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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Joint Effects of Pleiotropic Selection and Stabilizing Selection on the Maintenance of Quantitative Genetic Variation at Mutation-Selection Balance
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Joint Effects of Pleiotropic Selection and Stabilizing Selection on the Maintenance of Quantitative Genetic Variation at Mutation-Selection Balance

机译:多效选择和稳定选择对维持突变选择平衡遗传变异的联合作用

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摘要

In quantitative genetics, there are two basic “conflicting” observations: abundant polygenic variation and strong stabilizing selection that should rapidly deplete that variation. This conflict, although having attracted much theoretical attention, still stands open. Two classes of model have been proposed: real stabilizing selection directly on the metric trait under study and apparent stabilizing selection caused solely by the deleterious pleiotropic side effects of mutations on fitness. Here these models are combined and the total stabilizing selection observed is assumed to derive simultaneously through these two different mechanisms. Mutations have effects on a metric trait and on fitness, and both effects vary continuously. The genetic variance ( V G) and the observed strength of total stabilizing selection ( V s,t) are analyzed with a rare-alleles model. Both kinds of selection reduce V G but their roles in depleting it are not independent: The magnitude of pleiotropic selection depends on real stabilizing selection and such dependence is subject to the shape of the distributions of mutational effects. The genetic variation maintained thus depends on the kurtosis as well as the variance of mutational effects: All else being equal, V G increases with increasing leptokurtosis of mutational effects on fitness, while for a given distribution of mutational effects on fitness, V G decreases with increasing leptokurtosis of mutational effects on the trait. The V G and V s,t are determined primarily by real stabilizing selection while pleiotropic effects, which can be large, have only a limited impact. This finding provides some promise that a high heritability can be explained under strong total stabilizing selection for what are regarded as typical values of mutation and selection parameters.
机译:在定量遗传学中,有两个基本的“相互矛盾”的观察结果:丰富的多基因变异和强大的稳定选择,应迅速消除该变异。尽管引起了理论上的广泛关注,但这种冲突仍然存在。已经提出了两类模型:直接在所研究的度量特征上进行真正的稳定选择和仅由突变对适应性的有害多效性副作用引起的表观稳定选择。在这里,将这些模型组合起来,并假设观察到的总稳定选择是通过这两种不同的机制同时导出的。变异会影响指标性状和适应度,并且两种影响会不断变化。用稀有等位基因模型分析遗传变异(V G)和观察到的总稳定选择强度(V s,t)。两种选择都降低了V G,但是它们在耗尽V G上的作用并不是独立的:多效性选择的幅度取决于实际的稳定选择,而这种依赖性取决于突变效应分布的形状。因此,维持的遗传变异取决于峰度以及突变效应的方差:在所有其他条件相同的情况下,VG随着对健身适应性突变效应的增强而增加,而对于给定的对健身适应性突变效应的分布,VG随着肽体吸收率的升高而降低性状对突变的影响。 V G和V s,t主要由实际的稳定选择确定,而多效作用可能很大,影响有限。这一发现提供了一些希望,即可以在针对突变和选择参数的典型值的强大的总体稳定选择下解释高遗传力。

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