + // Test that when assignment throws, the assignment should fail (lhs != rhs) + // and strong guarantee fails (lhs != lhs_copy). + { + ThrowingValue<> lhs(39), rhs(42); + ThrowingValue<> lhs_copy(lhs); + SetCountdown(); + EXPECT_THROW(lhs = rhs, TestException); + UnsetCountdown(); + EXPECT_NE(lhs, rhs); + EXPECT_NE(lhs_copy, lhs); + } + { + ThrowingValue<> lhs(39), rhs(42); + ThrowingValue<> lhs_copy(lhs), rhs_copy(rhs); + SetCountdown(); + EXPECT_THROW(lhs = std::move(rhs), TestException); + UnsetCountdown(); + EXPECT_NE(lhs, rhs_copy); + EXPECT_NE(lhs_copy, lhs); + } +} + +TEST(ThrowingValueTest, ThrowingComparisons) { + ThrowingValue<> bomb1, bomb2; + TestOp([&]() { return bomb1 == bomb2; }); + TestOp([&]() { return bomb1 != bomb2; }); + TestOp([&]() { return bomb1 < bomb2; }); + TestOp([&]() { return bomb1 <= bomb2; }); + TestOp([&]() { return bomb1 > bomb2; }); + TestOp([&]() { return bomb1 >= bomb2; }); +} + +TEST(ThrowingValueTest, ThrowingArithmeticOps) { + ThrowingValue<> bomb1(1), bomb2(2); + + TestOp([&bomb1]() { +bomb1; }); + TestOp([&bomb1]() { -bomb1; }); + TestOp([&bomb1]() { ++bomb1; }); + TestOp([&bomb1]() { bomb1++; }); + TestOp([&bomb1]() { --bomb1; }); + TestOp([&bomb1]() { bomb1--; }); + + TestOp([&]() { bomb1 + bomb2; }); + TestOp([&]() { bomb1 - bomb2; }); + TestOp([&]() { bomb1* bomb2; }); + TestOp([&]() { bomb1 / bomb2; }); + TestOp([&]() { bomb1 << 1; }); + TestOp([&]() { bomb1 >> 1; }); +} + +TEST(ThrowingValueTest, ThrowingLogicalOps) { + ThrowingValue<> bomb1, bomb2; + + TestOp([&bomb1]() { !bomb1; }); + TestOp([&]() { bomb1&& bomb2; }); + TestOp([&]() { bomb1 || bomb2; }); +} + +TEST(ThrowingValueTest, ThrowingBitwiseOps) { + ThrowingValue<> bomb1, bomb2; + + TestOp([&bomb1]() { ~bomb1; }); + TestOp([&]() { bomb1 & bomb2; }); + TestOp([&]() { bomb1 | bomb2; }); + TestOp([&]() { bomb1 ^ bomb2; }); +} + +TEST(ThrowingValueTest, ThrowingCompoundAssignmentOps) { + ThrowingValue<> bomb1(1), bomb2(2); + + TestOp([&]() { bomb1 += bomb2; }); + TestOp([&]() { bomb1 -= bomb2; }); + TestOp([&]() { bomb1 *= bomb2; }); + TestOp([&]() { bomb1 /= bomb2; }); + TestOp([&]() { bomb1 %= bomb2; }); + TestOp([&]() { bomb1 &= bomb2; }); + TestOp([&]() { bomb1 |= bomb2; }); + TestOp([&]() { bomb1 ^= bomb2; }); + TestOp([&]() { bomb1 *= bomb2; }); +} + +TEST(ThrowingValueTest, ThrowingStreamOps) { + ThrowingValue<> bomb; + + TestOp([&]() { + std::istringstream stream; + stream >> bomb; + }); + TestOp([&]() { + std::stringstream stream; + stream << bomb; + }); +} + +// Tests the operator<< of ThrowingValue by forcing ConstructorTracker to emit +// a nonfatal failure that contains the string representation of the Thrower +TEST(ThrowingValueTest, StreamOpsOutput) { + using ::testing::TypeSpec; + exceptions_internal::ConstructorTracker ct(exceptions_internal::countdown); + + // Test default spec list (kEverythingThrows) + EXPECT_NONFATAL_FAILURE( + { + using Thrower = ThrowingValue; + auto thrower = Thrower(123); + thrower.~Thrower(); + }, + "ThrowingValue<>(123)"); + + // Test with one item in spec list (kNoThrowCopy) + EXPECT_NONFATAL_FAILURE( + { + using Thrower = ThrowingValue; + auto thrower = Thrower(234); + thrower.~Thrower(); + }, + "ThrowingValue(234)"); + + // Test with multiple items in spec list (kNoThrowMove, kNoThrowNew) + EXPECT_NONFATAL_FAILURE( + { + using Thrower = + ThrowingValue; + auto thrower = Thrower(345); + thrower.~Thrower(); + }, + "ThrowingValue(345)"); + + // Test with all items in spec list (kNoThrowCopy, kNoThrowMove, kNoThrowNew) + EXPECT_NONFATAL_FAILURE( + { + using Thrower = ThrowingValue(-1)>; + auto thrower = Thrower(456); + thrower.~Thrower(); + }, + "ThrowingValue(456)"); +} + +template +void TestAllocatingOp(const F& f) { + ExpectNoThrow(f); + + SetCountdown(); + EXPECT_THROW(f(), exceptions_internal::TestBadAllocException); + UnsetCountdown(); +} + +TEST(ThrowingValueTest, ThrowingAllocatingOps) { + // make_unique calls unqualified operator new, so these exercise the + // ThrowingValue overloads. + TestAllocatingOp([]() { return absl::make_unique>(1); }); + TestAllocatingOp([]() { return absl::make_unique[]>(2); }); +} + +TEST(ThrowingValueTest, NonThrowingMoveCtor) { + ThrowingValue nothrow_ctor; + + SetCountdown(); + ExpectNoThrow([¬hrow_ctor]() { + ThrowingValue nothrow1 = std::move(nothrow_ctor); + }); + UnsetCountdown(); +} + +TEST(ThrowingValueTest, NonThrowingMoveAssign) { + ThrowingValue nothrow_assign1, nothrow_assign2; + + SetCountdown(); + ExpectNoThrow([¬hrow_assign1, ¬hrow_assign2]() { + nothrow_assign1 = std::move(nothrow_assign2); + }); + UnsetCountdown(); +} + +TEST(ThrowingValueTest, ThrowingCopyCtor) { + ThrowingValue<> tv; + + TestOp([&]() { ThrowingValue<> tv_copy(tv); }); +} + +TEST(ThrowingValueTest, ThrowingCopyAssign) { + ThrowingValue<> tv1, tv2; + + TestOp([&]() { tv1 = tv2; }); +} + +TEST(ThrowingValueTest, NonThrowingCopyCtor) { + ThrowingValue nothrow_ctor; + + SetCountdown(); + ExpectNoThrow([¬hrow_ctor]() { + ThrowingValue nothrow1(nothrow_ctor); + }); + UnsetCountdown(); +} + +TEST(ThrowingValueTest, NonThrowingCopyAssign) { + ThrowingValue nothrow_assign1, nothrow_assign2; + + SetCountdown(); + ExpectNoThrow([¬hrow_assign1, ¬hrow_assign2]() { + nothrow_assign1 = nothrow_assign2; + }); + UnsetCountdown(); +} + +TEST(ThrowingValueTest, ThrowingSwap) { + ThrowingValue<> bomb1, bomb2; + TestOp([&]() { std::swap(bomb1, bomb2); }); +} + +TEST(ThrowingValueTest, NonThrowingSwap) { + ThrowingValue bomb1, bomb2; + ExpectNoThrow([&]() { std::swap(bomb1, bomb2); }); +} + +TEST(ThrowingValueTest, NonThrowingAllocation) { + ThrowingValue* allocated; + ThrowingValue* array; + + ExpectNoThrow([&allocated]() { + allocated = new ThrowingValue(1); + delete allocated; + }); + ExpectNoThrow([&array]() { + array = new ThrowingValue[2]; + delete[] array; + }); +} + +TEST(ThrowingValueTest, NonThrowingDelete) { + auto* allocated = new ThrowingValue<>(1); + auto* array = new ThrowingValue<>[2]; + + SetCountdown(); + ExpectNoThrow([allocated]() { delete allocated; }); + SetCountdown(); + ExpectNoThrow([array]() { delete[] array; }); + + UnsetCountdown(); +} + +TEST(ThrowingValueTest, NonThrowingPlacementDelete) { + constexpr int kArrayLen = 2; + // We intentionally create extra space to store the tag allocated by placement + // new[]. + constexpr size_t kExtraSpaceLen = sizeof(size_t) * 2; + + alignas(ThrowingValue<>) unsigned char buf[sizeof(ThrowingValue<>)]; + alignas(ThrowingValue<>) unsigned char + array_buf[kExtraSpaceLen + sizeof(ThrowingValue<>[kArrayLen])]; + auto* placed = new (&buf) ThrowingValue<>(1); + auto placed_array = new (&array_buf) ThrowingValue<>[kArrayLen]; + auto* placed_array_end = reinterpret_cast(placed_array) + + sizeof(ThrowingValue<>[kArrayLen]); + EXPECT_LE(placed_array_end, array_buf + sizeof(array_buf)); + + SetCountdown(); + ExpectNoThrow([placed, &buf]() { + placed->~ThrowingValue<>(); + ThrowingValue<>::operator delete(placed, &buf); + }); + + SetCountdown(); + ExpectNoThrow([&, placed_array]() { + for (int i = 0; i < kArrayLen; ++i) placed_array[i].~ThrowingValue<>(); + ThrowingValue<>::operator delete[](placed_array, &array_buf); + }); + + UnsetCountdown(); +} + +TEST(ThrowingValueTest, NonThrowingDestructor) { + auto* allocated = new ThrowingValue<>(); + + SetCountdown(); + ExpectNoThrow([allocated]() { delete allocated; }); + UnsetCountdown(); +} + +TEST(ThrowingBoolTest, ThrowingBool) { + ThrowingBool t = true; + + // Test that it's contextually convertible to bool + if (t) { // NOLINT(whitespace/empty_if_body) + } + EXPECT_TRUE(t); + + TestOp([&]() { (void)!t; }); +} + +TEST(ThrowingAllocatorTest, MemoryManagement) { + // Just exercise the memory management capabilities under LSan to make sure we + // don't leak. + ThrowingAllocator int_alloc; + int* ip = int_alloc.allocate(1); + int_alloc.deallocate(ip, 1); + int* i_array = int_alloc.allocate(2); + int_alloc.deallocate(i_array, 2); + + ThrowingAllocator> tv_alloc; + ThrowingValue<>* ptr = tv_alloc.allocate(1); + tv_alloc.deallocate(ptr, 1); + ThrowingValue<>* tv_array = tv_alloc.allocate(2); + tv_alloc.deallocate(tv_array, 2); +} + +TEST(ThrowingAllocatorTest, CallsGlobalNew) { + ThrowingAllocator, AllocSpec::kNoThrowAllocate> nothrow_alloc; + ThrowingValue<>* ptr; + + SetCountdown(); + // This will only throw if ThrowingValue::new is called. + ExpectNoThrow([&]() { ptr = nothrow_alloc.allocate(1); }); + nothrow_alloc.deallocate(ptr, 1); + + UnsetCountdown(); +} + +TEST(ThrowingAllocatorTest, ThrowingConstructors) { + ThrowingAllocator int_alloc; + int* ip = nullptr; + + SetCountdown(); + EXPECT_THROW(ip = int_alloc.allocate(1), TestException); + ExpectNoThrow([&]() { ip = int_alloc.allocate(1); }); + + *ip = 1; + SetCountdown(); + EXPECT_THROW(int_alloc.construct(ip, 2), TestException); + EXPECT_EQ(*ip, 1); + int_alloc.deallocate(ip, 1); + + UnsetCountdown(); +} + +TEST(ThrowingAllocatorTest, NonThrowingConstruction) { + { + ThrowingAllocator int_alloc; + int* ip = nullptr; + + SetCountdown(); + ExpectNoThrow([&]() { ip = int_alloc.allocate(1); }); + + SetCountdown(); + ExpectNoThrow([&]() { int_alloc.construct(ip, 2); }); + + EXPECT_EQ(*ip, 2); + int_alloc.deallocate(ip, 1); + + UnsetCountdown(); + } + + { + ThrowingAllocator int_alloc; + int* ip = nullptr; + ExpectNoThrow([&]() { ip = int_alloc.allocate(1); }); + ExpectNoThrow([&]() { int_alloc.construct(ip, 2); }); + EXPECT_EQ(*ip, 2); + int_alloc.deallocate(ip, 1); + } + + { + ThrowingAllocator, AllocSpec::kNoThrowAllocate> + nothrow_alloc; + ThrowingValue<>* ptr; + + SetCountdown(); + ExpectNoThrow([&]() { ptr = nothrow_alloc.allocate(1); }); + + SetCountdown(); + ExpectNoThrow( + [&]() { nothrow_alloc.construct(ptr, 2, testing::nothrow_ctor); }); + + EXPECT_EQ(ptr->Get(), 2); + nothrow_alloc.destroy(ptr); + nothrow_alloc.deallocate(ptr, 1); + + UnsetCountdown(); + } + + { + ThrowingAllocator a; + + SetCountdown(); + ExpectNoThrow([&]() { ThrowingAllocator a1 = a; }); + + SetCountdown(); + ExpectNoThrow([&]() { ThrowingAllocator a1 = std::move(a); }); + + UnsetCountdown(); + } +} + +TEST(ThrowingAllocatorTest, ThrowingAllocatorConstruction) { + ThrowingAllocator a; + TestOp([]() { ThrowingAllocator a; }); + TestOp([&]() { a.select_on_container_copy_construction(); }); +} + +TEST(ThrowingAllocatorTest, State) { + ThrowingAllocator a1, a2; + EXPECT_NE(a1, a2); + + auto a3 = a1; + EXPECT_EQ(a3, a1); + int* ip = a1.allocate(1); + EXPECT_EQ(a3, a1); + a3.deallocate(ip, 1); + EXPECT_EQ(a3, a1); +} + +TEST(ThrowingAllocatorTest, InVector) { + std::vector, ThrowingAllocator>> v; + for (int i = 0; i < 20; ++i) v.push_back({}); + for (int i = 0; i < 20; ++i) v.pop_back(); +} + +TEST(ThrowingAllocatorTest, InList) { + std::list, ThrowingAllocator>> l; + for (int i = 0; i < 20; ++i) l.push_back({}); + for (int i = 0; i < 20; ++i) l.pop_back(); + for (int i = 0; i < 20; ++i) l.push_front({}); + for (int i = 0; i < 20; ++i) l.pop_front(); +} + +template +struct NullaryTestValidator : public std::false_type {}; + +template +struct NullaryTestValidator< + TesterInstance, + absl::void_t().Test())>> + : public std::true_type {}; + +template +bool HasNullaryTest(const TesterInstance&) { + return NullaryTestValidator::value; +} + +void DummyOp(void*) {} + +template +struct UnaryTestValidator : public std::false_type {}; + +template +struct UnaryTestValidator< + TesterInstance, + absl::void_t().Test(DummyOp))>> + : public std::true_type {}; + +template +bool HasUnaryTest(const TesterInstance&) { + return UnaryTestValidator::value; +} + +TEST(ExceptionSafetyTesterTest, IncompleteTypesAreNotTestable) { + using T = exceptions_internal::UninitializedT; + auto op = [](T* t) {}; + auto inv = [](T*) { return testing::AssertionSuccess(); }; + auto fac = []() { return absl::make_unique(); }; + + // Test that providing operation and inveriants still does not allow for the + // the invocation of .Test() and .Test(op) because it lacks a factory + auto without_fac = + testing::MakeExceptionSafetyTester().WithOperation(op).WithContracts( + inv, testing::strong_guarantee); + EXPECT_FALSE(HasNullaryTest(without_fac)); + EXPECT_FALSE(HasUnaryTest(without_fac)); + + // Test that providing contracts and factory allows the invocation of + // .Test(op) but does not allow for .Test() because it lacks an operation + auto without_op = testing::MakeExceptionSafetyTester() + .WithContracts(inv, testing::strong_guarantee) + .WithFactory(fac); + EXPECT_FALSE(HasNullaryTest(without_op)); + EXPECT_TRUE(HasUnaryTest(without_op)); + + // Test that providing operation and factory still does not allow for the + // the invocation of .Test() and .Test(op) because it lacks contracts + auto without_inv = + testing::MakeExceptionSafetyTester().WithOperation(op).WithFactory(fac); + EXPECT_FALSE(HasNullaryTest(without_inv)); + EXPECT_FALSE(HasUnaryTest(without_inv)); +} + +struct ExampleStruct {}; + +std::unique_ptr ExampleFunctionFactory() { + return absl::make_unique(); +} + +void ExampleFunctionOperation(ExampleStruct*) {} + +testing::AssertionResult ExampleFunctionContract(ExampleStruct*) { + return testing::AssertionSuccess(); +} + +struct { + std::unique_ptr operator()() const { + return ExampleFunctionFactory(); + } +} example_struct_factory; + +struct { + void operator()(ExampleStruct*) const {} +} example_struct_operation; + +struct { + testing::AssertionResult operator()(ExampleStruct* example_struct) const { + return ExampleFunctionContract(example_struct); + } +} example_struct_contract; + +auto example_lambda_factory = []() { return ExampleFunctionFactory(); }; + +auto example_lambda_operation = [](ExampleStruct*) {}; + +auto example_lambda_contract = [](ExampleStruct* example_struct) { + return ExampleFunctionContract(example_struct); +}; + +// Testing that function references, pointers, structs with operator() and +// lambdas can all be used with ExceptionSafetyTester +TEST(ExceptionSafetyTesterTest, MixedFunctionTypes) { + // function reference + EXPECT_TRUE(testing::MakeExceptionSafetyTester() + .WithFactory(ExampleFunctionFactory) + .WithOperation(ExampleFunctionOperation) + .WithContracts(ExampleFunctionContract) + .Test()); + + // function pointer + EXPECT_TRUE(testing::MakeExceptionSafetyTester() + .WithFactory(&ExampleFunctionFactory) + .WithOperation(&ExampleFunctionOperation) + .WithContracts(&ExampleFunctionContract) + .Test()); + + // struct + EXPECT_TRUE(testing::MakeExceptionSafetyTester() + .WithFactory(example_struct_factory) + .WithOperation(example_struct_operation) + .WithContracts(example_struct_contract) + .Test()); + + // lambda + EXPECT_TRUE(testing::MakeExceptionSafetyTester() + .WithFactory(example_lambda_factory) + .WithOperation(example_lambda_operation) + .WithContracts(example_lambda_contract) + .Test()); +} + +struct NonNegative { + bool operator==(const NonNegative& other) const { return i == other.i; } + int i; +}; + +testing::AssertionResult CheckNonNegativeInvariants(NonNegative* g) { + if (g->i >= 0) { + return testing::AssertionSuccess(); + } + return testing::AssertionFailure() + << "i should be non-negative but is " << g->i; +} + +struct { + template + void operator()(T* t) const { + (*t)(); + } +} invoker; + +auto tester = + testing::MakeExceptionSafetyTester().WithOperation(invoker).WithContracts( + CheckNonNegativeInvariants); +auto strong_tester = tester.WithContracts(testing::strong_guarantee); + +struct FailsBasicGuarantee : public NonNegative { + void operator()() { + --i; + ThrowingValue<> bomb; + ++i; + } +}; + +TEST(ExceptionCheckTest, BasicGuaranteeFailure) { + EXPECT_FALSE(tester.WithInitialValue(FailsBasicGuarantee{}).Test()); +} + +struct FollowsBasicGuarantee : public NonNegative { + void operator()() { + ++i; + ThrowingValue<> bomb; + } +}; + +TEST(ExceptionCheckTest, BasicGuarantee) { + EXPECT_TRUE(tester.WithInitialValue(FollowsBasicGuarantee{}).Test()); +} + +TEST(ExceptionCheckTest, StrongGuaranteeFailure) { + EXPECT_FALSE(strong_tester.WithInitialValue(FailsBasicGuarantee{}).Test()); + EXPECT_FALSE(strong_tester.WithInitialValue(FollowsBasicGuarantee{}).Test()); +} + +struct BasicGuaranteeWithExtraContracts : public NonNegative { + // After operator(), i is incremented. If operator() throws, i is set to 9999 + void operator()() { + int old_i = i; + i = kExceptionSentinel; + ThrowingValue<> bomb; + i = ++old_i; + } + + static constexpr int kExceptionSentinel = 9999; +}; + +#ifdef ABSL_INTERNAL_NEED_REDUNDANT_CONSTEXPR_DECL +constexpr int BasicGuaranteeWithExtraContracts::kExceptionSentinel; +#endif + +TEST(ExceptionCheckTest, BasicGuaranteeWithExtraContracts) { + auto tester_with_val = + tester.WithInitialValue(BasicGuaranteeWithExtraContracts{}); + EXPECT_TRUE(tester_with_val.Test()); + EXPECT_TRUE( + tester_with_val + .WithContracts([](BasicGuaranteeWithExtraContracts* o) { + if (o->i == BasicGuaranteeWithExtraContracts::kExceptionSentinel) { + return testing::AssertionSuccess(); + } + return testing::AssertionFailure() + << "i should be " + << BasicGuaranteeWithExtraContracts::kExceptionSentinel + << ", but is " << o->i; + }) + .Test()); +} + +struct FollowsStrongGuarantee : public NonNegative { + void operator()() { ThrowingValue<> bomb; } +}; + +TEST(ExceptionCheckTest, StrongGuarantee) { + EXPECT_TRUE(tester.WithInitialValue(FollowsStrongGuarantee{}).Test()); + EXPECT_TRUE(strong_tester.WithInitialValue(FollowsStrongGuarantee{}).Test()); +} + +struct HasReset : public NonNegative { + void operator()() { + i = -1; + ThrowingValue<> bomb; + i = 1; + } + + void reset() { i = 0; } +}; + +testing::AssertionResult CheckHasResetContracts(HasReset* h) { + h->reset(); + return testing::AssertionResult(h->i == 0); +} + +TEST(ExceptionCheckTest, ModifyingChecker) { + auto set_to_1000 = [](FollowsBasicGuarantee* g) { + g->i = 1000; + return testing::AssertionSuccess(); + }; + auto is_1000 = [](FollowsBasicGuarantee* g) { + return testing::AssertionResult(g->i == 1000); + }; + auto increment = [](FollowsStrongGuarantee* g) { + ++g->i; + return testing::AssertionSuccess(); + }; + + EXPECT_FALSE(tester.WithInitialValue(FollowsBasicGuarantee{}) + .WithContracts(set_to_1000, is_1000) + .Test()); + EXPECT_TRUE(strong_tester.WithInitialValue(FollowsStrongGuarantee{}) + .WithContracts(increment) + .Test()); + EXPECT_TRUE(testing::MakeExceptionSafetyTester() + .WithInitialValue(HasReset{}) + .WithContracts(CheckHasResetContracts) + .Test(invoker)); +} + +TEST(ExceptionSafetyTesterTest, ResetsCountdown) { + auto test = + testing::MakeExceptionSafetyTester() + .WithInitialValue(ThrowingValue<>()) + .WithContracts([](ThrowingValue<>*) { return AssertionSuccess(); }) + .WithOperation([](ThrowingValue<>*) {}); + ASSERT_TRUE(test.Test()); + // If the countdown isn't reset because there were no exceptions thrown, then + // this will fail with a termination from an unhandled exception + EXPECT_TRUE(test.Test()); +} + +struct NonCopyable : public NonNegative { + NonCopyable(const NonCopyable&) = delete; + NonCopyable() : NonNegative{0} {} + + void operator()() { ThrowingValue<> bomb; } +}; + +TEST(ExceptionCheckTest, NonCopyable) { + auto factory = []() { return absl::make_unique(); }; + EXPECT_TRUE(tester.WithFactory(factory).Test()); + EXPECT_TRUE(strong_tester.WithFactory(factory).Test()); +} + +struct NonEqualityComparable : public NonNegative { + void operator()() { ThrowingValue<> bomb; } + + void ModifyOnThrow() { + ++i; + ThrowingValue<> bomb; + static_cast(bomb); + --i; + } +}; + +TEST(ExceptionCheckTest, NonEqualityComparable) { + auto nec_is_strong = [](NonEqualityComparable* nec) { + return testing::AssertionResult(nec->i == NonEqualityComparable().i); + }; + auto strong_nec_tester = tester.WithInitialValue(NonEqualityComparable{}) + .WithContracts(nec_is_strong); + + EXPECT_TRUE(strong_nec_tester.Test()); + EXPECT_FALSE(strong_nec_tester.Test( + [](NonEqualityComparable* n) { n->ModifyOnThrow(); })); +} + +template +struct ExhaustivenessTester { + void operator()() { + successes |= 1; + T b1; + static_cast(b1); + successes |= (1 << 1); + T b2; + static_cast(b2); + successes |= (1 << 2); + T b3; + static_cast(b3); + successes |= (1 << 3); + } + + bool operator==(const ExhaustivenessTester>&) const { + return true; + } + + static unsigned char successes; +}; + +struct { + template + testing::AssertionResult operator()(ExhaustivenessTester*) const { + return testing::AssertionSuccess(); + } +} CheckExhaustivenessTesterContracts; + +template +unsigned char ExhaustivenessTester::successes = 0; + +TEST(ExceptionCheckTest, Exhaustiveness) { + auto exhaust_tester = testing::MakeExceptionSafetyTester() + .WithContracts(CheckExhaustivenessTesterContracts) + .WithOperation(invoker); + + EXPECT_TRUE( + exhaust_tester.WithInitialValue(ExhaustivenessTester{}).Test()); + EXPECT_EQ(ExhaustivenessTester::successes, 0xF); + + EXPECT_TRUE( + exhaust_tester.WithInitialValue(ExhaustivenessTester>{}) + .WithContracts(testing::strong_guarantee) + .Test()); + EXPECT_EQ(ExhaustivenessTester>::successes, 0xF); +} + +struct LeaksIfCtorThrows : private exceptions_internal::TrackedObject { + LeaksIfCtorThrows() : TrackedObject(ABSL_PRETTY_FUNCTION) { + ++counter; + ThrowingValue<> v; + static_cast(v); + --counter; + } + LeaksIfCtorThrows(const LeaksIfCtorThrows&) noexcept + : TrackedObject(ABSL_PRETTY_FUNCTION) {} + static int counter; +}; +int LeaksIfCtorThrows::counter = 0; + +TEST(ExceptionCheckTest, TestLeakyCtor) { + testing::TestThrowingCtor(); + EXPECT_EQ(LeaksIfCtorThrows::counter, 1); + LeaksIfCtorThrows::counter = 0; +} + +struct Tracked : private exceptions_internal::TrackedObject { + Tracked() : TrackedObject(ABSL_PRETTY_FUNCTION) {} +}; + +TEST(ConstructorTrackerTest, CreatedBefore) { + Tracked a, b, c; + exceptions_internal::ConstructorTracker ct(exceptions_internal::countdown); +} + +TEST(ConstructorTrackerTest, CreatedAfter) { + exceptions_internal::ConstructorTracker ct(exceptions_internal::countdown); + Tracked a, b, c; +} + +TEST(ConstructorTrackerTest, NotDestroyedAfter) { + alignas(Tracked) unsigned char storage[sizeof(Tracked)]; + EXPECT_NONFATAL_FAILURE( + { + exceptions_internal::ConstructorTracker ct( + exceptions_internal::countdown); + new (&storage) Tracked(); + }, + "not destroyed"); +} + +TEST(ConstructorTrackerTest, DestroyedTwice) { + exceptions_internal::ConstructorTracker ct(exceptions_internal::countdown); + EXPECT_NONFATAL_FAILURE( + { + Tracked t; + t.~Tracked(); + }, + "re-destroyed"); +} + +TEST(ConstructorTrackerTest, ConstructedTwice) { + exceptions_internal::ConstructorTracker ct(exceptions_internal::countdown); + alignas(Tracked) unsigned char storage[sizeof(Tracked)]; + EXPECT_NONFATAL_FAILURE( + { + new (&storage) Tracked(); + new (&storage) Tracked(); + reinterpret_cast(&storage)->~Tracked(); + }, + "re-constructed"); +} + +TEST(ThrowingValueTraitsTest, RelationalOperators) { + ThrowingValue<> a, b; + EXPECT_TRUE((std::is_convertible::value)); + EXPECT_TRUE((std::is_convertible::value)); + EXPECT_TRUE((std::is_convertible::value)); + EXPECT_TRUE((std::is_convertible::value)); + EXPECT_TRUE((std::is_convertible b), bool>::value)); + EXPECT_TRUE((std::is_convertible= b), bool>::value)); +} + +TEST(ThrowingAllocatorTraitsTest, Assignablility) { + EXPECT_TRUE(absl::is_move_assignable>::value); + EXPECT_TRUE(absl::is_copy_assignable>::value); + EXPECT_TRUE(std::is_nothrow_move_assignable>::value); + EXPECT_TRUE(std::is_nothrow_copy_assignable>::value); +} + +} // namespace + +} // namespace testing + +#endif // ABSL_HAVE_EXCEPTIONS diff --git a/weight/_dep/abseil-cpp/absl/base/inline_variable_test.cc b/weight/_dep/abseil-cpp/absl/base/inline_variable_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..37a40e1e40a66dba6efbb4e8f1d1a6adfa4cb901 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/inline_variable_test.cc @@ -0,0 +1,64 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include + +#include "absl/base/internal/inline_variable.h" +#include "absl/base/internal/inline_variable_testing.h" + +#include "gtest/gtest.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace inline_variable_testing_internal { +namespace { + +TEST(InlineVariableTest, Constexpr) { + static_assert(inline_variable_foo.value == 5, ""); + static_assert(other_inline_variable_foo.value == 5, ""); + static_assert(inline_variable_int == 5, ""); + static_assert(other_inline_variable_int == 5, ""); +} + +TEST(InlineVariableTest, DefaultConstructedIdentityEquality) { + EXPECT_EQ(get_foo_a().value, 5); + EXPECT_EQ(get_foo_b().value, 5); + EXPECT_EQ(&get_foo_a(), &get_foo_b()); +} + +TEST(InlineVariableTest, DefaultConstructedIdentityInequality) { + EXPECT_NE(&inline_variable_foo, &other_inline_variable_foo); +} + +TEST(InlineVariableTest, InitializedIdentityEquality) { + EXPECT_EQ(get_int_a(), 5); + EXPECT_EQ(get_int_b(), 5); + EXPECT_EQ(&get_int_a(), &get_int_b()); +} + +TEST(InlineVariableTest, InitializedIdentityInequality) { + EXPECT_NE(&inline_variable_int, &other_inline_variable_int); +} + +TEST(InlineVariableTest, FunPtrType) { + static_assert( + std::is_same::type>::value, + ""); +} + +} // namespace +} // namespace inline_variable_testing_internal +ABSL_NAMESPACE_END +} // namespace absl diff --git a/weight/_dep/abseil-cpp/absl/base/inline_variable_test_a.cc b/weight/_dep/abseil-cpp/absl/base/inline_variable_test_a.cc new file mode 100644 index 0000000000000000000000000000000000000000..f96a58d9b422b54fde975565fa876a0ac06e512d --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/inline_variable_test_a.cc @@ -0,0 +1,27 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/internal/inline_variable_testing.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace inline_variable_testing_internal { + +const Foo& get_foo_a() { return inline_variable_foo; } + +const int& get_int_a() { return inline_variable_int; } + +} // namespace inline_variable_testing_internal +ABSL_NAMESPACE_END +} // namespace absl diff --git a/weight/_dep/abseil-cpp/absl/base/inline_variable_test_b.cc b/weight/_dep/abseil-cpp/absl/base/inline_variable_test_b.cc new file mode 100644 index 0000000000000000000000000000000000000000..038adc30a9fb8aa2bb74c85740ef52f377245c7e --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/inline_variable_test_b.cc @@ -0,0 +1,27 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/internal/inline_variable_testing.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace inline_variable_testing_internal { + +const Foo& get_foo_b() { return inline_variable_foo; } + +const int& get_int_b() { return inline_variable_int; } + +} // namespace inline_variable_testing_internal +ABSL_NAMESPACE_END +} // namespace absl diff --git a/weight/_dep/abseil-cpp/absl/base/internal/cycleclock.cc b/weight/_dep/abseil-cpp/absl/base/internal/cycleclock.cc new file mode 100644 index 0000000000000000000000000000000000000000..902e3f5ef1baf81d48881cd9793d2b2bcbaa2dae --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/cycleclock.cc @@ -0,0 +1,77 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// The implementation of CycleClock::Frequency. +// +// NOTE: only i386 and x86_64 have been well tested. +// PPC, sparc, alpha, and ia64 are based on +// http://peter.kuscsik.com/wordpress/?p=14 +// with modifications by m3b. See also +// https://setisvn.ssl.berkeley.edu/svn/lib/fftw-3.0.1/kernel/cycle.h + +#include "absl/base/internal/cycleclock.h" + +#include +#include // NOLINT(build/c++11) + +#include "absl/base/attributes.h" +#include "absl/base/config.h" +#include "absl/base/internal/unscaledcycleclock.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { + +#if ABSL_USE_UNSCALED_CYCLECLOCK + +#ifdef ABSL_INTERNAL_NEED_REDUNDANT_CONSTEXPR_DECL +constexpr int32_t CycleClock::kShift; +constexpr double CycleClock::kFrequencyScale; +#endif + +ABSL_CONST_INIT std::atomic + CycleClock::cycle_clock_source_{nullptr}; + +void CycleClockSource::Register(CycleClockSourceFunc source) { + // Corresponds to the load(std::memory_order_acquire) in LoadCycleClockSource. + CycleClock::cycle_clock_source_.store(source, std::memory_order_release); +} + +#ifdef _WIN32 +int64_t CycleClock::Now() { + auto fn = LoadCycleClockSource(); + if (fn == nullptr) { + return base_internal::UnscaledCycleClock::Now() >> kShift; + } + return fn() >> kShift; +} +#endif + +#else + +int64_t CycleClock::Now() { + return std::chrono::duration_cast( + std::chrono::steady_clock::now().time_since_epoch()) + .count(); +} + +double CycleClock::Frequency() { + return 1e9; +} + +#endif + +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl diff --git a/weight/_dep/abseil-cpp/absl/base/internal/cycleclock_config.h b/weight/_dep/abseil-cpp/absl/base/internal/cycleclock_config.h new file mode 100644 index 0000000000000000000000000000000000000000..191112b58efddef348e825ffa7d85ccc1d3fbf17 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/cycleclock_config.h @@ -0,0 +1,55 @@ +// Copyright 2022 The Abseil Authors +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#ifndef ABSL_BASE_INTERNAL_CYCLECLOCK_CONFIG_H_ +#define ABSL_BASE_INTERNAL_CYCLECLOCK_CONFIG_H_ + +#include + +#include "absl/base/config.h" +#include "absl/base/internal/inline_variable.h" +#include "absl/base/internal/unscaledcycleclock_config.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { + +#if ABSL_USE_UNSCALED_CYCLECLOCK +#ifdef NDEBUG +#ifdef ABSL_INTERNAL_UNSCALED_CYCLECLOCK_FREQUENCY_IS_CPU_FREQUENCY +// Not debug mode and the UnscaledCycleClock frequency is the CPU +// frequency. Scale the CycleClock to prevent overflow if someone +// tries to represent the time as cycles since the Unix epoch. +ABSL_INTERNAL_INLINE_CONSTEXPR(int32_t, kCycleClockShift, 1); +#else +// Not debug mode and the UnscaledCycleClock isn't operating at the +// raw CPU frequency. There is no need to do any scaling, so don't +// needlessly sacrifice precision. +ABSL_INTERNAL_INLINE_CONSTEXPR(int32_t, kCycleClockShift, 0); +#endif +#else // NDEBUG +// In debug mode use a different shift to discourage depending on a +// particular shift value. +ABSL_INTERNAL_INLINE_CONSTEXPR(int32_t, kCycleClockShift, 2); +#endif // NDEBUG + +ABSL_INTERNAL_INLINE_CONSTEXPR(double, kCycleClockFrequencyScale, + 1.0 / (1 << kCycleClockShift)); +#endif // ABSL_USE_UNSCALED_CYCLECLOC + +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_INTERNAL_CYCLECLOCK_CONFIG_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/direct_mmap.h b/weight/_dep/abseil-cpp/absl/base/internal/direct_mmap.h new file mode 100644 index 0000000000000000000000000000000000000000..1beb2ee4e52e4a5f15b689630295bc180b18c593 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/direct_mmap.h @@ -0,0 +1,170 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// Functions for directly invoking mmap() via syscall, avoiding the case where +// mmap() has been locally overridden. + +#ifndef ABSL_BASE_INTERNAL_DIRECT_MMAP_H_ +#define ABSL_BASE_INTERNAL_DIRECT_MMAP_H_ + +#include "absl/base/config.h" + +#ifdef ABSL_HAVE_MMAP + +#include + +#ifdef __linux__ + +#include +#ifdef __BIONIC__ +#include +#else +#include +#endif + +#include +#include +#include +#include +#include + +#ifdef __mips__ +// Include definitions of the ABI currently in use. +#if defined(__BIONIC__) || !defined(__GLIBC__) +// Android doesn't have sgidefs.h, but does have asm/sgidefs.h, which has the +// definitions we need. +#include +#else +#include +#endif // __BIONIC__ || !__GLIBC__ +#endif // __mips__ + +// SYS_mmap and SYS_munmap are not defined in Android. +#ifdef __BIONIC__ +extern "C" void* __mmap2(void*, size_t, int, int, int, size_t); +#if defined(__NR_mmap) && !defined(SYS_mmap) +#define SYS_mmap __NR_mmap +#endif +#ifndef SYS_munmap +#define SYS_munmap __NR_munmap +#endif +#endif // __BIONIC__ + +#if defined(__NR_mmap2) && !defined(SYS_mmap2) +#define SYS_mmap2 __NR_mmap2 +#endif + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { + +// Platform specific logic extracted from +// https://chromium.googlesource.com/linux-syscall-support/+/master/linux_syscall_support.h +inline void* DirectMmap(void* start, size_t length, int prot, int flags, int fd, + off_t offset) noexcept { +#if defined(__i386__) || defined(__ARM_ARCH_3__) || defined(__ARM_EABI__) || \ + defined(__m68k__) || defined(__sh__) || \ + (defined(__hppa__) && !defined(__LP64__)) || \ + (defined(__mips__) && _MIPS_SIM == _MIPS_SIM_ABI32) || \ + (defined(__PPC__) && !defined(__PPC64__)) || \ + (defined(__riscv) && __riscv_xlen == 32) || \ + (defined(__s390__) && !defined(__s390x__)) || \ + (defined(__sparc__) && !defined(__arch64__)) + // On these architectures, implement mmap with mmap2. + static int pagesize = 0; + if (pagesize == 0) { +#if defined(__wasm__) || defined(__asmjs__) + pagesize = getpagesize(); +#else + pagesize = sysconf(_SC_PAGESIZE); +#endif + } + if (offset < 0 || offset % pagesize != 0) { + errno = EINVAL; + return MAP_FAILED; + } +#ifdef __BIONIC__ + // SYS_mmap2 has problems on Android API level <= 16. + // Workaround by invoking __mmap2() instead. + return __mmap2(start, length, prot, flags, fd, + static_cast(offset / pagesize)); +#else + return reinterpret_cast( + syscall(SYS_mmap2, start, length, prot, flags, fd, + static_cast(offset / pagesize))); // NOLINT +#endif +#elif defined(__s390x__) + // On s390x, mmap() arguments are passed in memory. + unsigned long buf[6] = {reinterpret_cast(start), // NOLINT + static_cast(length), // NOLINT + static_cast(prot), // NOLINT + static_cast(flags), // NOLINT + static_cast(fd), // NOLINT + static_cast(offset)}; // NOLINT + return reinterpret_cast(syscall(SYS_mmap, buf)); +#elif defined(__x86_64__) +// The x32 ABI has 32 bit longs, but the syscall interface is 64 bit. +// We need to explicitly cast to an unsigned 64 bit type to avoid implicit +// sign extension. We can't cast pointers directly because those are +// 32 bits, and gcc will dump ugly warnings about casting from a pointer +// to an integer of a different size. We also need to make sure __off64_t +// isn't truncated to 32-bits under x32. +#define MMAP_SYSCALL_ARG(x) ((uint64_t)(uintptr_t)(x)) + return reinterpret_cast( + syscall(SYS_mmap, MMAP_SYSCALL_ARG(start), MMAP_SYSCALL_ARG(length), + MMAP_SYSCALL_ARG(prot), MMAP_SYSCALL_ARG(flags), + MMAP_SYSCALL_ARG(fd), static_cast(offset))); +#undef MMAP_SYSCALL_ARG +#else // Remaining 64-bit aritectures. + static_assert(sizeof(unsigned long) == 8, "Platform is not 64-bit"); + return reinterpret_cast( + syscall(SYS_mmap, start, length, prot, flags, fd, offset)); +#endif +} + +inline int DirectMunmap(void* start, size_t length) { + return static_cast(syscall(SYS_munmap, start, length)); +} + +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl + +#else // !__linux__ + +// For non-linux platforms where we have mmap, just dispatch directly to the +// actual mmap()/munmap() methods. + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { + +inline void* DirectMmap(void* start, size_t length, int prot, int flags, int fd, + off_t offset) { + return mmap(start, length, prot, flags, fd, offset); +} + +inline int DirectMunmap(void* start, size_t length) { + return munmap(start, length); +} + +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl + +#endif // __linux__ + +#endif // ABSL_HAVE_MMAP + +#endif // ABSL_BASE_INTERNAL_DIRECT_MMAP_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/endian.h b/weight/_dep/abseil-cpp/absl/base/internal/endian.h new file mode 100644 index 0000000000000000000000000000000000000000..943f3d97e791bb76b79a1cfd3c8dd36342847d24 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/endian.h @@ -0,0 +1,283 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// + +#ifndef ABSL_BASE_INTERNAL_ENDIAN_H_ +#define ABSL_BASE_INTERNAL_ENDIAN_H_ + +#include +#include + +#include "absl/base/casts.h" +#include "absl/base/config.h" +#include "absl/base/internal/unaligned_access.h" +#include "absl/base/nullability.h" +#include "absl/base/port.