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Patterns of homoeologous gene expression shown by RNA sequencing in hexaploid bread wheat

机译:六倍体面包小麦中RNA测序显示的同种型基因表达的图案

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Background Bread wheat (Triticum aestivum) has a large, complex and hexaploid genome consisting of A, B and D homoeologous chromosome sets. Therefore each wheat gene potentially exists as a trio of A, B and D homoeoloci, each of which may contribute differentially to wheat phenotypes. We describe a novel approach combining wheat cytogenetic resources (chromosome substitution ‘nullisomic-tetrasomic’ lines) with next generation deep sequencing of gene transcripts (RNA-Seq), to directly and accurately identify homoeologue-specific single nucleotide variants and quantify the relative contribution of individual homoeoloci to gene expression. Results We discover, based on a sample comprising ~5-10% of the total wheat gene content, that at least 45% of wheat genes are expressed from all three distinct homoeoloci. Most of these genes show strikingly biased expression patterns in which expression is dominated by a single homoeolocus. The remaining ~55% of wheat genes are expressed from either one or two homoeoloci only, through a combination of extensive transcriptional silencing and homoeolocus loss. Conclusions We conclude that wheat is tending towards functional diploidy, through a variety of mechanisms causing single homoeoloci to become the predominant source of gene transcripts. This discovery has profound consequences for wheat breeding and our understanding of wheat evolution.
机译:背景面包小麦(Triticum aestivum)具有由A,B和D同优染色体组成的大,复杂和六倍倍体基因组。因此,每个小麦基因可能存在作为TriO的A,B和D HomoOleoloci,每种单溶胶可能与小麦表型差异差异。我们描述了一种新的方法,将小麦细胞遗传学资源组合(染色体替代'无损伤性 - 四元族)与基因转录物(RNA-SEQ)的下一代深度测序,直接和精确地识别特异性特异性单核苷酸变体,并量化相对贡献单个homoeoloci对基因表达。结果我们发现基于包含总小麦基因含量的〜5-10%的样品,其中至少45%的小麦基因从所有三种不同的Homoeoloci表达。这些基因中的大多数显示出尖锐的偏置表达模式,其中表达由单个同种聚合主导。剩余的~55%的小麦基因仅从一个或两种同种溶胶纤维表达,通过广泛的转录沉默和同种型失损。结论我们得出结论,小麦通过各种机制倾向于功能性合金,导致单一HOMOEOLOCI成为基因转录物的主要来源。这一发现对小麦养殖和我们对小麦进化的理解产生了深刻的影响。

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