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Genome-wide patterns of nucleotide substitution reveal stringent functional constraints on the protein sequences of thermophiles.

机译:核苷酸取代的全基因组模式揭示了嗜热菌蛋白序列的严格功能限制。

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摘要

To test the hypothesis that the proteins of thermophilic prokaryotes are subject to unusually stringent functional constraints, we estimated the numbers of synonymous and nonsynonymous nucleotide substitutions per site between 17,957 pairs of orthologous genes from 22 pairs of closely related species of Archaea and Bacteria. The average ratio of nonsynonymous to synonymous substitutions was significantly lower in thermophiles than in nonthermophiles, and this effect was observed in both Archaea and Bacteria. There was no evidence that this difference could be explained by factors such as nucleotide content bias. Rather, the results support the hypothesis that proteins of thermophiles are subject to unusually strong purifying selection, leading to a reduced overall level of amino acid evolution per mutational event. The results show that genome-wide patterns of sequence evolution can be influenced by natural selection exerted by a species' environment and shed light on a previous observation that relatively few of the mutations arising in a thermophilic archaeon were nucleotide substitutions in contrast to indels.
机译:为了验证嗜热原核生物蛋白质受到异常严格的功能限制的假设,我们估算了来自22对近生古细菌和细菌的17957对直系同源基因之间每个位点的同义和非同义核苷酸取代的数目。在嗜热菌中,非同义替换与同义替换的平均比率显着低于非嗜热菌,并且在古生菌和细菌中均观察到这种效应。没有证据表明这种差异可以由核苷酸含量偏倚等因素解释。相反,这些结果支持以下假设:嗜热菌的蛋白质会受到异常强烈的纯化选择,从而导致每个突变事件的氨基酸进化总体水平降低。结果表明,物种环境施加的自然选择可能会影响全基因组序列进化模式,这为先前的观察表明,嗜热古细菌中相对较少的突变是核苷酸取代,而与插入缺失相反。

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