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN + +inline uint64_t gbswap_64(uint64_t host_int) { +#if ABSL_HAVE_BUILTIN(__builtin_bswap64) || defined(__GNUC__) + return __builtin_bswap64(host_int); +#elif defined(_MSC_VER) + return _byteswap_uint64(host_int); +#else + return (((host_int & uint64_t{0xFF}) << 56) | + ((host_int & uint64_t{0xFF00}) << 40) | + ((host_int & uint64_t{0xFF0000}) << 24) | + ((host_int & uint64_t{0xFF000000}) << 8) | + ((host_int & uint64_t{0xFF00000000}) >> 8) | + ((host_int & uint64_t{0xFF0000000000}) >> 24) | + ((host_int & uint64_t{0xFF000000000000}) >> 40) | + ((host_int & uint64_t{0xFF00000000000000}) >> 56)); +#endif +} + +inline uint32_t gbswap_32(uint32_t host_int) { +#if ABSL_HAVE_BUILTIN(__builtin_bswap32) || defined(__GNUC__) + return __builtin_bswap32(host_int); +#elif defined(_MSC_VER) + return _byteswap_ulong(host_int); +#else + return (((host_int & uint32_t{0xFF}) << 24) | + ((host_int & uint32_t{0xFF00}) << 8) | + ((host_int & uint32_t{0xFF0000}) >> 8) | + ((host_int & uint32_t{0xFF000000}) >> 24)); +#endif +} + +inline uint16_t gbswap_16(uint16_t host_int) { +#if ABSL_HAVE_BUILTIN(__builtin_bswap16) || defined(__GNUC__) + return __builtin_bswap16(host_int); +#elif defined(_MSC_VER) + return _byteswap_ushort(host_int); +#else + return (((host_int & uint16_t{0xFF}) << 8) | + ((host_int & uint16_t{0xFF00}) >> 8)); +#endif +} + +#ifdef ABSL_IS_LITTLE_ENDIAN + +// Portable definitions for htonl (host-to-network) and friends on little-endian +// architectures. +inline uint16_t ghtons(uint16_t x) { return gbswap_16(x); } +inline uint32_t ghtonl(uint32_t x) { return gbswap_32(x); } +inline uint64_t ghtonll(uint64_t x) { return gbswap_64(x); } + +#elif defined ABSL_IS_BIG_ENDIAN + +// Portable definitions for htonl (host-to-network) etc on big-endian +// architectures. These definitions are simpler since the host byte order is the +// same as network byte order. +inline uint16_t ghtons(uint16_t x) { return x; } +inline uint32_t ghtonl(uint32_t x) { return x; } +inline uint64_t ghtonll(uint64_t x) { return x; } + +#else +#error \ + "Unsupported byte order: Either ABSL_IS_BIG_ENDIAN or " \ + "ABSL_IS_LITTLE_ENDIAN must be defined" +#endif // byte order + +inline uint16_t gntohs(uint16_t x) { return ghtons(x); } +inline uint32_t gntohl(uint32_t x) { return ghtonl(x); } +inline uint64_t gntohll(uint64_t x) { return ghtonll(x); } + +// Utilities to convert numbers between the current hosts's native byte +// order and little-endian byte order +// +// Load/Store methods are alignment safe +namespace little_endian { +// Conversion functions. +#ifdef ABSL_IS_LITTLE_ENDIAN + +inline uint16_t FromHost16(uint16_t x) { return x; } +inline uint16_t ToHost16(uint16_t x) { return x; } + +inline uint32_t FromHost32(uint32_t x) { return x; } +inline uint32_t ToHost32(uint32_t x) { return x; } + +inline uint64_t FromHost64(uint64_t x) { return x; } +inline uint64_t ToHost64(uint64_t x) { return x; } + +inline constexpr bool IsLittleEndian() { return true; } + +#elif defined ABSL_IS_BIG_ENDIAN + +inline uint16_t FromHost16(uint16_t x) { return gbswap_16(x); } +inline uint16_t ToHost16(uint16_t x) { return gbswap_16(x); } + +inline uint32_t FromHost32(uint32_t x) { return gbswap_32(x); } +inline uint32_t ToHost32(uint32_t x) { return gbswap_32(x); } + +inline uint64_t FromHost64(uint64_t x) { return gbswap_64(x); } +inline uint64_t ToHost64(uint64_t x) { return gbswap_64(x); } + +inline constexpr bool IsLittleEndian() { return false; } + +#endif /* ENDIAN */ + +inline uint8_t FromHost(uint8_t x) { return x; } +inline uint16_t FromHost(uint16_t x) { return FromHost16(x); } +inline uint32_t FromHost(uint32_t x) { return FromHost32(x); } +inline uint64_t FromHost(uint64_t x) { return FromHost64(x); } +inline uint8_t ToHost(uint8_t x) { return x; } +inline uint16_t ToHost(uint16_t x) { return ToHost16(x); } +inline uint32_t ToHost(uint32_t x) { return ToHost32(x); } +inline uint64_t ToHost(uint64_t x) { return ToHost64(x); } + +inline int8_t FromHost(int8_t x) { return x; } +inline int16_t FromHost(int16_t x) { + return bit_cast(FromHost16(bit_cast(x))); +} +inline int32_t FromHost(int32_t x) { + return bit_cast(FromHost32(bit_cast(x))); +} +inline int64_t FromHost(int64_t x) { + return bit_cast(FromHost64(bit_cast(x))); +} +inline int8_t ToHost(int8_t x) { return x; } +inline int16_t ToHost(int16_t x) { + return bit_cast(ToHost16(bit_cast(x))); +} +inline int32_t ToHost(int32_t x) { + return bit_cast(ToHost32(bit_cast(x))); +} +inline int64_t ToHost(int64_t x) { + return bit_cast(ToHost64(bit_cast(x))); +} + +// Functions to do unaligned loads and stores in little-endian order. +inline uint16_t Load16(absl::Nonnull p) { + return ToHost16(ABSL_INTERNAL_UNALIGNED_LOAD16(p)); +} + +inline void Store16(absl::Nonnull p, uint16_t v) { + ABSL_INTERNAL_UNALIGNED_STORE16(p, FromHost16(v)); +} + +inline uint32_t Load32(absl::Nonnull p) { + return ToHost32(ABSL_INTERNAL_UNALIGNED_LOAD32(p)); +} + +inline void Store32(absl::Nonnull p, uint32_t v) { + ABSL_INTERNAL_UNALIGNED_STORE32(p, FromHost32(v)); +} + +inline uint64_t Load64(absl::Nonnull p) { + return ToHost64(ABSL_INTERNAL_UNALIGNED_LOAD64(p)); +} + +inline void Store64(absl::Nonnull p, uint64_t v) { + ABSL_INTERNAL_UNALIGNED_STORE64(p, FromHost64(v)); +} + +} // namespace little_endian + +// Utilities to convert numbers between the current hosts's native byte +// order and big-endian byte order (same as network byte order) +// +// Load/Store methods are alignment safe +namespace big_endian { +#ifdef ABSL_IS_LITTLE_ENDIAN + +inline uint16_t FromHost16(uint16_t x) { return gbswap_16(x); } +inline uint16_t ToHost16(uint16_t x) { return gbswap_16(x); } + +inline uint32_t FromHost32(uint32_t x) { return gbswap_32(x); } +inline uint32_t ToHost32(uint32_t x) { return gbswap_32(x); } + +inline uint64_t FromHost64(uint64_t x) { return gbswap_64(x); } +inline uint64_t ToHost64(uint64_t x) { return gbswap_64(x); } + +inline constexpr bool IsLittleEndian() { return true; } + +#elif defined ABSL_IS_BIG_ENDIAN + +inline uint16_t FromHost16(uint16_t x) { return x; } +inline uint16_t ToHost16(uint16_t x) { return x; } + +inline uint32_t FromHost32(uint32_t x) { return x; } +inline uint32_t ToHost32(uint32_t x) { return x; } + +inline uint64_t FromHost64(uint64_t x) { return x; } +inline uint64_t ToHost64(uint64_t x) { return x; } + +inline constexpr bool IsLittleEndian() { return false; } + +#endif /* ENDIAN */ + +inline uint8_t FromHost(uint8_t x) { return x; } +inline uint16_t FromHost(uint16_t x) { return FromHost16(x); } +inline uint32_t FromHost(uint32_t x) { return FromHost32(x); } +inline uint64_t FromHost(uint64_t x) { return FromHost64(x); } +inline uint8_t ToHost(uint8_t x) { return x; } +inline uint16_t ToHost(uint16_t x) { return ToHost16(x); } +inline uint32_t ToHost(uint32_t x) { return ToHost32(x); } +inline uint64_t ToHost(uint64_t x) { return ToHost64(x); } + +inline int8_t FromHost(int8_t x) { return x; } +inline int16_t FromHost(int16_t x) { + return bit_cast(FromHost16(bit_cast(x))); +} +inline int32_t FromHost(int32_t x) { + return bit_cast(FromHost32(bit_cast(x))); +} +inline int64_t FromHost(int64_t x) { + return bit_cast(FromHost64(bit_cast(x))); +} +inline int8_t ToHost(int8_t x) { return x; } +inline int16_t ToHost(int16_t x) { + return bit_cast(ToHost16(bit_cast(x))); +} +inline int32_t ToHost(int32_t x) { + return bit_cast(ToHost32(bit_cast(x))); +} +inline int64_t ToHost(int64_t x) { + return bit_cast(ToHost64(bit_cast(x))); +} + +// Functions to do unaligned loads and stores in big-endian order. +inline uint16_t Load16(absl::Nonnull p) { + return ToHost16(ABSL_INTERNAL_UNALIGNED_LOAD16(p)); +} + +inline void Store16(absl::Nonnull p, uint16_t v) { + ABSL_INTERNAL_UNALIGNED_STORE16(p, FromHost16(v)); +} + +inline uint32_t Load32(absl::Nonnull p) { + return ToHost32(ABSL_INTERNAL_UNALIGNED_LOAD32(p)); +} + +inline void Store32(absl::Nonnullp, uint32_t v) { + ABSL_INTERNAL_UNALIGNED_STORE32(p, FromHost32(v)); +} + +inline uint64_t Load64(absl::Nonnull p) { + return ToHost64(ABSL_INTERNAL_UNALIGNED_LOAD64(p)); +} + +inline void Store64(absl::Nonnull p, uint64_t v) { + ABSL_INTERNAL_UNALIGNED_STORE64(p, FromHost64(v)); +} + +} // namespace big_endian + +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_INTERNAL_ENDIAN_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/endian_test.cc b/weight/_dep/abseil-cpp/absl/base/internal/endian_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..a1691b1f82c079142ca57fb379e7bf33f66381ca --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/endian_test.cc @@ -0,0 +1,263 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/internal/endian.h" + +#include +#include +#include +#include +#include + +#include "gtest/gtest.h" +#include "absl/base/config.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace { + +const uint64_t kInitialNumber{0x0123456789abcdef}; +const uint64_t k64Value{kInitialNumber}; +const uint32_t k32Value{0x01234567}; +const uint16_t k16Value{0x0123}; +const int kNumValuesToTest = 1000000; +const int kRandomSeed = 12345; + +#if defined(ABSL_IS_BIG_ENDIAN) +const uint64_t kInitialInNetworkOrder{kInitialNumber}; +const uint64_t k64ValueLE{0xefcdab8967452301}; +const uint32_t k32ValueLE{0x67452301}; +const uint16_t k16ValueLE{0x2301}; + +const uint64_t k64ValueBE{kInitialNumber}; +const uint32_t k32ValueBE{k32Value}; +const uint16_t k16ValueBE{k16Value}; +#elif defined(ABSL_IS_LITTLE_ENDIAN) +const uint64_t kInitialInNetworkOrder{0xefcdab8967452301}; +const uint64_t k64ValueLE{kInitialNumber}; +const uint32_t k32ValueLE{k32Value}; +const uint16_t k16ValueLE{k16Value}; + +const uint64_t k64ValueBE{0xefcdab8967452301}; +const uint32_t k32ValueBE{0x67452301}; +const uint16_t k16ValueBE{0x2301}; +#endif + +std::vector GenerateAllUint16Values() { + std::vector result; + result.reserve(size_t{1} << (sizeof(uint16_t) * 8)); + for (uint32_t i = std::numeric_limits::min(); + i <= std::numeric_limits::max(); ++i) { + result.push_back(static_cast(i)); + } + return result; +} + +template +std::vector GenerateRandomIntegers(size_t num_values_to_test) { + std::vector result; + result.reserve(num_values_to_test); + std::mt19937_64 rng(kRandomSeed); + for (size_t i = 0; i < num_values_to_test; ++i) { + result.push_back(rng()); + } + return result; +} + +void ManualByteSwap(char* bytes, int length) { + if (length == 1) + return; + + EXPECT_EQ(0, length % 2); + for (int i = 0; i < length / 2; ++i) { + int j = (length - 1) - i; + using std::swap; + swap(bytes[i], bytes[j]); + } +} + +template +inline T UnalignedLoad(const char* p) { + static_assert( + sizeof(T) == 1 || sizeof(T) == 2 || sizeof(T) == 4 || sizeof(T) == 8, + "Unexpected type size"); + + switch (sizeof(T)) { + case 1: return *reinterpret_cast(p); + case 2: + return ABSL_INTERNAL_UNALIGNED_LOAD16(p); + case 4: + return ABSL_INTERNAL_UNALIGNED_LOAD32(p); + case 8: + return ABSL_INTERNAL_UNALIGNED_LOAD64(p); + default: + // Suppresses invalid "not all control paths return a value" on MSVC + return {}; + } +} + +template +static void GBSwapHelper(const std::vector& host_values_to_test, + const ByteSwapper& byte_swapper) { + // Test byte_swapper against a manual byte swap. + for (typename std::vector::const_iterator it = host_values_to_test.begin(); + it != host_values_to_test.end(); ++it) { + T host_value = *it; + + char actual_value[sizeof(host_value)]; + memcpy(actual_value, &host_value, sizeof(host_value)); + byte_swapper(actual_value); + + char expected_value[sizeof(host_value)]; + memcpy(expected_value, &host_value, sizeof(host_value)); + ManualByteSwap(expected_value, sizeof(host_value)); + + ASSERT_EQ(0, memcmp(actual_value, expected_value, sizeof(host_value))) + << "Swap output for 0x" << std::hex << host_value << " does not match. " + << "Expected: 0x" << UnalignedLoad(expected_value) << "; " + << "actual: 0x" << UnalignedLoad(actual_value); + } +} + +void Swap16(char* bytes) { + ABSL_INTERNAL_UNALIGNED_STORE16( + bytes, gbswap_16(ABSL_INTERNAL_UNALIGNED_LOAD16(bytes))); +} + +void Swap32(char* bytes) { + ABSL_INTERNAL_UNALIGNED_STORE32( + bytes, gbswap_32(ABSL_INTERNAL_UNALIGNED_LOAD32(bytes))); +} + +void Swap64(char* bytes) { + ABSL_INTERNAL_UNALIGNED_STORE64( + bytes, gbswap_64(ABSL_INTERNAL_UNALIGNED_LOAD64(bytes))); +} + +TEST(EndianessTest, Uint16) { + GBSwapHelper(GenerateAllUint16Values(), &Swap16); +} + +TEST(EndianessTest, Uint32) { + GBSwapHelper(GenerateRandomIntegers(kNumValuesToTest), &Swap32); +} + +TEST(EndianessTest, Uint64) { + GBSwapHelper(GenerateRandomIntegers(kNumValuesToTest), &Swap64); +} + +TEST(EndianessTest, ghtonll_gntohll) { + // Test that absl::ghtonl compiles correctly + uint32_t test = 0x01234567; + EXPECT_EQ(absl::gntohl(absl::ghtonl(test)), test); + + uint64_t comp = absl::ghtonll(kInitialNumber); + EXPECT_EQ(comp, kInitialInNetworkOrder); + comp = absl::gntohll(kInitialInNetworkOrder); + EXPECT_EQ(comp, kInitialNumber); + + // Test that htonll and ntohll are each others' inverse functions on a + // somewhat assorted batch of numbers. 37 is chosen to not be anything + // particularly nice base 2. + uint64_t value = 1; + for (int i = 0; i < 100; ++i) { + comp = absl::ghtonll(absl::gntohll(value)); + EXPECT_EQ(value, comp); + comp = absl::gntohll(absl::ghtonll(value)); + EXPECT_EQ(value, comp); + value *= 37; + } +} + +TEST(EndianessTest, little_endian) { + // Check little_endian uint16_t. + uint64_t comp = little_endian::FromHost16(k16Value); + EXPECT_EQ(comp, k16ValueLE); + comp = little_endian::ToHost16(k16ValueLE); + EXPECT_EQ(comp, k16Value); + + // Check little_endian uint32_t. + comp = little_endian::FromHost32(k32Value); + EXPECT_EQ(comp, k32ValueLE); + comp = little_endian::ToHost32(k32ValueLE); + EXPECT_EQ(comp, k32Value); + + // Check little_endian uint64_t. + comp = little_endian::FromHost64(k64Value); + EXPECT_EQ(comp, k64ValueLE); + comp = little_endian::ToHost64(k64ValueLE); + EXPECT_EQ(comp, k64Value); + + // Check little-endian Load and store functions. + uint16_t u16Buf; + uint32_t u32Buf; + uint64_t u64Buf; + + little_endian::Store16(&u16Buf, k16Value); + EXPECT_EQ(u16Buf, k16ValueLE); + comp = little_endian::Load16(&u16Buf); + EXPECT_EQ(comp, k16Value); + + little_endian::Store32(&u32Buf, k32Value); + EXPECT_EQ(u32Buf, k32ValueLE); + comp = little_endian::Load32(&u32Buf); + EXPECT_EQ(comp, k32Value); + + little_endian::Store64(&u64Buf, k64Value); + EXPECT_EQ(u64Buf, k64ValueLE); + comp = little_endian::Load64(&u64Buf); + EXPECT_EQ(comp, k64Value); +} + +TEST(EndianessTest, big_endian) { + // Check big-endian Load and store functions. + uint16_t u16Buf; + uint32_t u32Buf; + uint64_t u64Buf; + + unsigned char buffer[10]; + big_endian::Store16(&u16Buf, k16Value); + EXPECT_EQ(u16Buf, k16ValueBE); + uint64_t comp = big_endian::Load16(&u16Buf); + EXPECT_EQ(comp, k16Value); + + big_endian::Store32(&u32Buf, k32Value); + EXPECT_EQ(u32Buf, k32ValueBE); + comp = big_endian::Load32(&u32Buf); + EXPECT_EQ(comp, k32Value); + + big_endian::Store64(&u64Buf, k64Value); + EXPECT_EQ(u64Buf, k64ValueBE); + comp = big_endian::Load64(&u64Buf); + EXPECT_EQ(comp, k64Value); + + big_endian::Store16(buffer + 1, k16Value); + EXPECT_EQ(u16Buf, k16ValueBE); + comp = big_endian::Load16(buffer + 1); + EXPECT_EQ(comp, k16Value); + + big_endian::Store32(buffer + 1, k32Value); + EXPECT_EQ(u32Buf, k32ValueBE); + comp = big_endian::Load32(buffer + 1); + EXPECT_EQ(comp, k32Value); + + big_endian::Store64(buffer + 1, k64Value); + EXPECT_EQ(u64Buf, k64ValueBE); + comp = big_endian::Load64(buffer + 1); + EXPECT_EQ(comp, k64Value); +} + +} // namespace +ABSL_NAMESPACE_END +} // namespace absl diff --git a/weight/_dep/abseil-cpp/absl/base/internal/errno_saver.h b/weight/_dep/abseil-cpp/absl/base/internal/errno_saver.h new file mode 100644 index 0000000000000000000000000000000000000000..251de510fc939d42fd10a9d2d148554f7998a17e --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/errno_saver.h @@ -0,0 +1,43 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#ifndef ABSL_BASE_INTERNAL_ERRNO_SAVER_H_ +#define ABSL_BASE_INTERNAL_ERRNO_SAVER_H_ + +#include + +#include "absl/base/config.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { + +// `ErrnoSaver` captures the value of `errno` upon construction and restores it +// upon deletion. It is used in low-level code and must be super fast. Do not +// add instrumentation, even in debug modes. +class ErrnoSaver { + public: + ErrnoSaver() : saved_errno_(errno) {} + ~ErrnoSaver() { errno = saved_errno_; } + int operator()() const { return saved_errno_; } + + private: + const int saved_errno_; +}; + +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_INTERNAL_ERRNO_SAVER_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/errno_saver_test.cc b/weight/_dep/abseil-cpp/absl/base/internal/errno_saver_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..e9b742c588b0243da56cbc2d7e152ac51f94f734 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/errno_saver_test.cc @@ -0,0 +1,45 @@ +// Copyright 2018 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/internal/errno_saver.h" + +#include + +#include "gmock/gmock.h" +#include "gtest/gtest.h" +#include "absl/base/internal/strerror.h" + +namespace { +using ::testing::Eq; + +struct ErrnoPrinter { + int no; +}; +std::ostream &operator<<(std::ostream &os, ErrnoPrinter ep) { + return os << absl::base_internal::StrError(ep.no) << " [" << ep.no << "]"; +} +bool operator==(ErrnoPrinter one, ErrnoPrinter two) { return one.no == two.no; } + +TEST(ErrnoSaverTest, Works) { + errno = EDOM; + { + absl::base_internal::ErrnoSaver errno_saver; + EXPECT_THAT(ErrnoPrinter{errno}, Eq(ErrnoPrinter{EDOM})); + errno = ERANGE; + EXPECT_THAT(ErrnoPrinter{errno}, Eq(ErrnoPrinter{ERANGE})); + EXPECT_THAT(ErrnoPrinter{errno_saver()}, Eq(ErrnoPrinter{EDOM})); + } + EXPECT_THAT(ErrnoPrinter{errno}, Eq(ErrnoPrinter{EDOM})); +} +} // namespace diff --git a/weight/_dep/abseil-cpp/absl/base/internal/exception_safety_testing.h b/weight/_dep/abseil-cpp/absl/base/internal/exception_safety_testing.h new file mode 100644 index 0000000000000000000000000000000000000000..c1061544070e4eb9c2544535aee760f3a8b5ec32 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/exception_safety_testing.h @@ -0,0 +1,1109 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// Utilities for testing exception-safety + +#ifndef ABSL_BASE_INTERNAL_EXCEPTION_SAFETY_TESTING_H_ +#define ABSL_BASE_INTERNAL_EXCEPTION_SAFETY_TESTING_H_ + +#include "absl/base/config.h" + +#ifdef ABSL_HAVE_EXCEPTIONS + +#include +#include +#include +#include +#include +#include +#include +#include + +#include "gtest/gtest.h" +#include "absl/base/internal/pretty_function.h" +#include "absl/memory/memory.h" +#include "absl/meta/type_traits.h" +#include "absl/strings/string_view.h" +#include "absl/strings/substitute.h" +#include "absl/utility/utility.h" + +namespace testing { + +enum class TypeSpec; +enum class AllocSpec; + +constexpr TypeSpec operator|(TypeSpec a, TypeSpec b) { + using T = absl::underlying_type_t; + return static_cast(static_cast(a) | static_cast(b)); +} + +constexpr TypeSpec operator&(TypeSpec a, TypeSpec b) { + using T = absl::underlying_type_t; + return static_cast(static_cast(a) & static_cast(b)); +} + +constexpr AllocSpec operator|(AllocSpec a, AllocSpec b) { + using T = absl::underlying_type_t; + return static_cast(static_cast(a) | static_cast(b)); +} + +constexpr AllocSpec operator&(AllocSpec a, AllocSpec b) { + using T = absl::underlying_type_t; + return static_cast(static_cast(a) & static_cast(b)); +} + +namespace exceptions_internal { + +std::string GetSpecString(TypeSpec); +std::string GetSpecString(AllocSpec); + +struct NoThrowTag {}; +struct StrongGuaranteeTagType {}; + +// A simple exception class. We throw this so that test code can catch +// exceptions specifically thrown by ThrowingValue. +class TestException { + public: + explicit TestException(absl::string_view msg) : msg_(msg) {} + virtual ~TestException() {} + virtual const char* what() const noexcept { return msg_.c_str(); } + + private: + std::string msg_; +}; + +// TestBadAllocException exists because allocation functions must throw an +// exception which can be caught by a handler of std::bad_alloc. We use a child +// class of std::bad_alloc so we can customise the error message, and also +// derive from TestException so we don't accidentally end up catching an actual +// bad_alloc exception in TestExceptionSafety. +class TestBadAllocException : public std::bad_alloc, public TestException { + public: + explicit TestBadAllocException(absl::string_view msg) : TestException(msg) {} + using TestException::what; +}; + +extern int countdown; + +// Allows the countdown variable to be set manually (defaulting to the initial +// value of 0) +inline void SetCountdown(int i = 0) { countdown = i; } +// Sets the countdown to the terminal value -1 +inline void UnsetCountdown() { SetCountdown(-1); } + +void MaybeThrow(absl::string_view msg, bool throw_bad_alloc = false); + +testing::AssertionResult FailureMessage(const TestException& e, + int countdown) noexcept; + +struct TrackedAddress { + bool is_alive; + std::string description; +}; + +// Inspects the constructions and destructions of anything inheriting from +// TrackedObject. This allows us to safely "leak" TrackedObjects, as +// ConstructorTracker will destroy everything left over in its destructor. +class ConstructorTracker { + public: + explicit ConstructorTracker(int count) : countdown_(count) { + assert(current_tracker_instance_ == nullptr); + current_tracker_instance_ = this; + } + + ~ConstructorTracker() { + assert(current_tracker_instance_ == this); + current_tracker_instance_ = nullptr; + + for (auto& it : address_map_) { + void* address = it.first; + TrackedAddress& tracked_address = it.second; + if (tracked_address.is_alive) { + ADD_FAILURE() << ErrorMessage(address, tracked_address.description, + countdown_, "Object was not destroyed."); + } + } + } + + static void ObjectConstructed(void* address, std::string description) { + if (!CurrentlyTracking()) return; + + TrackedAddress& tracked_address = + current_tracker_instance_->address_map_[address]; + if (tracked_address.is_alive) { + ADD_FAILURE() << ErrorMessage( + address, tracked_address.description, + current_tracker_instance_->countdown_, + "Object was re-constructed. Current object was constructed by " + + description); + } + tracked_address = {true, std::move(description)}; + } + + static void ObjectDestructed(void* address) { + if (!CurrentlyTracking()) return; + + auto it = current_tracker_instance_->address_map_.find(address); + // Not tracked. Ignore. + if (it == current_tracker_instance_->address_map_.end()) return; + + TrackedAddress& tracked_address = it->second; + if (!tracked_address.is_alive) { + ADD_FAILURE() << ErrorMessage(address, tracked_address.description, + current_tracker_instance_->countdown_, + "Object was re-destroyed."); + } + tracked_address.is_alive = false; + } + + private: + static bool CurrentlyTracking() { + return current_tracker_instance_ != nullptr; + } + + static std::string ErrorMessage(void* address, + const std::string& address_description, + int countdown, + const std::string& error_description) { + return absl::Substitute( + "With coundtown at $0:\n" + " $1\n" + " Object originally constructed by $2\n" + " Object address: $3\n", + countdown, error_description, address_description, address); + } + + std::unordered_map address_map_; + int countdown_; + + static ConstructorTracker* current_tracker_instance_; +}; + +class TrackedObject { + public: + TrackedObject(const TrackedObject&) = delete; + TrackedObject(TrackedObject&&) = delete; + + protected: + explicit TrackedObject(std::string description) { + ConstructorTracker::ObjectConstructed(this, std::move(description)); + } + + ~TrackedObject() noexcept { ConstructorTracker::ObjectDestructed(this); } +}; +} // namespace exceptions_internal + +extern exceptions_internal::NoThrowTag nothrow_ctor; + +extern exceptions_internal::StrongGuaranteeTagType strong_guarantee; + +// A test class which is convertible to bool. The conversion can be +// instrumented to throw at a controlled time. +class ThrowingBool { + public: + ThrowingBool(bool b) noexcept : b_(b) {} // NOLINT(runtime/explicit) + operator bool() const { // NOLINT + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return b_; + } + + private: + bool b_; +}; + +/* + * Configuration enum for the ThrowingValue type that defines behavior for the + * lifetime of the instance. Use testing::nothrow_ctor to prevent the integer + * constructor from throwing. + * + * kEverythingThrows: Every operation can throw an exception + * kNoThrowCopy: Copy construction and copy assignment will not throw + * kNoThrowMove: Move construction and move assignment will not throw + * kNoThrowNew: Overloaded operators new and new[] will not throw + */ +enum class TypeSpec { + kEverythingThrows = 0, + kNoThrowCopy = 1, + kNoThrowMove = 1 << 1, + kNoThrowNew = 1 << 2, +}; + +/* + * A testing class instrumented to throw an exception at a controlled time. + * + * ThrowingValue implements a slightly relaxed version of the Regular concept -- + * that is it's a value type with the expected semantics. It also implements + * arithmetic operations. It doesn't implement member and pointer operators + * like operator-> or operator[]. + * + * ThrowingValue can be instrumented to have certain operations be noexcept by + * using compile-time bitfield template arguments. That is, to make an + * ThrowingValue which has noexcept move construction/assignment and noexcept + * copy construction/assignment, use the following: + * ThrowingValue my_thrwr{val}; + */ +template +class ThrowingValue : private exceptions_internal::TrackedObject { + static constexpr bool IsSpecified(TypeSpec spec) { + return static_cast(Spec & spec); + } + + static constexpr int kDefaultValue = 0; + static constexpr int kBadValue = 938550620; + + public: + ThrowingValue() : TrackedObject(GetInstanceString(kDefaultValue)) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ = kDefaultValue; + } + + ThrowingValue(const ThrowingValue& other) noexcept( + IsSpecified(TypeSpec::kNoThrowCopy)) + : TrackedObject(GetInstanceString(other.dummy_)) { + if (!IsSpecified(TypeSpec::kNoThrowCopy)) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + } + dummy_ = other.dummy_; + } + + ThrowingValue(ThrowingValue&& other) noexcept( + IsSpecified(TypeSpec::kNoThrowMove)) + : TrackedObject(GetInstanceString(other.dummy_)) { + if (!IsSpecified(TypeSpec::kNoThrowMove)) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + } + dummy_ = other.dummy_; + } + + explicit ThrowingValue(int i) : TrackedObject(GetInstanceString(i)) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ = i; + } + + ThrowingValue(int i, exceptions_internal::NoThrowTag) noexcept + : TrackedObject(GetInstanceString(i)), dummy_(i) {} + + // absl expects nothrow destructors + ~ThrowingValue() noexcept = default; + + ThrowingValue& operator=(const ThrowingValue& other) noexcept( + IsSpecified(TypeSpec::kNoThrowCopy)) { + dummy_ = kBadValue; + if (!IsSpecified(TypeSpec::kNoThrowCopy)) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + } + dummy_ = other.dummy_; + return *this; + } + + ThrowingValue& operator=(ThrowingValue&& other) noexcept( + IsSpecified(TypeSpec::kNoThrowMove)) { + dummy_ = kBadValue; + if (!IsSpecified(TypeSpec::kNoThrowMove)) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + } + dummy_ = other.dummy_; + return *this; + } + + // Arithmetic Operators + ThrowingValue operator+(const ThrowingValue& other) const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(dummy_ + other.dummy_, nothrow_ctor); + } + + ThrowingValue operator+() const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(dummy_, nothrow_ctor); + } + + ThrowingValue operator-(const ThrowingValue& other) const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(dummy_ - other.dummy_, nothrow_ctor); + } + + ThrowingValue operator-() const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(-dummy_, nothrow_ctor); + } + + ThrowingValue& operator++() { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + ++dummy_; + return *this; + } + + ThrowingValue operator++(int) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + auto out = ThrowingValue(dummy_, nothrow_ctor); + ++dummy_; + return out; + } + + ThrowingValue& operator--() { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + --dummy_; + return *this; + } + + ThrowingValue operator--(int) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + auto out = ThrowingValue(dummy_, nothrow_ctor); + --dummy_; + return out; + } + + ThrowingValue operator*(const ThrowingValue& other) const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(dummy_ * other.dummy_, nothrow_ctor); + } + + ThrowingValue operator/(const ThrowingValue& other) const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(dummy_ / other.dummy_, nothrow_ctor); + } + + ThrowingValue operator%(const ThrowingValue& other) const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(dummy_ % other.dummy_, nothrow_ctor); + } + + ThrowingValue operator<<(int shift) const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(dummy_ << shift, nothrow_ctor); + } + + ThrowingValue operator>>(int shift) const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(dummy_ >> shift, nothrow_ctor); + } + + // Comparison Operators + // NOTE: We use `ThrowingBool` instead of `bool` because most STL + // types/containers requires T to be convertible to bool. + friend ThrowingBool operator==(const ThrowingValue& a, + const ThrowingValue& b) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return a.dummy_ == b.dummy_; + } + friend ThrowingBool operator!=(const ThrowingValue& a, + const ThrowingValue& b) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return a.dummy_ != b.dummy_; + } + friend ThrowingBool operator<(const ThrowingValue& a, + const ThrowingValue& b) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return a.dummy_ < b.dummy_; + } + friend ThrowingBool operator<=(const ThrowingValue& a, + const ThrowingValue& b) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return a.dummy_ <= b.dummy_; + } + friend ThrowingBool operator>(const ThrowingValue& a, + const ThrowingValue& b) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return a.dummy_ > b.dummy_; + } + friend ThrowingBool operator>=(const ThrowingValue& a, + const ThrowingValue& b) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return a.dummy_ >= b.dummy_; + } + + // Logical Operators + ThrowingBool operator!() const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return !dummy_; + } + + ThrowingBool operator&&(const ThrowingValue& other) const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return dummy_ && other.dummy_; + } + + ThrowingBool operator||(const ThrowingValue& other) const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return dummy_ || other.dummy_; + } + + // Bitwise Logical Operators + ThrowingValue operator~() const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(~dummy_, nothrow_ctor); + } + + ThrowingValue operator&(const ThrowingValue& other) const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(dummy_ & other.dummy_, nothrow_ctor); + } + + ThrowingValue operator|(const ThrowingValue& other) const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(dummy_ | other.dummy_, nothrow_ctor); + } + + ThrowingValue operator^(const ThrowingValue& other) const { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return ThrowingValue(dummy_ ^ other.dummy_, nothrow_ctor); + } + + // Compound Assignment operators + ThrowingValue& operator+=(const ThrowingValue& other) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ += other.dummy_; + return *this; + } + + ThrowingValue& operator-=(const ThrowingValue& other) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ -= other.dummy_; + return *this; + } + + ThrowingValue& operator*=(const ThrowingValue& other) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ *= other.dummy_; + return *this; + } + + ThrowingValue& operator/=(const ThrowingValue& other) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ /= other.dummy_; + return *this; + } + + ThrowingValue& operator%=(const ThrowingValue& other) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ %= other.dummy_; + return *this; + } + + ThrowingValue& operator&=(const ThrowingValue& other) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ &= other.dummy_; + return *this; + } + + ThrowingValue& operator|=(const ThrowingValue& other) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ |= other.dummy_; + return *this; + } + + ThrowingValue& operator^=(const ThrowingValue& other) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ ^= other.dummy_; + return *this; + } + + ThrowingValue& operator<<=(int shift) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ <<= shift; + return *this; + } + + ThrowingValue& operator>>=(int shift) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ >>= shift; + return *this; + } + + // Pointer operators + void operator&() const = delete; // NOLINT(runtime/operator) + + // Stream operators + friend std::ostream& operator<<(std::ostream& os, const ThrowingValue& tv) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return os << GetInstanceString(tv.dummy_); + } + + friend std::istream& operator>>(std::istream& is, const ThrowingValue&) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + return is; + } + + // Memory management operators + static void* operator new(size_t s) noexcept( + IsSpecified(TypeSpec::kNoThrowNew)) { + if (!IsSpecified(TypeSpec::kNoThrowNew)) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION, true); + } + return ::operator new(s); + } + + static void* operator new[](size_t s) noexcept( + IsSpecified(TypeSpec::kNoThrowNew)) { + if (!IsSpecified(TypeSpec::kNoThrowNew)) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION, true); + } + return ::operator new[](s); + } + + template + static void* operator new(size_t s, Args&&... args) noexcept( + IsSpecified(TypeSpec::kNoThrowNew)) { + if (!IsSpecified(TypeSpec::kNoThrowNew)) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION, true); + } + return ::operator new(s, std::forward(args)...); + } + + template + static void* operator new[](size_t s, Args&&... args) noexcept( + IsSpecified(TypeSpec::kNoThrowNew)) { + if (!IsSpecified(TypeSpec::kNoThrowNew)) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION, true); + } + return ::operator new[](s, std::forward(args)...); + } + + // Abseil doesn't support throwing overloaded operator delete. These are + // provided so a throwing operator-new can clean up after itself. + void operator delete(void* p) noexcept { ::operator delete(p); } + + template + void operator delete(void* p, Args&&... args) noexcept { + ::operator delete(p, std::forward(args)...); + } + + void operator delete[](void* p) noexcept { return ::operator delete[](p); } + + template + void operator delete[](void* p, Args&&... args) noexcept { + return ::operator delete[](p, std::forward(args)...); + } + + // Non-standard access to the actual contained value. No need for this to + // throw. + int& Get() noexcept { return dummy_; } + const int& Get() const noexcept { return dummy_; } + + private: + static std::string GetInstanceString(int dummy) { + return absl::StrCat("ThrowingValue<", + exceptions_internal::GetSpecString(Spec), ">(", dummy, + ")"); + } + + int dummy_; +}; +// While not having to do with exceptions, explicitly delete comma operator, to +// make sure we don't use it on user-supplied types. +template +void operator,(const ThrowingValue&, T&&) = delete; +template +void operator,(T&&, const ThrowingValue&) = delete; + +/* + * Configuration enum for the ThrowingAllocator type that defines behavior for + * the lifetime of the instance. + * + * kEverythingThrows: Calls to the member functions may throw + * kNoThrowAllocate: Calls to the member functions will not throw + */ +enum class AllocSpec { + kEverythingThrows = 0, + kNoThrowAllocate = 1, +}; + +/* + * An allocator type which is instrumented to throw at a controlled time, or not + * to throw, using AllocSpec. The supported settings are the default of every + * function which is allowed to throw in a conforming allocator possibly + * throwing, or nothing throws, in line with the ABSL_ALLOCATOR_THROWS + * configuration macro. + */ +template +class ThrowingAllocator : private exceptions_internal::TrackedObject { + static constexpr bool IsSpecified(AllocSpec spec) { + return static_cast(Spec & spec); + } + + public: + using pointer = T*; + using const_pointer = const T*; + using reference = T&; + using const_reference = const T&; + using void_pointer = void*; + using const_void_pointer = const void*; + using value_type = T; + using size_type = size_t; + using difference_type = ptrdiff_t; + + using is_nothrow = + std::integral_constant; + using propagate_on_container_copy_assignment = std::true_type; + using propagate_on_container_move_assignment = std::true_type; + using propagate_on_container_swap = std::true_type; + using is_always_equal = std::false_type; + + ThrowingAllocator() : TrackedObject(GetInstanceString(next_id_)) { + exceptions_internal::MaybeThrow(ABSL_PRETTY_FUNCTION); + dummy_ = std::make_shared(next_id_++); + } + + template + ThrowingAllocator(const ThrowingAllocator& other) noexcept // NOLINT + : TrackedObject(GetInstanceString(*other.State())), + dummy_(other.State()) {} + + // According to C++11 standard [17.6.3.5], Table 28, the move/copy ctors of + // allocator shall not exit via an exception, thus they are marked noexcept. + ThrowingAllocator(const ThrowingAllocator& other) noexcept + : TrackedObject(GetInstanceString(*other.State())), + dummy_(other.State()) {} + + template + ThrowingAllocator(ThrowingAllocator&& other) noexcept // NOLINT + : TrackedObject(GetInstanceString(*other.State())), + dummy_(std::move(other.State())) {} + + ThrowingAllocator(ThrowingAllocator&& other) noexcept + : TrackedObject(GetInstanceString(*other.State())), + dummy_(std::move(other.State())) {} + + ~ThrowingAllocator() noexcept = default; + + ThrowingAllocator& operator=(const ThrowingAllocator& other) noexcept { + dummy_ = other.State(); + return *this; + } + + template + ThrowingAllocator& operator=( + const ThrowingAllocator& other) noexcept { + dummy_ = other.State(); + return *this; + } + + template + ThrowingAllocator& operator=(ThrowingAllocator&& other) noexcept { + dummy_ = std::move(other.State()); + return *this; + } + + template + struct rebind { + using other = ThrowingAllocator; + }; + + pointer allocate(size_type n) noexcept( + IsSpecified(AllocSpec::kNoThrowAllocate)) { + ReadStateAndMaybeThrow(ABSL_PRETTY_FUNCTION); + return static_cast(::operator new(n * sizeof(T))); + } + + pointer allocate(size_type n, const_void_pointer) noexcept( + IsSpecified(AllocSpec::kNoThrowAllocate)) { + return allocate(n); + } + + void deallocate(pointer ptr, size_type) noexcept { + ReadState(); + ::operator delete(static_cast(ptr)); + } + + template + void construct(U* ptr, Args&&... args) noexcept( + IsSpecified(AllocSpec::kNoThrowAllocate)) { + ReadStateAndMaybeThrow(ABSL_PRETTY_FUNCTION); + ::new (static_cast(ptr)) U(std::forward(args)...); + } + + template + void destroy(U* p) noexcept { + ReadState(); + p->~U(); + } + + size_type max_size() const noexcept { + return (std::numeric_limits::max)() / sizeof(value_type); + } + + ThrowingAllocator select_on_container_copy_construction() noexcept( + IsSpecified(AllocSpec::kNoThrowAllocate)) { + ReadStateAndMaybeThrow(ABSL_PRETTY_FUNCTION); + return *this; + } + + template + bool operator==(const ThrowingAllocator& other) const noexcept { + return dummy_ == other.dummy_; + } + + template + bool operator!=(const ThrowingAllocator& other) const noexcept { + return dummy_ != other.dummy_; + } + + template + friend class ThrowingAllocator; + + private: + static std::string GetInstanceString(int dummy) { + return absl::StrCat("ThrowingAllocator<", + exceptions_internal::GetSpecString(Spec), ">(", dummy, + ")"); + } + + const std::shared_ptr& State() const { return dummy_; } + std::shared_ptr& State() { return dummy_; } + + void ReadState() { + // we know that this will never be true, but the compiler doesn't, so this + // should safely force a read of the value. + if (*dummy_ < 0) std::abort(); + } + + void ReadStateAndMaybeThrow(absl::string_view msg) const { + if (!IsSpecified(AllocSpec::kNoThrowAllocate)) { + exceptions_internal::MaybeThrow( + absl::Substitute("Allocator id $0 threw from $1", *dummy_, msg)); + } + } + + static int next_id_; + std::shared_ptr dummy_; +}; + +template +int ThrowingAllocator::next_id_ = 0; + +// Tests for resource leaks by attempting to construct a T using args repeatedly +// until successful, using the countdown method. Side effects can then be +// tested for resource leaks. +template +void TestThrowingCtor(Args&&... args) { + struct Cleanup { + ~Cleanup() { exceptions_internal::UnsetCountdown(); } + } c; + for (int count = 0;; ++count) { + exceptions_internal::ConstructorTracker ct(count); + exceptions_internal::SetCountdown(count); + try { + T temp(std::forward(args)...); + static_cast(temp); + break; + } catch (const exceptions_internal::TestException&) { + } + } +} + +// Tests the nothrow guarantee of the provided nullary operation. If the an +// exception is thrown, the result will be AssertionFailure(). Otherwise, it +// will be AssertionSuccess(). +template +testing::AssertionResult TestNothrowOp(const Operation& operation) { + struct Cleanup { + Cleanup() { exceptions_internal::SetCountdown(); } + ~Cleanup() { exceptions_internal::UnsetCountdown(); } + } c; + try { + operation(); + return testing::AssertionSuccess(); + } catch (const exceptions_internal::TestException&) { + return testing::AssertionFailure() + << "TestException thrown during call to operation() when nothrow " + "guarantee was expected."; + } catch (...) { + return testing::AssertionFailure() + << "Unknown exception thrown during call to operation() when " + "nothrow guarantee was expected."; + } +} + +namespace exceptions_internal { + +// Dummy struct for ExceptionSafetyTestBuilder<> partial state. +struct UninitializedT {}; + +template +class DefaultFactory { + public: + explicit DefaultFactory(const T& t) : t_(t) {} + std::unique_ptr operator()() const { return absl::make_unique(t_); } + + private: + T t_; +}; + +template +using EnableIfTestable = typename absl::enable_if_t< + LazyContractsCount != 0 && + !std::is_same::value && + !std::is_same::value>; + +template +class ExceptionSafetyTestBuilder; + +} // namespace exceptions_internal + +/* + * Constructs an empty ExceptionSafetyTestBuilder. All + * ExceptionSafetyTestBuilder objects are immutable and all With[thing] mutation + * methods return new instances of ExceptionSafetyTestBuilder. + * + * In order to test a T for exception safety, a factory for that T, a testable + * operation, and at least one contract callback returning an assertion + * result must be applied using the respective methods. + */ +exceptions_internal::ExceptionSafetyTestBuilder<> MakeExceptionSafetyTester(); + +namespace exceptions_internal { +template +struct IsUniquePtr : std::false_type {}; + +template +struct IsUniquePtr> : std::true_type {}; + +template +struct FactoryPtrTypeHelper { + using type = decltype(std::declval()()); + + static_assert(IsUniquePtr::value, "Factories must return a unique_ptr"); +}; + +template +using FactoryPtrType = typename FactoryPtrTypeHelper::type; + +template +using FactoryElementType = typename FactoryPtrType::element_type; + +template +class ExceptionSafetyTest { + using Factory = std::function()>; + using Operation = std::function; + using Contract = std::function; + + public: + template + explicit ExceptionSafetyTest(const Factory& f, const Operation& op, + const Contracts&... contracts) + : factory_(f), operation_(op), contracts_{WrapContract(contracts)...