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Synonymous codon usage is subject to selection in thermophilic bacteria

机译:同义密码子的使用取决于嗜热细菌的选择

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The patterns of synonymous codon usage, both within and among genomes, have been extensively studied over the past two decades. Despite the accumulating evidence that natural selection can shape codon usage, it has not been possible to link a particular pattern of codon usage to a specific external selective force. Here, we have analyzed the patterns of synonymous codon usage in 40 completely sequenced prokaryotic genomes. By combining the genes from several genomes (more than 80 000 genes in all) into a single dataset for this analysis, we were able to investigate variations in codon usage, both within and between genomes. The results show that synonymous codon usage is affected by two major factors: (i) the overall G + C content of the genome and (ii) growth at high temperature. This study focused on the relationship between synonymous codon usage and the ability to grow at high temperature. We have been able to eliminate both phylogenetic history and lateral gene transfer as possible explanations for the characteristic pattern of codon usage among the thermophiles. Thus, these results demonstrate a clear link between a particular pattern of codon usage and an external selective force.
机译:在过去的二十年中,对基因组内部和基因组之间的同义密码子使用方式进行了广泛的研究。尽管有越来越多的证据表明自然选择可以改变密码子的使用方式,但不可能将特定的密码子使用方式与特定的外部选择力联系起来。在这里,我们分析了40个完全测序的原核生物基因组中同义密码子使用的模式。通过将来自多个基因组的基因(总共超过80 000个基因)组合到一个数据集中进行此分析,我们能够研究基因组内和基因组之间密码子使用的变化。结果表明,同义密码子使用受两个主要因素影响:(i)基因组的总体G + C含量和(ii)在高温下生长。这项研究集中在同义词密码子使用和在高温下生长的能力之间的关系。我们已经消除了系统进化史和侧向基因转移,以此作为嗜热菌之间密码子使用特征模式的可能解释。因此,这些结果证明了密码子使用的特定模式与外部选择力之间的明确联系。

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