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首页> 外文期刊>Molecular Biology and Evolution >Spatial Covariation of Mutation and Nonsynonymous Substitution Rates in Vertebrate Mitochondrial Genomes
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Spatial Covariation of Mutation and Nonsynonymous Substitution Rates in Vertebrate Mitochondrial Genomes

机译:脊椎动物线粒体基因组中突变和非同义替代率的空间协变。

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Mitochondrial genomes encode fundamental subunits of the basic energy producing machinery of eukaryotic cells that are under strong functional constraint. Paradoxically, these genes evolve rapidly in general, and there is substantial variation in evolutionary rates among genes within genomes. In order to investigate spatial variation in selection intensity, we conducted tests of neutrality using ratios of synonymous to nonsynonymous substitutions (dN/dS = ω) on numerous protein gene segments from fishes and mammals. Values of ω were very low for nearly all genomic regions. However, values of both ω and dN varied in a clinal pattern with increasing distance from the light-strand origin of replication. Spatial heterogeneity of nonsynonymous substitution rates exhibits a significantly positive correlation with variation in mutation rates that are related to the mode of mitochondrial DNA replication. The finding that nonsynonymous substitution rates are proportional to mutation rates is expected if a majority of substitutions are selectively neutral or slightly deleterious. Spatial patterns of among-gene variation in nonsynonymous rates were highly similar between fishes and mammals, suggesting that forces governing mitochondrial gene evolution have remained relatively constant over 450 Myr of vertebrate evolution. Conservation of substitution patterns despite major shifts in thermal habit and metabolic demands among taxa implicates a conserved replication mechanism controlling relative mutation rates as a major determinant of mitochondrial protein evolution.
机译:线粒体基因组编码在强大功能约束下的真核细胞基本能量产生机制的基本亚基。矛盾的是,这些基因总体上发展迅速,并且基因组内基因之间的进化速率存在很大差异。为了调查选择强度的空间变化,我们对许多蛋白质基因片段使用了同义取代与非同义取代的比率(d N / d S =ω)进行了中性测试来自鱼类和哺乳动物。几乎所有基因组区域的ω值都很低。但是,ω和d N 的值都以渐进形式变化,并且距复制的光链起点的距离增加。非同义替代率的空间异质性与突变率的变化具有显着正相关,突变率的变化与线粒体DNA复制的模式有关。如果大多数替换是选择性中性的或轻微有害的,则可以预期发现非同义替换率与突变率成正比。在鱼类和哺乳动物之间,非同义基因间变异的空间模式非常相似,这表明控制线粒体基因进化的力在脊椎动物进化的450 Myr上保持相对恒定。尽管热习性和新陈代谢群之间的代谢需求发生了重大变化,但替代模式的保守性暗示了保守的复制机制可控制相对突变率,后者是线粒体蛋白质进化的主要决定因素。

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