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突变适应性对环境、遗传背景和适应性的分布敏感性:以果蝇为例的案例研究。

Sensitivity of the distribution of mutational fitness effects to environment, genetic background, and adaptedness: a case study with Drosophila.

机构信息

Department of Ecology & Evolutionary Biology, University of Toronto, Toronto, Ontario, Canada.

出版信息

Evolution. 2014 Mar;68(3):840-53. doi: 10.1111/evo.12309. Epub 2013 Dec 6.

Abstract

Heterogeneity in the fitness effects of individual mutations has been found across different environmental and genetic contexts. Going beyond effects on individual mutations, how is the distribution of selective effects, f(s), altered by changes in genetic and environmental context? In this study, we examined changes in the major features of f(s) by estimating viability selection on 36 individual mutations in Drosophila melanogaster across two different environments in two different genetic backgrounds that were either adapted or nonadapted to the two test environments. Both environment and genetic background affected selection on individual mutations. However, the overall distribution f(s) appeared robust to changes in genetic background but both the mean, E(s), and the variance, V(s) were dependent on the environment. Between these two properties, V(s) was more sensitive to environmental change. Contrary to predictions of fitness landscape theory, the match between genetic background and assay environment (i.e., adaptedness) had little effect on f(s).

摘要

已经在不同的环境和遗传背景下发现了个体突变适应度效应的异质性。超越对单个突变的影响,遗传和环境背景的变化如何改变选择效应分布 f(s)?在这项研究中,我们通过在两个不同的遗传背景下的两个不同环境中对 36 个果蝇的个体突变进行生存力选择,来研究 f(s)的主要特征在遗传和环境背景变化时的变化,这两个遗传背景要么适应于、要么不适应于这两个测试环境。环境和遗传背景都影响了对单个突变的选择。然而,f(s)的整体分布似乎对遗传背景的变化具有很强的稳健性,但 f(s)的均值 E(s)和方差 V(s)都依赖于环境。在这两个特性中,V(s)对环境变化更为敏感。与适应度景观理论的预测相反,遗传背景与测定环境之间的匹配(即适应性)对 f(s)的影响很小。

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