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首页> 外文期刊>BMC Evolutionary Biology >A genome-wide survey of changes in protein evolutionary rates across four closely related species of Saccharomyces sensu stricto group
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A genome-wide survey of changes in protein evolutionary rates across four closely related species of Saccharomyces sensu stricto group

机译:全基因组范围内的四个紧密酿酒酵母物种的蛋白质进化速率变化的调查。

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Background Changes in protein evolutionary rates among lineages have been frequently observed during periods of notable phenotypic evolution. It is also known that, following gene duplication and loss, the protein evolutionary rates of genes involved in such events changed because of changes in functional constraints acting on the genes. However, in the evolution of closely related species, excluding the aforementioned situations, the frequency of changes in protein evolutionary rates is still not clear at the genome-wide level. Here we examine the constancy of protein evolutionary rates in the evolution of four closely related species of the Saccharomyces sensu stricto group (S. cerevisiae, S. paradoxus, S. mikatae and S. bayanus). Results For 2,610 unambiguously defined orthologous genes among the four species, we carried out likelihood ratio tests between constant-rate and variable-rate models and found 344 (13.2%) genes showing significant changes in the protein evolutionary rates in at least one lineage. Of all those genes which experienced rate changes, 139 and 49 genes showed accelerated and decelerated evolution, respectively. Most of the evolutionary rate changes could be attributed to changes in selective constraints acting on nonsynonymous sites, independently of species-specific gene duplication and loss. We estimated that the changes in protein evolutionary rates have appeared with a probability of 2.0 × 10-3 per gene per million years in the evolution of the Saccharomyces species. Furthermore, we found that the genes which experienced rate acceleration have lower expression levels and weaker codon usage bias than those which experienced rate deceleration. Conclusion Changes in protein evolutionary rates possibly occur frequently in the evolution of closely related Saccharomyces species. Selection for translational accuracy and efficiency may dominantly affect the variability of protein evolutionary rates.
机译:背景在显着的表型进化期间,经常观察到谱系间蛋白质进化速率的变化。还已知在基因复制和丢失后,参与这种事件的基因的蛋白质进化速率由于作用于基因的功能限制的改变而改变。但是,在密切相关物种的进化中,除上述情况外,蛋白质进化速率变化的频率在全基因组水平上仍不清楚。在这里,我们检查了四个紧密相关的酿酒酵母组(酿酒酵母,悖论,S。mikatae和S. bayanus)的进化中蛋白质进化速率的恒定性。结果对于这4个物种中2,610个明确定义的直系同源基因,我们在恒定速率和可变速率模型之间进行了似然比测试,发现344个基因(13.2%)在至少一个谱系中显示出蛋白质进化速率的显着变化。在经历速率变化的所有基因中,分别有139和49个基因显示出加速和减速的进化。大多数进化速率的变化可归因于作用于非同义位点的选择性限制的变化,而与物种特异性基因的复制和损失无关。我们估计,在酿酒酵母物种的进化中,蛋白质进化速率的变化以每基因每百万年2.0×10 -3 的概率出现。此外,我们发现经历速率加速的基因比经历速率减速的基因具有更低的表达水平和更弱的密码子使用偏好。结论蛋白质进化速率的变化可能在密切相关的酿酒酵母物种的进化中频繁发生。选择翻译准确性和效率可能会主要影响蛋白质进化速率的变异性。

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