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Influence of Effective Population Size on Genes under Varying Levels of Selection Pressure

机译:不同选择压力水平下有效种群大小对基因的影响

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摘要

The ratio of diversities at amino acid changing (nonsynonymous) and neutral (synonymous) sites (ω = πN/πS) is routinely used to measure the intensity of selection pressure. It is well known that this ratio is influenced by the effective population size (Ne) and selection coefficient (s). Here, we examined the effects of effective population size on ω by comparing protein-coding genes from Mus musculus castaneus and Mus musculus musculus—two mouse subspecies with different Ne. Our results revealed a positive relationship between the magnitude of selection intensity and the ω estimated for genes. For genes under high selective constraints, the ω estimated for the subspecies with small Ne (M. m. musculus) was three times higher than that observed for that with large Ne (M. m. castaneus). However, this difference was only 18% for genes under relaxed selective constraints. We showed that the observed relationship is qualitatively similar to the theoretical predictions. We also showed that, for highly expressed genes, the ω of M. m. musculus was 2.1 times higher than that of M.m. castaneus and this difference was only 27% for genes with low expression levels. These results suggest that the effect of effective population size is more pronounced in genes under high purifying selection. Hence the choice of genes is important when ω is used to infer the effective size of a population.
机译:通常使用氨基酸变化的(非同义的)和中性的(同义的)位点的多样性比(ω=πN/πS)来测量选择压力的强度。众所周知,该比率受有效人口规模(Ne)和选择系数(s)的影响。在这里,我们通过比较来自小家鼠和小家鼠(两种具有不同Ne的小家鼠)的蛋白质编码基因,检查了有效种群大小对ω的影响。我们的结果表明选择强度的大小与基因估计的ω之间呈正相关。对于具有高选择性约束的基因,Ne较小的小亚种(小家鼠)的ω估计值比Ne较大的小亚种(小栗鼠)的ω估计值高三倍。但是,在宽松的选择性限制条件下,这种差异仅为18%。我们表明,观察到的关系在质量上与理论预测相似。我们还表明,对于高度表达的基因, M的ω。米肌肉 M.m高2.1倍。 Castaneus ,而对于低表达水平的基因,这种差异仅为27%。这些结果表明,在高纯化选择下,​​有效种群大小的影响在基因中更为明显。因此,当ω用于推断种群的有效大小时,基因的选择很重要。

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