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DNA sequence diversity and the efficiency of natural selection in animal mitochondrial DNA

机译:DNA序列多样性和动物线粒体DNA自然选择的效率

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摘要

Selection is expected to be more efficient in species that are more diverse because both the efficiency of natural selection and DNA sequence diversity are expected to depend upon the effective population size. We explore this relationship across a data set of 751 mammal species for which we have mitochondrial polymorphism data. We introduce a method by which we can examine the relationship between our measure of the efficiency of natural selection, the nonsynonymous relative to the synonymous nucleotide site diversity (πN/πS), and synonymous nucleotide diversity (πS), avoiding the statistical non-independence between the two quantities. We show that these two variables are strongly negatively and linearly correlated on a log scale. The slope is such that as πS doubles, πN/πS is reduced by 34%. We show that the slope of this relationship differs between the two phylogenetic groups for which we have the most data, rodents and bats, and that it also differs between species with high and low body mass, and between those with high and low mass-specific metabolic rate.
机译:由于自然选择的效率和DNA序列的多样性都取决于有效种群的大小,因此在多样性更强的物种中选择会更有效。我们在拥有线粒体多态性数据的751个哺乳动物物种的数据集中探索了这种关系。我们介绍一种方法,通过该方法,我们可以检查自然选择效率的度量,相对于同义核苷酸位点多样性(πN/πS)的非同义关系和同义核苷酸多样性(πS)之间的关系,从而避免统计上的独立性在两个数量之间。我们显示这两个变量在对数刻度上具有强烈的负相关和线性关系。斜率使πS加倍时,πN/πS减少34%。我们表明,在我们拥有最多数据的两个系统发育组(啮齿动物和蝙蝠)之间,这种关系的斜率不同,并且在体重高和低的物种之间以及在质量特异性高和低的物种之间,其关系也不同代谢速率。

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