} {} + + AssertionResult Test() const { + for (int count = 0;; ++count) { + exceptions_internal::ConstructorTracker ct(count); + + for (const auto& contract : contracts_) { + auto t_ptr = factory_(); + try { + SetCountdown(count); + operation_(t_ptr.get()); + // Unset for the case that the operation throws no exceptions, which + // would leave the countdown set and break the *next* exception safety + // test after this one. + UnsetCountdown(); + return AssertionSuccess(); + } catch (const exceptions_internal::TestException& e) { + if (!contract(t_ptr.get())) { + return AssertionFailure() << e.what() << " failed contract check"; + } + } + } + } + } + + private: + template + Contract WrapContract(const ContractFn& contract) { + return [contract](T* t_ptr) { return AssertionResult(contract(t_ptr)); }; + } + + Contract WrapContract(StrongGuaranteeTagType) { + return [this](T* t_ptr) { return AssertionResult(*factory_() == *t_ptr); }; + } + + Factory factory_; + Operation operation_; + std::vector contracts_; +}; + +/* + * Builds a tester object that tests if performing a operation on a T follows + * exception safety guarantees. Verification is done via contract assertion + * callbacks applied to T instances post-throw. + * + * Template parameters for ExceptionSafetyTestBuilder: + * + * - Factory: The factory object (passed in via tester.WithFactory(...) or + * tester.WithInitialValue(...)) must be invocable with the signature + * `std::unique_ptr operator()() const` where T is the type being tested. + * It is used for reliably creating identical T instances to test on. + * + * - Operation: The operation object (passed in via tester.WithOperation(...) + * or tester.Test(...)) must be invocable with the signature + * `void operator()(T*) const` where T is the type being tested. It is used + * for performing steps on a T instance that may throw and that need to be + * checked for exception safety. Each call to the operation will receive a + * fresh T instance so it's free to modify and destroy the T instances as it + * pleases. + * + * - Contracts...: The contract assertion callback objects (passed in via + * tester.WithContracts(...)) must be invocable with the signature + * `testing::AssertionResult operator()(T*) const` where T is the type being + * tested. Contract assertion callbacks are provided T instances post-throw. + * They must return testing::AssertionSuccess when the type contracts of the + * provided T instance hold. If the type contracts of the T instance do not + * hold, they must return testing::AssertionFailure. Execution order of + * Contracts... is unspecified. They will each individually get a fresh T + * instance so they are free to modify and destroy the T instances as they + * please. + */ +template +class ExceptionSafetyTestBuilder { + public: + /* + * Returns a new ExceptionSafetyTestBuilder with an included T factory based + * on the provided T instance. The existing factory will not be included in + * the newly created tester instance. The created factory returns a new T + * instance by copy-constructing the provided const T& t. + * + * Preconditions for tester.WithInitialValue(const T& t): + * + * - The const T& t object must be copy-constructible where T is the type + * being tested. For non-copy-constructible objects, use the method + * tester.WithFactory(...). + */ + template + ExceptionSafetyTestBuilder, Operation, Contracts...> + WithInitialValue(const T& t) const { + return WithFactory(DefaultFactory(t)); + } + + /* + * Returns a new ExceptionSafetyTestBuilder with the provided T factory + * included. The existing factory will not be included in the newly-created + * tester instance. This method is intended for use with types lacking a copy + * constructor. Types that can be copy-constructed should instead use the + * method tester.WithInitialValue(...). + */ + template + ExceptionSafetyTestBuilder, Operation, Contracts...> + WithFactory(const NewFactory& new_factory) const { + return {new_factory, operation_, contracts_}; + } + + /* + * Returns a new ExceptionSafetyTestBuilder with the provided testable + * operation included. The existing operation will not be included in the + * newly created tester. + */ + template + ExceptionSafetyTestBuilder, Contracts...> + WithOperation(const NewOperation& new_operation) const { + return {factory_, new_operation, contracts_}; + } + + /* + * Returns a new ExceptionSafetyTestBuilder with the provided MoreContracts... + * combined with the Contracts... that were already included in the instance + * on which the method was called. Contracts... cannot be removed or replaced + * once added to an ExceptionSafetyTestBuilder instance. A fresh object must + * be created in order to get an empty Contracts... list. + * + * In addition to passing in custom contract assertion callbacks, this method + * accepts `testing::strong_guarantee` as an argument which checks T instances + * post-throw against freshly created T instances via operator== to verify + * that any state changes made during the execution of the operation were + * properly rolled back. + */ + template + ExceptionSafetyTestBuilder...> + WithContracts(const MoreContracts&... more_contracts) const { + return { + factory_, operation_, + std::tuple_cat(contracts_, std::tuple...>( + more_contracts...))}; + } + + /* + * Returns a testing::AssertionResult that is the reduced result of the + * exception safety algorithm. The algorithm short circuits and returns + * AssertionFailure after the first contract callback returns an + * AssertionFailure. Otherwise, if all contract callbacks return an + * AssertionSuccess, the reduced result is AssertionSuccess. + * + * The passed-in testable operation will not be saved in a new tester instance + * nor will it modify/replace the existing tester instance. This is useful + * when each operation being tested is unique and does not need to be reused. + * + * Preconditions for tester.Test(const NewOperation& new_operation): + * + * - May only be called after at least one contract assertion callback and a + * factory or initial value have been provided. + */ + template < + typename NewOperation, + typename = EnableIfTestable> + testing::AssertionResult Test(const NewOperation& new_operation) const { + return TestImpl(new_operation, absl::index_sequence_for()); + } + + /* + * Returns a testing::AssertionResult that is the reduced result of the + * exception safety algorithm. The algorithm short circuits and returns + * AssertionFailure after the first contract callback returns an + * AssertionFailure. Otherwise, if all contract callbacks return an + * AssertionSuccess, the reduced result is AssertionSuccess. + * + * Preconditions for tester.Test(): + * + * - May only be called after at least one contract assertion callback, a + * factory or initial value and a testable operation have been provided. + */ + template < + typename LazyOperation = Operation, + typename = EnableIfTestable> + testing::AssertionResult Test() const { + return Test(operation_); + } + + private: + template + friend class ExceptionSafetyTestBuilder; + + friend ExceptionSafetyTestBuilder<> testing::MakeExceptionSafetyTester(); + + ExceptionSafetyTestBuilder() {} + + ExceptionSafetyTestBuilder(const Factory& f, const Operation& o, + const std::tuple& i) + : factory_(f), operation_(o), contracts_(i) {} + + template + testing::AssertionResult TestImpl(SelectedOperation selected_operation, + absl::index_sequence) const { + return ExceptionSafetyTest>( + factory_, selected_operation, std::get(contracts_)...) + .Test(); + } + + Factory factory_; + Operation operation_; + std::tuple contracts_; +}; + +} // namespace exceptions_internal + +} // namespace testing + +#endif // ABSL_HAVE_EXCEPTIONS + +#endif // ABSL_BASE_INTERNAL_EXCEPTION_SAFETY_TESTING_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/exception_testing.h b/weight/_dep/abseil-cpp/absl/base/internal/exception_testing.h new file mode 100644 index 0000000000000000000000000000000000000000..01b546557117f60d48607901413aeeb9b2f1ea18 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/exception_testing.h @@ -0,0 +1,42 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// Testing utilities for ABSL types which throw exceptions. + +#ifndef ABSL_BASE_INTERNAL_EXCEPTION_TESTING_H_ +#define ABSL_BASE_INTERNAL_EXCEPTION_TESTING_H_ + +#include "gtest/gtest.h" +#include "absl/base/config.h" + +// ABSL_BASE_INTERNAL_EXPECT_FAIL tests either for a specified thrown exception +// if exceptions are enabled, or for death with a specified text in the error +// message +#ifdef ABSL_HAVE_EXCEPTIONS + +#define ABSL_BASE_INTERNAL_EXPECT_FAIL(expr, exception_t, text) \ + EXPECT_THROW(expr, exception_t) + +#elif defined(__ANDROID__) +// Android asserts do not log anywhere that gtest can currently inspect. +// So we expect exit, but cannot match the message. +#define ABSL_BASE_INTERNAL_EXPECT_FAIL(expr, exception_t, text) \ + EXPECT_DEATH(expr, ".*") +#else +#define ABSL_BASE_INTERNAL_EXPECT_FAIL(expr, exception_t, text) \ + EXPECT_DEATH_IF_SUPPORTED(expr, text) + +#endif + +#endif // ABSL_BASE_INTERNAL_EXCEPTION_TESTING_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/fast_type_id.h b/weight/_dep/abseil-cpp/absl/base/internal/fast_type_id.h new file mode 100644 index 0000000000000000000000000000000000000000..a547b3a8bc234efc3e0dd1402d612e6dc5977f43 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/fast_type_id.h @@ -0,0 +1,50 @@ +// +// Copyright 2020 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// + +#ifndef ABSL_BASE_INTERNAL_FAST_TYPE_ID_H_ +#define ABSL_BASE_INTERNAL_FAST_TYPE_ID_H_ + +#include "absl/base/config.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { + +template +struct FastTypeTag { + constexpr static char dummy_var = 0; +}; + +#ifdef ABSL_INTERNAL_NEED_REDUNDANT_CONSTEXPR_DECL +template +constexpr char FastTypeTag::dummy_var; +#endif + +// FastTypeId() evaluates at compile/link-time to a unique pointer for the +// passed-in type. These are meant to be good match for keys into maps or +// straight up comparisons. +using FastTypeIdType = const void*; + +template +constexpr inline FastTypeIdType FastTypeId() { + return &FastTypeTag::dummy_var; +} + +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_INTERNAL_FAST_TYPE_ID_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/hide_ptr.h b/weight/_dep/abseil-cpp/absl/base/internal/hide_ptr.h new file mode 100644 index 0000000000000000000000000000000000000000..1dba80909a9b512b07543f80fe73433069b31e99 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/hide_ptr.h @@ -0,0 +1,51 @@ +// Copyright 2018 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#ifndef ABSL_BASE_INTERNAL_HIDE_PTR_H_ +#define ABSL_BASE_INTERNAL_HIDE_PTR_H_ + +#include + +#include "absl/base/config.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { + +// Arbitrary value with high bits set. Xor'ing with it is unlikely +// to map one valid pointer to another valid pointer. +constexpr uintptr_t HideMask() { + return (uintptr_t{0xF03A5F7BU} << (sizeof(uintptr_t) - 4) * 8) | 0xF03A5F7BU; +} + +// Hide a pointer from the leak checker. For internal use only. +// Differs from absl::IgnoreLeak(ptr) in that absl::IgnoreLeak(ptr) causes ptr +// and all objects reachable from ptr to be ignored by the leak checker. +template +inline uintptr_t HidePtr(T* ptr) { + return reinterpret_cast(ptr) ^ HideMask(); +} + +// Return a pointer that has been hidden from the leak checker. +// For internal use only. +template +inline T* UnhidePtr(uintptr_t hidden) { + return reinterpret_cast(hidden ^ HideMask()); +} + +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_INTERNAL_HIDE_PTR_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/identity.h b/weight/_dep/abseil-cpp/absl/base/internal/identity.h new file mode 100644 index 0000000000000000000000000000000000000000..365207b7e7533b4f4509f856948069b3ca68ce67 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/identity.h @@ -0,0 +1,39 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// + +#ifndef ABSL_BASE_INTERNAL_IDENTITY_H_ +#define ABSL_BASE_INTERNAL_IDENTITY_H_ + +#include "absl/base/config.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace internal { + +// This is a back-fill of C++20's `std::type_identity`. +template +struct type_identity { + typedef T type; +}; + +// This is a back-fill of C++20's `std::type_identity_t`. +template +using type_identity_t = typename type_identity::type; + +} // namespace internal +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_INTERNAL_IDENTITY_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/inline_variable.h b/weight/_dep/abseil-cpp/absl/base/internal/inline_variable.h new file mode 100644 index 0000000000000000000000000000000000000000..09daf0f5b73b032c7eec0687c1822fda644b2515 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/inline_variable.h @@ -0,0 +1,108 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#ifndef ABSL_BASE_INTERNAL_INLINE_VARIABLE_H_ +#define ABSL_BASE_INTERNAL_INLINE_VARIABLE_H_ + +#include + +#include "absl/base/internal/identity.h" + +// File: +// This file define a macro that allows the creation of or emulation of C++17 +// inline variables based on whether or not the feature is supported. + +//////////////////////////////////////////////////////////////////////////////// +// Macro: ABSL_INTERNAL_INLINE_CONSTEXPR(type, name, init) +// +// Description: +// Expands to the equivalent of an inline constexpr instance of the specified +// `type` and `name`, initialized to the value `init`. If the compiler being +// used is detected as supporting actual inline variables as a language +// feature, then the macro expands to an actual inline variable definition. +// +// Requires: +// `type` is a type that is usable in an extern variable declaration. +// +// Requires: `name` is a valid identifier +// +// Requires: +// `init` is an expression that can be used in the following definition: +// constexpr type name = init; +// +// Usage: +// +// // Equivalent to: `inline constexpr size_t variant_npos = -1;` +// ABSL_INTERNAL_INLINE_CONSTEXPR(size_t, variant_npos, -1); +// +// Differences in implementation: +// For a direct, language-level inline variable, decltype(name) will be the +// type that was specified along with const qualification, whereas for +// emulated inline variables, decltype(name) may be different (in practice +// it will likely be a reference type). +//////////////////////////////////////////////////////////////////////////////// + +#ifdef __cpp_inline_variables + +// Clang's -Wmissing-variable-declarations option erroneously warned that +// inline constexpr objects need to be pre-declared. This has now been fixed, +// but we will need to support this workaround for people building with older +// versions of clang. +// +// Bug: https://bugs.llvm.org/show_bug.cgi?id=35862 +// +// Note: +// type_identity_t is used here so that the const and name are in the +// appropriate place for pointer types, reference types, function pointer +// types, etc.. +#if defined(__clang__) +#define ABSL_INTERNAL_EXTERN_DECL(type, name) \ + extern const ::absl::internal::type_identity_t name; +#else // Otherwise, just define the macro to do nothing. +#define ABSL_INTERNAL_EXTERN_DECL(type, name) +#endif // defined(__clang__) + +// See above comment at top of file for details. +#define ABSL_INTERNAL_INLINE_CONSTEXPR(type, name, init) \ + ABSL_INTERNAL_EXTERN_DECL(type, name) \ + inline constexpr ::absl::internal::type_identity_t name = init + +#else + +// See above comment at top of file for details. +// +// Note: +// type_identity_t is used here so that the const and name are in the +// appropriate place for pointer types, reference types, function pointer +// types, etc.. +#define ABSL_INTERNAL_INLINE_CONSTEXPR(var_type, name, init) \ + template \ + struct AbslInternalInlineVariableHolder##name { \ + static constexpr ::absl::internal::type_identity_t kInstance = \ + init; \ + }; \ + \ + template \ + constexpr ::absl::internal::type_identity_t \ + AbslInternalInlineVariableHolder##name::kInstance; \ + \ + static constexpr const ::absl::internal::type_identity_t& \ + name = /* NOLINT */ \ + AbslInternalInlineVariableHolder##name<>::kInstance; \ + static_assert(sizeof(void (*)(decltype(name))) != 0, \ + "Silence unused variable warnings.") + +#endif // __cpp_inline_variables + +#endif // ABSL_BASE_INTERNAL_INLINE_VARIABLE_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/inline_variable_testing.h b/weight/_dep/abseil-cpp/absl/base/internal/inline_variable_testing.h new file mode 100644 index 0000000000000000000000000000000000000000..f3c81459fa05205c9a8598569353e25bb093c0cf --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/inline_variable_testing.h @@ -0,0 +1,46 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#ifndef ABSL_BASE_INTERNAL_INLINE_VARIABLE_TESTING_H_ +#define ABSL_BASE_INTERNAL_INLINE_VARIABLE_TESTING_H_ + +#include "absl/base/internal/inline_variable.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace inline_variable_testing_internal { + +struct Foo { + int value = 5; +}; + +ABSL_INTERNAL_INLINE_CONSTEXPR(Foo, inline_variable_foo, {}); +ABSL_INTERNAL_INLINE_CONSTEXPR(Foo, other_inline_variable_foo, {}); + +ABSL_INTERNAL_INLINE_CONSTEXPR(int, inline_variable_int, 5); +ABSL_INTERNAL_INLINE_CONSTEXPR(int, other_inline_variable_int, 5); + +ABSL_INTERNAL_INLINE_CONSTEXPR(void(*)(), inline_variable_fun_ptr, nullptr); + +const Foo& get_foo_a(); +const Foo& get_foo_b(); + +const int& get_int_a(); +const int& get_int_b(); + +} // namespace inline_variable_testing_internal +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_INTERNAL_INLINE_VARIABLE_TESTING_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/invoke.h b/weight/_dep/abseil-cpp/absl/base/internal/invoke.h new file mode 100644 index 0000000000000000000000000000000000000000..643c2a42f084662114ba3408029b1c426a94170b --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/invoke.h @@ -0,0 +1,241 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// absl::base_internal::invoke(f, args...) is an implementation of +// INVOKE(f, args...) from section [func.require] of the C++ standard. +// When compiled as C++17 and later versions, it is implemented as an alias of +// std::invoke. +// +// [func.require] +// Define INVOKE (f, t1, t2, ..., tN) as follows: +// 1. (t1.*f)(t2, ..., tN) when f is a pointer to a member function of a class T +// and t1 is an object of type T or a reference to an object of type T or a +// reference to an object of a type derived from T; +// 2. ((*t1).*f)(t2, ..., tN) when f is a pointer to a member function of a +// class T and t1 is not one of the types described in the previous item; +// 3. t1.*f when N == 1 and f is a pointer to member data of a class T and t1 is +// an object of type T or a reference to an object of type T or a reference +// to an object of a type derived from T; +// 4. (*t1).*f when N == 1 and f is a pointer to member data of a class T and t1 +// is not one of the types described in the previous item; +// 5. f(t1, t2, ..., tN) in all other cases. +// +// The implementation is SFINAE-friendly: substitution failure within invoke() +// isn't an error. + +#ifndef ABSL_BASE_INTERNAL_INVOKE_H_ +#define ABSL_BASE_INTERNAL_INVOKE_H_ + +#include "absl/base/config.h" + +#if ABSL_INTERNAL_CPLUSPLUS_LANG >= 201703L + +#include + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { + +using std::invoke; +using std::invoke_result_t; +using std::is_invocable_r; + +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl + +#else // ABSL_INTERNAL_CPLUSPLUS_LANG >= 201703L + +#include +#include +#include + +#include "absl/meta/type_traits.h" + +// The following code is internal implementation detail. See the comment at the +// top of this file for the API documentation. + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { + +// The five classes below each implement one of the clauses from the definition +// of INVOKE. The inner class template Accept checks whether the +// clause is applicable; static function template Invoke(f, args...) does the +// invocation. +// +// By separating the clause selection logic from invocation we make sure that +// Invoke() does exactly what the standard says. + +template +struct StrippedAccept { + template + struct Accept : Derived::template AcceptImpl::type>::type...> {}; +}; + +// (t1.*f)(t2, ..., tN) when f is a pointer to a member function of a class T +// and t1 is an object of type T or a reference to an object of type T or a +// reference to an object of a type derived from T. +struct MemFunAndRef : StrippedAccept { + template + struct AcceptImpl : std::false_type {}; + + template + struct AcceptImpl + : std::integral_constant::value && + absl::is_function::value> { + }; + + template + static decltype((std::declval().* + std::declval())(std::declval()...)) + Invoke(MemFun&& mem_fun, Obj&& obj, Args&&... args) { +// Ignore bogus GCC warnings on this line. +// See https://gcc.gnu.org/bugzilla/show_bug.cgi?id=101436 for similar example. +#if ABSL_INTERNAL_HAVE_MIN_GNUC_VERSION(11, 0) +#pragma GCC diagnostic push +#pragma GCC diagnostic ignored "-Warray-bounds" +#pragma GCC diagnostic ignored "-Wmaybe-uninitialized" +#endif + return (std::forward(obj).* + std::forward(mem_fun))(std::forward(args)...); +#if ABSL_INTERNAL_HAVE_MIN_GNUC_VERSION(11, 0) +#pragma GCC diagnostic pop +#endif + } +}; + +// ((*t1).*f)(t2, ..., tN) when f is a pointer to a member function of a +// class T and t1 is not one of the types described in the previous item. +struct MemFunAndPtr : StrippedAccept { + template + struct AcceptImpl : std::false_type {}; + + template + struct AcceptImpl + : std::integral_constant::value && + absl::is_function::value> { + }; + + template + static decltype(((*std::declval()).* + std::declval())(std::declval()...)) + Invoke(MemFun&& mem_fun, Ptr&& ptr, Args&&... args) { + return ((*std::forward(ptr)).* + std::forward(mem_fun))(std::forward(args)...); + } +}; + +// t1.*f when N == 1 and f is a pointer to member data of a class T and t1 is +// an object of type T or a reference to an object of type T or a reference +// to an object of a type derived from T. +struct DataMemAndRef : StrippedAccept { + template + struct AcceptImpl : std::false_type {}; + + template + struct AcceptImpl + : std::integral_constant::value && + !absl::is_function::value> {}; + + template + static decltype(std::declval().*std::declval()) Invoke( + DataMem&& data_mem, Ref&& ref) { + return std::forward(ref).*std::forward(data_mem); + } +}; + +// (*t1).*f when N == 1 and f is a pointer to member data of a class T and t1 +// is not one of the types described in the previous item. +struct DataMemAndPtr : StrippedAccept { + template + struct AcceptImpl : std::false_type {}; + + template + struct AcceptImpl + : std::integral_constant::value && + !absl::is_function::value> {}; + + template + static decltype((*std::declval()).*std::declval()) Invoke( + DataMem&& data_mem, Ptr&& ptr) { + return (*std::forward(ptr)).*std::forward(data_mem); + } +}; + +// f(t1, t2, ..., tN) in all other cases. +struct Callable { + // Callable doesn't have Accept because it's the last clause that gets picked + // when none of the previous clauses are applicable. + template + static decltype(std::declval()(std::declval()...)) Invoke( + F&& f, Args&&... args) { + return std::forward(f)(std::forward(args)...); + } +}; + +// Resolves to the first matching clause. +template +struct Invoker { + typedef typename std::conditional< + MemFunAndRef::Accept::value, MemFunAndRef, + typename std::conditional< + MemFunAndPtr::Accept::value, MemFunAndPtr, + typename std::conditional< + DataMemAndRef::Accept::value, DataMemAndRef, + typename std::conditional::value, + DataMemAndPtr, Callable>::type>::type>:: + type>::type type; +}; + +// The result type of Invoke. +template +using invoke_result_t = decltype(Invoker::type::Invoke( + std::declval(), std::declval()...)); + +// Invoke(f, args...) is an implementation of INVOKE(f, args...) from section +// [func.require] of the C++ standard. +template +invoke_result_t invoke(F&& f, Args&&... args) { + return Invoker::type::Invoke(std::forward(f), + std::forward(args)...); +} + +template +struct IsInvocableRImpl : std::false_type {}; + +template +struct IsInvocableRImpl< + absl::void_t >, R, F, + Args...> + : std::integral_constant< + bool, + std::is_convertible, + R>::value || + std::is_void::value> {}; + +// Type trait whose member `value` is true if invoking `F` with `Args` is valid, +// and either the return type is convertible to `R`, or `R` is void. +// C++11-compatible version of `std::is_invocable_r`. +template +using is_invocable_r = IsInvocableRImpl; + +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_INTERNAL_CPLUSPLUS_LANG >= 201703L + +#endif // ABSL_BASE_INTERNAL_INVOKE_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/low_level_alloc_test.cc b/weight/_dep/abseil-cpp/absl/base/internal/low_level_alloc_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..8fdec09e887534ad7f5cb69d98386d042e9f7b5b --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/low_level_alloc_test.cc @@ -0,0 +1,180 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/internal/low_level_alloc.h" + +#include +#include +#include +#include // NOLINT(build/c++11) +#include +#include + +#ifdef __EMSCRIPTEN__ +#include +#endif + +#include "absl/container/node_hash_map.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { +namespace { + +// This test doesn't use gtest since it needs to test that everything +// works before main(). +#define TEST_ASSERT(x) \ + if (!(x)) { \ + printf("TEST_ASSERT(%s) FAILED ON LINE %d\n", #x, __LINE__); \ + abort(); \ + } + +// a block of memory obtained from the allocator +struct BlockDesc { + char *ptr; // pointer to memory + int len; // number of bytes + int fill; // filled with data starting with this +}; + +// Check that the pattern placed in the block d +// by RandomizeBlockDesc is still there. +static void CheckBlockDesc(const BlockDesc &d) { + for (int i = 0; i != d.len; i++) { + TEST_ASSERT((d.ptr[i] & 0xff) == ((d.fill + i) & 0xff)); + } +} + +// Fill the block "*d" with a pattern +// starting with a random byte. +static void RandomizeBlockDesc(BlockDesc *d) { + d->fill = rand() & 0xff; + for (int i = 0; i != d->len; i++) { + d->ptr[i] = (d->fill + i) & 0xff; + } +} + +// Use to indicate to the malloc hooks that +// this calls is from LowLevelAlloc. +static bool using_low_level_alloc = false; + +// n times, toss a coin, and based on the outcome +// either allocate a new block or deallocate an old block. +// New blocks are placed in a std::unordered_map with a random key +// and initialized with RandomizeBlockDesc(). +// If keys conflict, the older block is freed. +// Old blocks are always checked with CheckBlockDesc() +// before being freed. At the end of the run, +// all remaining allocated blocks are freed. +// If use_new_arena is true, use a fresh arena, and then delete it. +// If call_malloc_hook is true and user_arena is true, +// allocations and deallocations are reported via the MallocHook +// interface. +static void Test(bool use_new_arena, bool call_malloc_hook, int n) { + typedef absl::node_hash_map AllocMap; + AllocMap allocated; + AllocMap::iterator it; + BlockDesc block_desc; + int rnd; + LowLevelAlloc::Arena *arena = nullptr; + if (use_new_arena) { + int32_t flags = call_malloc_hook ? LowLevelAlloc::kCallMallocHook : 0; + arena = LowLevelAlloc::NewArena(flags); + } + for (int i = 0; i != n; i++) { + if (i != 0 && i % 10000 == 0) { + printf("."); + fflush(stdout); + } + + switch (rand() & 1) { // toss a coin + case 0: // coin came up heads: add a block + using_low_level_alloc = true; + block_desc.len = rand() & 0x3fff; + block_desc.ptr = reinterpret_cast( + arena == nullptr + ? LowLevelAlloc::Alloc(block_desc.len) + : LowLevelAlloc::AllocWithArena(block_desc.len, arena)); + using_low_level_alloc = false; + RandomizeBlockDesc(&block_desc); + rnd = rand(); + it = allocated.find(rnd); + if (it != allocated.end()) { + CheckBlockDesc(it->second); + using_low_level_alloc = true; + LowLevelAlloc::Free(it->second.ptr); + using_low_level_alloc = false; + it->second = block_desc; + } else { + allocated[rnd] = block_desc; + } + break; + case 1: // coin came up tails: remove a block + it = allocated.begin(); + if (it != allocated.end()) { + CheckBlockDesc(it->second); + using_low_level_alloc = true; + LowLevelAlloc::Free(it->second.ptr); + using_low_level_alloc = false; + allocated.erase(it); + } + break; + } + } + // remove all remaining blocks + while ((it = allocated.begin()) != allocated.end()) { + CheckBlockDesc(it->second); + using_low_level_alloc = true; + LowLevelAlloc::Free(it->second.ptr); + using_low_level_alloc = false; + allocated.erase(it); + } + if (use_new_arena) { + TEST_ASSERT(LowLevelAlloc::DeleteArena(arena)); + } +} + +// LowLevelAlloc is designed to be safe to call before main(). +static struct BeforeMain { + BeforeMain() { + Test(false, false, 50000); + Test(true, false, 50000); + Test(true, true, 50000); + } +} before_main; + +} // namespace +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl + +int main(int argc, char *argv[]) { + // The actual test runs in the global constructor of `before_main`. + printf("PASS\n"); +#ifdef __EMSCRIPTEN__ + // clang-format off +// This is JS here. Don't try to format it. + MAIN_THREAD_EM_ASM({ + if (ENVIRONMENT_IS_WEB) { + if (typeof TEST_FINISH === 'function') { + TEST_FINISH($0); + } else { + console.error('Attempted to exit with status ' + $0); + console.error('But TEST_FINSIHED is not a function.'); + } + } + }, 0); +// clang-format on +#endif + return 0; +} diff --git a/weight/_dep/abseil-cpp/absl/base/internal/per_thread_tls.h b/weight/_dep/abseil-cpp/absl/base/internal/per_thread_tls.h new file mode 100644 index 0000000000000000000000000000000000000000..cf5e97a0470eb57c15862e0c24195ebbf783ac12 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/per_thread_tls.h @@ -0,0 +1,52 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#ifndef ABSL_BASE_INTERNAL_PER_THREAD_TLS_H_ +#define ABSL_BASE_INTERNAL_PER_THREAD_TLS_H_ + +// This header defines two macros: +// +// If the platform supports thread-local storage: +// +// * ABSL_PER_THREAD_TLS_KEYWORD is the C keyword needed to declare a +// thread-local variable +// * ABSL_PER_THREAD_TLS is 1 +// +// Otherwise: +// +// * ABSL_PER_THREAD_TLS_KEYWORD is empty +// * ABSL_PER_THREAD_TLS is 0 +// +// Microsoft C supports thread-local storage. +// GCC supports it if the appropriate version of glibc is available, +// which the programmer can indicate by defining ABSL_HAVE_TLS + +#include "absl/base/port.h" // For ABSL_HAVE_TLS + +#if defined(ABSL_PER_THREAD_TLS) +#error ABSL_PER_THREAD_TLS cannot be directly set +#elif defined(ABSL_PER_THREAD_TLS_KEYWORD) +#error ABSL_PER_THREAD_TLS_KEYWORD cannot be directly set +#elif defined(ABSL_HAVE_TLS) +#define ABSL_PER_THREAD_TLS_KEYWORD __thread +#define ABSL_PER_THREAD_TLS 1 +#elif defined(_MSC_VER) +#define ABSL_PER_THREAD_TLS_KEYWORD __declspec(thread) +#define ABSL_PER_THREAD_TLS 1 +#else +#define ABSL_PER_THREAD_TLS_KEYWORD +#define ABSL_PER_THREAD_TLS 0 +#endif + +#endif // ABSL_BASE_INTERNAL_PER_THREAD_TLS_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/raw_logging.h b/weight/_dep/abseil-cpp/absl/base/internal/raw_logging.h new file mode 100644 index 0000000000000000000000000000000000000000..d7cfbc576b81e7857757bd47c6ac4b6849e182cf --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/raw_logging.h @@ -0,0 +1,217 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// Thread-safe logging routines that do not allocate any memory or +// acquire any locks, and can therefore be used by low-level memory +// allocation, synchronization, and signal-handling code. + +#ifndef ABSL_BASE_INTERNAL_RAW_LOGGING_H_ +#define ABSL_BASE_INTERNAL_RAW_LOGGING_H_ + +#include + +#include "absl/base/attributes.h" +#include "absl/base/config.h" +#include "absl/base/internal/atomic_hook.h" +#include "absl/base/log_severity.h" +#include "absl/base/macros.h" +#include "absl/base/optimization.h" +#include "absl/base/port.h" + +// This is similar to LOG(severity) << format..., but +// * it is to be used ONLY by low-level modules that can't use normal LOG() +// * it is designed to be a low-level logger that does not allocate any +// memory and does not need any locks, hence: +// * it logs straight and ONLY to STDERR w/o buffering +// * it uses an explicit printf-format and arguments list +// * it will silently chop off really long message strings +// Usage example: +// ABSL_RAW_LOG(ERROR, "Failed foo with %i: %s", status, error); +// This will print an almost standard log line like this to stderr only: +// E0821 211317 file.cc:123] RAW: Failed foo with 22: bad_file + +#define ABSL_RAW_LOG(severity, ...) \ + do { \ + constexpr const char* absl_raw_log_internal_basename = \ + ::absl::raw_log_internal::Basename(__FILE__, sizeof(__FILE__) - 1); \ + ::absl::raw_log_internal::RawLog(ABSL_RAW_LOG_INTERNAL_##severity, \ + absl_raw_log_internal_basename, __LINE__, \ + __VA_ARGS__); \ + ABSL_RAW_LOG_INTERNAL_MAYBE_UNREACHABLE_##severity; \ + } while (0) + +// Similar to CHECK(condition) << message, but for low-level modules: +// we use only ABSL_RAW_LOG that does not allocate memory. +// We do not want to provide args list here to encourage this usage: +// if (!cond) ABSL_RAW_LOG(FATAL, "foo ...", hard_to_compute_args); +// so that the args are not computed when not needed. +#define ABSL_RAW_CHECK(condition, message) \ + do { \ + if (ABSL_PREDICT_FALSE(!(condition))) { \ + ABSL_RAW_LOG(FATAL, "Check %s failed: %s", #condition, message); \ + } \ + } while (0) + +// ABSL_INTERNAL_LOG and ABSL_INTERNAL_CHECK work like the RAW variants above, +// except that if the richer log library is linked into the binary, we dispatch +// to that instead. This is potentially useful for internal logging and +// assertions, where we are using RAW_LOG neither for its async-signal-safety +// nor for its non-allocating nature, but rather because raw logging has very +// few other dependencies. +// +// The API is a subset of the above: each macro only takes two arguments. Use +// StrCat if you need to build a richer message. +#define ABSL_INTERNAL_LOG(severity, message) \ + do { \ + constexpr const char* absl_raw_log_internal_filename = __FILE__; \ + ::absl::raw_log_internal::internal_log_function( \ + ABSL_RAW_LOG_INTERNAL_##severity, absl_raw_log_internal_filename, \ + __LINE__, message); \ + ABSL_RAW_LOG_INTERNAL_MAYBE_UNREACHABLE_##severity; \ + } while (0) + +#define ABSL_INTERNAL_CHECK(condition, message) \ + do { \ + if (ABSL_PREDICT_FALSE(!(condition))) { \ + std::string death_message = "Check " #condition " failed: "; \ + death_message += std::string(message); \ + ABSL_INTERNAL_LOG(FATAL, death_message); \ + } \ + } while (0) + +#ifndef NDEBUG + +#define ABSL_RAW_DLOG(severity, ...) ABSL_RAW_LOG(severity, __VA_ARGS__) +#define ABSL_RAW_DCHECK(condition, message) ABSL_RAW_CHECK(condition, message) + +#else // NDEBUG + +#define ABSL_RAW_DLOG(severity, ...) \ + while (false) ABSL_RAW_LOG(severity, __VA_ARGS__) +#define ABSL_RAW_DCHECK(condition, message) \ + while (false) ABSL_RAW_CHECK(condition, message) + +#endif // NDEBUG + +#define ABSL_RAW_LOG_INTERNAL_INFO ::absl::LogSeverity::kInfo +#define ABSL_RAW_LOG_INTERNAL_WARNING ::absl::LogSeverity::kWarning +#define ABSL_RAW_LOG_INTERNAL_ERROR ::absl::LogSeverity::kError +#define ABSL_RAW_LOG_INTERNAL_FATAL ::absl::LogSeverity::kFatal +#define ABSL_RAW_LOG_INTERNAL_DFATAL ::absl::kLogDebugFatal +#define ABSL_RAW_LOG_INTERNAL_LEVEL(severity) \ + ::absl::NormalizeLogSeverity(severity) + +#define ABSL_RAW_LOG_INTERNAL_MAYBE_UNREACHABLE_INFO +#define ABSL_RAW_LOG_INTERNAL_MAYBE_UNREACHABLE_WARNING +#define ABSL_RAW_LOG_INTERNAL_MAYBE_UNREACHABLE_ERROR +#define ABSL_RAW_LOG_INTERNAL_MAYBE_UNREACHABLE_FATAL ABSL_UNREACHABLE() +#define ABSL_RAW_LOG_INTERNAL_MAYBE_UNREACHABLE_DFATAL +#define ABSL_RAW_LOG_INTERNAL_MAYBE_UNREACHABLE_LEVEL(severity) + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace raw_log_internal { + +// Helper function to implement ABSL_RAW_LOG +// Logs format... at "severity" level, reporting it +// as called from file:line. +// This does not allocate memory or acquire locks. +void RawLog(absl::LogSeverity severity, const char* file, int line, + const char* format, ...) ABSL_PRINTF_ATTRIBUTE(4, 5); + +// Writes the provided buffer directly to stderr, in a signal-safe, low-level +// manner. Preserves errno. +void AsyncSignalSafeWriteError(const char* s, size_t len); + +// compile-time function to get the "base" filename, that is, the part of +// a filename after the last "/" or "\" path separator. The search starts at +// the end of the string; the second parameter is the length of the string. +constexpr const char* Basename(const char* fname, int offset) { + return offset == 0 || fname[offset - 1] == '/' || fname[offset - 1] == '\\' + ? fname + offset + : Basename(fname, offset - 1); +} + +// For testing only. +// Returns true if raw logging is fully supported. When it is not +// fully supported, no messages will be emitted, but a log at FATAL +// severity will cause an abort. +// +// TODO(gfalcon): Come up with a better name for this method. +bool RawLoggingFullySupported(); + +// Function type for a raw_log customization hook for suppressing messages +// by severity, and for writing custom prefixes on non-suppressed messages. +// +// The installed hook is called for every raw log invocation. The message will +// be logged to stderr only if the hook returns true. FATAL errors will cause +// the process to abort, even if writing to stderr is suppressed. The hook is +// also provided with an output buffer, where it can write a custom log message +// prefix. +// +// The raw_log system does not allocate memory or grab locks. User-provided +// hooks must avoid these operations, and must not throw exceptions. +// +// 'severity' is the severity level of the message being written. +// 'file' and 'line' are the file and line number where the ABSL_RAW_LOG macro +// was located. +// 'buf' and 'buf_size' are pointers to the buffer and buffer size. If the +// hook writes a prefix, it must increment *buf and decrement *buf_size +// accordingly. +using LogFilterAndPrefixHook = bool (*)(absl::LogSeverity severity, + const char* file, int line, char** buf, + int* buf_size); + +// Function type for a raw_log customization hook called to abort a process +// when a FATAL message is logged. If the provided AbortHook() returns, the +// logging system will call abort(). +// +// 'file' and 'line' are the file and line number where the ABSL_RAW_LOG macro +// was located. +// The NUL-terminated logged message lives in the buffer between 'buf_start' +// and 'buf_end'. 