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Nonrandom Survival of Gene Conversions among Yeast Ribosomal Proteins Duplicated through Genome Doubling

机译:通过基因组加倍复制的酵母核糖体蛋白之间的基因转换的非随机存活。

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摘要

By comparing the patterns of evolution in the coding and upstream noncoding regions of yeast ribosomal protein (RP) genes duplicated in a genome duplication, we find that although nonsynonymous sites in the coding sequences show strong evidence for the fixation of recent gene conversion events, similar patterns are less evident among the synonymous positions and noncoding regulatory elements. This result suggests a potential explanation for the somewhat puzzling fact that duplicated RP genes are not functionally redundant despite their very high protein sequence identity. An analysis of the patterns of regulatory network evolution after genome duplication also indicates that the duplicated proteins have diverged considerably in expression despite their similar protein sequences.
机译:通过比较在基因组重复中重复的酵母核糖体蛋白(RP)基因的编码和上游非编码区中进化的模式,我们发现尽管编码序列中的非同义位点显示出固定近期基因转换事件的有力证据,但相似在同义位置和非编码监管元素之间,这种模式不太明显。该结果表明了一个令人费解的事实的可能解释,即尽管重复的RP基因具有非常高的蛋白质序列同一性,但在功能上并不是多余的。对基因组复制后调节网络进化模式的分析也表明,尽管它们具有相似的蛋白质序列,但复制的蛋白质在表达上却有很大差异。

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