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Deep transcriptome sequencing provides new insights into the structural and functional organization of the wheat genome

机译:深度转录组测序为小麦基因组的结构和功能组织提供了新见解

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Background: Because of its size, allohexaploid nature, and high repeat content, the bread wheat genome is a good model to study the impact of the genome structure on gene organization, function, and regulation. However, because of the lack of a reference genome sequence, such studies have long been hampered and our knowledge of the wheat gene space is still limited. The access to the reference sequence of the wheat chromosome 3B provided us with an opportunity to study the wheat transcriptome and its relationships to genome and gene structure at a level that has never been reached before. Results: By combining this sequence with RNA-seq data, we construct a fine transcriptome map of the chromosome 3B. More than 8,800 transcription sites are identified, that are distributed throughout the entire chromosome. Expression level, expression breadth, alternative splicing as well as several structural features of genes, including transcript length, number of exons, and cumulative intron length are investigated. Our analysis reveals a non-monotonic relationship between gene expression and structure and leads to the hypothesis that gene structure is determined by its function, whereas gene expression is subject to energetic cost. Moreover, we observe a recombination-based partitioning at the gene structure and function level. Conclusions: Our analysis provides new insights into the relationships between gene and genome structure and function. It reveals mechanisms conserved with other plant species as well as superimposed evolutionary forces that shaped the wheat gene space, likely participating in wheat adaptation.
机译:背景:由于面包小麦基因组的大小,异六倍体性质和高重复含量,它是研究基因组结构对基因组织,功能和调控的影响的良好模型。但是,由于缺乏参考基因组序列,此类研究长期受到阻碍,我们对小麦基因空间的了解仍然有限。访问小麦3B染色体参考序列为我们提供了一个机会,以前所未有的水平研究小麦转录组及其与基因组和基因结构的关系。结果:通过将该序列与RNA-seq数据结合,我们构建了3B染色体的精细转录组图。鉴定出超过8,800个转录位点,分布在整个染色体上。研究了表达水平,表达广度,选择性剪接以及基因的几个结构特征,包括转录本长度,外显子数量和累积内含子长度。我们的分析揭示了基因表达与结构之间的非单调关系,并得出这样的假设,即基因结构由其功能决定,而基因表达则要付出高昂的代价。此外,我们在基因结构和功能水平上观察到基于重组的分区。结论:我们的分析为基因与基因组结构和功能之间的关系提供了新的见解。它揭示了与其他植物物种保守的机制,以及叠加了影响小麦基因空间的进化力,可能参与了小麦的适应。

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