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首页> 外文期刊>The Plant Cell >Structural and Functional Divergence of a 1-Mb Duplicated Region in the Soybean (Glycine max) Genome and Comparison to an Orthologous Region from Phaseolus vulgaris
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Structural and Functional Divergence of a 1-Mb Duplicated Region in the Soybean (Glycine max) Genome and Comparison to an Orthologous Region from Phaseolus vulgaris

机译:大豆(最大大豆)基因组中1-Mb重复区的结构和功能差异以及与菜豆直向同源区的比较

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摘要

Soybean (Glycine max) has undergone at least two rounds of polyploidization, resulting in a paleopolyploid genome that is a mosaic of homoeologous regions. To determine the structural and functional impact of these duplications, we sequenced two similar to 1-Mb homoeologous regions of soybean, Gm8 and Gm15, derived from the most recent similar to 13 million year duplication event and the orthologous region from common bean (Phaseolus vulgaris), Pv5. We observed inversions leading to major structural variation and a bias between the two chromosome segments as Gm15 experienced more gene movement (gene retention rate of 81% in Gm15 versus 91% in Gm8) and a nearly twofold increase in the deletion of long terminal repeat (LTR) retrotransposons via solo LTR formation. Functional analyses of Gm15 and Gm8 revealed decreases in gene expression and synonymous substitution rates for Gm15, for instance, a 38% increase in transcript levels from Gm8 relative to Gm15. Transcriptional divergence of homoeologs was found based on expression patterns among seven tissues and developmental stages. Our results indicate asymmetric evolution between homoeologous regions of soybean as evidenced by structural changes and expression variances of homoeologous genes.
机译:大豆(Glycine max)已经历了至少两轮多倍体化,从而形成了一个古多倍体基因组,该基因组是同源区域的镶嵌体。为了确定这些重复的结构和功能影响,我们对两个相似于大豆的1-Mb同源区域进行了测序,分别是Gm8和Gm15,它们来自最近一次相似的1300万年重复事件,以及来自普通豆的直系同源区域(菜豆) ),Pv5。由于Gm15经历了更多的基因移动(Gm15中的基因保留率分别为81%和Gm8中的91%),并且长末端重复序列的缺失几乎增加了两倍,因此我们观察到了导致主要结构变异和两个染色体区段之间存在偏差的倒位( LTR)逆转录转座子通过单独的LTR形成。对Gm15和Gm8的功能分析显示,Gm15的基因表达下降和同义替换率降低,例如,相对于Gm15,Gm8的转录水平增加了38%。基于七个组织和发育阶段之间的表达模式,发现了同源物的转录差异。我们的结果表明,通过同源基因的结构变化和表达差异证明了大豆同源区域之间的不对称进化。

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