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Changes in Twelve Homoeologous Genomic Regions in Soybean following Three Rounds of Polyploidy

机译:经过三轮多倍性分析,大豆中十二个同源基因组区域的变化

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With the advent of high-throughput sequencing, the availability of genomic sequence for comparative genomics is increasing exponentially. Numerous completed plant genome sequences enable characterization of patterns of the retention and evolution of genes within gene families due to multiple polyploidy events, gene loss and fractionation, and differential evolutionary pressures over time and across different gene families. In this report, we trace the changes that have occurred in 12 surviving homoeologous genomic regions from three rounds of polyploidy that contributed to the current Glycine max genome: a genome triplication before the origin of the rosids (similar to 130 to 240 million years ago), a genome duplication early in the legumes (similar to 58 million years ago), and a duplication in the Glycine lineage (similar to 13 million years ago). Patterns of gene retention following the genome triplication event generally support predictions of the Gene Balance Hypothesis. Finally, we find that genes in networks with a high level of connectivity are more strongly conserved than those with low connectivity and that the enrichment of these highly connected genes in the 12 highly conserved homoeologous segments may in part explain their retention over more than 100 million years and repeated polyploidy events.
机译:随着高通量测序的出现,用于比较基因组学的基因组序列的可用性呈指数增长。由于多个多倍性事件,基因丢失和分级分离以及随着时间推移以及跨不同基因家族的不同进化压力,许多完整的植物基因组序列能够表征基因家族内基因的保留和进化模式。在本报告中,我们追踪了三轮多倍体在12个尚存的同源基因组区域中发生的变化,这些变化导致了当前的Glycine max基因组:在红藻起源之前的基因组重复(类似于130到2.4亿年前) ,豆科植物早期的基因组重复(类似于5800万年前)和甘氨酸谱系的重复(类似于1300万年前)。基因组三倍体事件后基因保留的模式通常支持对基因平衡假说的预测。最后,我们发现具有高连通性的网络中的基因比具有低连通性的基因更保守,并且在12个高度保守的同源片段中这些高度连通的基因的富集可以部分解释其保留超过1亿个基因的原因。年和重复的多倍体事件。

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