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In silico evidence for functional specialization after genome duplication in yeast

机译:酵母中基因组复制后功能专业化的计算机证据

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摘要

A fairly recent whole-genome duplication (WGD) event in yeast enables the effects of gene duplication and subsequent functional divergence to be characterized. We examined 15 ohnolog pairs (i.e. paralogs from a WGD) out of c. 500 Saccharomyces cerevisiae ohnolog pairs that have persisted over an estimated 100 million years of evolution. These 15 pairs were chosen for their high levels of asymmetry, i.e. within the pair, one ohnolog had evolved much faster than the other. Sequence comparisons of the 15 pairs revealed that the faster evolving duplicated genes typically appear to have experienced partially – but not fully – relaxed negative selection as evidenced by an average nonsynonymous/synonymous substitution ratio (dN/dSavg=0.44) that is higher than the slow-evolving genes' ratio (dN/dSavg=0.14) but still <1. Increased number of insertions and deletions in the fast-evolving genes also indicated loosened structural constraints. Sequence and structural comparisons indicated that a subset of these pairs had significant differences in their catalytically important residues and active or cofactor-binding sites. A literature survey revealed that several of the fast-evolving genes have gained a specialized function. Our results indicate that subfunctionalization and even neofunctionalization has occurred along with degenerative evolution, in which unneeded functions were destroyed by mutations.
机译:酵母中最近发生的全基因组复制(WGD)事件使基因复制和随后的功能差异的影响得以表征。我们从c中检查了15对ohnolog对(即来自WGD的paralog)。 500个酿酒酵母同源物对,估计持续进化了1亿年。选择这15对是因为它们的高度不对称性,即在该对中,一个同源物的进化要快于另一对。 15对对的序列比较显示,快速进化的重复基因通常似乎经历了部分而非完全放松的阴性选择,这由平均非同义词/同义词替换比(dN / dSavg = 0.44)所证实,高于缓慢进化基因的比率(dN / dSavg = 0.14),但仍<1。快速发展的基因中插入和缺失的数量增加也表明结构约束已经放松。序列和结构比较表明,这些对的一个子集在其催化重要残基和活性或辅因子结合位点上具有显着差异。一项文献调查显示,一些快速发展的基因已经获得了特殊的功能。我们的结果表明,亚功能化甚至新功能化都伴随着退化性进化而发生,其中不需要的功能被突变破坏。

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