# Menu : Microarray ######################################################### ## Sub Menu : Atlas #### ### アトラスを読み込む #### SRscore_microarray <- readRDS("data/microarray/SRscore_microarray.rds") colnames_microarray <- gsub("\\..+", "", list.files("data/microarray/SRratio/")) SRscore_microarray[colnames_microarray] <- round(SRscore_microarray[colnames_microarray]) ### アトラスをヒートマップ化する時の色の設定 #### paletteLength <- 100 microarrayBreaks <- c(seq(min(SRscore_microarray[colnames_microarray]), 0, length.out = (paletteLength/2)), seq(0, max(SRscore_microarray[colnames_microarray]), length.out = (paletteLength/2))[-1]) microarrayColor <- colorRampPalette(c("deepskyblue", "white", "hotpink"))(paletteLength) ### 外部DBへのリンクをアトラスに追加する #### # リンクの見た目設定 link <- rep("link", nrow(SRscore_microarray)) # 新規タブで開く(脆弱性対策付き) blank <- "target = _blank rel = noopener noreferrer" # AlphaFold2 url <- rep(paste0("https://alphafold.ebi.ac.uk/search/text/", SRscore_microarray$ensembl_gene_id)) AF2 <- paste0("", link, "") # ATTED-II url <- rep(paste0("https://atted.jp/kwsearch/?stype=any&kword=", SRscore_microarray$ensembl_gene_id, "&searchBtnK.x=0&searchBtnK.y=0")) ATTED2 <- paste0("", link, "") # eFP Browser url <- rep(paste0("https://bar.utoronto.ca/efp/cgi-bin/efpWeb.cgi?dataSource=Abiotic_Stress&mode=Absolute&primaryGene=", SRscore_microarray$ensembl_gene_id)) eFP <- paste0("", link, "") # KEGG url <- rep(paste0("https://www.genome.jp/dbget-bin/www_bget?ath:", SRscore_microarray$ensembl_gene_id)) KEGG <- paste0("", link, "") # STRING url <- rep(paste0("https://string-db.org/cgi/network?identifiers=", SRscore_microarray$ensembl_gene_id, "&species=3702&show_query_node_labels=1")) STRING <- paste0("", link, "") # TAIR url <- rep(paste0("https://www.arabidopsis.org/locus?name=", SRscore_microarray$ensembl_gene_id)) TAIR <- paste0("", link, "") # ThaleMine url <- rep(paste0("https://bar.utoronto.ca/thalemine/keywordSearchResults.do?searchTerm=", SRscore_microarray$ensembl_gene_id, "&searchSubmit=GO")) TM <- paste0("", link, "") # それぞれのリンクをアトラスに結合 SRscore_microarray <- cbind(SRscore_microarray, "AlphaFold2" = AF2, "ATTED-II" = ATTED2, "eFP Browser" = eFP, "KEGG" = KEGG, "STRING" = STRING, "TAIR" = TAIR, "Thale Mine" = TM) ### SRratioの読み込み #### ABA_ratiom <- readRDS("data/microarray/SRratio/ABA.rds") Cold_ratiom <- readRDS("data/microarray/SRratio/Cold.rds") DC3000_ratiom <- readRDS("data/microarray/SRratio/DC3000.rds") Drought_ratiom <- readRDS("data/microarray/SRratio/Drought.rds") Heat_ratiom <- readRDS("data/microarray/SRratio/Heat.rds") `High-light_ratiom` <- readRDS("data/microarray/SRratio/High-light.rds") Hypoxia_ratiom <- readRDS("data/microarray/SRratio/Hypoxia.rds") Osmotic_ratiom <- readRDS("data/microarray/SRratio/Osmotic.rds") Oxidation_ratiom <- readRDS("data/microarray/SRratio/Oxidation.rds") Salt_ratiom <- readRDS("data/microarray/SRratio/Salt.rds") Wound_ratiom <- readRDS("data/microarray/SRratio/Wound.rds") ### メタデータの読み込み #### ABA_metadatam <- readRDS("data/microarray/Metadata/ABA.rds") Cold_metadatam <- readRDS("data/microarray/Metadata/Cold.rds") DC3000_metadatam <- readRDS("data/microarray/Metadata/DC3000.rds") Drought_metadatam <- readRDS("data/microarray/Metadata/Drought.rds") Heat_metadatam <- readRDS("data/microarray/Metadata/Heat.rds") `High-light_metadatam` <- readRDS("data/microarray/Metadata/High-light.rds") Hypoxia_metadatam <- readRDS("data/microarray/Metadata/Hypoxia.rds") Osmotic_metadatam <- readRDS("data/microarray/Metadata/Osmotic.rds") Oxidation_metadatam <- readRDS("data/microarray/Metadata/Oxidation.rds") Salt_metadatam <- readRDS("data/microarray/Metadata/Salt.rds") Wound_metadatam <- readRDS("data/microarray/Metadata/Wound.rds") ## Sub Menu : Template Matching #### ### アトラスをgenefinder()に入力可能な形式に変換 #### genefinder_microarray <- column_to_rownames(SRscore_microarray, var = "ensembl_gene_id") genefinder_microarray <- genefinder_microarray[colnames_microarray] genefinder_microarray <- as.matrix(genefinder_microarray) # データ集計 list_microarray <- list(ABA_metadatam = ABA_metadatam, Cold_metadatam = Cold_metadatam, DC3000_metadatam = DC3000_metadatam, Drought_metadatam = Drought_metadatam, Heat_metadatam = Heat_metadatam, `High-light_metadatam` = `High-light_metadatam`, Hypoxia_metadatam = Hypoxia_metadatam, Osmotic_metadatam = Osmotic_metadatam, Oxidation_metadatam = Oxidation_metadatam, Salt_metadatam = Salt_metadatam, Wound_metadatam = Wound_metadatam ) ## 対象サンプルの集計 numof_control_ma <- list_microarray %>% lapply("[[", "control_sample") %>% lapply(na.omit) %>% lapply(length) numof_control_ma <- unlist(numof_control_ma) ## 実験サンプルの集計 numof_treatment_ma <- list_microarray %>% lapply("[[", "treated_sample") %>% lapply(na.omit) %>% lapply(length) numof_treatment_ma <- unlist(numof_treatment_ma) ## 研究プロジェクトの集計 numof_series_ma <- list_microarray %>% lapply("[[", "Series") %>% lapply(unique) %>% lapply(length) numof_series_ma <- unlist(numof_series_ma) ## 集計カテゴリ行とストレス列からなるデータフレームを作成する collections_ma <- rbind(numof_control_ma, numof_treatment_ma, numof_series_ma) collections_ma <- as.data.frame(collections_ma) colnames(collections_ma) <- colnames_microarray # RNA-Seq ######################################################### ## Atlas #### ### アトラスを読み込む #### SRscore_rnaseq <- readRDS("data/rnaseq/SRscore_rnaseq.rds") colnames_rnaseq <- gsub("\\..+", "", list.files("data/rnaseq/SRratio/")) SRscore_rnaseq[colnames_rnaseq] <- round(SRscore_rnaseq[colnames_rnaseq]) ### アトラスをヒートマップ化する時の色の設定 #### paletteLength <- 100 rnaseqBreaks <- c(seq(min(SRscore_rnaseq[colnames_rnaseq]), 0, length.out = (paletteLength/2)), seq(0, max(SRscore_rnaseq[colnames_rnaseq]), length.out = (paletteLength/2))[-1]) rnaseqColor <- colorRampPalette(c("deepskyblue", "white", "hotpink"))(paletteLength) ### 外部DBへのリンクをアトラスに追加する #### # リンクの見た目設定 link <- rep("link", nrow(SRscore_rnaseq)) # AlphaFold2 url <- rep(paste0("https://alphafold.ebi.ac.uk/search/text/", SRscore_rnaseq$ensembl_gene_id)) AF2 <- paste0("", link, "") # ATTED-II url <- rep(paste0("https://atted.jp/kwsearch/?stype=any&kword=", SRscore_rnaseq$ensembl_gene_id, "&searchBtnK.x=0&searchBtnK.y=0")) ATTED2 <- paste0("", link, "") # eFP Browser url <- rep(paste0("https://bar.utoronto.ca/efp/cgi-bin/efpWeb.cgi?dataSource=Abiotic_Stress&mode=Absolute&primaryGene=", SRscore_rnaseq$ensembl_gene_id)) eFP <- paste0("", link, "") # KEGG url <- rep(paste0("https://www.genome.jp/dbget-bin/www_bget?ath:", SRscore_rnaseq$ensembl_gene_id)) KEGG <- paste0("", link, "") # STRING url <- rep(paste0("https://string-db.org/cgi/network?identifiers=", SRscore_rnaseq$ensembl_gene_id, "&species=3702&show_query_node_labels=1")) STRING <- paste0("", link, "") # TAIR url <- rep(paste0("https://www.arabidopsis.org/locus?name=", SRscore_rnaseq$ensembl_gene_id)) TAIR <- paste0("", link, "") # ThaleMine url <- rep(paste0("https://bar.utoronto.ca/thalemine/keywordSearchResults.do?searchTerm=", SRscore_rnaseq$ensembl_gene_id, "&searchSubmit=GO")) TM <- paste0("", link, "") # 各リンクをアトラスへ結合 SRscore_rnaseq <- cbind(SRscore_rnaseq, "AlphaFold2" = AF2, "ATTED-II" = ATTED2, "eFP Browser" = eFP, "KEGG" = KEGG, "STRING" = STRING, "TAIR" = TAIR, "Thale Mine" = TM) ### SRratioの読み込み #### ABA_ratior <- readRDS("data/rnaseq/SRratio/ABA.rds") Cold_ratior <- readRDS("data/rnaseq/SRratio/Cold.rds") DC3000_ratior <- readRDS("data/rnaseq/SRratio/DC3000.rds") Drought_ratior <- readRDS("data/rnaseq/SRratio/Drought.rds") Heat_ratior <- readRDS("data/rnaseq/SRratio/Heat.rds") `High-light_ratior` <- readRDS("data/rnaseq/SRratio/High-light.rds") Hypoxia_ratior <- readRDS("data/rnaseq/SRratio/Hypoxia.rds") Osmotic_ratior <- readRDS("data/rnaseq/SRratio/Osmotic.rds") Oxidation_ratior <- readRDS("data/rnaseq/SRratio/Oxidation.rds") Salt_ratior <- readRDS("data/rnaseq/SRratio/Salt.rds") Wound_ratior <- readRDS("data/rnaseq/SRratio/Wound.rds") ### メタデータの読み込み #### ABA_metadatar <- readRDS("data/rnaseq/Metadata/ABA.rds") Cold_metadatar <- readRDS("data/rnaseq/Metadata/Cold.rds") DC3000_metadatar <- readRDS("data/rnaseq/Metadata/DC3000.rds") Drought_metadatar <- readRDS("data/rnaseq/Metadata/Drought.rds") Heat_metadatar <- readRDS("data/rnaseq/Metadata/Heat.rds") `High-light_metadatar` <- readRDS("data/rnaseq/Metadata/High-light.rds") Hypoxia_metadatar <- readRDS("data/rnaseq/Metadata/Hypoxia.rds") Osmotic_metadatar <- readRDS("data/rnaseq/Metadata/Osmotic.rds") Oxidation_metadatar <- readRDS("data/rnaseq/Metadata/Oxidation.rds") Salt_metadatar <- readRDS("data/rnaseq/Metadata/Salt.rds") Wound_metadatar <- readRDS("data/rnaseq/Metadata/Wound.rds") ## Sub Menu : Template Matching #### ### アトラスをgenefinder()に入力可能な形式に変換 #### genefinder_rnaseq <- column_to_rownames(SRscore_rnaseq, var = "ensembl_gene_id") genefinder_rnaseq <- genefinder_rnaseq[colnames_rnaseq] genefinder_rnaseq <- as.matrix(genefinder_rnaseq) # データ集計 list_rnaseq <- list(ABA_metadatar = ABA_metadatar, Cold_metadatar = Cold_metadatar, DC3000_metadatar = DC3000_metadatar, Drought_metadatar = Drought_metadatar, Heat_metadatar = Heat_metadatar, `High-light_metadatar` = `High-light_metadatar`, Hypoxia_metadatar = Hypoxia_metadatar, Osmotic_metadatar = Osmotic_metadatar, Oxidation_metadatar = Oxidation_metadatar, Salt_metadatar = Salt_metadatar, Wound_metadatar = Wound_metadatar ) ## 対象サンプルの集計 numof_control_rs <- list_rnaseq %>% lapply("[[", "control_sample") %>% lapply(na.omit) %>% lapply(length) numof_control_rs <- unlist(numof_control_rs) ## 実験サンプルの集計 numof_treatment_rs <- list_rnaseq %>% lapply("[[", "treated_sample") %>% lapply(na.omit) %>% lapply(length) numof_treatment_rs <- unlist(numof_treatment_rs) ## 研究プロジェクトの集計 numof_series_rs <- list_rnaseq %>% lapply("[[", "Series") %>% lapply(unique) %>% lapply(length) numof_series_rs <- unlist(numof_series_rs) ## 集計カテゴリ行とストレス列からなるデータフレームを作成する collections_rs <- rbind(numof_control_rs, numof_treatment_rs, numof_series_rs) collections_rs <- as.data.frame(collections_rs) colnames(collections_rs) <- colnames_rnaseq ## データの収集状況をアプリ画面に表示する CollectionsInfo <- function(stress) { HTML(paste0( "