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Duplication Mechanism and Disruptions in Flanking Regions Influence the Fate of Mammalian Gene Duplicates

机译:侧翼区域的复制机制和破坏影响哺乳动物基因复制品的命运

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Here we identify duplicated genes in five mammalian genomes and classify these duplicates based on the mechanisms by which they were generated. Retrotransposition accounts for at least half of all predicted duplicate genes in these genomes, with tandem and interspersed duplicates comprising the other half. Estimation of the evolutionary rates in each class revealed greater rate asymmetry between retrotransposed and interspersed segmental duplicate pairs than between tandem duplicates, suggesting that retrotransposed and interspersed segmental duplicates are diverging more quickly. In an attempt to understand the basis of this asymmetry we identified disruption of flanking DNA as an indicator of new duplicate fate. Loss of synteny accelerates the asymmetry of divergence of DNA-mediated duplicates duplicates. These findings suggest that the differential evolution of duplicate genes may be significantly influenced by changes in local genome architecture and synteny.
机译:在这里,我们在五种哺乳动物基因组中鉴定重复的基因,并根据产生的机制对这些重复进行分类。回收算法占这些基因组中所有预测的重复基因的至少一半,串联和散布的重复包括另一半。估计每种阶级的进化速率揭示了转回和交流的分段重复对之间的更大速率不对称,而不是串联复制品之间的转换,这表明转回和散布的节段形重复率更快地发散。为了了解这种不对称的基础,我们确定了侧翼DNA的破坏,作为新的重复命运的指标。同步丧失加速了DNA介导的重复杂项的分歧的不对称性。这些研究结果表明,重复基因的差异演化可能受到局部基因组结构和联合症的变化的显着影响。

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