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首页> 外文期刊>BMC Evolutionary Biology >Recombination rate and protein evolution in yeast
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Recombination rate and protein evolution in yeast

机译:酵母的重组率和蛋白质进化

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Background Theory and artificial selection experiments show that recombination can promote adaptation by enhancing the efficacy of natural selection, but the extent to which recombination affects levels of adaptation across the genome is still an open question. Because patterns of molecular evolution reflect long-term processes of mutation and selection in nature, interactions between recombination rate and genetic differentiation between species can be used to test the benefits of recombination. However, this approach faces a major difficulty: different evolutionary processes (i.e. negative versus positive selection) produce opposing relationships between recombination rate and genetic divergence, and obscure patterns predicted by individual benefits of recombination. Results We use a combination of polymorphism and genomic data from the yeast Saccharomyces cerevisiae to infer the relative importance of nearly-neutral (i.e. slightly deleterious) evolution in different gene categories. For genes with high opportunities for slightly deleterious substitution, recombination substantially reduces the rate of molecular evolution, whereas divergence in genes with little opportunity for slightly deleterious substitution is not strongly affected by recombination. Conclusion These patterns indicate that adaptation throughout the genome can be strongly influenced by each gene's recombinational environment, and suggest substantial long-term fitness benefits of enhanced purifying selection associated with sexual recombination.
机译:背景理论和人工选择实验表明,重组可以通过增强自然选择的效力来促进适应,但是重组影响基因组适应水平的程度仍然是一个悬而未决的问题。由于分子进化的模式反映了自然界中突变和选择的长期过程,因此重组率与物种间遗传分化之间的相互作用可用于测试重组的益处。但是,这种方法面临一个主要困难:不同的进化过程(即阴性选择与阳性选择)在重组率和遗传差异之间产生相反的关系,并且由于重组的个体利益所预测的模式模糊。结果我们结合了来自酿酒酵母的多态性和基因组数据来推断不同基因类别中近乎中性(即轻微有害)进化的相对重要性。对于具有轻微有害取代机会的基因,重组会大大降低分子进化的速率,而具有轻微有害取代机会的基因的差异不会受到重组的强烈影响。结论这些模式表明,整个基因组的适应性都可能受到每个基因重组环境的强烈影响,并表明增强与性重组相关的纯化选择的长期适应性益处。

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