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Mutation accumulation in populations of varying size: the distribution of mutational effects for fitness correlates in Caenorhabditis elegans.

机译:变异积累在不同规模的人群中:秀丽隐杆线虫的适应性突变效应分布相关。

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摘要

The consequences of mutation for population-genetic and evolutionary processes depend on the rate and, especially, the frequency distribution of mutational effects on fitness. We sought to approximate the form of the distribution of mutational effects by conducting divergence experiments in which lines of a DNA repair-deficient strain of Caenorhabditis elegans, msh-2, were maintained at a range of population sizes. Assays of these lines conducted in parallel with the ancestral control suggest that the mutational variance is dominated by contributions from highly detrimental mutations. This was evidenced by the ability of all but the smallest population-size treatments to maintain relatively high levels of mean fitness even under the 100-fold increase in mutational pressure caused by knocking out the msh-2 gene. However, we show that the mean fitness decline experienced by larger populations is actually greater than expected on the basis of our estimates of mutational parameters, which could be consistent with the existence of a common class of mutations with small individual effects. Further, comparison of the total mutation rate estimated from direct sequencing of DNA to that detected from phenotypic analyses implies the existence of a large class of evolutionarily relevant mutations with no measurable effect on laboratory fitness.
机译:突变对种群遗传和进化过程的影响取决于突变率,尤其是突变对适应性的频率分布。我们试图通过进行发散实验来近似突变效应分布的形式,在该发散实验中,秀丽隐杆线虫的一种DNA修复缺陷株msh-2的品系保持在一定的种群规模内。与祖先对照平行进行的这些品系的测定表明,突变变异主要由高度有害的突变贡献。这证明了,即使最小的人群规模的治疗,即使在敲除msh-2基因导致的突变压力增加100倍的情况下,也能保持相对较高的平均适应水平。但是,我们显示,根据我们对突变参数的估计,较大人群的平均适应度下降实际上比预期的要大,这可能与存在个体影响较小的常见突变类型一致。此外,将直接测序的DNA估计的总突变率与从表型分析中检测到的总突变率进行比较,就意味着存在大量进化相关的突变,对实验室的适应性没有可测量的影响。

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