'prefix_end' points to the first non-prefix character of the +// buffer (as written by the LogFilterAndPrefixHook.) +// +// The lifetime of the filename and message buffers will not end while the +// process remains alive. +using AbortHook = void (*)(const char* file, int line, const char* buf_start, + const char* prefix_end, const char* buf_end); + +// Internal logging function for ABSL_INTERNAL_LOG to dispatch to. +// +// TODO(gfalcon): When string_view no longer depends on base, change this +// interface to take its message as a string_view instead. +using InternalLogFunction = void (*)(absl::LogSeverity severity, + const char* file, int line, + const std::string& message); + +ABSL_INTERNAL_ATOMIC_HOOK_ATTRIBUTES ABSL_DLL extern base_internal::AtomicHook< + InternalLogFunction> + internal_log_function; + +// Registers hooks of the above types. Only a single hook of each type may be +// registered. It is an error to call these functions multiple times with +// different input arguments. +// +// These functions are safe to call at any point during initialization; they do +// not block or malloc, and are async-signal safe. +void RegisterLogFilterAndPrefixHook(LogFilterAndPrefixHook func); +void RegisterAbortHook(AbortHook func); +void RegisterInternalLogFunction(InternalLogFunction func); + +} // namespace raw_log_internal +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_INTERNAL_RAW_LOGGING_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/internal/spinlock_akaros.inc b/weight/_dep/abseil-cpp/absl/base/internal/spinlock_akaros.inc new file mode 100644 index 0000000000000000000000000000000000000000..7b0cada4f131b30c6d952b92c999b972df80654b --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/spinlock_akaros.inc @@ -0,0 +1,35 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// This file is an Akaros-specific part of spinlock_wait.cc + +#include + +#include "absl/base/internal/scheduling_mode.h" + +extern "C" { + +ABSL_ATTRIBUTE_WEAK void ABSL_INTERNAL_C_SYMBOL(AbslInternalSpinLockDelay)( + std::atomic* /* lock_word */, uint32_t /* value */, + int /* loop */, absl::base_internal::SchedulingMode /* mode */) { + // In Akaros, one must take care not to call anything that could cause a + // malloc(), a blocking system call, or a uthread_yield() while holding a + // spinlock. Our callers assume will not call into libraries or other + // arbitrary code. +} + +ABSL_ATTRIBUTE_WEAK void ABSL_INTERNAL_C_SYMBOL(AbslInternalSpinLockWake)( + std::atomic* /* lock_word */, bool /* all */) {} + +} // extern "C" diff --git a/weight/_dep/abseil-cpp/absl/base/internal/unscaledcycleclock_config.h b/weight/_dep/abseil-cpp/absl/base/internal/unscaledcycleclock_config.h new file mode 100644 index 0000000000000000000000000000000000000000..24b324ac99f814ac9d3aee4f24cbc8089c1fea57 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/internal/unscaledcycleclock_config.h @@ -0,0 +1,62 @@ +// Copyright 2022 The Abseil Authors +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#ifndef ABSL_BASE_INTERNAL_UNSCALEDCYCLECLOCK_CONFIG_H_ +#define ABSL_BASE_INTERNAL_UNSCALEDCYCLECLOCK_CONFIG_H_ + +#if defined(__APPLE__) +#include +#endif + +// The following platforms have an implementation of a hardware counter. +#if defined(__i386__) || defined(__x86_64__) || defined(__aarch64__) || \ + defined(__powerpc__) || defined(__ppc__) || defined(__riscv) || \ + defined(_M_IX86) || (defined(_M_X64) && !defined(_M_ARM64EC)) +#define ABSL_HAVE_UNSCALED_CYCLECLOCK_IMPLEMENTATION 1 +#else +#define ABSL_HAVE_UNSCALED_CYCLECLOCK_IMPLEMENTATION 0 +#endif + +// The following platforms often disable access to the hardware +// counter (through a sandbox) even if the underlying hardware has a +// usable counter. The CycleTimer interface also requires a *scaled* +// CycleClock that runs at atleast 1 MHz. We've found some Android +// ARM64 devices where this is not the case, so we disable it by +// default on Android ARM64. +#if defined(__native_client__) || (defined(__APPLE__)) || \ + (defined(__ANDROID__) && defined(__aarch64__)) +#define ABSL_USE_UNSCALED_CYCLECLOCK_DEFAULT 0 +#else +#define ABSL_USE_UNSCALED_CYCLECLOCK_DEFAULT 1 +#endif + +// UnscaledCycleClock is an optional internal feature. +// Use "#if ABSL_USE_UNSCALED_CYCLECLOCK" to test for its presence. +// Can be overridden at compile-time via -DABSL_USE_UNSCALED_CYCLECLOCK=0|1 +#if !defined(ABSL_USE_UNSCALED_CYCLECLOCK) +#define ABSL_USE_UNSCALED_CYCLECLOCK \ + (ABSL_HAVE_UNSCALED_CYCLECLOCK_IMPLEMENTATION && \ + ABSL_USE_UNSCALED_CYCLECLOCK_DEFAULT) +#endif + +#if ABSL_USE_UNSCALED_CYCLECLOCK +// This macro can be used to test if UnscaledCycleClock::Frequency() +// is NominalCPUFrequency() on a particular platform. +#if (defined(__i386__) || defined(__x86_64__) || defined(__riscv) || \ + defined(_M_IX86) || defined(_M_X64)) +#define ABSL_INTERNAL_UNSCALED_CYCLECLOCK_FREQUENCY_IS_CPU_FREQUENCY +#endif +#endif + +#endif // ABSL_BASE_INTERNAL_UNSCALEDCYCLECLOCK_CONFIG_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/invoke_test.cc b/weight/_dep/abseil-cpp/absl/base/invoke_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..7be26f649f380e6a4f7d30e99a74054e2ffec4b2 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/invoke_test.cc @@ -0,0 +1,331 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/internal/invoke.h" + +#include +#include +#include +#include + +#include "gmock/gmock.h" +#include "gtest/gtest.h" +#include "absl/memory/memory.h" +#include "absl/strings/str_cat.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { +namespace { + +int Function(int a, int b) { return a - b; } + +void VoidFunction(int& a, int& b) { + a += b; + b = a - b; + a -= b; +} + +int ZeroArgFunction() { return -1937; } + +int Sink(std::unique_ptr p) { + return *p; +} + +std::unique_ptr Factory(int n) { + return make_unique(n); +} + +void NoOp() {} + +struct ConstFunctor { + int operator()(int a, int b) const { return a - b; } +}; + +struct MutableFunctor { + int operator()(int a, int b) { return a - b; } +}; + +struct EphemeralFunctor { + int operator()(int a, int b) && { return a - b; } +}; + +struct OverloadedFunctor { + template + std::string operator()(const Args&... args) & { + return StrCat("&", args...); + } + template + std::string operator()(const Args&... args) const& { + return StrCat("const&", args...); + } + template + std::string operator()(const Args&... args) && { + return StrCat("&&", args...); + } +}; + +struct Class { + int Method(int a, int b) { return a - b; } + int ConstMethod(int a, int b) const { return a - b; } + int RefMethod(int a, int b) & { return a - b; } + int RefRefMethod(int a, int b) && { return a - b; } + int NoExceptMethod(int a, int b) noexcept { return a - b; } + int VolatileMethod(int a, int b) volatile { return a - b; } + + int member; +}; + +struct FlipFlop { + int ConstMethod() const { return member; } + FlipFlop operator*() const { return {-member}; } + + int member; +}; + +// CallMaybeWithArg(f) resolves either to invoke(f) or invoke(f, 42), depending +// on which one is valid. +template +decltype(base_internal::invoke(std::declval())) CallMaybeWithArg( + const F& f) { + return base_internal::invoke(f); +} + +template +decltype(base_internal::invoke(std::declval(), 42)) CallMaybeWithArg( + const F& f) { + return base_internal::invoke(f, 42); +} + +TEST(InvokeTest, Function) { + EXPECT_EQ(1, base_internal::invoke(Function, 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Function, 3, 2)); +} + +TEST(InvokeTest, NonCopyableArgument) { + EXPECT_EQ(42, base_internal::invoke(Sink, make_unique(42))); +} + +TEST(InvokeTest, NonCopyableResult) { + EXPECT_THAT(base_internal::invoke(Factory, 42), ::testing::Pointee(42)); +} + +TEST(InvokeTest, VoidResult) { base_internal::invoke(NoOp); } + +TEST(InvokeTest, ConstFunctor) { + EXPECT_EQ(1, base_internal::invoke(ConstFunctor(), 3, 2)); +} + +TEST(InvokeTest, MutableFunctor) { + MutableFunctor f; + EXPECT_EQ(1, base_internal::invoke(f, 3, 2)); + EXPECT_EQ(1, base_internal::invoke(MutableFunctor(), 3, 2)); +} + +TEST(InvokeTest, EphemeralFunctor) { + EphemeralFunctor f; + EXPECT_EQ(1, base_internal::invoke(std::move(f), 3, 2)); + EXPECT_EQ(1, base_internal::invoke(EphemeralFunctor(), 3, 2)); +} + +TEST(InvokeTest, OverloadedFunctor) { + OverloadedFunctor f; + const OverloadedFunctor& cf = f; + + EXPECT_EQ("&", base_internal::invoke(f)); + EXPECT_EQ("& 42", base_internal::invoke(f, " 42")); + + EXPECT_EQ("const&", base_internal::invoke(cf)); + EXPECT_EQ("const& 42", base_internal::invoke(cf, " 42")); + + EXPECT_EQ("&&", base_internal::invoke(std::move(f))); + + OverloadedFunctor f2; + EXPECT_EQ("&& 42", base_internal::invoke(std::move(f2), " 42")); +} + +TEST(InvokeTest, ReferenceWrapper) { + ConstFunctor cf; + MutableFunctor mf; + EXPECT_EQ(1, base_internal::invoke(std::cref(cf), 3, 2)); + EXPECT_EQ(1, base_internal::invoke(std::ref(cf), 3, 2)); + EXPECT_EQ(1, base_internal::invoke(std::ref(mf), 3, 2)); +} + +TEST(InvokeTest, MemberFunction) { + std::unique_ptr p(new Class); + std::unique_ptr cp(new Class); + std::unique_ptr vp(new Class); + + EXPECT_EQ(1, base_internal::invoke(&Class::Method, p, 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::Method, p.get(), 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::Method, *p, 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::RefMethod, p, 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::RefMethod, p.get(), 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::RefMethod, *p, 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::RefRefMethod, std::move(*p), 3, + 2)); // NOLINT + EXPECT_EQ(1, base_internal::invoke(&Class::NoExceptMethod, p, 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::NoExceptMethod, p.get(), 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::NoExceptMethod, *p, 3, 2)); + + EXPECT_EQ(1, base_internal::invoke(&Class::ConstMethod, p, 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::ConstMethod, p.get(), 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::ConstMethod, *p, 3, 2)); + + EXPECT_EQ(1, base_internal::invoke(&Class::ConstMethod, cp, 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::ConstMethod, cp.get(), 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::ConstMethod, *cp, 3, 2)); + + EXPECT_EQ(1, base_internal::invoke(&Class::VolatileMethod, p, 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::VolatileMethod, p.get(), 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::VolatileMethod, *p, 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::VolatileMethod, vp, 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::VolatileMethod, vp.get(), 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::VolatileMethod, *vp, 3, 2)); + + EXPECT_EQ(1, + base_internal::invoke(&Class::Method, make_unique(), 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::ConstMethod, make_unique(), + 3, 2)); + EXPECT_EQ(1, base_internal::invoke(&Class::ConstMethod, + make_unique(), 3, 2)); +} + +TEST(InvokeTest, DataMember) { + std::unique_ptr p(new Class{42}); + std::unique_ptr cp(new Class{42}); + EXPECT_EQ(42, base_internal::invoke(&Class::member, p)); + EXPECT_EQ(42, base_internal::invoke(&Class::member, *p)); + EXPECT_EQ(42, base_internal::invoke(&Class::member, p.get())); + + base_internal::invoke(&Class::member, p) = 42; + base_internal::invoke(&Class::member, p.get()) = 42; + + EXPECT_EQ(42, base_internal::invoke(&Class::member, cp)); + EXPECT_EQ(42, base_internal::invoke(&Class::member, *cp)); + EXPECT_EQ(42, base_internal::invoke(&Class::member, cp.get())); +} + +TEST(InvokeTest, FlipFlop) { + FlipFlop obj = {42}; + // This call could resolve to (obj.*&FlipFlop::ConstMethod)() or + // ((*obj).*&FlipFlop::ConstMethod)(). We verify that it's the former. + EXPECT_EQ(42, base_internal::invoke(&FlipFlop::ConstMethod, obj)); + EXPECT_EQ(42, base_internal::invoke(&FlipFlop::member, obj)); +} + +TEST(InvokeTest, SfinaeFriendly) { + CallMaybeWithArg(NoOp); + EXPECT_THAT(CallMaybeWithArg(Factory), ::testing::Pointee(42)); +} + +TEST(IsInvocableRTest, CallableExactMatch) { + static_assert( + base_internal::is_invocable_r::value, + "Should be true for exact match of types on a free function"); +} + +TEST(IsInvocableRTest, CallableArgumentConversionMatch) { + static_assert( + base_internal::is_invocable_r::value, + "Should be true for convertible argument type"); +} + +TEST(IsInvocableRTest, CallableReturnConversionMatch) { + static_assert(base_internal::is_invocable_r::value, + "Should be true for convertible return type"); +} + +TEST(IsInvocableRTest, CallableReturnVoid) { + static_assert(base_internal::is_invocable_r::value, + "Should be true for void expected and actual return types"); + static_assert( + base_internal::is_invocable_r::value, + "Should be true for void expected and non-void actual return types"); +} + +TEST(IsInvocableRTest, CallableRefQualifierMismatch) { + static_assert(!base_internal::is_invocable_r::value, + "Should be false for reference constness mismatch"); + static_assert(!base_internal::is_invocable_r::value, + "Should be false for reference value category mismatch"); +} + +TEST(IsInvocableRTest, CallableArgumentTypeMismatch) { + static_assert(!base_internal::is_invocable_r::value, + "Should be false for argument type mismatch"); +} + +TEST(IsInvocableRTest, CallableReturnTypeMismatch) { + static_assert(!base_internal::is_invocable_r::value, + "Should be false for return type mismatch"); +} + +TEST(IsInvocableRTest, CallableTooFewArgs) { + static_assert( + !base_internal::is_invocable_r::value, + "Should be false for too few arguments"); +} + +TEST(IsInvocableRTest, CallableTooManyArgs) { + static_assert(!base_internal::is_invocable_r::value, + "Should be false for too many arguments"); +} + +TEST(IsInvocableRTest, MemberFunctionAndReference) { + static_assert(base_internal::is_invocable_r::value, + "Should be true for exact match of types on a member function " + "and class reference"); +} + +TEST(IsInvocableRTest, MemberFunctionAndPointer) { + static_assert(base_internal::is_invocable_r::value, + "Should be true for exact match of types on a member function " + "and class pointer"); +} + +TEST(IsInvocableRTest, DataMemberAndReference) { + static_assert(base_internal::is_invocable_r::value, + "Should be true for exact match of types on a data member and " + "class reference"); +} + +TEST(IsInvocableRTest, DataMemberAndPointer) { + static_assert(base_internal::is_invocable_r::value, + "Should be true for exact match of types on a data member and " + "class pointer"); +} + +TEST(IsInvocableRTest, CallableZeroArgs) { + static_assert( + base_internal::is_invocable_r::value, + "Should be true for exact match for a zero-arg free function"); +} + +} // namespace +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl diff --git a/weight/_dep/abseil-cpp/absl/base/log_severity.cc b/weight/_dep/abseil-cpp/absl/base/log_severity.cc new file mode 100644 index 0000000000000000000000000000000000000000..8e7bbbc9e0e2c0b2330be707810b80f581f4b38b --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/log_severity.cc @@ -0,0 +1,56 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/log_severity.h" + +#include + +#include "absl/base/attributes.h" +#include "absl/base/config.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN + +std::ostream& operator<<(std::ostream& os, absl::LogSeverity s) { + if (s == absl::NormalizeLogSeverity(s)) return os << absl::LogSeverityName(s); + return os << "absl::LogSeverity(" << static_cast(s) << ")"; +} + +std::ostream& operator<<(std::ostream& os, absl::LogSeverityAtLeast s) { + switch (s) { + case absl::LogSeverityAtLeast::kInfo: + case absl::LogSeverityAtLeast::kWarning: + case absl::LogSeverityAtLeast::kError: + case absl::LogSeverityAtLeast::kFatal: + return os << ">=" << static_cast(s); + case absl::LogSeverityAtLeast::kInfinity: + return os << "INFINITY"; + } + return os; +} + +std::ostream& operator<<(std::ostream& os, absl::LogSeverityAtMost s) { + switch (s) { + case absl::LogSeverityAtMost::kInfo: + case absl::LogSeverityAtMost::kWarning: + case absl::LogSeverityAtMost::kError: + case absl::LogSeverityAtMost::kFatal: + return os << "<=" << static_cast(s); + case absl::LogSeverityAtMost::kNegativeInfinity: + return os << "NEGATIVE_INFINITY"; + } + return os; +} +ABSL_NAMESPACE_END +} // namespace absl diff --git a/weight/_dep/abseil-cpp/absl/base/log_severity.h b/weight/_dep/abseil-cpp/absl/base/log_severity.h new file mode 100644 index 0000000000000000000000000000000000000000..de9702ab684cdfa96a51b26538d28f210345504d --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/log_severity.h @@ -0,0 +1,185 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#ifndef ABSL_BASE_LOG_SEVERITY_H_ +#define ABSL_BASE_LOG_SEVERITY_H_ + +#include +#include + +#include "absl/base/attributes.h" +#include "absl/base/config.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN + +// absl::LogSeverity +// +// Four severity levels are defined. Logging APIs should terminate the program +// when a message is logged at severity `kFatal`; the other levels have no +// special semantics. +// +// Values other than the four defined levels (e.g. produced by `static_cast`) +// are valid, but their semantics when passed to a function, macro, or flag +// depend on the function, macro, or flag. The usual behavior is to normalize +// such values to a defined severity level, however in some cases values other +// than the defined levels are useful for comparison. +// +// Example: +// +// // Effectively disables all logging: +// SetMinLogLevel(static_cast(100)); +// +// Abseil flags may be defined with type `LogSeverity`. Dependency layering +// constraints require that the `AbslParseFlag()` overload be declared and +// defined in the flags library itself rather than here. The `AbslUnparseFlag()` +// overload is defined there as well for consistency. +// +// absl::LogSeverity Flag String Representation +// +// An `absl::LogSeverity` has a string representation used for parsing +// command-line flags based on the enumerator name (e.g. `kFatal`) or +// its unprefixed name (without the `k`) in any case-insensitive form. (E.g. +// "FATAL", "fatal" or "Fatal" are all valid.) Unparsing such flags produces an +// unprefixed string representation in all caps (e.g. "FATAL") or an integer. +// +// Additionally, the parser accepts arbitrary integers (as if the type were +// `int`). +// +// Examples: +// +// --my_log_level=kInfo +// --my_log_level=INFO +// --my_log_level=info +// --my_log_level=0 +// +// `DFATAL` and `kLogDebugFatal` are similarly accepted. +// +// Unparsing a flag produces the same result as `absl::LogSeverityName()` for +// the standard levels and a base-ten integer otherwise. +enum class LogSeverity : int { + kInfo = 0, + kWarning = 1, + kError = 2, + kFatal = 3, +}; + +// LogSeverities() +// +// Returns an iterable of all standard `absl::LogSeverity` values, ordered from +// least to most severe. +constexpr std::array LogSeverities() { + return {{absl::LogSeverity::kInfo, absl::LogSeverity::kWarning, + absl::LogSeverity::kError, absl::LogSeverity::kFatal}}; +} + +// `absl::kLogDebugFatal` equals `absl::LogSeverity::kFatal` in debug builds +// (i.e. when `NDEBUG` is not defined) and `absl::LogSeverity::kError` +// otherwise. Avoid ODR-using this variable as it has internal linkage and thus +// distinct storage in different TUs. +#ifdef NDEBUG +static constexpr absl::LogSeverity kLogDebugFatal = absl::LogSeverity::kError; +#else +static constexpr absl::LogSeverity kLogDebugFatal = absl::LogSeverity::kFatal; +#endif + +// LogSeverityName() +// +// Returns the all-caps string representation (e.g. "INFO") of the specified +// severity level if it is one of the standard levels and "UNKNOWN" otherwise. +constexpr const char* LogSeverityName(absl::LogSeverity s) { + switch (s) { + case absl::LogSeverity::kInfo: return "INFO"; + case absl::LogSeverity::kWarning: return "WARNING"; + case absl::LogSeverity::kError: return "ERROR"; + case absl::LogSeverity::kFatal: return "FATAL"; + } + return "UNKNOWN"; +} + +// NormalizeLogSeverity() +// +// Values less than `kInfo` normalize to `kInfo`; values greater than `kFatal` +// normalize to `kError` (**NOT** `kFatal`). +constexpr absl::LogSeverity NormalizeLogSeverity(absl::LogSeverity s) { + absl::LogSeverity n = s; + if (n < absl::LogSeverity::kInfo) n = absl::LogSeverity::kInfo; + if (n > absl::LogSeverity::kFatal) n = absl::LogSeverity::kError; + return n; +} +constexpr absl::LogSeverity NormalizeLogSeverity(int s) { + return absl::NormalizeLogSeverity(static_cast(s)); +} + +// operator<< +// +// The exact representation of a streamed `absl::LogSeverity` is deliberately +// unspecified; do not rely on it. +std::ostream& operator<<(std::ostream& os, absl::LogSeverity s); + +// Enums representing a lower bound for LogSeverity. APIs that only operate on +// messages of at least a certain level (for example, `SetMinLogLevel()`) use +// this type to specify that level. absl::LogSeverityAtLeast::kInfinity is +// a level above all threshold levels and therefore no log message will +// ever meet this threshold. +enum class LogSeverityAtLeast : int { + kInfo = static_cast(absl::LogSeverity::kInfo), + kWarning = static_cast(absl::LogSeverity::kWarning), + kError = static_cast(absl::LogSeverity::kError), + kFatal = static_cast(absl::LogSeverity::kFatal), + kInfinity = 1000, +}; + +std::ostream& operator<<(std::ostream& os, absl::LogSeverityAtLeast s); + +// Enums representing an upper bound for LogSeverity. APIs that only operate on +// messages of at most a certain level (for example, buffer all messages at or +// below a certain level) use this type to specify that level. +// absl::LogSeverityAtMost::kNegativeInfinity is a level below all threshold +// levels and therefore will exclude all log messages. +enum class LogSeverityAtMost : int { + kNegativeInfinity = -1000, + kInfo = static_cast(absl::LogSeverity::kInfo), + kWarning = static_cast(absl::LogSeverity::kWarning), + kError = static_cast(absl::LogSeverity::kError), + kFatal = static_cast(absl::LogSeverity::kFatal), +}; + +std::ostream& operator<<(std::ostream& os, absl::LogSeverityAtMost s); + +#define COMPOP(op1, op2, T) \ + constexpr bool operator op1(absl::T lhs, absl::LogSeverity rhs) { \ + return static_cast(lhs) op1 rhs; \ + } \ + constexpr bool operator op2(absl::LogSeverity lhs, absl::T rhs) { \ + return lhs op2 static_cast(rhs); \ + } + +// Comparisons between `LogSeverity` and `LogSeverityAtLeast`/ +// `LogSeverityAtMost` are only supported in one direction. +// Valid checks are: +// LogSeverity >= LogSeverityAtLeast +// LogSeverity < LogSeverityAtLeast +// LogSeverity <= LogSeverityAtMost +// LogSeverity > LogSeverityAtMost +COMPOP(>, <, LogSeverityAtLeast) +COMPOP(<=, >=, LogSeverityAtLeast) +COMPOP(<, >, LogSeverityAtMost) +COMPOP(>=, <=, LogSeverityAtMost) +#undef COMPOP + +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_LOG_SEVERITY_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/log_severity_test.cc b/weight/_dep/abseil-cpp/absl/base/log_severity_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..3394ecd790f8bc961f6d050bac267fd415f99d2c --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/log_severity_test.cc @@ -0,0 +1,251 @@ +// Copyright 2018 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/log_severity.h" + +#include +#include +#include +#include +#include +#include +#include + +#include "gmock/gmock.h" +#include "gtest/gtest.h" +#include "absl/flags/internal/flag.h" +#include "absl/flags/marshalling.h" +#include "absl/strings/str_cat.h" + +namespace { +using ::testing::Eq; +using ::testing::IsFalse; +using ::testing::IsTrue; +using ::testing::TestWithParam; +using ::testing::Values; + +template +std::string StreamHelper(T value) { + std::ostringstream stream; + stream << value; + return stream.str(); +} + +TEST(StreamTest, Works) { + EXPECT_THAT(StreamHelper(static_cast(-100)), + Eq("absl::LogSeverity(-100)")); + EXPECT_THAT(StreamHelper(absl::LogSeverity::kInfo), Eq("INFO")); + EXPECT_THAT(StreamHelper(absl::LogSeverity::kWarning), Eq("WARNING")); + EXPECT_THAT(StreamHelper(absl::LogSeverity::kError), Eq("ERROR")); + EXPECT_THAT(StreamHelper(absl::LogSeverity::kFatal), Eq("FATAL")); + EXPECT_THAT(StreamHelper(static_cast(4)), + Eq("absl::LogSeverity(4)")); +} + +static_assert(absl::flags_internal::FlagUseValueAndInitBitStorage< + absl::LogSeverity>::value, + "Flags of type absl::LogSeverity ought to be lock-free."); + +using ParseFlagFromOutOfRangeIntegerTest = TestWithParam; +INSTANTIATE_TEST_SUITE_P( + Instantiation, ParseFlagFromOutOfRangeIntegerTest, + Values(static_cast(std::numeric_limits::min()) - 1, + static_cast(std::numeric_limits::max()) + 1)); +TEST_P(ParseFlagFromOutOfRangeIntegerTest, ReturnsError) { + const std::string to_parse = absl::StrCat(GetParam()); + absl::LogSeverity value; + std::string error; + EXPECT_THAT(absl::ParseFlag(to_parse, &value, &error), IsFalse()) << value; +} + +using ParseFlagFromAlmostOutOfRangeIntegerTest = TestWithParam; +INSTANTIATE_TEST_SUITE_P(Instantiation, + ParseFlagFromAlmostOutOfRangeIntegerTest, + Values(std::numeric_limits::min(), + std::numeric_limits::max())); +TEST_P(ParseFlagFromAlmostOutOfRangeIntegerTest, YieldsExpectedValue) { + const auto expected = static_cast(GetParam()); + const std::string to_parse = absl::StrCat(GetParam()); + absl::LogSeverity value; + std::string error; + ASSERT_THAT(absl::ParseFlag(to_parse, &value, &error), IsTrue()) << error; + EXPECT_THAT(value, Eq(expected)); +} + +using ParseFlagFromIntegerMatchingEnumeratorTest = + TestWithParam>; +INSTANTIATE_TEST_SUITE_P( + Instantiation, ParseFlagFromIntegerMatchingEnumeratorTest, + Values(std::make_tuple("0", absl::LogSeverity::kInfo), + std::make_tuple(" 0", absl::LogSeverity::kInfo), + std::make_tuple("-0", absl::LogSeverity::kInfo), + std::make_tuple("+0", absl::LogSeverity::kInfo), + std::make_tuple("00", absl::LogSeverity::kInfo), + std::make_tuple("0 ", absl::LogSeverity::kInfo), + std::make_tuple("0x0", absl::LogSeverity::kInfo), + std::make_tuple("1", absl::LogSeverity::kWarning), + std::make_tuple("+1", absl::LogSeverity::kWarning), + std::make_tuple("2", absl::LogSeverity::kError), + std::make_tuple("3", absl::LogSeverity::kFatal))); +TEST_P(ParseFlagFromIntegerMatchingEnumeratorTest, YieldsExpectedValue) { + const absl::string_view to_parse = std::get<0>(GetParam()); + const absl::LogSeverity expected = std::get<1>(GetParam()); + absl::LogSeverity value; + std::string error; + ASSERT_THAT(absl::ParseFlag(to_parse, &value, &error), IsTrue()) << error; + EXPECT_THAT(value, Eq(expected)); +} + +using ParseFlagFromOtherIntegerTest = + TestWithParam>; +INSTANTIATE_TEST_SUITE_P(Instantiation, ParseFlagFromOtherIntegerTest, + Values(std::make_tuple("-1", -1), + std::make_tuple("4", 4), + std::make_tuple("010", 10), + std::make_tuple("0x10", 16))); +TEST_P(ParseFlagFromOtherIntegerTest, YieldsExpectedValue) { + const absl::string_view to_parse = std::get<0>(GetParam()); + const auto expected = static_cast(std::get<1>(GetParam())); + absl::LogSeverity value; + std::string error; + ASSERT_THAT(absl::ParseFlag(to_parse, &value, &error), IsTrue()) << error; + EXPECT_THAT(value, Eq(expected)); +} + +using ParseFlagFromEnumeratorTest = + TestWithParam>; +INSTANTIATE_TEST_SUITE_P( + Instantiation, ParseFlagFromEnumeratorTest, + Values(std::make_tuple("INFO", absl::LogSeverity::kInfo), + std::make_tuple("info", absl::LogSeverity::kInfo), + std::make_tuple("kInfo", absl::LogSeverity::kInfo), + std::make_tuple("iNfO", absl::LogSeverity::kInfo), + std::make_tuple("kInFo", absl::LogSeverity::kInfo), + std::make_tuple("WARNING", absl::LogSeverity::kWarning), + std::make_tuple("warning", absl::LogSeverity::kWarning), + std::make_tuple("kWarning", absl::LogSeverity::kWarning), + std::make_tuple("WaRnInG", absl::LogSeverity::kWarning), + std::make_tuple("KwArNiNg", absl::LogSeverity::kWarning), + std::make_tuple("ERROR", absl::LogSeverity::kError), + std::make_tuple("error", absl::LogSeverity::kError), + std::make_tuple("kError", absl::LogSeverity::kError), + std::make_tuple("eRrOr", absl::LogSeverity::kError), + std::make_tuple("kErRoR", absl::LogSeverity::kError), + std::make_tuple("FATAL", absl::LogSeverity::kFatal), + std::make_tuple("fatal", absl::LogSeverity::kFatal), + std::make_tuple("kFatal", absl::LogSeverity::kFatal), + std::make_tuple("FaTaL", absl::LogSeverity::kFatal), + std::make_tuple("KfAtAl", absl::LogSeverity::kFatal), + std::make_tuple("DFATAL", absl::kLogDebugFatal), + std::make_tuple("dfatal", absl::kLogDebugFatal), + std::make_tuple("kLogDebugFatal", absl::kLogDebugFatal), + std::make_tuple("dFaTaL", absl::kLogDebugFatal), + std::make_tuple("kLoGdEbUgFaTaL", absl::kLogDebugFatal))); +TEST_P(ParseFlagFromEnumeratorTest, YieldsExpectedValue) { + const absl::string_view to_parse = std::get<0>(GetParam()); + const absl::LogSeverity expected = std::get<1>(GetParam()); + absl::LogSeverity value; + std::string error; + ASSERT_THAT(absl::ParseFlag(to_parse, &value, &error), IsTrue()) << error; + EXPECT_THAT(value, Eq(expected)); +} + +using ParseFlagFromGarbageTest = TestWithParam; +INSTANTIATE_TEST_SUITE_P(Instantiation, ParseFlagFromGarbageTest, + Values("", "\0", " ", "garbage", "kkinfo", "I", + "kDFATAL", "LogDebugFatal", "lOgDeBuGfAtAl")); +TEST_P(ParseFlagFromGarbageTest, ReturnsError) { + const absl::string_view to_parse = GetParam(); + absl::LogSeverity value; + std::string error; + EXPECT_THAT(absl::ParseFlag(to_parse, &value, &error), IsFalse()) << value; +} + +using UnparseFlagToEnumeratorTest = + TestWithParam>; +INSTANTIATE_TEST_SUITE_P( + Instantiation, UnparseFlagToEnumeratorTest, + Values(std::make_tuple(absl::LogSeverity::kInfo, "INFO"), + std::make_tuple(absl::LogSeverity::kWarning, "WARNING"), + std::make_tuple(absl::LogSeverity::kError, "ERROR"), + std::make_tuple(absl::LogSeverity::kFatal, "FATAL"))); +TEST_P(UnparseFlagToEnumeratorTest, ReturnsExpectedValueAndRoundTrips) { + const absl::LogSeverity to_unparse = std::get<0>(GetParam()); + const absl::string_view expected = std::get<1>(GetParam()); + const std::string stringified_value = absl::UnparseFlag(to_unparse); + EXPECT_THAT(stringified_value, Eq(expected)); + absl::LogSeverity reparsed_value; + std::string error; + EXPECT_THAT(absl::ParseFlag(stringified_value, &reparsed_value, &error), + IsTrue()); + EXPECT_THAT(reparsed_value, Eq(to_unparse)); +} + +using UnparseFlagToOtherIntegerTest = TestWithParam; +INSTANTIATE_TEST_SUITE_P(Instantiation, UnparseFlagToOtherIntegerTest, + Values(std::numeric_limits::min(), -1, 4, + std::numeric_limits::max())); +TEST_P(UnparseFlagToOtherIntegerTest, ReturnsExpectedValueAndRoundTrips) { + const absl::LogSeverity to_unparse = + static_cast(GetParam()); + const std::string expected = absl::StrCat(GetParam()); + const std::string stringified_value = absl::UnparseFlag(to_unparse); + EXPECT_THAT(stringified_value, Eq(expected)); + absl::LogSeverity reparsed_value; + std::string error; + EXPECT_THAT(absl::ParseFlag(stringified_value, &reparsed_value, &error), + IsTrue()); + EXPECT_THAT(reparsed_value, Eq(to_unparse)); +} + +TEST(LogThresholdTest, LogSeverityAtLeastTest) { + EXPECT_LT(absl::LogSeverity::kError, absl::LogSeverityAtLeast::kFatal); + EXPECT_GT(absl::LogSeverityAtLeast::kError, absl::LogSeverity::kInfo); + + EXPECT_LE(absl::LogSeverityAtLeast::kInfo, absl::LogSeverity::kError); + EXPECT_GE(absl::LogSeverity::kError, absl::LogSeverityAtLeast::kInfo); +} + +TEST(LogThresholdTest, LogSeverityAtMostTest) { + EXPECT_GT(absl::LogSeverity::kError, absl::LogSeverityAtMost::kWarning); + EXPECT_LT(absl::LogSeverityAtMost::kError, absl::LogSeverity::kFatal); + + EXPECT_GE(absl::LogSeverityAtMost::kFatal, absl::LogSeverity::kError); + EXPECT_LE(absl::LogSeverity::kWarning, absl::LogSeverityAtMost::kError); +} + +TEST(LogThresholdTest, Extremes) { + EXPECT_LT(absl::LogSeverity::kFatal, absl::LogSeverityAtLeast::kInfinity); + EXPECT_GT(absl::LogSeverity::kInfo, + absl::LogSeverityAtMost::kNegativeInfinity); +} + +TEST(LogThresholdTest, Output) { + EXPECT_THAT(StreamHelper(absl::LogSeverityAtLeast::kInfo), Eq(">=INFO")); + EXPECT_THAT(StreamHelper(absl::LogSeverityAtLeast::kWarning), + Eq(">=WARNING")); + EXPECT_THAT(StreamHelper(absl::LogSeverityAtLeast::kError), Eq(">=ERROR")); + EXPECT_THAT(StreamHelper(absl::LogSeverityAtLeast::kFatal), Eq(">=FATAL")); + EXPECT_THAT(StreamHelper(absl::LogSeverityAtLeast::kInfinity), + Eq("INFINITY")); + + EXPECT_THAT(StreamHelper(absl::LogSeverityAtMost::kInfo), Eq("<=INFO")); + EXPECT_THAT(StreamHelper(absl::LogSeverityAtMost::kWarning), Eq("<=WARNING")); + EXPECT_THAT(StreamHelper(absl::LogSeverityAtMost::kError), Eq("<=ERROR")); + EXPECT_THAT(StreamHelper(absl::LogSeverityAtMost::kFatal), Eq("<=FATAL")); + EXPECT_THAT(StreamHelper(absl::LogSeverityAtMost::kNegativeInfinity), + Eq("NEGATIVE_INFINITY")); +} + +} // namespace diff --git a/weight/_dep/abseil-cpp/absl/base/macros.h b/weight/_dep/abseil-cpp/absl/base/macros.h new file mode 100644 index 0000000000000000000000000000000000000000..f33cd1927bfda7058e11e414821c43d9c23a8b4a --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/macros.h @@ -0,0 +1,141 @@ +// +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// ----------------------------------------------------------------------------- +// File: macros.h +// ----------------------------------------------------------------------------- +// +// This header file defines the set of language macros used within Abseil code. +// For the set of macros used to determine supported compilers and platforms, +// see absl/base/config.h instead. +// +// This code is compiled directly on many platforms, including client +// platforms like Windows, Mac, and embedded systems. Before making +// any changes here, make sure that you're not breaking any platforms. + +#ifndef ABSL_BASE_MACROS_H_ +#define ABSL_BASE_MACROS_H_ + +#include +#include + +#include "absl/base/attributes.h" +#include "absl/base/config.h" +#include "absl/base/optimization.h" +#include "absl/base/port.h" + +// ABSL_ARRAYSIZE() +// +// Returns the number of elements in an array as a compile-time constant, which +// can be used in defining new arrays. If you use this macro on a pointer by +// mistake, you will get a compile-time error. +#define ABSL_ARRAYSIZE(array) \ + (sizeof(::absl::macros_internal::ArraySizeHelper(array))) + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace macros_internal { +// Note: this internal template function declaration is used by ABSL_ARRAYSIZE. +// The function doesn't need a definition, as we only use its type. +template +auto ArraySizeHelper(const T (&array)[N]) -> char (&)[N]; +} // namespace macros_internal +ABSL_NAMESPACE_END +} // namespace absl + +// ABSL_BAD_CALL_IF() +// +// Used on a function overload to trap bad calls: any call that matches the +// overload will cause a compile-time error. This macro uses a clang-specific +// "enable_if" attribute, as described at +// https://clang.llvm.org/docs/AttributeReference.html#enable-if +// +// Overloads which use this macro should be bracketed by +// `#ifdef ABSL_BAD_CALL_IF`. +// +// Example: +// +// int isdigit(int c); +// #ifdef ABSL_BAD_CALL_IF +// int isdigit(int c) +// ABSL_BAD_CALL_IF(c <= -1 || c > 255, +// "'c' must have the value of an unsigned char or EOF"); +// #endif // ABSL_BAD_CALL_IF +#if ABSL_HAVE_ATTRIBUTE(enable_if) +#define ABSL_BAD_CALL_IF(expr, msg) \ + __attribute__((enable_if(expr, "Bad call trap"), unavailable(msg))) +#endif + +// ABSL_ASSERT() +// +// In C++11, `assert` can't be used portably within constexpr functions. +// ABSL_ASSERT functions as a runtime assert but works in C++11 constexpr +// functions. Example: +// +// constexpr double Divide(double a, double b) { +// return ABSL_ASSERT(b != 0), a / b; +// } +// +// This macro is inspired by +// https://akrzemi1.wordpress.com/2017/05/18/asserts-in-constexpr-functions/ +#if defined(NDEBUG) +#define ABSL_ASSERT(expr) \ + (false ? static_cast(expr) : static_cast(0)) +#else +#define ABSL_ASSERT(expr) \ + (ABSL_PREDICT_TRUE((expr)) ? static_cast(0) \ + : [] { assert(false && #expr); }()) // NOLINT +#endif + +// `ABSL_INTERNAL_HARDENING_ABORT()` controls how `ABSL_HARDENING_ASSERT()` +// aborts the program in release mode (when NDEBUG is defined). The +// implementation should abort the program as quickly as possible and ideally it +// should not be possible to ignore the abort request. +#define ABSL_INTERNAL_HARDENING_ABORT() \ + do { \ + ABSL_INTERNAL_IMMEDIATE_ABORT_IMPL(); \ + ABSL_INTERNAL_UNREACHABLE_IMPL(); \ + } while (false) + +// ABSL_HARDENING_ASSERT() +// +// `ABSL_HARDENING_ASSERT()` is like `ABSL_ASSERT()`, but used to implement +// runtime assertions that should be enabled in hardened builds even when +// `NDEBUG` is defined. +// +// When `NDEBUG` is not defined, `ABSL_HARDENING_ASSERT()` is identical to +// `ABSL_ASSERT()`. +// +// See `ABSL_OPTION_HARDENED` in `absl/base/options.h` for more information on +// hardened mode. +#if ABSL_OPTION_HARDENED == 1 && defined(NDEBUG) +#define ABSL_HARDENING_ASSERT(expr) \ + (ABSL_PREDICT_TRUE((expr)) ? static_cast(0) \ + : [] { ABSL_INTERNAL_HARDENING_ABORT(); }()) +#else +#define ABSL_HARDENING_ASSERT(expr) ABSL_ASSERT(expr) +#endif + +#ifdef ABSL_HAVE_EXCEPTIONS +#define ABSL_INTERNAL_TRY try +#define ABSL_INTERNAL_CATCH_ANY catch (...) +#define ABSL_INTERNAL_RETHROW do { throw; } while (false) +#else // ABSL_HAVE_EXCEPTIONS +#define ABSL_INTERNAL_TRY if (true) +#define ABSL_INTERNAL_CATCH_ANY else if (false) +#define ABSL_INTERNAL_RETHROW do {} while (false) +#endif // ABSL_HAVE_EXCEPTIONS + +#endif // ABSL_BASE_MACROS_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/no_destructor.h b/weight/_dep/abseil-cpp/absl/base/no_destructor.h new file mode 100644 index 0000000000000000000000000000000000000000..d4b16a6e8859a77ea230e27bd3bd415f90ff39d6 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/no_destructor.h @@ -0,0 +1,217 @@ +// Copyright 2023 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// ----------------------------------------------------------------------------- +// File: no_destructor.h +// ----------------------------------------------------------------------------- +// +// This header file defines the absl::NoDestructor wrapper for defining a +// static type that does not need to be destructed upon program exit. Instead, +// such an object survives during program exit (and can be safely accessed at +// any time). +// +// Objects of such type, if constructed safely and under the right conditions, +// provide two main benefits over other alternatives: +// +// * Global objects not normally allowed due to concerns of destruction order +// (i.e. no "complex globals") can be safely allowed, provided that such +// objects can be constant initialized. +// * Function scope static objects can be optimized to avoid heap allocation, +// pointer chasing, and allow lazy construction. +// +// See below for complete details. + + +#ifndef ABSL_BASE_NO_DESTRUCTOR_H_ +#define ABSL_BASE_NO_DESTRUCTOR_H_ + +#include +#include +#include + +#include "absl/base/config.h" + +namespace absl { +ABSL_NAMESPACE_BEGIN + +// absl::NoDestructor +// +// NoDestructor is a wrapper around an object of type T that behaves as an +// object of type T but never calls T's destructor. NoDestructor makes it +// safer and/or more efficient to use such objects in static storage contexts: +// as global or function scope static variables. +// +// An instance of absl::NoDestructor has similar type semantics to an +// instance of T: +// +// * Constructs in the same manner as an object of type T through perfect +// forwarding. +// * Provides pointer/reference semantic access to the object of type T via +// `->`, `*`, and `get()`. +// (Note that `const NoDestructor` works like a pointer to const `T`.) +// +// An object of type NoDestructor should be defined in static storage: +// as either a global static object, or as a function scope static variable. +// +// Additionally, NoDestructor provides the following benefits: +// +// * Never calls T's destructor for the object +// * If the object is a function-local static variable, the type can be +// lazily constructed. +// +// An object of type NoDestructor is "trivially destructible" in the notion +// that its destructor is never run. Provided that an object of this type can be +// safely initialized and does not need to be cleaned up on program shutdown, +// NoDestructor allows you to define global static variables, since Google's +// C++ style guide ban on such objects doesn't apply to objects that are +// trivially destructible. +// +// Usage