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两基因座上位系统中协同适应的进化

Evolution of coadaptation in a two-locus epistatic system.

作者信息

Takahasi K Ryo, Tajima Fumio

机构信息

Population and Quantitative Genomics Team, Genomic Sciences Center, RIKEN at Yokohama, Japan.

出版信息

Evolution. 2005 Nov;59(11):2324-32.

Abstract

Although recent advances in genome biology have dramatically increased our understanding of the contribution of gene interactions to the development of complex phenotypes, we still lack general agreement on the process and mechanisms responsible for the evolution of epistatic systems. Even if genes in a species are indeed integrated into coadapted complexes of interacting components, simple additive evolution may eventually result in epistatic differentiation of populations. Consequently, the prevalence of epistatic gene action does not tell us anything about the role of epistatic selection in the history of population divergence. To elucidate the contribution of epistatic selection in the evolution of coadaptation, we investigate the fixation process of two mutations that interact synergistically to enhance fitness. We show by diffusion analysis and simulations that epistatic selection on cosegregating variants does not by itself promote the evolution of epistatic systems; rather, accumulation of neutral mutations may play a crucial role, creating an appropriate genetic milieu for adaptive evolution in the future generations.

摘要

尽管基因组生物学的最新进展极大地增进了我们对基因相互作用在复杂表型发育中所起作用的理解,但我们对于上位性系统进化的过程和机制仍未达成普遍共识。即使一个物种中的基因确实被整合到相互作用成分的共适应复合体中,简单的加性进化最终可能导致种群的上位性分化。因此,上位性基因作用的普遍性并不能告诉我们上位性选择在种群分化历史中的作用。为了阐明上位性选择在共适应进化中的作用,我们研究了两个相互协同作用以提高适应性的突变的固定过程。我们通过扩散分析和模拟表明,对共分离变异的上位性选择本身并不会促进上位性系统的进化;相反,中性突变的积累可能起着关键作用,为后代的适应性进化创造了合适的遗传环境。

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