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有限种群中突变稳健性的选择。

Selection for mutational robustness in finite populations.

作者信息

Forster Robert, Adami Christoph, Wilke Claus O

机构信息

Digital Life Laboratory, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

J Theor Biol. 2006 Nov 21;243(2):181-90. doi: 10.1016/j.jtbi.2006.06.020. Epub 2006 Jun 30.

Abstract

We investigate the evolutionary dynamics of a finite population of RNA sequences replicating on a neutral network. Despite the lack of differential fitness between viable sequences, we observe typical properties of adaptive evolution, such as increase of mean fitness over time and punctuated-equilibrium transitions, after initial mutation-selection balance has been reached. We find that a product of population size and mutation rate of approximately 30 or larger is sufficient to generate selection pressure for mutational robustness, even if the population size is orders of magnitude smaller than the neutral network on which the population resides. Our results show that quasispecies effects and neutral drift can occur concurrently, and that the relative importance of each is determined by the product of population size and mutation rate.

摘要

我们研究了在中性网络上复制的有限RNA序列群体的进化动力学。尽管可行序列之间缺乏适应性差异,但在达到初始突变-选择平衡后,我们观察到了适应性进化的典型特征,例如平均适应性随时间增加以及间断平衡转变。我们发现,即使群体大小比群体所驻留的中性网络小几个数量级,群体大小与突变率的乘积约为30或更大时,就足以产生对突变稳健性的选择压力。我们的结果表明,准种效应和中性漂变可以同时发生,并且每种效应的相对重要性由群体大小与突变率的乘积决定。

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