as Global Static Variables +// +// NoDestructor allows declaration of a global object with a non-trivial +// constructor in static storage without needing to add a destructor. +// However, such objects still need to worry about initialization order, so +// such objects should be const initialized: +// +// // Global or namespace scope. +// ABSL_CONST_INIT absl::NoDestructor reg{"foo", "bar", 8008}; +// +// Note that if your object already has a trivial destructor, you don't need to +// use NoDestructor. +// +// Usage as Function Scope Static Variables +// +// Function static objects will be lazily initialized within static storage: +// +// // Function scope. +// const std::string& MyString() { +// static const absl::NoDestructor x("foo"); +// return *x; +// } +// +// For function static variables, NoDestructor avoids heap allocation and can be +// inlined in static storage, resulting in exactly-once, thread-safe +// construction of an object, and very fast access thereafter (the cost is a few +// extra cycles). +// +// Using NoDestructor in this manner is generally better than other patterns +// which require pointer chasing: +// +// // Prefer using absl::NoDestructor instead for the static variable. +// const std::string& MyString() { +// static const std::string* x = new std::string("foo"); +// return *x; +// } +// +template +class NoDestructor { + public: + // Forwards arguments to the T's constructor: calls T(args...). + template &...), + void(NoDestructor&)>::value, + int>::type = 0> + explicit constexpr NoDestructor(Ts&&... args) + : impl_(std::forward(args)...) {} + + // Forwards copy and move construction for T. Enables usage like this: + // static NoDestructor> x{{{"1", "2", "3"}}}; + // static NoDestructor> x{{1, 2, 3}}; + explicit constexpr NoDestructor(const T& x) : impl_(x) {} + explicit constexpr NoDestructor(T&& x) + : impl_(std::move(x)) {} + + // No copying. + NoDestructor(const NoDestructor&) = delete; + NoDestructor& operator=(const NoDestructor&) = delete; + + // Pretend to be a smart pointer to T with deep constness. + // Never returns a null pointer. + T& operator*() { return *get(); } + T* operator->() { return get(); } + T* get() { return impl_.get(); } + const T& operator*() const { return *get(); } + const T* operator->() const { return get(); } + const T* get() const { return impl_.get(); } + + private: + class DirectImpl { + public: + template + explicit constexpr DirectImpl(Args&&... args) + : value_(std::forward(args)...) {} + const T* get() const { return &value_; } + T* get() { return &value_; } + + private: + T value_; + }; + + class PlacementImpl { + public: + template + explicit PlacementImpl(Args&&... args) { + new (&space_) T(std::forward(args)...); + } + const T* get() const { + return Launder(reinterpret_cast(&space_)); + } + T* get() { return Launder(reinterpret_cast(&space_)); } + + private: + template + static P* Launder(P* p) { +#if defined(__cpp_lib_launder) && __cpp_lib_launder >= 201606L + return std::launder(p); +#elif ABSL_HAVE_BUILTIN(__builtin_launder) + return __builtin_launder(p); +#else + // When `std::launder` or equivalent are not available, we rely on + // undefined behavior, which works as intended on Abseil's officially + // supported platforms as of Q3 2023. +#if defined(__GNUC__) && !defined(__clang__) +#pragma GCC diagnostic push +#pragma GCC diagnostic ignored "-Wstrict-aliasing" +#endif + return p; +#if defined(__GNUC__) && !defined(__clang__) +#pragma GCC diagnostic pop +#endif +#endif + } + + alignas(T) unsigned char space_[sizeof(T)]; + }; + + // If the object is trivially destructible we use a member directly to avoid + // potential once-init runtime initialization. It somewhat defeats the + // purpose of NoDestructor in this case, but this makes the class more + // friendly to generic code. + std::conditional_t::value, DirectImpl, + PlacementImpl> + impl_; +}; + +#ifdef ABSL_HAVE_CLASS_TEMPLATE_ARGUMENT_DEDUCTION +// Provide 'Class Template Argument Deduction': the type of NoDestructor's T +// will be the same type as the argument passed to NoDestructor's constructor. +template +NoDestructor(T) -> NoDestructor; +#endif // ABSL_HAVE_CLASS_TEMPLATE_ARGUMENT_DEDUCTION + +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_NO_DESTRUCTOR_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/no_destructor_benchmark.cc b/weight/_dep/abseil-cpp/absl/base/no_destructor_benchmark.cc new file mode 100644 index 0000000000000000000000000000000000000000..5fc88f1dfe88aad2638a8f41cf61acf5ee6b2dc7 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/no_destructor_benchmark.cc @@ -0,0 +1,165 @@ +// Copyright 2023 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include + +#include "absl/base/internal/raw_logging.h" +#include "absl/base/no_destructor.h" +#include "benchmark/benchmark.h" + +namespace { + +// Number of static-NoDestructor-in-a-function to exercise. +// This must be low enough not to hit template instantiation limits +// (happens around 1000). +constexpr int kNumObjects = 1; // set to 512 when doing benchmarks + // 1 is faster to compile: just one templated + // function instantiation + +// Size of individual objects to benchmark static-NoDestructor-in-a-function +// usage with. +constexpr int kObjSize = sizeof(void*)*1; + +// Simple object of kObjSize bytes (rounded to int). +// We benchmark complete reading of its state via Verify(). +class BM_Blob { + public: + BM_Blob(int val) { for (auto& d : data_) d = val; } + BM_Blob() : BM_Blob(-1) {} + void Verify(int val) const { // val must be the c-tor argument + for (auto& d : data_) ABSL_INTERNAL_CHECK(d == val, ""); + } + private: + int data_[kObjSize / sizeof(int) > 0 ? kObjSize / sizeof(int) : 1]; +}; + +// static-NoDestructor-in-a-function pattern instances. +// We'll instantiate kNumObjects of them. +template +const BM_Blob& NoDestrBlobFunc() { + static absl::NoDestructor x(i); + return *x; +} + +// static-heap-ptr-in-a-function pattern instances +// We'll instantiate kNumObjects of them. +template +const BM_Blob& OnHeapBlobFunc() { + static BM_Blob* x = new BM_Blob(i); + return *x; +} + +// Type for NoDestrBlobFunc or OnHeapBlobFunc. +typedef const BM_Blob& (*FuncType)(); + +// ========================================================================= // +// Simple benchmarks that read a single BM_Blob over and over, hence +// all they touch fits into L1 CPU cache: + +// Direct non-POD global variable (style guide violation) as a baseline. +static BM_Blob direct_blob(0); + +void BM_Direct(benchmark::State& state) { + for (auto s : state) { + direct_blob.Verify(0); + } +} +BENCHMARK(BM_Direct); + +void BM_NoDestr(benchmark::State& state) { + for (auto s : state) { + NoDestrBlobFunc<0>().Verify(0); + } +} +BENCHMARK(BM_NoDestr); + +void BM_OnHeap(benchmark::State& state) { + for (auto s : state) { + OnHeapBlobFunc<0>().Verify(0); + } +} +BENCHMARK(BM_OnHeap); + +// ========================================================================= // +// Benchmarks that read kNumObjects of BM_Blob over and over, hence with +// appropriate values of sizeof(BM_Blob) and kNumObjects their working set +// can exceed a given layer of CPU cache. + +// Type of benchmark to select between NoDestrBlobFunc and OnHeapBlobFunc. +enum BM_Type { kNoDestr, kOnHeap, kDirect }; + +// BlobFunc(t, i) returns the i-th function of type t. +// n must be larger than i (we'll use kNumObjects for n). +template +FuncType BlobFunc(BM_Type t, int i) { + if (i == n) { + switch (t) { + case kNoDestr: return &NoDestrBlobFunc; + case kOnHeap: return &OnHeapBlobFunc; + case kDirect: return nullptr; + } + } + return BlobFunc(t, i); +} + +template<> +FuncType BlobFunc<0>(BM_Type t, int i) { + ABSL_INTERNAL_CHECK(i == 0, ""); + switch (t) { + case kNoDestr: return &NoDestrBlobFunc<0>; + case kOnHeap: return &OnHeapBlobFunc<0>; + case kDirect: return nullptr; + } + return nullptr; +} + +// Direct non-POD global variables (style guide violation) as a baseline. +static BM_Blob direct_blobs[kNumObjects]; + +// Helper that cheaply maps benchmark iteration to randomish index in +// [0, kNumObjects). +int RandIdx(int i) { + // int64 is to avoid overflow and generating negative return values: + return (static_cast(i) * 13) % kNumObjects; +} + +// Generic benchmark working with kNumObjects for any of the possible BM_Type. +template +void BM_Many(benchmark::State& state) { + FuncType funcs[kNumObjects]; + for (int i = 0; i < kNumObjects; ++i) { + funcs[i] = BlobFunc(t, i); + } + if (t == kDirect) { + for (auto s : state) { + int idx = RandIdx(state.iterations()); + direct_blobs[idx].Verify(-1); + } + } else { + for (auto s : state) { + int idx = RandIdx(state.iterations()); + funcs[idx]().Verify(idx); + } + } +} + +void BM_DirectMany(benchmark::State& state) { BM_Many(state); } +void BM_NoDestrMany(benchmark::State& state) { BM_Many(state); } +void BM_OnHeapMany(benchmark::State& state) { BM_Many(state); } + +BENCHMARK(BM_DirectMany); +BENCHMARK(BM_NoDestrMany); +BENCHMARK(BM_OnHeapMany); + +} // namespace diff --git a/weight/_dep/abseil-cpp/absl/base/no_destructor_test.cc b/weight/_dep/abseil-cpp/absl/base/no_destructor_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..71693c7e2622d4d9a73272979e1f3a8161e235f2 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/no_destructor_test.cc @@ -0,0 +1,209 @@ +// Copyright 2023 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/no_destructor.h" + +#include +#include +#include +#include +#include + +#include "gmock/gmock.h" +#include "gtest/gtest.h" +#include "absl/base/config.h" +#include "absl/base/internal/raw_logging.h" + +namespace { + +struct Blob { + Blob() : val(42) {} + Blob(int x, int y) : val(x + y) {} + Blob(std::initializer_list xs) { + val = 0; + for (auto& x : xs) val += x; + } + + Blob(const Blob& /*b*/) = delete; + Blob(Blob&& b) noexcept : val(b.val) { + b.moved_out = true; + } // moving is fine + + // no crash: NoDestructor indeed does not destruct (the moved-out Blob + // temporaries do get destroyed though) + ~Blob() { ABSL_INTERNAL_CHECK(moved_out, "~Blob"); } + + int val; + bool moved_out = false; +}; + +struct TypeWithDeletedDestructor { + ~TypeWithDeletedDestructor() = delete; +}; + +TEST(NoDestructorTest, DestructorNeverCalled) { + absl::NoDestructor a; + (void)a; +} + +TEST(NoDestructorTest, Noncopyable) { + using T = absl::NoDestructor; + + EXPECT_FALSE((std::is_constructible::value)); + EXPECT_FALSE((std::is_constructible::value)); + EXPECT_FALSE((std::is_constructible::value)); + EXPECT_FALSE((std::is_constructible::value)); + + EXPECT_FALSE((std::is_assignable::value)); + EXPECT_FALSE((std::is_assignable::value)); + EXPECT_FALSE((std::is_assignable::value)); + EXPECT_FALSE((std::is_assignable::value)); +} + +TEST(NoDestructorTest, Interface) { + EXPECT_TRUE(std::is_trivially_destructible>::value); + EXPECT_TRUE( + std::is_trivially_destructible>::value); + { + absl::NoDestructor b; // default c-tor + // access: *, ->, get() + EXPECT_EQ(42, (*b).val); + (*b).val = 55; + EXPECT_EQ(55, b->val); + b->val = 66; + EXPECT_EQ(66, b.get()->val); + b.get()->val = 42; // NOLINT + EXPECT_EQ(42, (*b).val); + } + { + absl::NoDestructor b(70, 7); // regular c-tor, const + EXPECT_EQ(77, (*b).val); + EXPECT_EQ(77, b->val); + EXPECT_EQ(77, b.get()->val); + } + { + const absl::NoDestructor b{ + {20, 28, 40}}; // init-list c-tor, deep const + // This only works in clang, not in gcc: + // const absl::NoDestructor b({20, 28, 40}); + EXPECT_EQ(88, (*b).val); + EXPECT_EQ(88, b->val); + EXPECT_EQ(88, b.get()->val); + } +} + +TEST(NoDestructorTest, SfinaeRegressionAbstractArg) { + struct Abstract { + virtual ~Abstract() = default; + virtual int foo() const = 0; + }; + + struct Concrete : Abstract { + int foo() const override { return 17; } + }; + + struct UsesAbstractInConstructor { + explicit UsesAbstractInConstructor(const Abstract& abstract) + : i(abstract.foo()) {} + int i; + }; + + Concrete input; + absl::NoDestructor foo1(input); + EXPECT_EQ(foo1->i, 17); + absl::NoDestructor foo2( + static_cast(input)); + EXPECT_EQ(foo2->i, 17); +} + +// ========================================================================= // + +std::string* Str0() { + static absl::NoDestructor x; + return x.get(); +} + +extern const std::string& Str2(); + +const char* Str1() { + static absl::NoDestructor x(Str2() + "_Str1"); + return x->c_str(); +} + +const std::string& Str2() { + static absl::NoDestructor x("Str2"); + return *x; +} + +const std::string& Str2Copy() { + // Exercise copy construction + static absl::NoDestructor x(Str2()); + return *x; +} + +typedef std::array MyArray; +const MyArray& Array() { + static absl::NoDestructor x{{{"foo", "bar", "baz"}}}; + // This only works in clang, not in gcc: + // static absl::NoDestructor x({{"foo", "bar", "baz"}}); + return *x; +} + +typedef std::vector MyVector; +const MyVector& Vector() { + static absl::NoDestructor x{{1, 2, 3}}; + return *x; +} + +const int& Int() { + static absl::NoDestructor x; + return *x; +} + +TEST(NoDestructorTest, StaticPattern) { + EXPECT_TRUE( + std::is_trivially_destructible>::value); + EXPECT_TRUE( + std::is_trivially_destructible>::value); + EXPECT_TRUE( + std::is_trivially_destructible>::value); + EXPECT_TRUE(std::is_trivially_destructible>::value); + + EXPECT_EQ(*Str0(), ""); + Str0()->append("foo"); + EXPECT_EQ(*Str0(), "foo"); + + EXPECT_EQ(std::string(Str1()), "Str2_Str1"); + + EXPECT_EQ(Str2(), "Str2"); + EXPECT_EQ(Str2Copy(), "Str2"); + + EXPECT_THAT(Array(), testing::ElementsAre("foo", "bar", "baz")); + + EXPECT_THAT(Vector(), testing::ElementsAre(1, 2, 3)); + + EXPECT_EQ(0, Int()); // should get zero-initialized +} + +#ifdef ABSL_HAVE_CLASS_TEMPLATE_ARGUMENT_DEDUCTION +// This would fail to compile if Class Template Argument Deduction was not +// provided for absl::NoDestructor. +TEST(NoDestructorTest, ClassTemplateArgumentDeduction) { + absl::NoDestructor i(1); + static_assert(std::is_same>::value, + "Expected deduced type to be int."); +} +#endif + +} // namespace diff --git a/weight/_dep/abseil-cpp/absl/base/nullability.h b/weight/_dep/abseil-cpp/absl/base/nullability.h new file mode 100644 index 0000000000000000000000000000000000000000..6f49b6f535b6461ed98c38f2debdbaa43f957f01 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/nullability.h @@ -0,0 +1,224 @@ +// Copyright 2023 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// ----------------------------------------------------------------------------- +// File: nullability.h +// ----------------------------------------------------------------------------- +// +// This header file defines a set of "templated annotations" for designating the +// expected nullability of pointers. These annotations allow you to designate +// pointers in one of three classification states: +// +// * "Non-null" (for pointers annotated `Nonnull`), indicating that it is +// invalid for the given pointer to ever be null. +// * "Nullable" (for pointers annotated `Nullable`), indicating that it is +// valid for the given pointer to be null. +// * "Unknown" (for pointers annotated `NullabilityUnknown`), indicating +// that the given pointer has not been yet classified as either nullable or +// non-null. This is the default state of unannotated pointers. +// +// NOTE: unannotated pointers implicitly bear the annotation +// `NullabilityUnknown`; you should rarely, if ever, see this annotation used +// in the codebase explicitly. +// +// ----------------------------------------------------------------------------- +// Nullability and Contracts +// ----------------------------------------------------------------------------- +// +// These nullability annotations allow you to more clearly specify contracts on +// software components by narrowing the *preconditions*, *postconditions*, and +// *invariants* of pointer state(s) in any given interface. It then depends on +// context who is responsible for fulfilling the annotation's requirements. +// +// For example, a function may receive a pointer argument. Designating that +// pointer argument as "non-null" tightens the precondition of the contract of +// that function. It is then the responsibility of anyone calling such a +// function to ensure that the passed pointer is not null. +// +// Similarly, a function may have a pointer as a return value. Designating that +// return value as "non-null" tightens the postcondition of the contract of that +// function. In this case, however, it is the responsibility of the function +// itself to ensure that the returned pointer is not null. +// +// Clearly defining these contracts allows providers (and consumers) of such +// pointers to have more confidence in their null state. If a function declares +// a return value as "non-null", for example, the caller should not need to +// check whether the returned value is `nullptr`; it can simply assume the +// pointer is valid. +// +// Of course most interfaces already have expectations on the nullability state +// of pointers, and these expectations are, in effect, a contract; often, +// however, those contracts are either poorly or partially specified, assumed, +// or misunderstood. These nullability annotations are designed to allow you to +// formalize those contracts within the codebase. +// +// ----------------------------------------------------------------------------- +// Using Nullability Annotations +// ----------------------------------------------------------------------------- +// +// It is important to note that these annotations are not distinct strong +// *types*. They are alias templates defined to be equal to the underlying +// pointer type. A pointer annotated `Nonnull`, for example, is simply a +// pointer of type `T*`. Each annotation acts as a form of documentation about +// the contract for the given pointer. Each annotation requires providers or +// consumers of these pointers across API boundaries to take appropriate steps +// when setting or using these pointers: +// +// * "Non-null" pointers should never be null. It is the responsibility of the +// provider of this pointer to ensure that the pointer may never be set to +// null. Consumers of such pointers can treat such pointers as non-null. +// * "Nullable" pointers may or may not be null. Consumers of such pointers +// should precede any usage of that pointer (e.g. a dereference operation) +// with a a `nullptr` check. +// * "Unknown" pointers may be either "non-null" or "nullable" but have not been +// definitively determined to be in either classification state. Providers of +// such pointers across API boundaries should determine -- over time -- to +// annotate the pointer in either of the above two states. Consumers of such +// pointers across an API boundary should continue to treat such pointers as +// they currently do. +// +// Example: +// +// // PaySalary() requires the passed pointer to an `Employee` to be non-null. +// void PaySalary(absl::Nonnull e) { +// pay(e->salary); // OK to dereference +// } +// +// // CompleteTransaction() guarantees the returned pointer to an `Account` to +// // be non-null. +// absl::Nonnull balance CompleteTransaction(double fee) { +// ... +// } +// +// // Note that specifying a nullability annotation does not prevent someone +// // from violating the contract: +// +// Nullable find(Map& employees, std::string_view name); +// +// void g(Map& employees) { +// Employee *e = find(employees, "Pat"); +// // `e` can now be null. +// PaySalary(e); // Violates contract, but compiles! +// } +// +// Nullability annotations, in other words, are useful for defining and +// narrowing contracts; *enforcement* of those contracts depends on use and any +// additional (static or dynamic analysis) tooling. +// +// NOTE: The "unknown" annotation state indicates that a pointer's contract has +// not yet been positively identified. The unknown state therefore acts as a +// form of documentation of your technical debt, and a codebase that adopts +// nullability annotations should aspire to annotate every pointer as either +// "non-null" or "nullable". +// +// ----------------------------------------------------------------------------- +// Applicability of Nullability Annotations +// ----------------------------------------------------------------------------- +// +// By default, nullability annotations are applicable to raw and smart +// pointers. User-defined types can indicate compatibility with nullability +// annotations by providing an `absl_nullability_compatible` nested type. The +// actual definition of this inner type is not relevant as it is used merely as +// a marker. It is common to use a using declaration of +// `absl_nullability_compatible` set to void. +// +// // Example: +// struct MyPtr { +// using absl_nullability_compatible = void; +// ... +// }; +// +// DISCLAIMER: +// =========================================================================== +// These nullability annotations are primarily a human readable signal about the +// intended contract of the pointer. They are not *types* and do not currently +// provide any correctness guarantees. For example, a pointer annotated as +// `Nonnull` is *not guaranteed* to be non-null, and the compiler won't +// alert or prevent assignment of a `Nullable` to a `Nonnull`. +// =========================================================================== +#ifndef ABSL_BASE_NULLABILITY_H_ +#define ABSL_BASE_NULLABILITY_H_ + +#include "absl/base/internal/nullability_impl.h" + +namespace absl { + +// absl::Nonnull +// +// The indicated pointer is never null. It is the responsibility of the provider +// of this pointer across an API boundary to ensure that the pointer is never be +// set to null. Consumers of this pointer across an API boundary may safely +// dereference the pointer. +// +// Example: +// +// // `employee` is designated as not null. +// void PaySalary(absl::Nonnull employee) { +// pay(*employee); // OK to dereference +// } +template +using Nonnull = nullability_internal::NonnullImpl; + +// absl::Nullable +// +// The indicated pointer may, by design, be either null or non-null. Consumers +// of this pointer across an API boundary should perform a `nullptr` check +// before performing any operation using the pointer. +// +// Example: +// +// // `employee` may be null. +// void PaySalary(absl::Nullable employee) { +// if (employee != nullptr) { +// Pay(*employee); // OK to dereference +// } +// } +template +using Nullable = nullability_internal::NullableImpl; + +// absl::NullabilityUnknown (default) +// +// The indicated pointer has not yet been determined to be definitively +// "non-null" or "nullable." Providers of such pointers across API boundaries +// should, over time, annotate such pointers as either "non-null" or "nullable." +// Consumers of these pointers across an API boundary should treat such pointers +// with the same caution they treat currently unannotated pointers. Most +// existing code will have "unknown" pointers, which should eventually be +// migrated into one of the above two nullability states: `Nonnull` or +// `Nullable`. +// +// NOTE: Because this annotation is the global default state, pointers without +// any annotation are assumed to have "unknown" semantics. This assumption is +// designed to minimize churn and reduce clutter within the codebase. +// +// Example: +// +// // `employee`s nullability state is unknown. +// void PaySalary(absl::NullabilityUnknown employee) { +// Pay(*employee); // Potentially dangerous. API provider should investigate. +// } +// +// Note that a pointer without an annotation, by default, is assumed to have the +// annotation `NullabilityUnknown`. +// +// // `employee`s nullability state is unknown. +// void PaySalary(Employee* employee) { +// Pay(*employee); // Potentially dangerous. API provider should investigate. +// } +template +using NullabilityUnknown = nullability_internal::NullabilityUnknownImpl; + +} // namespace absl + +#endif // ABSL_BASE_NULLABILITY_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/nullability_test.cc b/weight/_dep/abseil-cpp/absl/base/nullability_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..028ea6ca1eeb7d41ace17e94e596bb33956359ed --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/nullability_test.cc @@ -0,0 +1,129 @@ +// Copyright 2023 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/nullability.h" + +#include +#include +#include + +#include "gtest/gtest.h" +#include "absl/base/attributes.h" + +namespace { +using ::absl::Nonnull; +using ::absl::NullabilityUnknown; +using ::absl::Nullable; + +void funcWithNonnullArg(Nonnull /*arg*/) {} +template +void funcWithDeducedNonnullArg(Nonnull /*arg*/) {} + +TEST(NonnullTest, NonnullArgument) { + int var = 0; + funcWithNonnullArg(&var); + funcWithDeducedNonnullArg(&var); +} + +Nonnull funcWithNonnullReturn() { + static int var = 0; + return &var; +} + +TEST(NonnullTest, NonnullReturn) { + auto var = funcWithNonnullReturn(); + (void)var; +} + +TEST(PassThroughTest, PassesThroughRawPointerToInt) { + EXPECT_TRUE((std::is_same, int*>::value)); + EXPECT_TRUE((std::is_same, int*>::value)); + EXPECT_TRUE((std::is_same, int*>::value)); +} + +TEST(PassThroughTest, PassesThroughRawPointerToVoid) { + EXPECT_TRUE((std::is_same, void*>::value)); + EXPECT_TRUE((std::is_same, void*>::value)); + EXPECT_TRUE((std::is_same, void*>::value)); +} + +TEST(PassThroughTest, PassesThroughUniquePointerToInt) { + using T = std::unique_ptr; + EXPECT_TRUE((std::is_same, T>::value)); + EXPECT_TRUE((std::is_same, T>::value)); + EXPECT_TRUE((std::is_same, T>::value)); +} + +TEST(PassThroughTest, PassesThroughSharedPointerToInt) { + using T = std::shared_ptr; + EXPECT_TRUE((std::is_same, T>::value)); + EXPECT_TRUE((std::is_same, T>::value)); + EXPECT_TRUE((std::is_same, T>::value)); +} + +TEST(PassThroughTest, PassesThroughSharedPointerToVoid) { + using T = std::shared_ptr; + EXPECT_TRUE((std::is_same, T>::value)); + EXPECT_TRUE((std::is_same, T>::value)); + EXPECT_TRUE((std::is_same, T>::value)); +} + +TEST(PassThroughTest, PassesThroughPointerToMemberObject) { + using T = decltype(&std::pair::first); + EXPECT_TRUE((std::is_same, T>::value)); + EXPECT_TRUE((std::is_same, T>::value)); + EXPECT_TRUE((std::is_same, T>::value)); +} + +TEST(PassThroughTest, PassesThroughPointerToMemberFunction) { + using T = decltype(&std::unique_ptr::reset); + EXPECT_TRUE((std::is_same, T>::value)); + EXPECT_TRUE((std::is_same, T>::value)); + EXPECT_TRUE((std::is_same, T>::value)); +} + +} // namespace + +// Nullable ADL lookup test +namespace util { +// Helper for NullableAdlTest. Returns true, denoting that argument-dependent +// lookup found this implementation of DidAdlWin. Must be in namespace +// util itself, not a nested anonymous namespace. +template +bool DidAdlWin(T*) { + return true; +} + +// Because this type is defined in namespace util, an unqualified call to +// DidAdlWin with a pointer to MakeAdlWin will find the above implementation. +struct MakeAdlWin {}; +} // namespace util + +namespace { +// Returns false, denoting that ADL did not inspect namespace util. If it +// had, the better match (T*) above would have won out over the (...) here. +bool DidAdlWin(...) { return false; } + +TEST(NullableAdlTest, NullableAddsNothingToArgumentDependentLookup) { + // Treatment: util::Nullable contributes nothing to ADL because + // int* itself doesn't. + EXPECT_FALSE(DidAdlWin((int*)nullptr)); + EXPECT_FALSE(DidAdlWin((Nullable)nullptr)); + + // Control: Argument-dependent lookup does find the implementation in + // namespace util when the underlying pointee type resides there. + EXPECT_TRUE(DidAdlWin((util::MakeAdlWin*)nullptr)); + EXPECT_TRUE(DidAdlWin((Nullable)nullptr)); +} +} // namespace diff --git a/weight/_dep/abseil-cpp/absl/base/optimization.h b/weight/_dep/abseil-cpp/absl/base/optimization.h new file mode 100644 index 0000000000000000000000000000000000000000..f9859958999b8452c86d48eae386141f1fc8448f --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/optimization.h @@ -0,0 +1,305 @@ +// +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// ----------------------------------------------------------------------------- +// File: optimization.h +// ----------------------------------------------------------------------------- +// +// This header file defines portable macros for performance optimization. + +#ifndef ABSL_BASE_OPTIMIZATION_H_ +#define ABSL_BASE_OPTIMIZATION_H_ + +#include + +#include "absl/base/config.h" +#include "absl/base/options.h" + +// ABSL_BLOCK_TAIL_CALL_OPTIMIZATION +// +// Instructs the compiler to avoid optimizing tail-call recursion. This macro is +// useful when you wish to preserve the existing function order within a stack +// trace for logging, debugging, or profiling purposes. +// +// Example: +// +// int f() { +// int result = g(); +// ABSL_BLOCK_TAIL_CALL_OPTIMIZATION(); +// return result; +// } +#if defined(__pnacl__) +#define ABSL_BLOCK_TAIL_CALL_OPTIMIZATION() if (volatile int x = 0) { (void)x; } +#elif defined(__clang__) +// Clang will not tail call given inline volatile assembly. +#define ABSL_BLOCK_TAIL_CALL_OPTIMIZATION() __asm__ __volatile__("") +#elif defined(__GNUC__) +// GCC will not tail call given inline volatile assembly. +#define ABSL_BLOCK_TAIL_CALL_OPTIMIZATION() __asm__ __volatile__("") +#elif defined(_MSC_VER) +#include +// The __nop() intrinsic blocks the optimisation. +#define ABSL_BLOCK_TAIL_CALL_OPTIMIZATION() __nop() +#else +#define ABSL_BLOCK_TAIL_CALL_OPTIMIZATION() if (volatile int x = 0) { (void)x; } +#endif + +// ABSL_CACHELINE_SIZE +// +// Explicitly defines the size of the L1 cache for purposes of alignment. +// Setting the cacheline size allows you to specify that certain objects be +// aligned on a cacheline boundary with `ABSL_CACHELINE_ALIGNED` declarations. +// (See below.) +// +// NOTE: this macro should be replaced with the following C++17 features, when +// those are generally available: +// +// * `std::hardware_constructive_interference_size` +// * `std::hardware_destructive_interference_size` +// +// See http://www.open-std.org/jtc1/sc22/wg21/docs/papers/2016/p0154r1.html +// for more information. +#if defined(__GNUC__) +// Cache line alignment +#if defined(__i386__) || defined(__x86_64__) +#define ABSL_CACHELINE_SIZE 64 +#elif defined(__powerpc64__) +#define ABSL_CACHELINE_SIZE 128 +#elif defined(__aarch64__) +// We would need to read special register ctr_el0 to find out L1 dcache size. +// This value is a good estimate based on a real aarch64 machine. +#define ABSL_CACHELINE_SIZE 64 +#elif defined(__arm__) +// Cache line sizes for ARM: These values are not strictly correct since +// cache line sizes depend on implementations, not architectures. There +// are even implementations with cache line sizes configurable at boot +// time. +#if defined(__ARM_ARCH_5T__) +#define ABSL_CACHELINE_SIZE 32 +#elif defined(__ARM_ARCH_7A__) +#define ABSL_CACHELINE_SIZE 64 +#endif +#endif +#endif + +#ifndef ABSL_CACHELINE_SIZE +// A reasonable default guess. Note that overestimates tend to waste more +// space, while underestimates tend to waste more time. +#define ABSL_CACHELINE_SIZE 64 +#endif + +// ABSL_CACHELINE_ALIGNED +// +// Indicates that the declared object be cache aligned using +// `ABSL_CACHELINE_SIZE` (see above). Cacheline aligning objects allows you to +// load a set of related objects in the L1 cache for performance improvements. +// Cacheline aligning objects properly allows constructive memory sharing and +// prevents destructive (or "false") memory sharing. +// +// NOTE: callers should replace uses of this macro with `alignas()` using +// `std::hardware_constructive_interference_size` and/or +// `std::hardware_destructive_interference_size` when C++17 becomes available to +// them. +// +// See http://www.open-std.org/jtc1/sc22/wg21/docs/papers/2016/p0154r1.html +// for more information. +// +// On some compilers, `ABSL_CACHELINE_ALIGNED` expands to an `__attribute__` +// or `__declspec` attribute. For compilers where this is not known to work, +// the macro expands to nothing. +// +// No further guarantees are made here. The result of applying the macro +// to variables and types is always implementation-defined. +// +// WARNING: It is easy to use this attribute incorrectly, even to the point +// of causing bugs that are difficult to diagnose, crash, etc. It does not +// of itself guarantee that objects are aligned to a cache line. +// +// NOTE: Some compilers are picky about the locations of annotations such as +// this attribute, so prefer to put it at the beginning of your declaration. +// For example, +// +// ABSL_CACHELINE_ALIGNED static Foo* foo = ... +// +// class ABSL_CACHELINE_ALIGNED Bar { ... +// +// Recommendations: +// +// 1) Consult compiler documentation; this comment is not kept in sync as +// toolchains evolve. +// 2) Verify your use has the intended effect. This often requires inspecting +// the generated machine code. +// 3) Prefer applying this attribute to individual variables. Avoid +// applying it to types. This tends to localize the effect. +#if defined(__clang__) || defined(__GNUC__) +#define ABSL_CACHELINE_ALIGNED __attribute__((aligned(ABSL_CACHELINE_SIZE))) +#elif defined(_MSC_VER) +#define ABSL_CACHELINE_ALIGNED __declspec(align(ABSL_CACHELINE_SIZE)) +#else +#define ABSL_CACHELINE_ALIGNED +#endif + +// ABSL_PREDICT_TRUE, ABSL_PREDICT_FALSE +// +// Enables the compiler to prioritize compilation using static analysis for +// likely paths within a boolean branch. +// +// Example: +// +// if (ABSL_PREDICT_TRUE(expression)) { +// return result; // Faster if more likely +// } else { +// return 0; +// } +// +// Compilers can use the information that a certain branch is not likely to be +// taken (for instance, a CHECK failure) to optimize for the common case in +// the absence of better information (ie. compiling gcc with `-fprofile-arcs`). +// +// Recommendation: Modern CPUs dynamically predict branch execution paths, +// typically with accuracy greater than 97%. As a result, annotating every +// branch in a codebase is likely counterproductive; however, annotating +// specific branches that are both hot and consistently mispredicted is likely +// to yield performance improvements. +#if ABSL_HAVE_BUILTIN(__builtin_expect) || \ + (defined(__GNUC__) && !defined(__clang__)) +#define ABSL_PREDICT_FALSE(x) (__builtin_expect(false || (x), false)) +#define ABSL_PREDICT_TRUE(x) (__builtin_expect(false || (x), true)) +#else +#define ABSL_PREDICT_FALSE(x) (x) +#define ABSL_PREDICT_TRUE(x) (x) +#endif + +// `ABSL_INTERNAL_IMMEDIATE_ABORT_IMPL()` aborts the program in the fastest +// possible way, with no attempt at logging. One use is to implement hardening +// aborts with ABSL_OPTION_HARDENED. Since this is an internal symbol, it +// should not be used directly outside of Abseil. +#if ABSL_HAVE_BUILTIN(__builtin_trap) || \ + (defined(__GNUC__) && !defined(__clang__)) +#define ABSL_INTERNAL_IMMEDIATE_ABORT_IMPL() __builtin_trap() +#else +#define ABSL_INTERNAL_IMMEDIATE_ABORT_IMPL() abort() +#endif + +// `ABSL_INTERNAL_UNREACHABLE_IMPL()` is the platform specific directive to +// indicate that a statement is unreachable, and to allow the compiler to +// optimize accordingly. Clients should use `ABSL_UNREACHABLE()`, which is +// defined below. +#if defined(__cpp_lib_unreachable) && __cpp_lib_unreachable >= 202202L +#define ABSL_INTERNAL_UNREACHABLE_IMPL() std::unreachable() +#elif defined(__GNUC__) || ABSL_HAVE_BUILTIN(__builtin_unreachable) +#define ABSL_INTERNAL_UNREACHABLE_IMPL() __builtin_unreachable() +#elif ABSL_HAVE_BUILTIN(__builtin_assume) +#define ABSL_INTERNAL_UNREACHABLE_IMPL() __builtin_assume(false) +#elif defined(_MSC_VER) +#define ABSL_INTERNAL_UNREACHABLE_IMPL() __assume(false) +#else +#define ABSL_INTERNAL_UNREACHABLE_IMPL() +#endif + +// `ABSL_UNREACHABLE()` is an unreachable statement. A program which reaches +// one has undefined behavior, and the compiler may optimize accordingly. +#if ABSL_OPTION_HARDENED == 1 && defined(NDEBUG) +// Abort in hardened mode to avoid dangerous undefined behavior. +#define ABSL_UNREACHABLE() \ + do { \ + ABSL_INTERNAL_IMMEDIATE_ABORT_IMPL(); \ + ABSL_INTERNAL_UNREACHABLE_IMPL(); \ + } while (false) +#else +// The assert only fires in debug mode to aid in debugging. +// When NDEBUG is defined, reaching ABSL_UNREACHABLE() is undefined behavior. +#define ABSL_UNREACHABLE() \ + do { \ + /* NOLINTNEXTLINE: misc-static-assert */ \ + assert(false && "ABSL_UNREACHABLE reached"); \ + ABSL_INTERNAL_UNREACHABLE_IMPL(); \ + } while (false) +#endif + +// ABSL_ASSUME(cond) +// +// Informs the compiler that a condition is always true and that it can assume +// it to be true for optimization purposes. +// +// WARNING: If the condition is false, the program can produce undefined and +// potentially dangerous behavior. +// +// In !NDEBUG mode, the condition is checked with an assert(). +// +// NOTE: The expression must not have side effects, as it may only be evaluated +// in some compilation modes and not others. Some compilers may issue a warning +// if the compiler cannot prove the expression has no side effects. For example, +// the expression should not use a function call since the compiler cannot prove +// that a function call does not have side effects. +// +// Example: +// +// int x = ...; +// ABSL_ASSUME(x >= 0); +// // The compiler can optimize the division to a simple right shift using the +// // assumption specified above. +// int y = x / 16; +// +#if !defined(NDEBUG) +#define ABSL_ASSUME(cond) assert(cond) +#elif ABSL_HAVE_BUILTIN(__builtin_assume) +#define ABSL_ASSUME(cond) __builtin_assume(cond) +#elif defined(_MSC_VER) +#define ABSL_ASSUME(cond) __assume(cond) +#elif defined(__cpp_lib_unreachable) && __cpp_lib_unreachable >= 202202L +#define ABSL_ASSUME(cond) \ + do { \ + if (!(cond)) std::unreachable(); \ + } while (false) +#elif defined(__GNUC__) || ABSL_HAVE_BUILTIN(__builtin_unreachable) +#define ABSL_ASSUME(cond) \ + do { \ + if (!(cond)) __builtin_unreachable(); \ + } while (false) +#else +#define ABSL_ASSUME(cond) \ + do { \ + static_cast(false && (cond)); \ + } while (false) +#endif + +// ABSL_INTERNAL_UNIQUE_SMALL_NAME(cond) +// This macro forces small unique name on a static file level symbols like +// static local variables or static functions. This is intended to be used in +// macro definitions to optimize the cost of generated code. Do NOT use it on +// symbols exported from translation unit since it may cause a link time +// conflict. +// +// Example: +// +// #define MY_MACRO(txt) +// namespace { +// char VeryVeryLongVarName[] ABSL_INTERNAL_UNIQUE_SMALL_NAME() = txt; +// const char* VeryVeryLongFuncName() ABSL_INTERNAL_UNIQUE_SMALL_NAME(); +// const char* VeryVeryLongFuncName() { return txt; } +// } +// + +#if defined(__GNUC__) +#define ABSL_INTERNAL_UNIQUE_SMALL_NAME2(x) #x +#define ABSL_INTERNAL_UNIQUE_SMALL_NAME1(x) ABSL_INTERNAL_UNIQUE_SMALL_NAME2(x) +#define ABSL_INTERNAL_UNIQUE_SMALL_NAME() \ + asm(ABSL_INTERNAL_UNIQUE_SMALL_NAME1(.absl.