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细菌基因组 GC 含量选择的证据。

Evidence of selection upon genomic GC-content in bacteria.

机构信息

Centre for the Study of Evolution and School of Life Sciences, University of Sussex, Brighton, United Kingdom.

出版信息

PLoS Genet. 2010 Sep 9;6(9):e1001107. doi: 10.1371/journal.pgen.1001107.

Abstract

The genomic GC-content of bacteria varies dramatically, from less than 20% to more than 70%. This variation is generally ascribed to differences in the pattern of mutation between bacteria. Here we test this hypothesis by examining patterns of synonymous polymorphism using datasets from 149 bacterial species. We find a large excess of synonymous GC→AT mutations over AT→GC mutations segregating in all but the most AT-rich bacteria, across a broad range of phylogenetically diverse species. We show that the excess of GC→AT mutations is inconsistent with mutation bias, since it would imply that most GC-rich bacteria are declining in GC-content; such a pattern would be unsustainable. We also show that the patterns are probably not due to translational selection or biased gene conversion, because optimal codons tend to be AT-rich, and the excess of GC→AT SNPs is observed in datasets with no evidence of recombination. We therefore conclude that there is selection to increase synonymous GC-content in many species. Since synonymous GC-content is highly correlated to genomic GC-content, we further conclude that there is selection on genomic base composition in many bacteria.

摘要

细菌的基因组 GC 含量差异很大,从不到 20%到超过 70%。这种差异通常归因于细菌之间突变模式的差异。在这里,我们通过检查来自 149 种细菌物种的数据集来检验这一假设。我们发现,在除最富含 AT 的细菌之外的所有细菌中,GC→AT 同义突变的数量远远超过 AT→GC 突变,这在广泛的系统发育多样化的物种中都存在。我们表明,GC→AT 突变的过剩与突变偏倚不一致,因为这意味着大多数富含 GC 的细菌的 GC 含量正在下降;这种模式是不可持续的。我们还表明,这些模式可能不是由于翻译选择或偏向性基因转换引起的,因为最佳密码子往往富含 AT,并且在没有重组证据的数据集观察到 GC→AT SNPs 的过剩。因此,我们得出结论,在许多物种中存在着增加同义 GC 含量的选择。由于同义 GC 含量与基因组 GC 含量高度相关,我们进一步得出结论,在许多细菌中存在着对基因组碱基组成的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d966/2936529/b4924ae5fb58/pgen.1001107.g001.jpg

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