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首页> 外文期刊>BMC Genomics >Transcriptome sequencing of Eucalyptus camaldulensis seedlings subjected to water stress reveals functional single nucleotide polymorphisms and genes under selection
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Transcriptome sequencing of Eucalyptus camaldulensis seedlings subjected to water stress reveals functional single nucleotide polymorphisms and genes under selection

机译:水分胁迫下桉树幼苗的转录组测序揭示了功能性单核苷酸多态性和选择基因

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Background Water stress limits plant survival and production in many parts of the world. Identification of genes and alleles responding to water stress conditions is important in breeding plants better adapted to drought. Currently there are no studies examining the transcriptome wide gene and allelic expression patterns under water stress conditions. We used RNA sequencing (RNA-seq) to identify the candidate genes and alleles and to explore the evolutionary signatures of selection. Results We studied the effect of water stress on gene expression in Eucalyptus camaldulensis seedlings derived from three natural populations. We used reference-guided transcriptome mapping to study gene expression. Several genes showed differential expression between control and stress conditions. Gene ontology (GO) enrichment tests revealed up-regulation of 140 stress-related gene categories and down-regulation of 35 metabolic and cell wall organisation gene categories. More than 190,000 single nucleotide polymorphisms (SNPs) were detected and 2737 of these showed differential allelic expression. Allelic expression of 52% of these variants was correlated with differential gene expression. Signatures of selection patterns were studied by estimating the proportion of nonsynonymous to synonymous substitution rates (Ka/Ks). The average Ka/Ks ratio among the 13,719 genes was 0.39 indicating that most of the genes are under purifying selection. Among the positively selected genes (Ka/Ks > 1.5) apoptosis and cell death categories were enriched. Of the 287 positively selected genes, ninety genes showed differential expression and 27 SNPs from 17 positively selected genes showed differential allelic expression between treatments. Conclusions Correlation of allelic expression of several SNPs with total gene expression indicates that these variants may be the cis-acting variants or in linkage disequilibrium with such variants. Enrichment of apoptosis and cell death gene categories among the positively selected genes reveals the past selection pressures experienced by the populations used in this study.
机译:背景技术水分胁迫限制了世界许多地方的植物生存和生产。鉴定对水分胁迫条件有响应的基因和等位基因对于育种更适合干旱的植物很重要。目前尚无研究在水分胁迫条件下转录组全基因和等位基因表达模式的研究。我们使用RNA测序(RNA-seq)来识别候选基因和等位基因,并探索选择的进化特征。结果我们研究了水分胁迫对来自三个自然种群的桉树幼苗幼苗基因表达的影响。我们使用参考指导的转录组作图来研究基因表达。几个基因显示出对照和胁迫条件之间的差异表达。基因本体论(GO)富集测试显示,上调了140种与压力相关的基因类别,下调了35种代谢和细胞壁组织基因类别。检测到超过190,000个单核苷酸多态性(SNP),其中2737个显示差异等位基因表达。这些变体中52%的等位基因表达与差异基因表达相关。通过估计非同义与同义替换率(Ka / Ks)的比例来研究选择模式的签名。 13,719个基因中的平均Ka / Ks比为0.39,表明大多数基因正在纯化选择中。在阳性选择的基因(Ka / Ks> 1.5)中,细胞凋亡和细胞死亡类别得到了丰富。在287个阳性选择基因中,有90个基因显示差异表达,而17个阳性选择基因中的27个SNP在处理之间表现出等位基因表达差异。结论几个SNP的等位基因表达与总基因表达的相关性表明,这些变体可能是顺式作用变体,或与这些变体连锁不平衡。在积极选择的基因中,细胞凋亡和细胞死亡基因类别的丰富揭示了该研究人群过去经历的选择压力。

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