__COUNTER__)) +#else +#define ABSL_INTERNAL_UNIQUE_SMALL_NAME() +#endif + +#endif // ABSL_BASE_OPTIMIZATION_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/optimization_test.cc b/weight/_dep/abseil-cpp/absl/base/optimization_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..e83369f322616813b86fffc3021073cc8e2aeb2a --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/optimization_test.cc @@ -0,0 +1,129 @@ +// Copyright 2020 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/optimization.h" + +#include "gtest/gtest.h" +#include "absl/types/optional.h" + +namespace { + +// Tests for the ABSL_PREDICT_TRUE and ABSL_PREDICT_FALSE macros. +// The tests only verify that the macros are functionally correct - i.e. code +// behaves as if they weren't used. They don't try to check their impact on +// optimization. + +TEST(PredictTest, PredictTrue) { + EXPECT_TRUE(ABSL_PREDICT_TRUE(true)); + EXPECT_FALSE(ABSL_PREDICT_TRUE(false)); + EXPECT_TRUE(ABSL_PREDICT_TRUE(1 == 1)); + EXPECT_FALSE(ABSL_PREDICT_TRUE(1 == 2)); + + if (ABSL_PREDICT_TRUE(false)) ADD_FAILURE(); + if (!ABSL_PREDICT_TRUE(true)) ADD_FAILURE(); + + EXPECT_TRUE(ABSL_PREDICT_TRUE(true) && true); + EXPECT_TRUE(ABSL_PREDICT_TRUE(true) || false); +} + +TEST(PredictTest, PredictFalse) { + EXPECT_TRUE(ABSL_PREDICT_FALSE(true)); + EXPECT_FALSE(ABSL_PREDICT_FALSE(false)); + EXPECT_TRUE(ABSL_PREDICT_FALSE(1 == 1)); + EXPECT_FALSE(ABSL_PREDICT_FALSE(1 == 2)); + + if (ABSL_PREDICT_FALSE(false)) ADD_FAILURE(); + if (!ABSL_PREDICT_FALSE(true)) ADD_FAILURE(); + + EXPECT_TRUE(ABSL_PREDICT_FALSE(true) && true); + EXPECT_TRUE(ABSL_PREDICT_FALSE(true) || false); +} + +TEST(PredictTest, OneEvaluation) { + // Verify that the expression is only evaluated once. + int x = 0; + if (ABSL_PREDICT_TRUE((++x) == 0)) ADD_FAILURE(); + EXPECT_EQ(x, 1); + if (ABSL_PREDICT_FALSE((++x) == 0)) ADD_FAILURE(); + EXPECT_EQ(x, 2); +} + +TEST(PredictTest, OperatorOrder) { + // Verify that operator order inside and outside the macro behaves well. + // These would fail for a naive '#define ABSL_PREDICT_TRUE(x) x' + EXPECT_TRUE(ABSL_PREDICT_TRUE(1 && 2) == true); + EXPECT_TRUE(ABSL_PREDICT_FALSE(1 && 2) == true); + EXPECT_TRUE(!ABSL_PREDICT_TRUE(1 == 2)); + EXPECT_TRUE(!ABSL_PREDICT_FALSE(1 == 2)); +} + +TEST(PredictTest, Pointer) { + const int x = 3; + const int *good_intptr = &x; + const int *null_intptr = nullptr; + EXPECT_TRUE(ABSL_PREDICT_TRUE(good_intptr)); + EXPECT_FALSE(ABSL_PREDICT_TRUE(null_intptr)); + EXPECT_TRUE(ABSL_PREDICT_FALSE(good_intptr)); + EXPECT_FALSE(ABSL_PREDICT_FALSE(null_intptr)); +} + +TEST(PredictTest, Optional) { + // Note: An optional's truth value is the value's existence, not its truth. + absl::optional has_value(false); + absl::optional no_value; + EXPECT_TRUE(ABSL_PREDICT_TRUE(has_value)); + EXPECT_FALSE(ABSL_PREDICT_TRUE(no_value)); + EXPECT_TRUE(ABSL_PREDICT_FALSE(has_value)); + EXPECT_FALSE(ABSL_PREDICT_FALSE(no_value)); +} + +class ImplictlyConvertibleToBool { + public: + explicit ImplictlyConvertibleToBool(bool value) : value_(value) {} + operator bool() const { // NOLINT(google-explicit-constructor) + return value_; + } + + private: + bool value_; +}; + +TEST(PredictTest, ImplicitBoolConversion) { + const ImplictlyConvertibleToBool is_true(true); + const ImplictlyConvertibleToBool is_false(false); + if (!ABSL_PREDICT_TRUE(is_true)) ADD_FAILURE(); + if (ABSL_PREDICT_TRUE(is_false)) ADD_FAILURE(); + if (!ABSL_PREDICT_FALSE(is_true)) ADD_FAILURE(); + if (ABSL_PREDICT_FALSE(is_false)) ADD_FAILURE(); +} + +class ExplictlyConvertibleToBool { + public: + explicit ExplictlyConvertibleToBool(bool value) : value_(value) {} + explicit operator bool() const { return value_; } + + private: + bool value_; +}; + +TEST(PredictTest, ExplicitBoolConversion) { + const ExplictlyConvertibleToBool is_true(true); + const ExplictlyConvertibleToBool is_false(false); + if (!ABSL_PREDICT_TRUE(is_true)) ADD_FAILURE(); + if (ABSL_PREDICT_TRUE(is_false)) ADD_FAILURE(); + if (!ABSL_PREDICT_FALSE(is_true)) ADD_FAILURE(); + if (ABSL_PREDICT_FALSE(is_false)) ADD_FAILURE(); +} + +} // namespace diff --git a/weight/_dep/abseil-cpp/absl/base/options.h b/weight/_dep/abseil-cpp/absl/base/options.h new file mode 100644 index 0000000000000000000000000000000000000000..d7bf8cffe6dff9c719f45e5fd0d6f17a4f456e33 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/options.h @@ -0,0 +1,258 @@ +// Copyright 2019 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// ----------------------------------------------------------------------------- +// File: options.h +// ----------------------------------------------------------------------------- +// +// This file contains Abseil configuration options for setting specific +// implementations instead of letting Abseil determine which implementation to +// use at compile-time. Setting these options may be useful for package or build +// managers who wish to guarantee ABI stability within binary builds (which are +// otherwise difficult to enforce). +// +// *** IMPORTANT NOTICE FOR PACKAGE MANAGERS: It is important that +// maintainers of package managers who wish to package Abseil read and +// understand this file! *** +// +// Abseil contains a number of possible configuration endpoints, based on +// parameters such as the detected platform, language version, or command-line +// flags used to invoke the underlying binary. As is the case with all +// libraries, binaries which contain Abseil code must ensure that separate +// packages use the same compiled copy of Abseil to avoid a diamond dependency +// problem, which can occur if two packages built with different Abseil +// configuration settings are linked together. Diamond dependency problems in +// C++ may manifest as violations to the One Definition Rule (ODR) (resulting in +// linker errors), or undefined behavior (resulting in crashes). +// +// Diamond dependency problems can be avoided if all packages utilize the same +// exact version of Abseil. Building from source code with the same compilation +// parameters is the easiest way to avoid such dependency problems. However, for +// package managers who cannot control such compilation parameters, we are +// providing the file to allow you to inject ABI (Application Binary Interface) +// stability across builds. Settings options in this file will neither change +// API nor ABI, providing a stable copy of Abseil between packages. +// +// Care must be taken to keep options within these configurations isolated +// from any other dynamic settings, such as command-line flags which could alter +// these options. This file is provided specifically to help build and package +// managers provide a stable copy of Abseil within their libraries and binaries; +// other developers should not have need to alter the contents of this file. +// +// ----------------------------------------------------------------------------- +// Usage +// ----------------------------------------------------------------------------- +// +// For any particular package release, set the appropriate definitions within +// this file to whatever value makes the most sense for your package(s). Note +// that, by default, most of these options, at the moment, affect the +// implementation of types; future options may affect other implementation +// details. +// +// NOTE: the defaults within this file all assume that Abseil can select the +// proper Abseil implementation at compile-time, which will not be sufficient +// to guarantee ABI stability to package managers. + +#ifndef ABSL_BASE_OPTIONS_H_ +#define ABSL_BASE_OPTIONS_H_ + +// ----------------------------------------------------------------------------- +// Type Compatibility Options +// ----------------------------------------------------------------------------- +// +// ABSL_OPTION_USE_STD_ANY +// +// This option controls whether absl::any is implemented as an alias to +// std::any, or as an independent implementation. +// +// A value of 0 means to use Abseil's implementation. This requires only C++11 +// support, and is expected to work on every toolchain we support. +// +// A value of 1 means to use an alias to std::any. This requires that all code +// using Abseil is built in C++17 mode or later. +// +// A value of 2 means to detect the C++ version being used to compile Abseil, +// and use an alias only if a working std::any is available. This option is +// useful when you are building your entire program, including all of its +// dependencies, from source. It should not be used otherwise -- for example, +// if you are distributing Abseil in a binary package manager -- since in +// mode 2, absl::any will name a different type, with a different mangled name +// and binary layout, depending on the compiler flags passed by the end user. +// For more info, see https://abseil.io/about/design/dropin-types. +// +// User code should not inspect this macro. To check in the preprocessor if +// absl::any is a typedef of std::any, use the feature macro ABSL_USES_STD_ANY. + +#define ABSL_OPTION_USE_STD_ANY 2 + + +// ABSL_OPTION_USE_STD_OPTIONAL +// +// This option controls whether absl::optional is implemented as an alias to +// std::optional, or as an independent implementation. +// +// A value of 0 means to use Abseil's implementation. This requires only C++11 +// support, and is expected to work on every toolchain we support. +// +// A value of 1 means to use an alias to std::optional. This requires that all +// code using Abseil is built in C++17 mode or later. +// +// A value of 2 means to detect the C++ version being used to compile Abseil, +// and use an alias only if a working std::optional is available. This option +// is useful when you are building your program from source. It should not be +// used otherwise -- for example, if you are distributing Abseil in a binary +// package manager -- since in mode 2, absl::optional will name a different +// type, with a different mangled name and binary layout, depending on the +// compiler flags passed by the end user. For more info, see +// https://abseil.io/about/design/dropin-types. + +// User code should not inspect this macro. To check in the preprocessor if +// absl::optional is a typedef of std::optional, use the feature macro +// ABSL_USES_STD_OPTIONAL. + +#define ABSL_OPTION_USE_STD_OPTIONAL 2 + + +// ABSL_OPTION_USE_STD_STRING_VIEW +// +// This option controls whether absl::string_view is implemented as an alias to +// std::string_view, or as an independent implementation. +// +// A value of 0 means to use Abseil's implementation. This requires only C++11 +// support, and is expected to work on every toolchain we support. +// +// A value of 1 means to use an alias to std::string_view. This requires that +// all code using Abseil is built in C++17 mode or later. +// +// A value of 2 means to detect the C++ version being used to compile Abseil, +// and use an alias only if a working std::string_view is available. This +// option is useful when you are building your program from source. It should +// not be used otherwise -- for example, if you are distributing Abseil in a +// binary package manager -- since in mode 2, absl::string_view will name a +// different type, with a different mangled name and binary layout, depending on +// the compiler flags passed by the end user. For more info, see +// https://abseil.io/about/design/dropin-types. +// +// User code should not inspect this macro. To check in the preprocessor if +// absl::string_view is a typedef of std::string_view, use the feature macro +// ABSL_USES_STD_STRING_VIEW. + +#define ABSL_OPTION_USE_STD_STRING_VIEW 2 + +// ABSL_OPTION_USE_STD_VARIANT +// +// This option controls whether absl::variant is implemented as an alias to +// std::variant, or as an independent implementation. +// +// A value of 0 means to use Abseil's implementation. This requires only C++11 +// support, and is expected to work on every toolchain we support. +// +// A value of 1 means to use an alias to std::variant. This requires that all +// code using Abseil is built in C++17 mode or later. +// +// A value of 2 means to detect the C++ version being used to compile Abseil, +// and use an alias only if a working std::variant is available. This option +// is useful when you are building your program from source. It should not be +// used otherwise -- for example, if you are distributing Abseil in a binary +// package manager -- since in mode 2, absl::variant will name a different +// type, with a different mangled name and binary layout, depending on the +// compiler flags passed by the end user. For more info, see +// https://abseil.io/about/design/dropin-types. +// +// User code should not inspect this macro. To check in the preprocessor if +// absl::variant is a typedef of std::variant, use the feature macro +// ABSL_USES_STD_VARIANT. + +#define ABSL_OPTION_USE_STD_VARIANT 2 + +// ABSL_OPTION_USE_STD_ORDERING +// +// This option controls whether absl::{partial,weak,strong}_ordering are +// implemented as aliases to the std:: ordering types, or as an independent +// implementation. +// +// A value of 0 means to use Abseil's implementation. This requires only C++11 +// support, and is expected to work on every toolchain we support. +// +// A value of 1 means to use aliases. This requires that all code using Abseil +// is built in C++20 mode or later. +// +// A value of 2 means to detect the C++ version being used to compile Abseil, +// and use an alias only if working std:: ordering types are available. This +// option is useful when you are building your program from source. It should +// not be used otherwise -- for example, if you are distributing Abseil in a +// binary package manager -- since in mode 2, they will name different types, +// with different mangled names and binary layout, depending on the compiler +// flags passed by the end user. For more info, see +// https://abseil.io/about/design/dropin-types. +// +// User code should not inspect this macro. To check in the preprocessor if +// the ordering types are aliases of std:: ordering types, use the feature macro +// ABSL_USES_STD_ORDERING. + +#define ABSL_OPTION_USE_STD_ORDERING 2 + +// ABSL_OPTION_USE_INLINE_NAMESPACE +// ABSL_OPTION_INLINE_NAMESPACE_NAME +// +// These options controls whether all entities in the absl namespace are +// contained within an inner inline namespace. This does not affect the +// user-visible API of Abseil, but it changes the mangled names of all symbols. +// +// This can be useful as a version tag if you are distributing Abseil in +// precompiled form. This will prevent a binary library build of Abseil with +// one inline namespace being used with headers configured with a different +// inline namespace name. Binary packagers are reminded that Abseil does not +// guarantee any ABI stability in Abseil, so any update of Abseil or +// configuration change in such a binary package should be combined with a +// new, unique value for the inline namespace name. +// +// A value of 0 means not to use inline namespaces. +// +// A value of 1 means to use an inline namespace with the given name inside +// namespace absl. If this is set, ABSL_OPTION_INLINE_NAMESPACE_NAME must also +// be changed to a new, unique identifier name. In particular "head" is not +// allowed. + +#define ABSL_OPTION_USE_INLINE_NAMESPACE 1 +#define ABSL_OPTION_INLINE_NAMESPACE_NAME lts_20240116 + +// ABSL_OPTION_HARDENED +// +// This option enables a "hardened" build in release mode (in this context, +// release mode is defined as a build where the `NDEBUG` macro is defined). +// +// A value of 0 means that "hardened" mode is not enabled. +// +// A value of 1 means that "hardened" mode is enabled. +// +// Hardened builds have additional security checks enabled when `NDEBUG` is +// defined. Defining `NDEBUG` is normally used to turn `assert()` macro into a +// no-op, as well as disabling other bespoke program consistency checks. By +// defining ABSL_OPTION_HARDENED to 1, a select set of checks remain enabled in +// release mode. These checks guard against programming errors that may lead to +// security vulnerabilities. In release mode, when one of these programming +// errors is encountered, the program will immediately abort, possibly without +// any attempt at logging. +// +// The checks enabled by this option are not free; they do incur runtime cost. +// +// The checks enabled by this option are always active when `NDEBUG` is not +// defined, even in the case when ABSL_OPTION_HARDENED is defined to 0. The +// checks enabled by this option may abort the program in a different way and +// log additional information when `NDEBUG` is not defined. + +#define ABSL_OPTION_HARDENED 0 + +#endif // ABSL_BASE_OPTIONS_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/policy_checks.h b/weight/_dep/abseil-cpp/absl/base/policy_checks.h new file mode 100644 index 0000000000000000000000000000000000000000..372e848d8c191895870280bc0a8b05216fcb0a7a --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/policy_checks.h @@ -0,0 +1,113 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// ----------------------------------------------------------------------------- +// File: policy_checks.h +// ----------------------------------------------------------------------------- +// +// This header enforces a minimum set of policies at build time, such as the +// supported compiler and library versions. Unsupported configurations are +// reported with `#error`. This enforcement is best effort, so successfully +// compiling this header does not guarantee a supported configuration. + +#ifndef ABSL_BASE_POLICY_CHECKS_H_ +#define ABSL_BASE_POLICY_CHECKS_H_ + +// Included for the __GLIBC_PREREQ macro used below. +#include + +// Included for the _STLPORT_VERSION macro used below. +#if defined(__cplusplus) +#include +#endif + +// ----------------------------------------------------------------------------- +// Operating System Check +// ----------------------------------------------------------------------------- + +#if defined(__CYGWIN__) +#error "Cygwin is not supported." +#endif + +// ----------------------------------------------------------------------------- +// Toolchain Check +// ----------------------------------------------------------------------------- + +// We support Visual Studio 2019 (MSVC++ 16.0) and later. +// This minimum will go up. +#if defined(_MSC_VER) && _MSC_VER < 1920 && !defined(__clang__) +#error "This package requires Visual Studio 2019 (MSVC++ 16.0) or higher." +#endif + +// We support GCC 7 and later. +// This minimum will go up. +#if defined(__GNUC__) && !defined(__clang__) +#if __GNUC__ < 7 +#error "This package requires GCC 7 or higher." +#endif +#endif + +// We support Apple Xcode clang 4.2.1 (version 421.11.65) and later. +// This corresponds to Apple Xcode version 4.5. +// This minimum will go up. +#if defined(__apple_build_version__) && __apple_build_version__ < 4211165 +#error "This package requires __apple_build_version__ of 4211165 or higher." +#endif + +// ----------------------------------------------------------------------------- +// C++ Version Check +// ----------------------------------------------------------------------------- + +// Enforce C++14 as the minimum. +#if defined(_MSVC_LANG) +#if _MSVC_LANG < 201402L +#error "C++ versions less than C++14 are not supported." +#endif // _MSVC_LANG < 201402L +#elif defined(__cplusplus) +#if __cplusplus < 201402L +#error "C++ versions less than C++14 are not supported." +#endif // __cplusplus < 201402L +#endif + +// ----------------------------------------------------------------------------- +// Standard Library Check +// ----------------------------------------------------------------------------- + +#if defined(_STLPORT_VERSION) +#error "STLPort is not supported." +#endif + +// ----------------------------------------------------------------------------- +// `char` Size Check +// ----------------------------------------------------------------------------- + +// Abseil currently assumes CHAR_BIT == 8. If you would like to use Abseil on a +// platform where this is not the case, please provide us with the details about +// your platform so we can consider relaxing this requirement. +#if CHAR_BIT != 8 +#error "Abseil assumes CHAR_BIT == 8." +#endif + +// ----------------------------------------------------------------------------- +// `int` Size Check +// ----------------------------------------------------------------------------- + +// Abseil currently assumes that an int is 4 bytes. If you would like to use +// Abseil on a platform where this is not the case, please provide us with the +// details about your platform so we can consider relaxing this requirement. +#if INT_MAX < 2147483647 +#error "Abseil assumes that int is at least 4 bytes. " +#endif + +#endif // ABSL_BASE_POLICY_CHECKS_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/prefetch_test.cc b/weight/_dep/abseil-cpp/absl/base/prefetch_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..ee219897cace0609b1c1afcb81f9742d15412e8e --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/prefetch_test.cc @@ -0,0 +1,64 @@ +// Copyright 2023 The Abseil Authors +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/prefetch.h" + +#include + +#include "gtest/gtest.h" + +namespace { + +// Below tests exercise the functions only to guarantee they compile and execute +// correctly. We make no attempt at verifying any prefetch instructions being +// generated and executed: we assume the various implementation in terms of +// __builtin_prefetch() or x86 intrinsics to be correct and well tested. + +TEST(PrefetchTest, PrefetchToLocalCache_StackA) { + char buf[100] = {}; + absl::PrefetchToLocalCache(buf); + absl::PrefetchToLocalCacheNta(buf); + absl::PrefetchToLocalCacheForWrite(buf); +} + +TEST(PrefetchTest, PrefetchToLocalCache_Heap) { + auto memory = std::make_unique(200 << 10); + memset(memory.get(), 0, 200 << 10); + absl::PrefetchToLocalCache(memory.get()); + absl::PrefetchToLocalCacheNta(memory.get()); + absl::PrefetchToLocalCacheForWrite(memory.get()); + absl::PrefetchToLocalCache(memory.get() + (50 << 10)); + absl::PrefetchToLocalCacheNta(memory.get() + (50 << 10)); + absl::PrefetchToLocalCacheForWrite(memory.get() + (50 << 10)); + absl::PrefetchToLocalCache(memory.get() + (100 << 10)); + absl::PrefetchToLocalCacheNta(memory.get() + (100 << 10)); + absl::PrefetchToLocalCacheForWrite(memory.get() + (100 << 10)); + absl::PrefetchToLocalCache(memory.get() + (150 << 10)); + absl::PrefetchToLocalCacheNta(memory.get() + (150 << 10)); + absl::PrefetchToLocalCacheForWrite(memory.get() + (150 << 10)); +} + +TEST(PrefetchTest, PrefetchToLocalCache_Nullptr) { + absl::PrefetchToLocalCache(nullptr); + absl::PrefetchToLocalCacheNta(nullptr); + absl::PrefetchToLocalCacheForWrite(nullptr); +} + +TEST(PrefetchTest, PrefetchToLocalCache_InvalidPtr) { + absl::PrefetchToLocalCache(reinterpret_cast(0x785326532L)); + absl::PrefetchToLocalCacheNta(reinterpret_cast(0x785326532L)); + absl::PrefetchToLocalCacheForWrite(reinterpret_cast(0x78532L)); +} + +} // namespace diff --git a/weight/_dep/abseil-cpp/absl/base/raw_logging_test.cc b/weight/_dep/abseil-cpp/absl/base/raw_logging_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..3d30bd3861152f8597163140bf348dea46bd701e --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/raw_logging_test.cc @@ -0,0 +1,79 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// This test serves primarily as a compilation test for base/raw_logging.h. +// Raw logging testing is covered by logging_unittest.cc, which is not as +// portable as this test. + +#include "absl/base/internal/raw_logging.h" + +#include + +#include "gtest/gtest.h" +#include "absl/strings/str_cat.h" + +namespace { + +TEST(RawLoggingCompilationTest, Log) { + ABSL_RAW_LOG(INFO, "RAW INFO: %d", 1); + ABSL_RAW_LOG(INFO, "RAW INFO: %d %d", 1, 2); + ABSL_RAW_LOG(INFO, "RAW INFO: %d %d %d", 1, 2, 3); + ABSL_RAW_LOG(INFO, "RAW INFO: %d %d %d %d", 1, 2, 3, 4); + ABSL_RAW_LOG(INFO, "RAW INFO: %d %d %d %d %d", 1, 2, 3, 4, 5); + ABSL_RAW_LOG(WARNING, "RAW WARNING: %d", 1); + ABSL_RAW_LOG(ERROR, "RAW ERROR: %d", 1); +} + +TEST(RawLoggingCompilationTest, PassingCheck) { + ABSL_RAW_CHECK(true, "RAW CHECK"); +} + +// Not all platforms support output from raw log, so we don't verify any +// particular output for RAW check failures (expecting the empty string +// accomplishes this). This test is primarily a compilation test, but we +// are verifying process death when EXPECT_DEATH works for a platform. +const char kExpectedDeathOutput[] = ""; + +TEST(RawLoggingDeathTest, FailingCheck) { + EXPECT_DEATH_IF_SUPPORTED(ABSL_RAW_CHECK(1 == 0, "explanation"), + kExpectedDeathOutput); +} + +TEST(RawLoggingDeathTest, LogFatal) { + EXPECT_DEATH_IF_SUPPORTED(ABSL_RAW_LOG(FATAL, "my dog has fleas"), + kExpectedDeathOutput); +} + +TEST(InternalLog, CompilationTest) { + ABSL_INTERNAL_LOG(INFO, "Internal Log"); + std::string log_msg = "Internal Log"; + ABSL_INTERNAL_LOG(INFO, log_msg); + + ABSL_INTERNAL_LOG(INFO, log_msg + " 2"); + + float d = 1.1f; + ABSL_INTERNAL_LOG(INFO, absl::StrCat("Internal log ", 3, " + ", d)); +} + +TEST(InternalLogDeathTest, FailingCheck) { + EXPECT_DEATH_IF_SUPPORTED(ABSL_INTERNAL_CHECK(1 == 0, "explanation"), + kExpectedDeathOutput); +} + +TEST(InternalLogDeathTest, LogFatal) { + EXPECT_DEATH_IF_SUPPORTED(ABSL_INTERNAL_LOG(FATAL, "my dog has fleas"), + kExpectedDeathOutput); +} + +} // namespace diff --git a/weight/_dep/abseil-cpp/absl/base/spinlock_test_common.cc b/weight/_dep/abseil-cpp/absl/base/spinlock_test_common.cc new file mode 100644 index 0000000000000000000000000000000000000000..e9047158cbf759313d36f799e3508097eb6fc9a7 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/spinlock_test_common.cc @@ -0,0 +1,285 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// A bunch of threads repeatedly hash an array of ints protected by a +// spinlock. If the spinlock is working properly, all elements of the +// array should be equal at the end of the test. + +#include +#include +#include +#include // NOLINT(build/c++11) +#include +#include + +#include "gtest/gtest.h" +#include "absl/base/attributes.h" +#include "absl/base/config.h" +#include "absl/base/internal/low_level_scheduling.h" +#include "absl/base/internal/scheduling_mode.h" +#include "absl/base/internal/spinlock.h" +#include "absl/base/internal/sysinfo.h" +#include "absl/base/macros.h" +#include "absl/synchronization/blocking_counter.h" +#include "absl/synchronization/notification.h" + +constexpr uint32_t kNumThreads = 10; +constexpr int32_t kIters = 1000; + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { + +// This is defined outside of anonymous namespace so that it can be +// a friend of SpinLock to access protected methods for testing. +struct SpinLockTest { + static uint32_t EncodeWaitCycles(int64_t wait_start_time, + int64_t wait_end_time) { + return SpinLock::EncodeWaitCycles(wait_start_time, wait_end_time); + } + static int64_t DecodeWaitCycles(uint32_t lock_value) { + return SpinLock::DecodeWaitCycles(lock_value); + } + + static bool IsCooperative(const SpinLock& l) { return l.IsCooperative(); } +}; + +namespace { + +static constexpr size_t kArrayLength = 10; +static uint32_t values[kArrayLength]; + +ABSL_CONST_INIT static SpinLock static_cooperative_spinlock( + absl::kConstInit, base_internal::SCHEDULE_COOPERATIVE_AND_KERNEL); +ABSL_CONST_INIT static SpinLock static_noncooperative_spinlock( + absl::kConstInit, base_internal::SCHEDULE_KERNEL_ONLY); + +// Simple integer hash function based on the public domain lookup2 hash. +// http://burtleburtle.net/bob/c/lookup2.c +static uint32_t Hash32(uint32_t a, uint32_t c) { + uint32_t b = 0x9e3779b9UL; // The golden ratio; an arbitrary value. + a -= b; a -= c; a ^= (c >> 13); + b -= c; b -= a; b ^= (a << 8); + c -= a; c -= b; c ^= (b >> 13); + a -= b; a -= c; a ^= (c >> 12); + b -= c; b -= a; b ^= (a << 16); + c -= a; c -= b; c ^= (b >> 5); + a -= b; a -= c; a ^= (c >> 3); + b -= c; b -= a; b ^= (a << 10); + c -= a; c -= b; c ^= (b >> 15); + return c; +} + +static void TestFunction(uint32_t thread_salt, SpinLock* spinlock) { + for (int i = 0; i < kIters; i++) { + SpinLockHolder h(spinlock); + for (size_t j = 0; j < kArrayLength; j++) { + const size_t index = (j + thread_salt) % kArrayLength; + values[index] = Hash32(values[index], thread_salt); + std::this_thread::yield(); + } + } +} + +static void ThreadedTest(SpinLock* spinlock) { + std::vector threads; + threads.reserve(kNumThreads); + for (uint32_t i = 0; i < kNumThreads; ++i) { + threads.push_back(std::thread(TestFunction, i, spinlock)); + } + for (auto& thread : threads) { + thread.join(); + } + + SpinLockHolder h(spinlock); + for (size_t i = 1; i < kArrayLength; i++) { + EXPECT_EQ(values[0], values[i]); + } +} + +#ifndef ABSL_HAVE_THREAD_SANITIZER +static_assert(std::is_trivially_destructible(), ""); +#endif + +TEST(SpinLock, StackNonCooperativeDisablesScheduling) { + SpinLock spinlock(base_internal::SCHEDULE_KERNEL_ONLY); + spinlock.Lock(); + EXPECT_FALSE(base_internal::SchedulingGuard::ReschedulingIsAllowed()); + spinlock.Unlock(); +} + +TEST(SpinLock, StaticNonCooperativeDisablesScheduling) { + static_noncooperative_spinlock.Lock(); + EXPECT_FALSE(base_internal::SchedulingGuard::ReschedulingIsAllowed()); + static_noncooperative_spinlock.Unlock(); +} + +TEST(SpinLock, WaitCyclesEncoding) { + // These are implementation details not exported by SpinLock. + const int kProfileTimestampShift = 7; + const int kLockwordReservedShift = 3; + const uint32_t kSpinLockSleeper = 8; + + // We should be able to encode up to (1^kMaxCycleBits - 1) without clamping + // but the lower kProfileTimestampShift will be dropped. + const int kMaxCyclesShift = + 32 - kLockwordReservedShift + kProfileTimestampShift; + const int64_t kMaxCycles = (int64_t{1} << kMaxCyclesShift) - 1; + + // These bits should be zero after encoding. + const uint32_t kLockwordReservedMask = (1 << kLockwordReservedShift) - 1; + + // These bits are dropped when wait cycles are encoded. + const int64_t kProfileTimestampMask = (1 << kProfileTimestampShift) - 1; + + // Test a bunch of random values + std::default_random_engine generator; + // Shift to avoid overflow below. + std::uniform_int_distribution time_distribution( + 0, std::numeric_limits::max() >> 3); + std::uniform_int_distribution cycle_distribution(0, kMaxCycles); + + for (int i = 0; i < 100; i++) { + int64_t start_time = time_distribution(generator); + int64_t cycles = cycle_distribution(generator); + int64_t end_time = start_time + cycles; + uint32_t lock_value = SpinLockTest::EncodeWaitCycles(start_time, end_time); + EXPECT_EQ(0u, lock_value & kLockwordReservedMask); + int64_t decoded = SpinLockTest::DecodeWaitCycles(lock_value); + EXPECT_EQ(0, decoded & kProfileTimestampMask); + EXPECT_EQ(cycles & ~kProfileTimestampMask, decoded); + } + + // Test corner cases + int64_t start_time = time_distribution(generator); + EXPECT_EQ(kSpinLockSleeper, + SpinLockTest::EncodeWaitCycles(start_time, start_time)); + EXPECT_EQ(0, SpinLockTest::DecodeWaitCycles(0)); + EXPECT_EQ(0, SpinLockTest::DecodeWaitCycles(kLockwordReservedMask)); + EXPECT_EQ(kMaxCycles & ~kProfileTimestampMask, + SpinLockTest::DecodeWaitCycles(~kLockwordReservedMask)); + + // Check that we cannot produce kSpinLockSleeper during encoding. + int64_t sleeper_cycles = + kSpinLockSleeper << (kProfileTimestampShift - kLockwordReservedShift); + uint32_t sleeper_value = + SpinLockTest::EncodeWaitCycles(start_time, start_time + sleeper_cycles); + EXPECT_NE(sleeper_value, kSpinLockSleeper); + + // Test clamping + uint32_t max_value = + SpinLockTest::EncodeWaitCycles(start_time, start_time + kMaxCycles); + int64_t max_value_decoded = SpinLockTest::DecodeWaitCycles(max_value); + int64_t expected_max_value_decoded = kMaxCycles & ~kProfileTimestampMask; + EXPECT_EQ(expected_max_value_decoded, max_value_decoded); + + const int64_t step = (1 << kProfileTimestampShift); + uint32_t after_max_value = + SpinLockTest::EncodeWaitCycles(start_time, start_time + kMaxCycles + step); + int64_t after_max_value_decoded = + SpinLockTest::DecodeWaitCycles(after_max_value); + EXPECT_EQ(expected_max_value_decoded, after_max_value_decoded); + + uint32_t before_max_value = SpinLockTest::EncodeWaitCycles( + start_time, start_time + kMaxCycles - step); + int64_t before_max_value_decoded = + SpinLockTest::DecodeWaitCycles(before_max_value); + EXPECT_GT(expected_max_value_decoded, before_max_value_decoded); +} + +TEST(SpinLockWithThreads, StackSpinLock) { + SpinLock spinlock; + ThreadedTest(&spinlock); +} + +TEST(SpinLockWithThreads, StackCooperativeSpinLock) { + SpinLock spinlock(base_internal::SCHEDULE_COOPERATIVE_AND_KERNEL); + ThreadedTest(&spinlock); +} + +TEST(SpinLockWithThreads, StackNonCooperativeSpinLock) { + SpinLock spinlock(base_internal::SCHEDULE_KERNEL_ONLY); + ThreadedTest(&spinlock); +} + +TEST(SpinLockWithThreads, StaticCooperativeSpinLock) { + ThreadedTest(&static_cooperative_spinlock); +} + +TEST(SpinLockWithThreads, StaticNonCooperativeSpinLock) { + ThreadedTest(&static_noncooperative_spinlock); +} + +TEST(SpinLockWithThreads, DoesNotDeadlock) { + struct Helper { + static void NotifyThenLock(Notification* locked, SpinLock* spinlock, + BlockingCounter* b) { + locked->WaitForNotification(); // Wait for LockThenWait() to hold "s". + b->DecrementCount(); + SpinLockHolder l(spinlock); + } + + static void LockThenWait(Notification* locked, SpinLock* spinlock, + BlockingCounter* b) { + SpinLockHolder l(spinlock); + locked->Notify(); + b->Wait(); + } + + static void DeadlockTest(SpinLock* spinlock, int num_spinners) { + Notification locked; + BlockingCounter counter(num_spinners); + std::vector threads; + + threads.push_back( + std::thread(Helper::LockThenWait, &locked, spinlock, &counter)); + for (int i = 0; i < num_spinners; ++i) { + threads.push_back( + std::thread(Helper::NotifyThenLock, &locked, spinlock, &counter)); + } + + for (auto& thread : threads) { + thread.join(); + } + } + }; + + SpinLock stack_cooperative_spinlock( + base_internal::SCHEDULE_COOPERATIVE_AND_KERNEL); + SpinLock stack_noncooperative_spinlock(base_internal::SCHEDULE_KERNEL_ONLY); + Helper::DeadlockTest(&stack_cooperative_spinlock, + base_internal::NumCPUs() * 2); + Helper::DeadlockTest(&stack_noncooperative_spinlock, + base_internal::NumCPUs() * 2); + Helper::DeadlockTest(&static_cooperative_spinlock, + base_internal::NumCPUs() * 2); + Helper::DeadlockTest(&static_noncooperative_spinlock, + base_internal::NumCPUs() * 2); +} + +TEST(SpinLockTest, IsCooperative) { + SpinLock default_constructor; + EXPECT_TRUE(SpinLockTest::IsCooperative(default_constructor)); + + SpinLock cooperative(base_internal::SCHEDULE_COOPERATIVE_AND_KERNEL); + EXPECT_TRUE(SpinLockTest::IsCooperative(cooperative)); + + SpinLock kernel_only(base_internal::SCHEDULE_KERNEL_ONLY); + EXPECT_FALSE(SpinLockTest::IsCooperative(kernel_only)); +} + +} // namespace +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl diff --git a/weight/_dep/abseil-cpp/absl/base/thread_annotations.h b/weight/_dep/abseil-cpp/absl/base/thread_annotations.h new file mode 100644 index 0000000000000000000000000000000000000000..4a3f3e33e9e67c051b5483c3ae49f6fb526f1014 --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/thread_annotations.h @@ -0,0 +1,333 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. +// +// ----------------------------------------------------------------------------- +// File: thread_annotations.h +// ----------------------------------------------------------------------------- +// +// This header file contains macro definitions for thread safety annotations +// that allow developers to document the locking policies of multi-threaded +// code. The annotations can also help program analysis tools to identify +// potential thread safety issues. +// +// These annotations are implemented using compiler attributes. Using the macros +// defined here instead of raw attributes allow for portability and future +// compatibility. +// +// When referring to mutexes in the arguments of the attributes, you should +// use variable names or more complex expressions (e.g. my_object->mutex_) +// that evaluate to a concrete mutex object whenever possible. If the mutex +// you want to refer to is not in scope, you may use a member pointer +// (e.g. &MyClass::mutex_) to refer to a mutex in some (unknown) object. + +#ifndef ABSL_BASE_THREAD_ANNOTATIONS_H_ +#define ABSL_BASE_THREAD_ANNOTATIONS_H_ + +#include "absl/base/attributes.h" +#include "absl/base/config.h" + +// ABSL_GUARDED_BY() +// +// Documents if a shared field or global variable needs to be protected by a +// mutex. ABSL_GUARDED_BY() allows the user to specify a particular mutex that +// should be held when accessing the annotated variable. +// +// Although this annotation (and ABSL_PT_GUARDED_BY, below) cannot be applied to +// local variables, a local variable and its associated mutex can often be +// combined into a small class or struct, thereby allowing the annotation. +// +// Example: +// +// class Foo { +// Mutex mu_; +// int p1_ ABSL_GUARDED_BY(mu_); +// ... +// }; +#if ABSL_HAVE_ATTRIBUTE(guarded_by) +#define ABSL_GUARDED_BY(x) __attribute__((guarded_by(x))) +#else +#define ABSL_GUARDED_BY(x) +#endif + +// ABSL_PT_GUARDED_BY() +// +// Documents if the memory location pointed to by a pointer should be guarded +// by a mutex when dereferencing the pointer. +// +// Example: +// class Foo { +// Mutex mu_; +// int *p1_ ABSL_PT_GUARDED_BY(mu_); +// ... +// }; +// +// Note that a pointer variable to a shared memory location could itself be a +// shared variable. +// +// Example: +// +// // `q_`, guarded by `mu1_`, points to a shared memory location that is +// // guarded by `mu2_`: +// int *q_ ABSL_GUARDED_BY(mu1_) ABSL_PT_GUARDED_BY(mu2_); +#if ABSL_HAVE_ATTRIBUTE(pt_guarded_by) +#define ABSL_PT_GUARDED_BY(x) __attribute__((pt_guarded_by(x))) +#else +#define ABSL_PT_GUARDED_BY(x) +#endif + +// ABSL_ACQUIRED_AFTER() / ABSL_ACQUIRED_BEFORE() +// +// Documents the acquisition order between locks that can be held +// simultaneously by a thread. For any two locks that need to be annotated +// to establish an acquisition order, only one of them needs the annotation. +// (i.e. You don't have to annotate both locks with both ABSL_ACQUIRED_AFTER +// and ABSL_ACQUIRED_BEFORE.) +// +// As with ABSL_GUARDED_BY, this is only applicable to mutexes that are shared +// fields or global variables. +// +// Example: +// +// Mutex m1_; +// Mutex m2_ ABSL_ACQUIRED_AFTER(m1_); +#if ABSL_HAVE_ATTRIBUTE(acquired_after) +#define ABSL_ACQUIRED_AFTER(...) __attribute__((acquired_after(__VA_ARGS__))) +#else +#define ABSL_ACQUIRED_AFTER(...) +#endif + +#if ABSL_HAVE_ATTRIBUTE(acquired_before) +#define ABSL_ACQUIRED_BEFORE(...) __attribute__((acquired_before(__VA_ARGS__))) +#else +#define ABSL_ACQUIRED_BEFORE(...) +#endif + +// ABSL_EXCLUSIVE_LOCKS_REQUIRED() / ABSL_SHARED_LOCKS_REQUIRED() +// +// Documents a function that expects a mutex to be held prior to entry. +// The mutex is expected to be held both on entry to, and exit from, the +// function. +// +// An exclusive lock allows read-write access to the guarded data member(s), and +// only one thread can acquire a lock exclusively at any one time. A shared lock +// allows read-only access, and any number of threads can acquire a shared lock +// concurrently. +// +// Generally, non-const methods should be annotated with +// ABSL_EXCLUSIVE_LOCKS_REQUIRED, while const methods should be annotated with +// ABSL_SHARED_LOCKS_REQUIRED. +// +// Example: +// +// Mutex mu1, mu2; +// int a ABSL_GUARDED_BY(mu1); +// int b ABSL_GUARDED_BY(mu2); +// +// void foo() ABSL_EXCLUSIVE_LOCKS_REQUIRED(mu1, mu2) { ... } +// void bar() const ABSL_SHARED_LOCKS_REQUIRED(mu1, mu2) { ... } +#if ABSL_HAVE_ATTRIBUTE(exclusive_locks_required) +#define ABSL_EXCLUSIVE_LOCKS_REQUIRED(...) \ + __attribute__((exclusive_locks_required(__VA_ARGS__))) +#else +#define ABSL_EXCLUSIVE_LOCKS_REQUIRED(...) +#endif + +#if ABSL_HAVE_ATTRIBUTE(shared_locks_required) +#define ABSL_SHARED_LOCKS_REQUIRED(...) \ + __attribute__((shared_locks_required(__VA_ARGS__))) +#else +#define ABSL_SHARED_LOCKS_REQUIRED(...) +#endif + +// ABSL_LOCKS_EXCLUDED() +// +// Documents the locks that cannot be held by callers of this function, as they +// might be acquired by this function (Abseil's `Mutex` locks are +// non-reentrant). +#if ABSL_HAVE_ATTRIBUTE(locks_excluded) +#define ABSL_LOCKS_EXCLUDED(...) __attribute__((locks_excluded(__VA_ARGS__))) +#else +#define ABSL_LOCKS_EXCLUDED(...) +#endif + +// ABSL_LOCK_RETURNED() +// +// Documents a function that returns a mutex without acquiring it. For example, +// a public getter method that returns a pointer to a private mutex should +// be annotated with ABSL_LOCK_RETURNED. +#if ABSL_HAVE_ATTRIBUTE(lock_returned) +#define ABSL_LOCK_RETURNED(x) __attribute__((lock_returned(x))) +#else +#define ABSL_LOCK_RETURNED(x) +#endif + +// ABSL_LOCKABLE +// +// Documents if a class/type is a lockable type (such as the `Mutex` class). +#if ABSL_HAVE_ATTRIBUTE(lockable) +#define ABSL_LOCKABLE __attribute__((lockable)) +#else +#define ABSL_LOCKABLE +#endif + +// ABSL_SCOPED_LOCKABLE +// +// Documents if a class does RAII locking (such as the `MutexLock` class). +// The constructor should use `LOCK_FUNCTION()` to specify the mutex that is +// acquired, and the destructor should use `UNLOCK_FUNCTION()` with no +// arguments; the analysis will assume that the destructor unlocks whatever the +// constructor locked. +#if ABSL_HAVE_ATTRIBUTE(scoped_lockable) +#define ABSL_SCOPED_LOCKABLE __attribute__((scoped_lockable)) +#else +#define ABSL_SCOPED_LOCKABLE +#endif + +// ABSL_EXCLUSIVE_LOCK_FUNCTION() +// +// Documents functions that acquire a lock in the body of a function, and do +// not release it. +#if ABSL_HAVE_ATTRIBUTE(exclusive_lock_function) +#define ABSL_EXCLUSIVE_LOCK_FUNCTION(...) \ + __attribute__((exclusive_lock_function(__VA_ARGS__))) +#else +#define ABSL_EXCLUSIVE_LOCK_FUNCTION(...) +#endif + +// ABSL_SHARED_LOCK_FUNCTION() +// +// Documents functions that acquire a shared (reader) lock in the body of a +// function, and do not release it. +#if ABSL_HAVE_ATTRIBUTE(shared_lock_function) +#define ABSL_SHARED_LOCK_FUNCTION(...) \ + __attribute__((shared_lock_function(__VA_ARGS__))) +#else +#define ABSL_SHARED_LOCK_FUNCTION(...) +#endif + +// ABSL_UNLOCK_FUNCTION() +// +// Documents functions that expect a lock to be held on entry to the function, +// and release it in the body of the function. +#if ABSL_HAVE_ATTRIBUTE(unlock_function) +#define ABSL_UNLOCK_FUNCTION(...) __attribute__((unlock_function(__VA_ARGS__))) +#else +#define ABSL_UNLOCK_FUNCTION(...) +#endif + +// ABSL_EXCLUSIVE_TRYLOCK_FUNCTION() / ABSL_SHARED_TRYLOCK_FUNCTION() +// +// Documents functions that try to acquire a lock, and return success or failure +// (or a non-boolean value that can be interpreted as a boolean). +// The first argument should be `true` for functions that return `true` on +// success, or `false` for functions that return `false` on success. The second +// argument specifies the mutex that is locked on success. If unspecified, this +// mutex is assumed to be `this`. +#if ABSL_HAVE_ATTRIBUTE(exclusive_trylock_function) +#define ABSL_EXCLUSIVE_TRYLOCK_FUNCTION(...) \ + __attribute__((exclusive_trylock_function(__VA_ARGS__))) +#else +#define ABSL_EXCLUSIVE_TRYLOCK_FUNCTION(...) +#endif + +#if ABSL_HAVE_ATTRIBUTE(shared_trylock_function) +#define ABSL_SHARED_TRYLOCK_FUNCTION(...) \ + __attribute__((shared_trylock_function(__VA_ARGS__))) +#else +#define ABSL_SHARED_TRYLOCK_FUNCTION(...) +#endif + +// ABSL_ASSERT_EXCLUSIVE_LOCK() / ABSL_ASSERT_SHARED_LOCK() +// +// Documents functions that dynamically check to see if a lock is held, and fail +// if it is not held. +#if ABSL_HAVE_ATTRIBUTE(assert_exclusive_lock) +#define ABSL_ASSERT_EXCLUSIVE_LOCK(...) \ + __attribute__((assert_exclusive_lock(__VA_ARGS__))) +#else +#define ABSL_ASSERT_EXCLUSIVE_LOCK(...) +#endif + +#if ABSL_HAVE_ATTRIBUTE(assert_shared_lock) +#define ABSL_ASSERT_SHARED_LOCK(...) \ + __attribute__((assert_shared_lock(__VA_ARGS__))) +#else +#define ABSL_ASSERT_SHARED_LOCK(...) +#endif + +// ABSL_NO_THREAD_SAFETY_ANALYSIS +// +// Turns off thread safety checking within the body of a particular function. +// This annotation is used to mark functions that are known to be correct, but +// the locking behavior is more complicated than the analyzer can handle. +#if ABSL_HAVE_ATTRIBUTE(no_thread_safety_analysis) +#define ABSL_NO_THREAD_SAFETY_ANALYSIS \ + __attribute__((no_thread_safety_analysis)) +#else +#define ABSL_NO_THREAD_SAFETY_ANALYSIS +#endif + +//------------------------------------------------------------------------------ +// Tool-Supplied Annotations +//------------------------------------------------------------------------------ + +// ABSL_TS_UNCHECKED should be placed around lock expressions that are not valid +// C++ syntax, but which are present for documentation purposes. These +// annotations will be ignored by the analysis. +#define ABSL_TS_UNCHECKED(x) "" + +// ABSL_TS_FIXME is used to mark lock expressions that are not valid C++ syntax. +// It is used by automated tools to mark and disable invalid expressions. +// The annotation should either be fixed, or changed to ABSL_TS_UNCHECKED. +#define ABSL_TS_FIXME(x) "" + +// Like ABSL_NO_THREAD_SAFETY_ANALYSIS, this turns off checking within the body +// of a particular function. However, this attribute is used to mark functions +// that are incorrect and need to be fixed. It is used by automated tools to +// avoid breaking the build when the analysis is updated. +// Code owners are expected to eventually fix the routine. +#define ABSL_NO_THREAD_SAFETY_ANALYSIS_FIXME ABSL_NO_THREAD_SAFETY_ANALYSIS + +// Similar to ABSL_NO_THREAD_SAFETY_ANALYSIS_FIXME, this macro marks a +// ABSL_GUARDED_BY annotation that needs to be fixed, because it is producing +// thread safety warning. It disables the ABSL_GUARDED_BY. +#define ABSL_GUARDED_BY_FIXME(x) + +// Disables warnings for a single read operation. This can be used to avoid +// warnings when it is known that the read is not actually involved in a race, +// but the compiler cannot confirm that. +#define ABSL_TS_UNCHECKED_READ(x) absl::base_internal::ts_unchecked_read(x) + +namespace absl { +ABSL_NAMESPACE_BEGIN +namespace base_internal { + +// Takes a reference to a guarded data member, and returns an unguarded +// reference. +// Do not use this function directly, use ABSL_TS_UNCHECKED_READ instead. +template +inline const T& ts_unchecked_read(const T& v) ABSL_NO_THREAD_SAFETY_ANALYSIS { + return v; +} + +template +inline T& ts_unchecked_read(T& v) ABSL_NO_THREAD_SAFETY_ANALYSIS { + return v; +} + +} // namespace base_internal +ABSL_NAMESPACE_END +} // namespace absl + +#endif // ABSL_BASE_THREAD_ANNOTATIONS_H_ diff --git a/weight/_dep/abseil-cpp/absl/base/throw_delegate_test.cc b/weight/_dep/abseil-cpp/absl/base/throw_delegate_test.cc new file mode 100644 index 0000000000000000000000000000000000000000..e74362b701e479857c2bbc1fc7f8fdb0bde085bd --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/base/throw_delegate_test.cc @@ -0,0 +1,175 @@ +// Copyright 2017 The Abseil Authors. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// https://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +#include "absl/base/internal/throw_delegate.h" + +#include +#include +#include + +#include "absl/base/config.h" +#include "gtest/gtest.h" + +namespace { + +using absl::base_internal::ThrowStdLogicError; +using absl::base_internal::ThrowStdInvalidArgument; +using absl::base_internal::ThrowStdDomainError; +using absl::base_internal::ThrowStdLengthError; +using absl::base_internal::ThrowStdOutOfRange; +using absl::base_internal::ThrowStdRuntimeError; +using absl::base_internal::ThrowStdRangeError; +using absl::base_internal::ThrowStdOverflowError; +using absl::base_internal::ThrowStdUnderflowError; +using absl::base_internal::ThrowStdBadFunctionCall; +using absl::base_internal::ThrowStdBadAlloc; + +constexpr const char* what_arg = "The quick brown fox jumps over the lazy dog"; + +template +void ExpectThrowChar(void (*f)(const char*)) { +#ifdef ABSL_HAVE_EXCEPTIONS + try { + f(what_arg); + FAIL() << "Didn't throw"; + } catch (const E& e) { + EXPECT_STREQ(e.what(), what_arg); + } +#else + EXPECT_DEATH_IF_SUPPORTED(f(what_arg), what_arg); +#endif +} + +template +void ExpectThrowString(void (*f)(const std::string&)) { +#ifdef ABSL_HAVE_EXCEPTIONS + try { + f(what_arg); + FAIL() << "Didn't throw"; + } catch (const E& e) { + EXPECT_STREQ(e.what(), what_arg); + } +#else + EXPECT_DEATH_IF_SUPPORTED(f(what_arg), what_arg); +#endif +} + +template +void ExpectThrowNoWhat(void (*f)()) { +#ifdef ABSL_HAVE_EXCEPTIONS + try { + f(); + FAIL() << "Didn't throw"; + } catch (const E& e) { + } +#else + EXPECT_DEATH_IF_SUPPORTED(f(), ""); +#endif +} + +TEST(ThrowDelegate, ThrowStdLogicErrorChar) { + ExpectThrowChar(ThrowStdLogicError); +} + +TEST(ThrowDelegate, ThrowStdInvalidArgumentChar) { + ExpectThrowChar(ThrowStdInvalidArgument); +} + +TEST(ThrowDelegate, ThrowStdDomainErrorChar) { + ExpectThrowChar(ThrowStdDomainError); +} + +TEST(ThrowDelegate, ThrowStdLengthErrorChar) { + ExpectThrowChar(ThrowStdLengthError); +} + +TEST(ThrowDelegate, ThrowStdOutOfRangeChar) { + ExpectThrowChar(ThrowStdOutOfRange); +} + +TEST(ThrowDelegate, ThrowStdRuntimeErrorChar) { + ExpectThrowChar(ThrowStdRuntimeError); +} + +TEST(ThrowDelegate, ThrowStdRangeErrorChar) { + ExpectThrowChar(ThrowStdRangeError); +} + +TEST(ThrowDelegate, ThrowStdOverflowErrorChar) { + ExpectThrowChar(ThrowStdOverflowError); +} + +TEST(ThrowDelegate, ThrowStdUnderflowErrorChar) { + ExpectThrowChar(ThrowStdUnderflowError); +} + +TEST(ThrowDelegate, ThrowStdLogicErrorString) { + ExpectThrowString(ThrowStdLogicError); +} + +TEST(ThrowDelegate, ThrowStdInvalidArgumentString) { + ExpectThrowString(ThrowStdInvalidArgument); +} + +TEST(ThrowDelegate, ThrowStdDomainErrorString) { + ExpectThrowString(ThrowStdDomainError); +} + +TEST(ThrowDelegate, ThrowStdLengthErrorString) { + ExpectThrowString(ThrowStdLengthError); +} + +TEST(ThrowDelegate, ThrowStdOutOfRangeString) { + ExpectThrowString(ThrowStdOutOfRange); +} + +TEST(ThrowDelegate, ThrowStdRuntimeErrorString) { + ExpectThrowString(ThrowStdRuntimeError); +} + +TEST(ThrowDelegate, ThrowStdRangeErrorString) { + ExpectThrowString(ThrowStdRangeError); +} + +TEST(ThrowDelegate, ThrowStdOverflowErrorString) { + ExpectThrowString(ThrowStdOverflowError); +} + +TEST(ThrowDelegate, ThrowStdUnderflowErrorString) { + ExpectThrowString(ThrowStdUnderflowError); +} + +TEST(ThrowDelegate, ThrowStdBadFunctionCallNoWhat) { +#ifdef ABSL_HAVE_EXCEPTIONS + try { + ThrowStdBadFunctionCall(); + FAIL() << "Didn't throw"; + } catch (const std::bad_function_call&) { + } +#ifdef _LIBCPP_VERSION + catch (const std::exception&) { + // https://reviews.llvm.org/D92397 causes issues with the vtable for + // std::bad_function_call when using libc++ as a shared library. + } +#endif +#else + EXPECT_DEATH_IF_SUPPORTED(ThrowStdBadFunctionCall(), ""); +#endif +} + +TEST(ThrowDelegate, ThrowStdBadAllocNoWhat) { + ExpectThrowNoWhat(ThrowStdBadAlloc); +} + +} // namespace diff --git a/weight/_dep/abseil-cpp/absl/container/BUILD.bazel b/weight/_dep/abseil-cpp/absl/container/BUILD.bazel new file mode 100644 index 0000000000000000000000000000000000000000..0ba2fa76d77814cf6ee7945304b0985f6b61710f --- /dev/null +++ b/weight/_dep/abseil-cpp/absl/container/BUILD.bazel @@ -0,0 +1,1085 @@ +# +# Copyright 2017 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. +# + +load( + "//absl:copts/configure_copts.bzl", + "ABSL_DEFAULT_COPTS", + "ABSL_DEFAULT_LINKOPTS", + "ABSL_TEST_COPTS", +) + +package( + default_visibility = ["//visibility:public"], + features = [ + "header_modules", + "layering_check", + "parse_headers", + ], +) + +licenses(["notice"]) + +cc_library( + name = "compressed_tuple", + hdrs = ["internal/compressed_tuple.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + "//absl/utility", + ], +) + +cc_test( + name = "compressed_tuple_test", + srcs = ["internal/compressed_tuple_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":compressed_tuple", + ":test_instance_tracker", + "//absl/memory", + "//absl/types:any", + "//absl/types:optional", + "//absl/utility", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "fixed_array", + hdrs = ["fixed_array.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":compressed_tuple", + "//absl/algorithm", + "//absl/base:config", + "//absl/base:core_headers", + "//absl/base:dynamic_annotations", + "//absl/base:throw_delegate", + "//absl/memory", + ], +) + +cc_test( + name = "fixed_array_test", + srcs = ["fixed_array_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":fixed_array", + ":test_allocator", + "//absl/base:config", + "//absl/base:exception_testing", + "//absl/hash:hash_testing", + "//absl/memory", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_test( + name = "fixed_array_exception_safety_test", + srcs = ["fixed_array_exception_safety_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":fixed_array", + "//absl/base:config", + "//absl/base:exception_safety_testing", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_binary( + name = "fixed_array_benchmark", + testonly = 1, + srcs = ["fixed_array_benchmark.cc"], + copts = ABSL_TEST_COPTS + ["$(STACK_FRAME_UNLIMITED)"], + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["benchmark"], + deps = [ + ":fixed_array", + "@com_github_google_benchmark//:benchmark_main", + ], +) + +cc_library( + name = "inlined_vector_internal", + hdrs = ["internal/inlined_vector.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":compressed_tuple", + "//absl/base:config", + "//absl/base:core_headers", + "//absl/memory", + "//absl/meta:type_traits", + "//absl/types:span", + ], +) + +cc_library( + name = "inlined_vector", + hdrs = ["inlined_vector.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":inlined_vector_internal", + "//absl/algorithm", + "//absl/base:core_headers", + "//absl/base:throw_delegate", + "//absl/memory", + "//absl/meta:type_traits", + ], +) + +cc_library( + name = "test_allocator", + testonly = 1, + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + textual_hdrs = ["internal/test_allocator.h"], + visibility = ["//visibility:private"], +) + +cc_test( + name = "inlined_vector_test", + srcs = ["inlined_vector_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":inlined_vector", + ":test_allocator", + ":test_instance_tracker", + "//absl/base:config", + "//absl/base:core_headers", + "//absl/base:exception_testing", + "//absl/hash:hash_testing", + "//absl/log:check", + "//absl/memory", + "//absl/strings", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_binary( + name = "inlined_vector_benchmark", + testonly = 1, + srcs = ["inlined_vector_benchmark.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["benchmark"], + deps = [ + ":inlined_vector", + "//absl/base:core_headers", + "//absl/base:raw_logging_internal", + "//absl/strings", + "@com_github_google_benchmark//:benchmark_main", + ], +) + +cc_test( + name = "inlined_vector_exception_safety_test", + srcs = ["inlined_vector_exception_safety_test.cc"], + copts = ABSL_TEST_COPTS, + deps = [ + ":inlined_vector", + "//absl/base:config", + "//absl/base:exception_safety_testing", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "test_instance_tracker", + testonly = 1, + srcs = ["internal/test_instance_tracker.cc"], + hdrs = ["internal/test_instance_tracker.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + visibility = [ + "//absl:__subpackages__", + ], + deps = ["//absl/types:compare"], +) + +cc_test( + name = "test_instance_tracker_test", + srcs = ["internal/test_instance_tracker_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":test_instance_tracker", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +NOTEST_TAGS_MOBILE = [ + "no_test_android_arm", + "no_test_android_arm64", + "no_test_android_x86", + "no_test_ios_x86_64", +] + +cc_library( + name = "flat_hash_map", + hdrs = ["flat_hash_map.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":container_memory", + ":hash_function_defaults", + ":raw_hash_map", + "//absl/algorithm:container", + "//absl/base:core_headers", + "//absl/memory", + ], +) + +cc_test( + name = "flat_hash_map_test", + srcs = ["flat_hash_map_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["no_test_loonix"], + deps = [ + ":flat_hash_map", + ":hash_generator_testing", + ":unordered_map_constructor_test", + ":unordered_map_lookup_test", + ":unordered_map_members_test", + ":unordered_map_modifiers_test", + "//absl/log:check", + "//absl/meta:type_traits", + "//absl/types:any", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "flat_hash_set", + hdrs = ["flat_hash_set.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":container_memory", + ":hash_function_defaults", + ":raw_hash_set", + "//absl/algorithm:container", + "//absl/base:core_headers", + "//absl/memory", + ], +) + +cc_test( + name = "flat_hash_set_test", + srcs = ["flat_hash_set_test.cc"], + copts = ABSL_TEST_COPTS + ["-DUNORDERED_SET_CXX17"], + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["no_test_loonix"], + deps = [ + ":container_memory", + ":flat_hash_set", + ":hash_generator_testing", + ":unordered_set_constructor_test", + ":unordered_set_lookup_test", + ":unordered_set_members_test", + ":unordered_set_modifiers_test", + "//absl/base:config", + "//absl/log:check", + "//absl/memory", + "//absl/strings", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "node_hash_map", + hdrs = ["node_hash_map.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":container_memory", + ":hash_function_defaults", + ":node_slot_policy", + ":raw_hash_map", + "//absl/algorithm:container", + "//absl/base:core_headers", + "//absl/memory", + ], +) + +cc_test( + name = "node_hash_map_test", + srcs = ["node_hash_map_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["no_test_loonix"], + deps = [ + ":hash_generator_testing", + ":node_hash_map", + ":tracked", + ":unordered_map_constructor_test", + ":unordered_map_lookup_test", + ":unordered_map_members_test", + ":unordered_map_modifiers_test", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "node_hash_set", + hdrs = ["node_hash_set.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":hash_function_defaults", + ":node_slot_policy", + ":raw_hash_set", + "//absl/algorithm:container", + "//absl/base:core_headers", + "//absl/memory", + ], +) + +cc_test( + name = "node_hash_set_test", + srcs = ["node_hash_set_test.cc"], + copts = ABSL_TEST_COPTS + ["-DUNORDERED_SET_CXX17"], + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["no_test_loonix"], + deps = [ + ":node_hash_set", + ":unordered_set_constructor_test", + ":unordered_set_lookup_test", + ":unordered_set_members_test", + ":unordered_set_modifiers_test", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "container_memory", + hdrs = ["internal/container_memory.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + "//absl/base:config", + "//absl/memory", + "//absl/meta:type_traits", + "//absl/utility", + ], +) + +cc_test( + name = "container_memory_test", + srcs = ["internal/container_memory_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["no_test_loonix"], + deps = [ + ":container_memory", + ":test_instance_tracker", + "//absl/base:no_destructor", + "//absl/meta:type_traits", + "//absl/strings", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "hash_function_defaults", + hdrs = ["internal/hash_function_defaults.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + visibility = [ + "//visibility:private", + ], + deps = [ + "//absl/base:config", + "//absl/hash", + "//absl/strings", + "//absl/strings:cord", + ], +) + +cc_test( + name = "hash_function_defaults_test", + srcs = ["internal/hash_function_defaults_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = NOTEST_TAGS_MOBILE + ["no_test_loonix"], + deps = [ + ":hash_function_defaults", + "//absl/hash", + "//absl/random", + "//absl/strings", + "//absl/strings:cord", + "//absl/strings:cord_test_helpers", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "hash_generator_testing", + testonly = 1, + srcs = ["internal/hash_generator_testing.cc"], + hdrs = ["internal/hash_generator_testing.h"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":hash_policy_testing", + "//absl/base:no_destructor", + "//absl/memory", + "//absl/meta:type_traits", + "//absl/strings", + ], +) + +cc_library( + name = "hash_policy_testing", + testonly = 1, + hdrs = ["internal/hash_policy_testing.h"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + "//absl/hash", + "//absl/strings", + ], +) + +cc_test( + name = "hash_policy_testing_test", + srcs = ["internal/hash_policy_testing_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":hash_policy_testing", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "hash_policy_traits", + hdrs = ["internal/hash_policy_traits.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":common_policy_traits", + "//absl/meta:type_traits", + ], +) + +cc_test( + name = "hash_policy_traits_test", + srcs = ["internal/hash_policy_traits_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":hash_policy_traits", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "common_policy_traits", + hdrs = ["internal/common_policy_traits.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + visibility = ["//visibility:private"], + deps = ["//absl/meta:type_traits"], +) + +cc_test( + name = "common_policy_traits_test", + srcs = ["internal/common_policy_traits_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":common_policy_traits", + "//absl/base:config", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "hashtable_debug", + hdrs = ["internal/hashtable_debug.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":hashtable_debug_hooks", + ], +) + +cc_library( + name = "hashtable_debug_hooks", + hdrs = ["internal/hashtable_debug_hooks.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + "//absl/base:config", + ], +) + +cc_library( + name = "hashtablez_sampler", + srcs = [ + "internal/hashtablez_sampler.cc", + "internal/hashtablez_sampler_force_weak_definition.cc", + ], + hdrs = ["internal/hashtablez_sampler.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + "//absl/base", + "//absl/base:config", + "//absl/base:core_headers", + "//absl/base:raw_logging_internal", + "//absl/debugging:stacktrace", + "//absl/memory", + "//absl/profiling:exponential_biased", + "//absl/profiling:sample_recorder", + "//absl/synchronization", + "//absl/time", + "//absl/utility", + ], +) + +cc_test( + name = "hashtablez_sampler_test", + srcs = ["internal/hashtablez_sampler_test.cc"], + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = [ + "no_test_wasm", + ], + deps = [ + ":hashtablez_sampler", + "//absl/base:config", + "//absl/base:core_headers", + "//absl/profiling:sample_recorder", + "//absl/synchronization", + "//absl/synchronization:thread_pool", + "//absl/time", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "node_slot_policy", + hdrs = ["internal/node_slot_policy.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = ["//absl/base:config"], +) + +cc_test( + name = "node_slot_policy_test", + srcs = ["internal/node_slot_policy_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":hash_policy_traits", + ":node_slot_policy", + "//absl/base:config", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "raw_hash_map", + hdrs = ["internal/raw_hash_map.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":container_memory", + ":raw_hash_set", + "//absl/base:config", + "//absl/base:core_headers", + "//absl/base:throw_delegate", + ], +) + +cc_library( + name = "common", + hdrs = ["internal/common.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + "//absl/meta:type_traits", + "//absl/types:optional", + ], +) + +cc_library( + name = "raw_hash_set", + srcs = ["internal/raw_hash_set.cc"], + hdrs = ["internal/raw_hash_set.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":common", + ":compressed_tuple", + ":container_memory", + ":hash_policy_traits", + ":hashtable_debug_hooks", + ":hashtablez_sampler", + "//absl/base:config", + "//absl/base:core_headers", + "//absl/base:dynamic_annotations", + "//absl/base:endian", + "//absl/base:prefetch", + "//absl/base:raw_logging_internal", + "//absl/hash", + "//absl/memory", + "//absl/meta:type_traits", + "//absl/numeric:bits", + "//absl/utility", + ], +) + +cc_test( + name = "raw_hash_set_test", + srcs = ["internal/raw_hash_set_test.cc"], + copts = ABSL_TEST_COPTS, + linkstatic = 1, + tags = NOTEST_TAGS_MOBILE + [ + "no_test_loonix", + # TODO(b/237097643): investigate race and remove + "noarm_gemu", + ], + deps = [ + ":container_memory", + ":flat_hash_map", + ":flat_hash_set", + ":hash_function_defaults", + ":hash_policy_testing", + ":hashtable_debug", + ":hashtablez_sampler", + ":raw_hash_set", + ":test_allocator", + "//absl/base", + "//absl/base:config", + "//absl/base:core_headers", + "//absl/base:prefetch", + "//absl/hash", + "//absl/log", + "//absl/memory", + "//absl/meta:type_traits", + "//absl/strings", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_binary( + name = "raw_hash_set_benchmark", + testonly = 1, + srcs = ["internal/raw_hash_set_benchmark.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["benchmark"], + visibility = ["//visibility:private"], + deps = [ + ":hash_function_defaults", + ":raw_hash_set", + "//absl/base:raw_logging_internal", + "//absl/strings:str_format", + "@com_github_google_benchmark//:benchmark_main", + ], +) + +cc_binary( + name = "raw_hash_set_probe_benchmark", + testonly = 1, + srcs = ["internal/raw_hash_set_probe_benchmark.cc"], + copts = ABSL_TEST_COPTS, + linkopts = select({ + "//conditions:default": [], + }) + ABSL_DEFAULT_LINKOPTS, + tags = ["benchmark"], + visibility = ["//visibility:private"], + deps = [ + ":flat_hash_map", + ":hash_function_defaults", + ":hashtable_debug", + ":raw_hash_set", + "//absl/base:no_destructor", + "//absl/random", + "//absl/random:distributions", + "//absl/strings", + "//absl/strings:str_format", + "//absl/types:optional", + ], +) + +cc_test( + name = "raw_hash_set_allocator_test", + size = "small", + srcs = ["internal/raw_hash_set_allocator_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":raw_hash_set", + ":tracked", + "//absl/base:config", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "layout", + hdrs = ["internal/layout.h"], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + "//absl/base:config", + "//absl/base:core_headers", + "//absl/debugging:demangle_internal", + "//absl/meta:type_traits", + "//absl/strings", + "//absl/types:span", + "//absl/utility", + ], +) + +cc_test( + name = "layout_test", + size = "small", + srcs = ["internal/layout_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = NOTEST_TAGS_MOBILE + ["no_test_loonix"], + visibility = ["//visibility:private"], + deps = [ + ":layout", + "//absl/base:config", + "//absl/log:check", + "//absl/types:span", + "//absl/utility", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_binary( + name = "layout_benchmark", + testonly = 1, + srcs = ["internal/layout_benchmark.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["benchmark"], + visibility = ["//visibility:private"], + deps = [ + ":layout", + "//absl/base:core_headers", + "//absl/base:raw_logging_internal", + "@com_github_google_benchmark//:benchmark_main", + ], +) + +cc_library( + name = "tracked", + testonly = 1, + hdrs = ["internal/tracked.h"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + "//absl/base:config", + ], +) + +cc_library( + name = "unordered_map_constructor_test", + testonly = 1, + hdrs = ["internal/unordered_map_constructor_test.h"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":hash_generator_testing", + ":hash_policy_testing", + "@com_google_googletest//:gtest", + ], +) + +cc_library( + name = "unordered_map_lookup_test", + testonly = 1, + hdrs = ["internal/unordered_map_lookup_test.h"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":hash_generator_testing", + ":hash_policy_testing", + "@com_google_googletest//:gtest", + ], +) + +cc_library( + name = "unordered_map_modifiers_test", + testonly = 1, + hdrs = ["internal/unordered_map_modifiers_test.h"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":hash_generator_testing", + ":hash_policy_testing", + "@com_google_googletest//:gtest", + ], +) + +cc_library( + name = "unordered_set_constructor_test", + testonly = 1, + hdrs = ["internal/unordered_set_constructor_test.h"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":hash_generator_testing", + ":hash_policy_testing", + "//absl/meta:type_traits", + "@com_google_googletest//:gtest", + ], +) + +cc_library( + name = "unordered_set_members_test", + testonly = 1, + hdrs = ["internal/unordered_set_members_test.h"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + "//absl/meta:type_traits", + "@com_google_googletest//:gtest", + ], +) + +cc_library( + name = "unordered_map_members_test", + testonly = 1, + hdrs = ["internal/unordered_map_members_test.h"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + "//absl/meta:type_traits", + "@com_google_googletest//:gtest", + ], +) + +cc_library( + name = "unordered_set_lookup_test", + testonly = 1, + hdrs = ["internal/unordered_set_lookup_test.h"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":hash_generator_testing", + ":hash_policy_testing", + "@com_google_googletest//:gtest", + ], +) + +cc_library( + name = "unordered_set_modifiers_test", + testonly = 1, + hdrs = ["internal/unordered_set_modifiers_test.h"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + deps = [ + ":hash_generator_testing", + ":hash_policy_testing", + "@com_google_googletest//:gtest", + ], +) + +cc_test( + name = "unordered_set_test", + srcs = ["internal/unordered_set_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["no_test_loonix"], + deps = [ + ":unordered_set_constructor_test", + ":unordered_set_lookup_test", + ":unordered_set_members_test", + ":unordered_set_modifiers_test", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_test( + name = "unordered_map_test", + srcs = ["internal/unordered_map_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["no_test_loonix"], + deps = [ + ":unordered_map_constructor_test", + ":unordered_map_lookup_test", + ":unordered_map_members_test", + ":unordered_map_modifiers_test", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_test( + name = "sample_element_size_test", + srcs = ["sample_element_size_test.cc"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["no_test_loonix"], + visibility = ["//visibility:private"], + deps = [ + ":flat_hash_map", + ":flat_hash_set", + ":node_hash_map", + ":node_hash_set", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_library( + name = "btree", + srcs = [ + "internal/btree.h", + "internal/btree_container.h", + ], + hdrs = [ + "btree_map.h", + "btree_set.h", + ], + copts = ABSL_DEFAULT_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + visibility = ["//visibility:public"], + deps = [ + ":common", + ":common_policy_traits", + ":compressed_tuple", + ":container_memory", + ":layout", + "//absl/base:core_headers", + "//absl/base:raw_logging_internal", + "//absl/base:throw_delegate", + "//absl/memory", + "//absl/meta:type_traits", + "//absl/strings", + "//absl/strings:cord", + "//absl/types:compare", + "//absl/utility", + ], +) + +cc_library( + name = "btree_test_common", + testonly = 1, + hdrs = ["btree_test.h"], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + visibility = ["//visibility:private"], + deps = [ + ":btree", + ":flat_hash_set", + "//absl/strings", + "//absl/strings:cord", + "//absl/time", + ], +) + +cc_test( + name = "btree_test", + size = "large", + srcs = [ + "btree_test.cc", + ], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + shard_count = 10, + tags = [ + "no_test:os:ios", + "no_test_ios", + "no_test_wasm", + ], + visibility = ["//visibility:private"], + deps = [ + ":btree", + ":btree_test_common", + ":test_allocator", + ":test_instance_tracker", + "//absl/algorithm:container", + "//absl/base:core_headers", + "//absl/base:raw_logging_internal", + "//absl/flags:flag", + "//absl/hash:hash_testing", + "//absl/memory", + "//absl/random", + "//absl/strings", + "//absl/types:compare", + "//absl/types:optional", + "@com_google_googletest//:gtest", + "@com_google_googletest//:gtest_main", + ], +) + +cc_binary( + name = "btree_benchmark", + testonly = 1, + srcs = [ + "btree_benchmark.cc", + ], + copts = ABSL_TEST_COPTS, + linkopts = ABSL_DEFAULT_LINKOPTS, + tags = ["benchmark"], + visibility = ["//visibility:private"], + deps = [ + ":btree", + ":btree_test_common", + ":flat_hash_map", + ":flat_hash_set", + ":hashtable_debug", + "//absl/algorithm:container", + "//absl/base:raw_logging_internal", + "//absl/hash", + "//absl/log", + "//absl/memory", + "//absl/random", + "//absl/strings:cord", + "//absl/strings:str_format", + "//absl/time", + "@com_github_google_benchmark//:benchmark_main", + "@com_google_googletest//:gtest", + ], +) diff --git a/weight/_dep/abseil-cpp/ci/cmake_common.sh b/weight/_dep/abseil-cpp/ci/cmake_common.sh new file mode 100644 index 0000000000000000000000000000000000000000..784b38151396f96b5ad6434001978dc7f9a13d67 --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/cmake_common.sh @@ -0,0 +1,29 @@ +# Copyright 2020 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +# The commit of GoogleTest to be used in the CMake tests in this directory. +# Keep this in sync with the commit in the WORKSPACE file. +# TODO(dmauro): After the next GoogleTest release, use the stable file required +# by Bzlmod. This means downloading a copy of the file and reuploading it to +# avoid changing checksums if the compression is changed by GitHub. It also +# means stop referring to it as a commit and instead use the uploaded filename. +readonly ABSL_GOOGLETEST_COMMIT="f8d7d77c06936315286eb55f8de22cd23c188571" + +# Avoid depending on GitHub by looking for a cached copy of the commit first. +if [[ -r "${KOKORO_GFILE_DIR:-}/distdir/${ABSL_GOOGLETEST_COMMIT}.zip" ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_GFILE_DIR}/distdir,target=/distdir,readonly ${DOCKER_EXTRA_ARGS:-}" + ABSL_GOOGLETEST_DOWNLOAD_URL="file:///distdir/${ABSL_GOOGLETEST_COMMIT}.zip" +else + ABSL_GOOGLETEST_DOWNLOAD_URL="https://github.com/google/googletest/archive/${ABSL_GOOGLETEST_COMMIT}.zip" +fi diff --git a/weight/_dep/abseil-cpp/ci/linux_arm_clang-latest_libcxx_bazel.sh b/weight/_dep/abseil-cpp/ci/linux_arm_clang-latest_libcxx_bazel.sh new file mode 100644 index 0000000000000000000000000000000000000000..13f4ad139a54237a3b2b77a3990d08d52e32aab5 --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/linux_arm_clang-latest_libcxx_bazel.sh @@ -0,0 +1,100 @@ +#!/bin/bash +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +# This script that can be invoked to test abseil-cpp in a hermetic environment +# using a Docker image on Linux. You must have Docker installed to use this +# script. + +set -euox pipefail + +if [[ -z ${ABSEIL_ROOT:-} ]]; then + ABSEIL_ROOT="$(realpath $(dirname ${0})/..)" +fi + +if [[ -z ${STD:-} ]]; then + STD="c++14 c++17 c++20" +fi + +if [[ -z ${COMPILATION_MODE:-} ]]; then + COMPILATION_MODE="fastbuild opt" +fi + +if [[ -z ${EXCEPTIONS_MODE:-} ]]; then + EXCEPTIONS_MODE="-fno-exceptions -fexceptions" +fi + +source "${ABSEIL_ROOT}/ci/linux_docker_containers.sh" +readonly DOCKER_CONTAINER=${LINUX_ARM_CLANG_LATEST_CONTAINER} + +# USE_BAZEL_CACHE=1 only works on Kokoro. +# Without access to the credentials this won't work. +if [[ ${USE_BAZEL_CACHE:-0} -ne 0 ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_KEYSTORE_DIR},target=/keystore,readonly ${DOCKER_EXTRA_ARGS:-}" + # Bazel doesn't track changes to tools outside of the workspace + # (e.g. /usr/bin/gcc), so by appending the docker container to the + # remote_http_cache url, we make changes to the container part of + # the cache key. Hashing the key is to make it shorter and url-safe. + container_key=$(echo ${DOCKER_CONTAINER} | sha256sum | head -c 16) + BAZEL_EXTRA_ARGS="--remote_cache=https://storage.googleapis.com/absl-bazel-remote-cache/${container_key} --google_credentials=/keystore/73103_absl-bazel-remote-cache ${BAZEL_EXTRA_ARGS:-}" +fi + +# Avoid depending on external sites like GitHub by checking --distdir for +# external dependencies first. +# https://docs.bazel.build/versions/master/guide.html#distdir +if [[ ${KOKORO_GFILE_DIR:-} ]] && [[ -d "${KOKORO_GFILE_DIR}/distdir" ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_GFILE_DIR}/distdir,target=/distdir,readonly ${DOCKER_EXTRA_ARGS:-}" + BAZEL_EXTRA_ARGS="--distdir=/distdir ${BAZEL_EXTRA_ARGS:-}" +fi + +for std in ${STD}; do + for compilation_mode in ${COMPILATION_MODE}; do + for exceptions_mode in ${EXCEPTIONS_MODE}; do + echo "--------------------------------------------------------------------" + time docker run \ + --mount type=bind,source="${ABSEIL_ROOT}",target=/abseil-cpp-ro,readonly \ + --tmpfs=/abseil-cpp \ + --workdir=/abseil-cpp \ + --cap-add=SYS_PTRACE \ + --rm \ + -e CC="/opt/llvm/clang/bin/clang" \ + -e BAZEL_CXXOPTS="-std=${std}:-nostdinc++" \ + -e BAZEL_LINKOPTS="-L/opt/llvm/clang/lib/aarch64-unknown-linux-gnu:-lc++:-lc++abi:-lm:-Wl,-rpath=/opt/llvm/clang/lib/aarch64-unknown-linux-gnu" \ + -e CPLUS_INCLUDE_PATH="/opt/llvm/clang/include/aarch64-unknown-linux-gnu/c++/v1:/opt/llvm/clang/include/c++/v1" \ + ${DOCKER_EXTRA_ARGS:-} \ + ${DOCKER_CONTAINER} \ + /bin/sh -c " + cp -r /abseil-cpp-ro/* /abseil-cpp/ + if [ -n \"${ALTERNATE_OPTIONS:-}\" ]; then + cp ${ALTERNATE_OPTIONS:-} absl/base/options.h || exit 1 + fi + /usr/local/bin/bazel test ... \ + --compilation_mode=\"${compilation_mode}\" \ + --copt=\"${exceptions_mode}\" \ + --copt=\"-DGTEST_REMOVE_LEGACY_TEST_CASEAPI_=1\" \ + --copt=-Werror \ + --define=\"absl=1\" \ + --enable_bzlmod=true \ + --features=external_include_paths \ + --keep_going \ + --show_timestamps \ + --test_env=\"GTEST_INSTALL_FAILURE_SIGNAL_HANDLER=1\" \ + --test_env=\"TZDIR=/abseil-cpp/absl/time/internal/cctz/testdata/zoneinfo\" \ + --test_output=errors \ + --test_tag_filters=-benchmark \ + ${BAZEL_EXTRA_ARGS:-}" + done + done +done diff --git a/weight/_dep/abseil-cpp/ci/linux_clang-latest_libcxx_asan_bazel.sh b/weight/_dep/abseil-cpp/ci/linux_clang-latest_libcxx_asan_bazel.sh new file mode 100644 index 0000000000000000000000000000000000000000..3153fae4d945eb49ae0412520a453430321ab8ac --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/linux_clang-latest_libcxx_asan_bazel.sh @@ -0,0 +1,102 @@ +#!/bin/bash +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +# This script that can be invoked to test abseil-cpp in a hermetic environment +# using a Docker image on Linux. You must have Docker installed to use this +# script. + +set -euox pipefail + +if [[ -z ${ABSEIL_ROOT:-} ]]; then + ABSEIL_ROOT="$(realpath $(dirname ${0})/..)" +fi + +if [[ -z ${STD:-} ]]; then + STD="c++14 c++17 c++20" +fi + +if [[ -z ${COMPILATION_MODE:-} ]]; then + COMPILATION_MODE="fastbuild opt" +fi + +if [[ -z ${EXCEPTIONS_MODE:-} ]]; then + EXCEPTIONS_MODE="-fno-exceptions -fexceptions" +fi + +source "${ABSEIL_ROOT}/ci/linux_docker_containers.sh" +readonly DOCKER_CONTAINER=${LINUX_CLANG_LATEST_CONTAINER} + +# USE_BAZEL_CACHE=1 only works on Kokoro. +# Without access to the credentials this won't work. +if [[ ${USE_BAZEL_CACHE:-0} -ne 0 ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_KEYSTORE_DIR},target=/keystore,readonly ${DOCKER_EXTRA_ARGS:-}" + # Bazel doesn't track changes to tools outside of the workspace + # (e.g. /usr/bin/gcc), so by appending the docker container to the + # remote_http_cache url, we make changes to the container part of + # the cache key. Hashing the key is to make it shorter and url-safe. + container_key=$(echo ${DOCKER_CONTAINER} | sha256sum | head -c 16) + BAZEL_EXTRA_ARGS="--remote_cache=https://storage.googleapis.com/absl-bazel-remote-cache/${container_key} --google_credentials=/keystore/73103_absl-bazel-remote-cache ${BAZEL_EXTRA_ARGS:-}" +fi + +# Avoid depending on external sites like GitHub by checking --distdir for +# external dependencies first. +# https://docs.bazel.build/versions/master/guide.html#distdir +if [[ ${KOKORO_GFILE_DIR:-} ]] && [[ -d "${KOKORO_GFILE_DIR}/distdir" ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_GFILE_DIR}/distdir,target=/distdir,readonly ${DOCKER_EXTRA_ARGS:-}" + BAZEL_EXTRA_ARGS="--distdir=/distdir ${BAZEL_EXTRA_ARGS:-}" +fi + +for std in ${STD}; do + for compilation_mode in ${COMPILATION_MODE}; do + for exceptions_mode in ${EXCEPTIONS_MODE}; do + echo "--------------------------------------------------------------------" + time docker run \ + --mount type=bind,source="${ABSEIL_ROOT}",target=/abseil-cpp,readonly \ + --workdir=/abseil-cpp \ + --cap-add=SYS_PTRACE \ + --rm \ + -e CC="/opt/llvm/clang/bin/clang" \ + -e BAZEL_CXXOPTS="-std=${std}:-nostdinc++" \ + -e BAZEL_LINKOPTS="-L/opt/llvm/libcxx/lib:-lc++:-lc++abi:-lm:-Wl,-rpath=/opt/llvm/libcxx/lib" \ + -e CPLUS_INCLUDE_PATH="/opt/llvm/libcxx/include/c++/v1" \ + ${DOCKER_EXTRA_ARGS:-} \ + ${DOCKER_CONTAINER} \ + /usr/local/bin/bazel test ... \ + --compilation_mode="${compilation_mode}" \ + --copt="${exceptions_mode}" \ + --copt="-DGTEST_REMOVE_LEGACY_TEST_CASEAPI_=1" \ + --copt="-fsanitize=address" \ + --copt="-fsanitize=float-divide-by-zero" \ + --copt="-fsanitize=nullability" \ + --copt="-fsanitize=undefined" \ + --copt="-fno-sanitize-blacklist" \ + --copt=-Werror \ + --enable_bzlmod=true \ + --features=external_include_paths \ + --keep_going \ + --linkopt="-fsanitize=address" \ + --linkopt="-fsanitize-link-c++-runtime" \ + --show_timestamps \ + --test_env="ASAN_SYMBOLIZER_PATH=/opt/llvm/clang/bin/llvm-symbolizer" \ + --test_env="TZDIR=/abseil-cpp/absl/time/internal/cctz/testdata/zoneinfo" \ + --test_env="UBSAN_OPTIONS=print_stacktrace=1" \ + --test_env="UBSAN_SYMBOLIZER_PATH=/opt/llvm/clang/bin/llvm-symbolizer" \ + --test_output=errors \ + --test_tag_filters="-benchmark,-noasan" \ + ${BAZEL_EXTRA_ARGS:-} + done + done +done diff --git a/weight/_dep/abseil-cpp/ci/linux_clang-latest_libcxx_bazel.sh b/weight/_dep/abseil-cpp/ci/linux_clang-latest_libcxx_bazel.sh new file mode 100644 index 0000000000000000000000000000000000000000..4f3eba49016b4ad77fcfc7fdcd3057c99b8fb3a5 --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/linux_clang-latest_libcxx_bazel.sh @@ -0,0 +1,100 @@ +#!/bin/bash +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +# This script that can be invoked to test abseil-cpp in a hermetic environment +# using a Docker image on Linux. You must have Docker installed to use this +# script. + +set -euox pipefail + +if [[ -z ${ABSEIL_ROOT:-} ]]; then + ABSEIL_ROOT="$(realpath $(dirname ${0})/..)" +fi + +if [[ -z ${STD:-} ]]; then + STD="c++14 c++17 c++20" +fi + +if [[ -z ${COMPILATION_MODE:-} ]]; then + COMPILATION_MODE="fastbuild opt" +fi + +if [[ -z ${EXCEPTIONS_MODE:-} ]]; then + EXCEPTIONS_MODE="-fno-exceptions -fexceptions" +fi + +source "${ABSEIL_ROOT}/ci/linux_docker_containers.sh" +readonly DOCKER_CONTAINER=${LINUX_CLANG_LATEST_CONTAINER} + +# USE_BAZEL_CACHE=1 only works on Kokoro. +# Without access to the credentials this won't work. +if [[ ${USE_BAZEL_CACHE:-0} -ne 0 ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_KEYSTORE_DIR},target=/keystore,readonly ${DOCKER_EXTRA_ARGS:-}" + # Bazel doesn't track changes to tools outside of the workspace + # (e.g. /usr/bin/gcc), so by appending the docker container to the + # remote_http_cache url, we make changes to the container part of + # the cache key. Hashing the key is to make it shorter and url-safe. + container_key=$(echo ${DOCKER_CONTAINER} | sha256sum | head -c 16) + BAZEL_EXTRA_ARGS="--remote_cache=https://storage.googleapis.com/absl-bazel-remote-cache/${container_key} --google_credentials=/keystore/73103_absl-bazel-remote-cache ${BAZEL_EXTRA_ARGS:-}" +fi + +# Avoid depending on external sites like GitHub by checking --distdir for +# external dependencies first. +# https://docs.bazel.build/versions/master/guide.html#distdir +if [[ ${KOKORO_GFILE_DIR:-} ]] && [[ -d "${KOKORO_GFILE_DIR}/distdir" ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_GFILE_DIR}/distdir,target=/distdir,readonly ${DOCKER_EXTRA_ARGS:-}" + BAZEL_EXTRA_ARGS="--distdir=/distdir ${BAZEL_EXTRA_ARGS:-}" +fi + +for std in ${STD}; do + for compilation_mode in ${COMPILATION_MODE}; do + for exceptions_mode in ${EXCEPTIONS_MODE}; do + echo "--------------------------------------------------------------------" + time docker run \ + --mount type=bind,source="${ABSEIL_ROOT}",target=/abseil-cpp-ro,readonly \ + --tmpfs=/abseil-cpp \ + --workdir=/abseil-cpp \ + --cap-add=SYS_PTRACE \ + --rm \ + -e CC="/opt/llvm/clang/bin/clang" \ + -e BAZEL_CXXOPTS="-std=${std}:-nostdinc++" \ + -e BAZEL_LINKOPTS="-L/opt/llvm/libcxx/lib:-lc++:-lc++abi:-lm:-Wl,-rpath=/opt/llvm/libcxx/lib" \ + -e CPLUS_INCLUDE_PATH="/opt/llvm/libcxx/include/c++/v1" \ + ${DOCKER_EXTRA_ARGS:-} \ + ${DOCKER_CONTAINER} \ + /bin/sh -c " + cp -r /abseil-cpp-ro/* /abseil-cpp/ + if [ -n \"${ALTERNATE_OPTIONS:-}\" ]; then + cp ${ALTERNATE_OPTIONS:-} absl/base/options.h || exit 1 + fi + /usr/local/bin/bazel test ... \ + --compilation_mode=\"${compilation_mode}\" \ + --copt=\"${exceptions_mode}\" \ + --copt=\"-DGTEST_REMOVE_LEGACY_TEST_CASEAPI_=1\" \ + --copt=-Werror \ + --define=\"absl=1\" \ + --enable_bzlmod=true \ + --features=external_include_paths \ + --keep_going \ + --show_timestamps \ + --test_env=\"GTEST_INSTALL_FAILURE_SIGNAL_HANDLER=1\" \ + --test_env=\"TZDIR=/abseil-cpp/absl/time/internal/cctz/testdata/zoneinfo\" \ + --test_output=errors \ + --test_tag_filters=-benchmark \ + ${BAZEL_EXTRA_ARGS:-}" + done + done +done diff --git a/weight/_dep/abseil-cpp/ci/linux_clang-latest_libcxx_tsan_bazel.sh b/weight/_dep/abseil-cpp/ci/linux_clang-latest_libcxx_tsan_bazel.sh new file mode 100644 index 0000000000000000000000000000000000000000..06f4c2ec8a0129a222777d3092b354182bcbe508 --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/linux_clang-latest_libcxx_tsan_bazel.sh @@ -0,0 +1,97 @@ +#!/bin/bash +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +# This script that can be invoked to test abseil-cpp in a hermetic environment +# using a Docker image on Linux. You must have Docker installed to use this +# script. + +set -euox pipefail + +if [[ -z ${ABSEIL_ROOT:-} ]]; then + ABSEIL_ROOT="$(realpath $(dirname ${0})/..)" +fi + +if [[ -z ${STD:-} ]]; then + STD="c++14 c++17 c++20" +fi + +if [[ -z ${COMPILATION_MODE:-} ]]; then + COMPILATION_MODE="fastbuild opt" +fi + +if [[ -z ${EXCEPTIONS_MODE:-} ]]; then + EXCEPTIONS_MODE="-fno-exceptions -fexceptions" +fi + +source "${ABSEIL_ROOT}/ci/linux_docker_containers.sh" +readonly DOCKER_CONTAINER=${LINUX_CLANG_LATEST_CONTAINER} + +# USE_BAZEL_CACHE=1 only works on Kokoro. +# Without access to the credentials this won't work. +if [[ ${USE_BAZEL_CACHE:-0} -ne 0 ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_KEYSTORE_DIR},target=/keystore,readonly ${DOCKER_EXTRA_ARGS:-}" + # Bazel doesn't track changes to tools outside of the workspace + # (e.g. /usr/bin/gcc), so by appending the docker container to the + # remote_http_cache url, we make changes to the container part of + # the cache key. Hashing the key is to make it shorter and url-safe. + container_key=$(echo ${DOCKER_CONTAINER} | sha256sum | head -c 16) + BAZEL_EXTRA_ARGS="--remote_cache=https://storage.googleapis.com/absl-bazel-remote-cache/${container_key} --google_credentials=/keystore/73103_absl-bazel-remote-cache ${BAZEL_EXTRA_ARGS:-}" +fi + +# Avoid depending on external sites like GitHub by checking --distdir for +# external dependencies first. +# https://docs.bazel.build/versions/master/guide.html#distdir +if [[ ${KOKORO_GFILE_DIR:-} ]] && [[ -d "${KOKORO_GFILE_DIR}/distdir" ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_GFILE_DIR}/distdir,target=/distdir,readonly ${DOCKER_EXTRA_ARGS:-}" + BAZEL_EXTRA_ARGS="--distdir=/distdir ${BAZEL_EXTRA_ARGS:-}" +fi + +for std in ${STD}; do + for compilation_mode in ${COMPILATION_MODE}; do + for exceptions_mode in ${EXCEPTIONS_MODE}; do + echo "--------------------------------------------------------------------" + time docker run \ + --mount type=bind,source="${ABSEIL_ROOT}",target=/abseil-cpp,readonly \ + --workdir=/abseil-cpp \ + --cap-add=SYS_PTRACE \ + --rm \ + -e CC="/opt/llvm/clang/bin/clang" \ + -e BAZEL_CXXOPTS="-std=${std}:-nostdinc++" \ + -e BAZEL_LINKOPTS="-L/opt/llvm/libcxx-tsan/lib:-lc++:-lc++abi:-lm:-Wl,-rpath=/opt/llvm/libcxx-tsan/lib" \ + -e CPLUS_INCLUDE_PATH="/opt/llvm/libcxx-tsan/include/c++/v1" \ + ${DOCKER_EXTRA_ARGS:-} \ + ${DOCKER_CONTAINER} \ + /usr/local/bin/bazel test ... \ + --build_tag_filters="-notsan" \ + --compilation_mode="${compilation_mode}" \ + --copt="${exceptions_mode}" \ + --copt="-DGTEST_REMOVE_LEGACY_TEST_CASEAPI_=1" \ + --copt="-fsanitize=thread" \ + --copt="-fno-sanitize-blacklist" \ + --copt=-Werror \ + --enable_bzlmod=true \ + --features=external_include_paths \ + --keep_going \ + --linkopt="-fsanitize=thread" \ + --show_timestamps \ + --test_env="TSAN_SYMBOLIZER_PATH=/opt/llvm/clang/bin/llvm-symbolizer" \ + --test_env="TZDIR=/abseil-cpp/absl/time/internal/cctz/testdata/zoneinfo" \ + --test_output=errors \ + --test_tag_filters="-benchmark,-notsan" \ + ${BAZEL_EXTRA_ARGS:-} + done + done +done diff --git a/weight/_dep/abseil-cpp/ci/linux_clang-latest_libstdcxx_bazel.sh b/weight/_dep/abseil-cpp/ci/linux_clang-latest_libstdcxx_bazel.sh new file mode 100644 index 0000000000000000000000000000000000000000..d499e13c149820547483a4f4823531ad598dffca --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/linux_clang-latest_libstdcxx_bazel.sh @@ -0,0 +1,95 @@ +#!/bin/bash +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +# This script that can be invoked to test abseil-cpp in a hermetic environment +# using a Docker image on Linux. You must have Docker installed to use this +# script. + +set -euox pipefail + +if [[ -z ${ABSEIL_ROOT:-} ]]; then + ABSEIL_ROOT="$(realpath $(dirname ${0})/..)" +fi + +if [[ -z ${STD:-} ]]; then + STD="c++14 c++17" +fi + +if [[ -z ${COMPILATION_MODE:-} ]]; then + COMPILATION_MODE="fastbuild opt" +fi + +if [[ -z ${EXCEPTIONS_MODE:-} ]]; then + EXCEPTIONS_MODE="-fno-exceptions -fexceptions" +fi + +source "${ABSEIL_ROOT}/ci/linux_docker_containers.sh" +readonly DOCKER_CONTAINER=${LINUX_CLANG_LATEST_CONTAINER} + +# USE_BAZEL_CACHE=1 only works on Kokoro. +# Without access to the credentials this won't work. +if [[ ${USE_BAZEL_CACHE:-0} -ne 0 ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_KEYSTORE_DIR},target=/keystore,readonly ${DOCKER_EXTRA_ARGS:-}" + # Bazel doesn't track changes to tools outside of the workspace + # (e.g. /usr/bin/gcc), so by appending the docker container to the + # remote_http_cache url, we make changes to the container part of + # the cache key. Hashing the key is to make it shorter and url-safe. + container_key=$(echo ${DOCKER_CONTAINER} | sha256sum | head -c 16) + BAZEL_EXTRA_ARGS="--remote_cache=https://storage.googleapis.com/absl-bazel-remote-cache/${container_key} --google_credentials=/keystore/73103_absl-bazel-remote-cache ${BAZEL_EXTRA_ARGS:-}" +fi + +# Avoid depending on external sites like GitHub by checking --distdir for +# external dependencies first. +# https://docs.bazel.build/versions/master/guide.html#distdir +if [[ ${KOKORO_GFILE_DIR:-} ]] && [[ -d "${KOKORO_GFILE_DIR}/distdir" ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_GFILE_DIR}/distdir,target=/distdir,readonly ${DOCKER_EXTRA_ARGS:-}" + BAZEL_EXTRA_ARGS="--distdir=/distdir ${BAZEL_EXTRA_ARGS:-}" +fi + +for std in ${STD}; do + for compilation_mode in ${COMPILATION_MODE}; do + for exceptions_mode in ${EXCEPTIONS_MODE}; do + echo "--------------------------------------------------------------------" + time docker run \ + --mount type=bind,source="${ABSEIL_ROOT}",target=/abseil-cpp,readonly \ + --workdir=/abseil-cpp \ + --cap-add=SYS_PTRACE \ + --rm \ + -e CC="/opt/llvm/clang/bin/clang" \ + -e BAZEL_CXXOPTS="-std=${std}" \ + ${DOCKER_EXTRA_ARGS:-} \ + ${DOCKER_CONTAINER} \ + /usr/local/bin/bazel test ... \ + --compilation_mode="${compilation_mode}" \ + --copt="--gcc-toolchain=/usr/local" \ + --copt="-DGTEST_REMOVE_LEGACY_TEST_CASEAPI_=1" \ + --copt="${exceptions_mode}" \ + --copt="-march=haswell" \ + --copt=-Werror \ + --define="absl=1" \ + --enable_bzlmod=true \ + --features=external_include_paths \ + --keep_going \ + --linkopt="--gcc-toolchain=/usr/local" \ + --show_timestamps \ + --test_env="GTEST_INSTALL_FAILURE_SIGNAL_HANDLER=1" \ + --test_env="TZDIR=/abseil-cpp/absl/time/internal/cctz/testdata/zoneinfo" \ + --test_output=errors \ + --test_tag_filters=-benchmark \ + ${BAZEL_EXTRA_ARGS:-} + done + done +done diff --git a/weight/_dep/abseil-cpp/ci/linux_docker_containers.sh b/weight/_dep/abseil-cpp/ci/linux_docker_containers.sh new file mode 100644 index 0000000000000000000000000000000000000000..232233d136eac497925134ba1cbcc85c644b3aac --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/linux_docker_containers.sh @@ -0,0 +1,22 @@ +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +# The file contains Docker container identifiers currently used by test scripts. +# Test scripts should source this file to get the identifiers. + +readonly LINUX_ALPINE_CONTAINER="gcr.io/google.com/absl-177019/alpine:20230612" +readonly LINUX_CLANG_LATEST_CONTAINER="gcr.io/google.com/absl-177019/linux_hybrid-latest:20231218" +readonly LINUX_ARM_CLANG_LATEST_CONTAINER="gcr.io/google.com/absl-177019/linux_arm_hybrid-latest:20231219" +readonly LINUX_GCC_LATEST_CONTAINER="gcr.io/google.com/absl-177019/linux_hybrid-latest:20231218" +readonly LINUX_GCC_FLOOR_CONTAINER="gcr.io/google.com/absl-177019/linux_gcc-floor:20230120" diff --git a/weight/_dep/abseil-cpp/ci/linux_gcc-floor_libstdcxx_bazel.sh b/weight/_dep/abseil-cpp/ci/linux_gcc-floor_libstdcxx_bazel.sh new file mode 100644 index 0000000000000000000000000000000000000000..5bd1dbf8fd88f33733a00834630caac508859d57 --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/linux_gcc-floor_libstdcxx_bazel.sh @@ -0,0 +1,95 @@ +#!/bin/bash +# +# Copyright 2020 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +# This script that can be invoked to test abseil-cpp in a hermetic environment +# using a Docker image on Linux. You must have Docker installed to use this +# script. + +set -euox pipefail + +if [[ -z ${ABSEIL_ROOT:-} ]]; then + ABSEIL_ROOT="$(realpath $(dirname ${0})/..)" +fi + +if [[ -z ${STD:-} ]]; then + STD="c++14" +fi + +if [[ -z ${COMPILATION_MODE:-} ]]; then + COMPILATION_MODE="fastbuild opt" +fi + +if [[ -z ${EXCEPTIONS_MODE:-} ]]; then + EXCEPTIONS_MODE="-fno-exceptions -fexceptions" +fi + +source "${ABSEIL_ROOT}/ci/linux_docker_containers.sh" +readonly DOCKER_CONTAINER=${LINUX_GCC_FLOOR_CONTAINER} + +# USE_BAZEL_CACHE=1 only works on Kokoro. +# Without access to the credentials this won't work. +if [[ ${USE_BAZEL_CACHE:-0} -ne 0 ]]; then + DOCKER_EXTRA_ARGS="--volume=${KOKORO_KEYSTORE_DIR}:/keystore:ro ${DOCKER_EXTRA_ARGS:-}" + # Bazel doesn't track changes to tools outside of the workspace + # (e.g. /usr/bin/gcc), so by appending the docker container to the + # remote_http_cache url, we make changes to the container part of + # the cache key. Hashing the key is to make it shorter and url-safe. + container_key=$(echo ${DOCKER_CONTAINER} | sha256sum | head -c 16) + BAZEL_EXTRA_ARGS="--remote_http_cache=https://storage.googleapis.com/absl-bazel-remote-cache/${container_key} --google_credentials=/keystore/73103_absl-bazel-remote-cache ${BAZEL_EXTRA_ARGS:-}" +fi + +# Avoid depending on external sites like GitHub by checking --distdir for +# external dependencies first. +# https://docs.bazel.build/versions/master/guide.html#distdir +if [[ ${KOKORO_GFILE_DIR:-} ]] && [[ -d "${KOKORO_GFILE_DIR}/distdir" ]]; then + DOCKER_EXTRA_ARGS="--volume=${KOKORO_GFILE_DIR}/distdir:/distdir:ro ${DOCKER_EXTRA_ARGS:-}" + BAZEL_EXTRA_ARGS="--distdir=/distdir ${BAZEL_EXTRA_ARGS:-}" +fi + +# TODO(absl-team): This currently uses Bazel 5. When upgrading to a version +# of Bazel that supports Bzlmod, add --enable_bzlmod=false to keep test +# coverage for the old WORKSPACE dependency management. +for std in ${STD}; do + for compilation_mode in ${COMPILATION_MODE}; do + for exceptions_mode in ${EXCEPTIONS_MODE}; do + echo "--------------------------------------------------------------------" + time docker run \ + --volume="${ABSEIL_ROOT}:/abseil-cpp:ro" \ + --workdir=/abseil-cpp \ + --cap-add=SYS_PTRACE \ + --rm \ + -e CC="/usr/local/bin/gcc" \ + -e BAZEL_CXXOPTS="-std=${std}" \ + ${DOCKER_EXTRA_ARGS:-} \ + ${DOCKER_CONTAINER} \ + /usr/local/bin/bazel test ... \ + --compilation_mode="${compilation_mode}" \ + --copt="${exceptions_mode}" \ + --copt="-DGTEST_REMOVE_LEGACY_TEST_CASEAPI_=1" \ + --copt=-Werror \ + --define="absl=1" \ + --distdir="/bazel-distdir" \ + --features=external_include_paths \ + --keep_going \ + --show_timestamps \ + --test_env="GTEST_INSTALL_FAILURE_SIGNAL_HANDLER=1" \ + --test_env="TZDIR=/abseil-cpp/absl/time/internal/cctz/testdata/zoneinfo" \ + --test_output=errors \ + --test_tag_filters=-benchmark \ + ${BAZEL_EXTRA_ARGS:-} + done + done +done diff --git a/weight/_dep/abseil-cpp/ci/linux_gcc-latest_libstdcxx_bazel.sh b/weight/_dep/abseil-cpp/ci/linux_gcc-latest_libstdcxx_bazel.sh new file mode 100644 index 0000000000000000000000000000000000000000..8f773466af7d20da0119b398ab8d63ea9c58c67f --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/linux_gcc-latest_libstdcxx_bazel.sh @@ -0,0 +1,98 @@ +#!/bin/bash +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +# This script that can be invoked to test abseil-cpp in a hermetic environment +# using a Docker image on Linux. You must have Docker installed to use this +# script. + +set -euox pipefail + +if [[ -z ${ABSEIL_ROOT:-} ]]; then + ABSEIL_ROOT="$(realpath $(dirname ${0})/..)" +fi + +if [[ -z ${STD:-} ]]; then + STD="c++14 c++17 c++20" +fi + +if [[ -z ${COMPILATION_MODE:-} ]]; then + COMPILATION_MODE="fastbuild opt" +fi + +if [[ -z ${EXCEPTIONS_MODE:-} ]]; then + EXCEPTIONS_MODE="-fno-exceptions -fexceptions" +fi + +source "${ABSEIL_ROOT}/ci/linux_docker_containers.sh" +readonly DOCKER_CONTAINER=${LINUX_GCC_LATEST_CONTAINER} + +# USE_BAZEL_CACHE=1 only works on Kokoro. +# Without access to the credentials this won't work. +if [[ ${USE_BAZEL_CACHE:-0} -ne 0 ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_KEYSTORE_DIR},target=/keystore,readonly ${DOCKER_EXTRA_ARGS:-}" + # Bazel doesn't track changes to tools outside of the workspace + # (e.g. /usr/bin/gcc), so by appending the docker container to the + # remote_http_cache url, we make changes to the container part of + # the cache key. Hashing the key is to make it shorter and url-safe. + container_key=$(echo ${DOCKER_CONTAINER} | sha256sum | head -c 16) + BAZEL_EXTRA_ARGS="--remote_cache=https://storage.googleapis.com/absl-bazel-remote-cache/${container_key} --google_credentials=/keystore/73103_absl-bazel-remote-cache ${BAZEL_EXTRA_ARGS:-}" +fi + +# Avoid depending on external sites like GitHub by checking --distdir for +# external dependencies first. +# https://docs.bazel.build/versions/master/guide.html#distdir +if [[ ${KOKORO_GFILE_DIR:-} ]] && [[ -d "${KOKORO_GFILE_DIR}/distdir" ]]; then + DOCKER_EXTRA_ARGS="--mount type=bind,source=${KOKORO_GFILE_DIR}/distdir,target=/distdir,readonly ${DOCKER_EXTRA_ARGS:-}" + BAZEL_EXTRA_ARGS="--distdir=/distdir ${BAZEL_EXTRA_ARGS:-}" +fi + +for std in ${STD}; do + for compilation_mode in ${COMPILATION_MODE}; do + for exceptions_mode in ${EXCEPTIONS_MODE}; do + echo "--------------------------------------------------------------------" + time docker run \ + --mount type=bind,source="${ABSEIL_ROOT}",target=/abseil-cpp-ro,readonly \ + --tmpfs=/abseil-cpp \ + --workdir=/abseil-cpp \ + --cap-add=SYS_PTRACE \ + --rm \ + -e CC="/usr/local/bin/gcc" \ + -e BAZEL_CXXOPTS="-std=${std}" \ + ${DOCKER_EXTRA_ARGS:-} \ + ${DOCKER_CONTAINER} \ + /bin/sh -c " + cp -r /abseil-cpp-ro/* /abseil-cpp/ + if [ -n \"${ALTERNATE_OPTIONS:-}\" ]; then + cp ${ALTERNATE_OPTIONS:-} absl/base/options.h || exit 1 + fi + /usr/local/bin/bazel test ... \ + --compilation_mode=\"${compilation_mode}\" \ + --copt=\"${exceptions_mode}\" \ + --copt=\"-DGTEST_REMOVE_LEGACY_TEST_CASEAPI_=1\" \ + --copt=-Werror \ + --define=\"absl=1\" \ + --enable_bzlmod=true \ + --features=external_include_paths \ + --keep_going \ + --show_timestamps \ + --test_env=\"GTEST_INSTALL_FAILURE_SIGNAL_HANDLER=1\" \ + --test_env=\"TZDIR=/abseil-cpp/absl/time/internal/cctz/testdata/zoneinfo\" \ + --test_output=errors \ + --test_tag_filters=-benchmark \ + ${BAZEL_EXTRA_ARGS:-}" + done + done +done diff --git a/weight/_dep/abseil-cpp/ci/linux_gcc-latest_libstdcxx_cmake.sh b/weight/_dep/abseil-cpp/ci/linux_gcc-latest_libstdcxx_cmake.sh new file mode 100644 index 0000000000000000000000000000000000000000..1f72123613e8a7026e5365f3b29596c19469d8db --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/linux_gcc-latest_libstdcxx_cmake.sh @@ -0,0 +1,66 @@ +#!/bin/bash +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +set -euox pipefail + +if [[ -z ${ABSEIL_ROOT:-} ]]; then + ABSEIL_ROOT="$(realpath $(dirname ${0})/..)" +fi + +source "${ABSEIL_ROOT}/ci/cmake_common.sh" + +if [[ -z ${ABSL_CMAKE_CXX_STANDARDS:-} ]]; then + ABSL_CMAKE_CXX_STANDARDS="14 17 20" +fi + +if [[ -z ${ABSL_CMAKE_BUILD_TYPES:-} ]]; then + ABSL_CMAKE_BUILD_TYPES="Debug Release" +fi + +if [[ -z ${ABSL_CMAKE_BUILD_SHARED:-} ]]; then + ABSL_CMAKE_BUILD_SHARED="OFF ON" +fi + +source "${ABSEIL_ROOT}/ci/linux_docker_containers.sh" +readonly DOCKER_CONTAINER=${LINUX_GCC_LATEST_CONTAINER} + +for std in ${ABSL_CMAKE_CXX_STANDARDS}; do + for compilation_mode in ${ABSL_CMAKE_BUILD_TYPES}; do + for build_shared in ${ABSL_CMAKE_BUILD_SHARED}; do + time docker run \ + --mount type=bind,source="${ABSEIL_ROOT}",target=/abseil-cpp,readonly \ + --tmpfs=/buildfs:exec \ + --workdir=/buildfs \ + --cap-add=SYS_PTRACE \ + --rm \ + -e CFLAGS="-Werror" \ + -e CXXFLAGS="-Werror" \ + ${DOCKER_EXTRA_ARGS:-} \ + "${DOCKER_CONTAINER}" \ + /bin/bash -c " + cmake /abseil-cpp \ + -DABSL_GOOGLETEST_DOWNLOAD_URL=${ABSL_GOOGLETEST_DOWNLOAD_URL} \ + -DBUILD_SHARED_LIBS=${build_shared} \ + -DABSL_BUILD_TESTING=ON \ + -DCMAKE_BUILD_TYPE=${compilation_mode} \ + -DCMAKE_CXX_STANDARD=${std} \ + -DCMAKE_MODULE_LINKER_FLAGS=\"-Wl,--no-undefined\" && \ + make -j$(nproc) && \ + TZDIR=/abseil-cpp/absl/time/internal/cctz/testdata/zoneinfo \ + ctest -j$(nproc) --output-on-failure" + done + done +done diff --git a/weight/_dep/abseil-cpp/ci/linux_gcc_alpine_cmake.sh b/weight/_dep/abseil-cpp/ci/linux_gcc_alpine_cmake.sh new file mode 100644 index 0000000000000000000000000000000000000000..b784456fb7aba32170ebcc6b0c92099a0d397b44 --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/linux_gcc_alpine_cmake.sh @@ -0,0 +1,65 @@ +#!/bin/bash +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +set -euox pipefail + +if [[ -z ${ABSEIL_ROOT:-} ]]; then + ABSEIL_ROOT="$(realpath $(dirname ${0})/..)" +fi + +source "${ABSEIL_ROOT}/ci/cmake_common.sh" + +if [[ -z ${ABSL_CMAKE_CXX_STANDARDS:-} ]]; then + ABSL_CMAKE_CXX_STANDARDS="14 17" +fi + +if [[ -z ${ABSL_CMAKE_BUILD_TYPES:-} ]]; then + ABSL_CMAKE_BUILD_TYPES="Debug Release" +fi + +if [[ -z ${ABSL_CMAKE_BUILD_SHARED:-} ]]; then + ABSL_CMAKE_BUILD_SHARED="OFF ON" +fi + +source "${ABSEIL_ROOT}/ci/linux_docker_containers.sh" +readonly DOCKER_CONTAINER=${LINUX_ALPINE_CONTAINER} + +for std in ${ABSL_CMAKE_CXX_STANDARDS}; do + for compilation_mode in ${ABSL_CMAKE_BUILD_TYPES}; do + for build_shared in ${ABSL_CMAKE_BUILD_SHARED}; do + time docker run \ + --mount type=bind,source="${ABSEIL_ROOT}",target=/abseil-cpp,readonly \ + --tmpfs=/buildfs:exec \ + --workdir=/buildfs \ + --cap-add=SYS_PTRACE \ + --rm \ + -e CFLAGS="-Werror" \ + -e CXXFLAGS="-Werror" \ + ${DOCKER_EXTRA_ARGS:-} \ + "${DOCKER_CONTAINER}" \ + /bin/sh -c " + cmake /abseil-cpp \ + -DABSL_GOOGLETEST_DOWNLOAD_URL=${ABSL_GOOGLETEST_DOWNLOAD_URL} \ + -DABSL_BUILD_TESTING=ON \ + -DCMAKE_BUILD_TYPE=${compilation_mode} \ + -DCMAKE_CXX_STANDARD=${std} \ + -DCMAKE_MODULE_LINKER_FLAGS=\"-Wl,--no-undefined\" && \ + make -j$(nproc) && \ + TZDIR=/abseil-cpp/absl/time/internal/cctz/testdata/zoneinfo \ + ctest -j$(nproc) --output-on-failure" + done + done +done diff --git a/weight/_dep/abseil-cpp/ci/macos_xcode_bazel.sh b/weight/_dep/abseil-cpp/ci/macos_xcode_bazel.sh new file mode 100644 index 0000000000000000000000000000000000000000..bb8fb4bd93a9af765fe9c9bf5d6beaa9b8118111 --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/macos_xcode_bazel.sh @@ -0,0 +1,66 @@ +#!/bin/bash +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +# This script is invoked on Kokoro to test Abseil on macOS. +# It is not hermetic and may break when Kokoro is updated. + +set -euox pipefail + +if [[ -z ${ABSEIL_ROOT:-} ]]; then + ABSEIL_ROOT="$(realpath $(dirname ${0})/..)" +fi + +# If we are running on Kokoro, check for a versioned Bazel binary. +KOKORO_GFILE_BAZEL_BIN="bazel-7.0.0-darwin-x86_64" +if [[ ${KOKORO_GFILE_DIR:-} ]] && [[ -f ${KOKORO_GFILE_DIR}/${KOKORO_GFILE_BAZEL_BIN} ]]; then + BAZEL_BIN="${KOKORO_GFILE_DIR}/${KOKORO_GFILE_BAZEL_BIN}" + chmod +x ${BAZEL_BIN} +else + BAZEL_BIN="bazel" +fi + +# Avoid depending on external sites like GitHub by checking --distdir for +# external dependencies first. +# https://docs.bazel.build/versions/master/guide.html#distdir +if [[ ${KOKORO_GFILE_DIR:-} ]] && [[ -d "${KOKORO_GFILE_DIR}/distdir" ]]; then + BAZEL_EXTRA_ARGS="--distdir=${KOKORO_GFILE_DIR}/distdir ${BAZEL_EXTRA_ARGS:-}" +fi + +# Print the compiler and Bazel versions. +echo "---------------" +gcc -v +echo "---------------" +${BAZEL_BIN} version +echo "---------------" + +cd ${ABSEIL_ROOT} + +if [[ -n "${ALTERNATE_OPTIONS:-}" ]]; then + cp ${ALTERNATE_OPTIONS:-} absl/base/options.h || exit 1 +fi + +${BAZEL_BIN} test ... \ + --copt="-DGTEST_REMOVE_LEGACY_TEST_CASEAPI_=1" \ + --copt="-Werror" \ + --cxxopt="-std=c++14" \ + --enable_bzlmod=true \ + --features=external_include_paths \ + --keep_going \ + --show_timestamps \ + --test_env="TZDIR=${ABSEIL_ROOT}/absl/time/internal/cctz/testdata/zoneinfo" \ + --test_output=errors \ + --test_tag_filters=-benchmark \ + ${BAZEL_EXTRA_ARGS:-} diff --git a/weight/_dep/abseil-cpp/ci/macos_xcode_cmake.sh b/weight/_dep/abseil-cpp/ci/macos_xcode_cmake.sh new file mode 100644 index 0000000000000000000000000000000000000000..690f86b842eef71a04e3aa449393311b66a3e8ba --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/macos_xcode_cmake.sh @@ -0,0 +1,57 @@ +#!/bin/bash +# +# Copyright 2019 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. + +set -euox pipefail + +if [[ -z ${ABSEIL_ROOT:-} ]]; then + ABSEIL_ROOT="$(dirname ${0})/.." +fi +ABSEIL_ROOT=$(realpath ${ABSEIL_ROOT}) + +source "${ABSEIL_ROOT}/ci/cmake_common.sh" + +# The MacOS build doesn't run in a docker container, so we have to override ABSL_GOOGLETEST_DOWNLOAD_URL. +if [[ -r "${KOKORO_GFILE_DIR}/distdir/${ABSL_GOOGLETEST_COMMIT}.zip" ]]; then + ABSL_GOOGLETEST_DOWNLOAD_URL="file://${KOKORO_GFILE_DIR}/distdir/${ABSL_GOOGLETEST_COMMIT}.zip" +fi + +if [[ -z ${ABSL_CMAKE_BUILD_TYPES:-} ]]; then + ABSL_CMAKE_BUILD_TYPES="Debug" +fi + +if [[ -z ${ABSL_CMAKE_BUILD_SHARED:-} ]]; then + ABSL_CMAKE_BUILD_SHARED="OFF ON" +fi + +for compilation_mode in ${ABSL_CMAKE_BUILD_TYPES}; do + for build_shared in ${ABSL_CMAKE_BUILD_SHARED}; do + BUILD_DIR=$(mktemp -d ${compilation_mode}.XXXXXXXX) + cd ${BUILD_DIR} + + # TODO(absl-team): Enable -Werror once all warnings are fixed. + time cmake ${ABSEIL_ROOT} \ + -GXcode \ + -DBUILD_SHARED_LIBS=${build_shared} \ + -DABSL_BUILD_TESTING=ON \ + -DCMAKE_BUILD_TYPE=${compilation_mode} \ + -DCMAKE_CXX_STANDARD=14 \ + -DCMAKE_MODULE_LINKER_FLAGS="-Wl,--no-undefined" \ + -DABSL_GOOGLETEST_DOWNLOAD_URL="${ABSL_GOOGLETEST_DOWNLOAD_URL}" + time cmake --build . + time TZDIR=${ABSEIL_ROOT}/absl/time/internal/cctz/testdata/zoneinfo \ + ctest -C ${compilation_mode} --output-on-failure + done +done diff --git a/weight/_dep/abseil-cpp/ci/windows_clangcl_bazel.bat b/weight/_dep/abseil-cpp/ci/windows_clangcl_bazel.bat new file mode 100644 index 0000000000000000000000000000000000000000..5162628be86a94b83f3f50d07f3bb1bcc2f70f97 --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/windows_clangcl_bazel.bat @@ -0,0 +1,61 @@ +:: Copyright 2023 The Abseil Authors +:: +:: Licensed under the Apache License, Version 2.0 (the "License"); +:: you may not use this file except in compliance with the License. +:: You may obtain a copy of the License at +:: +:: https://www.apache.org/licenses/LICENSE-2.0 +:: +:: Unless required by applicable law or agreed to in writing, software +:: distributed under the License is distributed on an "AS IS" BASIS, +:: WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +:: See the License for the specific language governing permissions and +:: limitations under the License. + +SETLOCAL ENABLEDELAYEDEXPANSION + +:: Set LLVM directory. +SET BAZEL_LLVM=C:\Program Files\LLVM + +:: Change directory to the root of the project. +CD %~dp0\.. +if %errorlevel% neq 0 EXIT /B 1 + +:: Set the standard version, [c++14|c++17|c++20|c++latest] +:: https://msdn.microsoft.com/en-us/library/mt490614.aspx +:: The default is c++14 if not set on command line. +IF "%STD%"=="" SET STD=c++14 + +:: Set the compilation_mode (fastbuild|opt|dbg) +:: https://docs.bazel.build/versions/master/user-manual.html#flag--compilation_mode +:: The default is fastbuild +IF "%COMPILATION_MODE%"=="" SET COMPILATION_MODE=fastbuild + +:: Copy the alternate option file, if specified. +IF NOT "%ALTERNATE_OPTIONS%"=="" copy %ALTERNATE_OPTIONS% absl\base\options.h + +:: To upgrade Bazel, first download a new binary from +:: https://github.com/bazelbuild/bazel/releases and copy it to +:: /google/data/rw/teams/absl/kokoro/windows. +:: +:: TODO(absl-team): Remove -Wno-microsoft-cast +%KOKORO_GFILE_DIR%\bazel-7.0.0-windows-x86_64.exe ^ + test ... ^ + --compilation_mode=%COMPILATION_MODE% ^ + --compiler=clang-cl ^ + --copt=/std:%STD% ^ + --copt=/WX ^ + --copt=-Wno-microsoft-cast ^ + --define=absl=1 ^ + --distdir=%KOKORO_GFILE_DIR%\distdir ^ + --enable_bzlmod=true ^ + --extra_execution_platforms=//absl:x64_windows-clang-cl ^ + --extra_toolchains=@local_config_cc//:cc-toolchain-x64_windows-clang-cl ^ + --keep_going ^ + --test_env="GTEST_INSTALL_FAILURE_SIGNAL_HANDLER=1" ^ + --test_env=TZDIR="%CD%\absl\time\internal\cctz\testdata\zoneinfo" ^ + --test_output=errors ^ + --test_tag_filters=-benchmark + +if %errorlevel% neq 0 EXIT /B 1 +EXIT /B 0 diff --git a/weight/_dep/abseil-cpp/ci/windows_msvc_bazel.bat b/weight/_dep/abseil-cpp/ci/windows_msvc_bazel.bat new file mode 100644 index 0000000000000000000000000000000000000000..e2acf5fdf2fcf2640548b4c1d1c59a0703bfd0ff --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/windows_msvc_bazel.bat @@ -0,0 +1,52 @@ +:: Copyright 2023 The Abseil Authors +:: +:: Licensed under the Apache License, Version 2.0 (the "License"); +:: you may not use this file except in compliance with the License. +:: You may obtain a copy of the License at +:: +:: https://www.apache.org/licenses/LICENSE-2.0 +:: +:: Unless required by applicable law or agreed to in writing, software +:: distributed under the License is distributed on an "AS IS" BASIS, +:: WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +:: See the License for the specific language governing permissions and +:: limitations under the License. + +SETLOCAL ENABLEDELAYEDEXPANSION + +:: Change directory to the root of the project. +CD %~dp0\.. +if %errorlevel% neq 0 EXIT /B 1 + +:: Set the standard version, [c++14|c++latest] +:: https://msdn.microsoft.com/en-us/library/mt490614.aspx +:: The default is c++14 if not set on command line. +IF "%STD%"=="" SET STD=c++14 + +:: Set the compilation_mode (fastbuild|opt|dbg) +:: https://docs.bazel.build/versions/master/user-manual.html#flag--compilation_mode +:: The default is fastbuild +IF "%COMPILATION_MODE%"=="" SET COMPILATION_MODE=fastbuild + +:: Copy the alternate option file, if specified. +IF NOT "%ALTERNATE_OPTIONS%"=="" copy %ALTERNATE_OPTIONS% absl\base\options.h + +:: To upgrade Bazel, first download a new binary from +:: https://github.com/bazelbuild/bazel/releases and copy it to +:: /google/data/rw/teams/absl/kokoro/windows. +%KOKORO_GFILE_DIR%\bazel-7.0.0-windows-x86_64.exe ^ + test ... ^ + --compilation_mode=%COMPILATION_MODE% ^ + --copt=/WX ^ + --copt=/std:%STD% ^ + --define=absl=1 ^ + --distdir=%KOKORO_GFILE_DIR%\distdir ^ + --enable_bzlmod=true ^ + --keep_going ^ + --test_env="GTEST_INSTALL_FAILURE_SIGNAL_HANDLER=1" ^ + --test_env=TZDIR="%CD%\absl\time\internal\cctz\testdata\zoneinfo" ^ + --test_output=errors ^ + --test_tag_filters=-benchmark + +if %errorlevel% neq 0 EXIT /B 1 +EXIT /B 0 diff --git a/weight/_dep/abseil-cpp/ci/windows_msvc_cmake.bat b/weight/_dep/abseil-cpp/ci/windows_msvc_cmake.bat new file mode 100644 index 0000000000000000000000000000000000000000..c0f1ac9455834f0335f58aff9e296d8920b03477 --- /dev/null +++ b/weight/_dep/abseil-cpp/ci/windows_msvc_cmake.bat @@ -0,0 +1,74 @@ +:: Copyright 2023 The Abseil Authors +:: +:: Licensed under the Apache License, Version 2.0 (the "License"); +:: you may not use this file except in compliance with the License. +:: You may obtain a copy of the License at +:: +:: https://www.apache.org/licenses/LICENSE-2.0 +:: +:: Unless required by applicable law or agreed to in writing, software +:: distributed under the License is distributed on an "AS IS" BASIS, +:: WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +:: See the License for the specific language governing permissions and +:: limitations under the License. + +SETLOCAL ENABLEDELAYEDEXPANSION + +:: The commit of GoogleTest to be used in the CMake tests in this directory. +:: Keep this in sync with the commit in the WORKSPACE file. +:: TODO(dmauro): After the next GoogleTest release, use the stable file required +:: by Bzlmod. This means downloading a copy of the file and reuploading it to +:: avoid changing checksums if the compression is changed by GitHub. It also +:: means stop referring to it as a commit and instead use the uploaded filename. +SET ABSL_GOOGLETEST_COMMIT=f8d7d77c06936315286eb55f8de22cd23c188571 + +IF EXIST %KOKORO_GFILE_DIR%\distdir\%ABSL_GOOGLETEST_COMMIT%.zip ( + SET ABSL_GOOGLETEST_DOWNLOAD_URL=file://%KOKORO_GFILE_DIR%\distdir\%ABSL_GOOGLETEST_COMMIT%.zip +) ELSE ( + SET ABSL_GOOGLETEST_DOWNLOAD_URL=https://github.com/google/googletest/archive/%ABSL_GOOGLETEST_COMMIT%.zip +) + +:: Replace '\' with '/' in Windows paths for CMake. +:: Note that this cannot go inside the IF block above, because BAT files are weird. +SET ABSL_GOOGLETEST_DOWNLOAD_URL=%ABSL_GOOGLETEST_DOWNLOAD_URL:\=/% + +IF EXIST "C:\Program Files\CMake\bin\" ( + SET CMAKE_BIN="C:\Program Files\CMake\bin\cmake.exe" + SET CTEST_BIN="C:\Program Files\CMake\bin\ctest.exe" +) ELSE ( + SET CMAKE_BIN="cmake.exe" + SET CTEST_BIN="ctest.exe" +) + +SET CTEST_OUTPUT_ON_FAILURE=1 +SET CMAKE_BUILD_PARALLEL_LEVEL=16 +SET CTEST_PARALLEL_LEVEL=16 + +:: Change directory to the root of the project. +CD %~dp0\.. +if %errorlevel% neq 0 EXIT /B 1 + +SET TZDIR=%CD%\absl\time\internal\cctz\testdata\zoneinfo + +MKDIR "build" +CD "build" + +SET CXXFLAGS="/WX" + +%CMAKE_BIN% ^ + -DABSL_BUILD_TEST_HELPERS=ON ^ + -DABSL_BUILD_TESTING=ON ^ + -DABSL_GOOGLETEST_DOWNLOAD_URL=%ABSL_GOOGLETEST_DOWNLOAD_URL% ^ + -DBUILD_SHARED_LIBS=%ABSL_CMAKE_BUILD_SHARED% ^ + -DCMAKE_CXX_STANDARD=%ABSL_CMAKE_CXX_STANDARD% ^ + -G "%ABSL_CMAKE_GENERATOR%" ^ + .. +IF %errorlevel% neq 0 EXIT /B 1 + +%CMAKE_BIN% --build . --target ALL_BUILD --config %ABSL_CMAKE_BUILD_TYPE% +IF %errorlevel% neq 0 EXIT /B 1 + +%CTEST_BIN% -C %ABSL_CMAKE_BUILD_TYPE% -E "absl_lifetime_test|absl_symbolize_test" +IF %errorlevel% neq 0 EXIT /B 1 + +EXIT /B 0 diff --git a/weight/_dep/abseil-cpp/create_lts.py b/weight/_dep/abseil-cpp/create_lts.py new file mode 100644 index 0000000000000000000000000000000000000000..7e5368e15dd1ac0bc877425bdbb9ccf0eb852cbf --- /dev/null +++ b/weight/_dep/abseil-cpp/create_lts.py @@ -0,0 +1,138 @@ +#!/usr/bin/env python3 +# +# Copyright 2021 The Abseil Authors. +# +# Licensed under the Apache License, Version 2.0 (the "License"); +# you may not use this file except in compliance with the License. +# You may obtain a copy of the License at +# +# https://www.apache.org/licenses/LICENSE-2.0 +# +# Unless required by applicable law or agreed to in writing, software +# distributed under the License is distributed on an "AS IS" BASIS, +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +# See the License for the specific language governing permissions and +# limitations under the License. +"""A script to do source transformations to create a new LTS release. + + Usage: ./create_lts.py YYYYMMDD +""" + +import sys + + +def ReplaceStringsInFile(filename, replacement_dict): + """Performs textual replacements in a file. + + Rewrites filename with the keys in replacement_dict replaced with + their values. This function assumes the file can fit in memory. + + Args: + filename: the filename to perform the replacement on + replacement_dict: a dictionary of key strings to be replaced with their + values + + Raises: + Exception: A failure occurred + """ + f = open(filename, 'r') + content = f.read() + f.close() + + for key, value in replacement_dict.items(): + original = content + content = content.replace(key, value) + if content == original: + raise Exception('Failed to find {} in {}'.format(key, filename)) + + f = open(filename, 'w') + f.write(content) + f.close() + + +def StripContentBetweenTags(filename, strip_begin_tag, strip_end_tag): + """Strip contents from a file. + + Rewrites filename with by removing all content between + strip_begin_tag and strip_end_tag, including the tags themselves. + + Args: + filename: the filename to perform the replacement on + strip_begin_tag: the start of the content to be removed + strip_end_tag: the end of the content to be removed + + Raises: + Exception: A failure occurred + """ + f = open(filename, 'r') + content = f.read() + f.close() + + while True: + begin = content.find(strip_begin_tag) + if begin == -1: + break + end = content.find(strip_end_tag, begin + len(strip_begin_tag)) + if end == -1: + raise Exception('{}: imbalanced strip begin ({}) and ' + 'end ({}) tags'.format(filename, strip_begin_tag, + strip_end_tag)) + content = content.replace(content[begin:end + len(strip_end_tag)], '') + + f = open(filename, 'w') + f.write(content) + f.close() + + +def main(argv): + if len(argv) != 2: + print('Usage: {} YYYYMMDD'.format(sys.argv[0], file=sys.stderr)) + sys.exit(1) + + datestamp = sys.argv[1] + if len(datestamp) != 8 or not datestamp.isdigit(): + raise Exception( + 'datestamp={} is not in the YYYYMMDD format'.format(datestamp)) + + # Replacement directives go here. + ReplaceStringsInFile( + 'MODULE.bazel', { + 'version = "head"': + 'version = "{}.0"'.format(datestamp) + }) + ReplaceStringsInFile( + 'absl/base/config.h', { + '#undef ABSL_LTS_RELEASE_VERSION': + '#define ABSL_LTS_RELEASE_VERSION {}'.format(datestamp), + '#undef ABSL_LTS_RELEASE_PATCH_LEVEL': + '#define ABSL_LTS_RELEASE_PATCH_LEVEL 0' + }) + ReplaceStringsInFile( + 'absl/base/options.h', { + '#define ABSL_OPTION_USE_INLINE_NAMESPACE 0': + '#define ABSL_OPTION_USE_INLINE_NAMESPACE 1', + '#define ABSL_OPTION_INLINE_NAMESPACE_NAME head': + '#define ABSL_OPTION_INLINE_NAMESPACE_NAME lts_{}'.format( + datestamp) + }) + ReplaceStringsInFile( + 'CMakeLists.txt', { + 'project(absl LANGUAGES CXX)': + 'project(absl LANGUAGES CXX VERSION {})'.format(datestamp) + }) + # Set the SOVERSION to YYMM.0.0 - The first 0 means we only have ABI + # compatible changes, and the second 0 means we can increment it to + # mark changes as ABI-compatible, for patch releases. Note that we + # only use the last two digits of the year and the month because the + # MacOS linker requires the first part of the SOVERSION to fit into + # 16 bits. + # https://www.sicpers.info/2013/03/how-to-version-a-mach-o-library/ + ReplaceStringsInFile( + 'CMake/AbseilHelpers.cmake', + {'SOVERSION 0': 'SOVERSION "{}.0.0"'.format(datestamp[2:6])}) + StripContentBetweenTags('CMakeLists.txt', '# absl:lts-remove-begin', + '# absl:lts-remove-end') + + +if __name__ == '__main__': + main(sys.argv)