Analysis of the fitness effect of compensatory mutations.

Hfsp Journal Pub Date : 2009-01-01 Epub Date: 2008-12-03 DOI:10.2976/1.2990075
Liqing Zhang, Layne T Watson
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Abstract

This paper extends previous work on the Darwinian evolutionary fitness effect of the fixation of deleterious mutations by incorporating compensatory mutations, which are mutations (deleterious by themselves) that ameliorate other deleterious mutations, thus reducing the genetic load of populations. Since having compensatory mutations essentially changes the distributional shapes of deleterious mutations, the effect of compensatory mutations is studied by comparing distributions of deleterious mutations without compensatory mutations to those with compensatory mutations. The effect of effective population size (N(e)), fitness distributional shape, and mutation rate on population fitness reduction is studied. Results indicate that, first, the smaller a population's N(e), the larger the effect of compensatory mutations on fitness recovery, and the compensatory effect increases sharply with decreasing N(e). Second, the larger the squared coefficient of variation in the fitness effect of deleterious mutations, the larger the effect of compensatory mutations. Third, for fixed N(e), the higher the rate of deleterious mutations, the more effective compensatory mutation is in fitness recovery, and this effect is more pronounced for smaller N(e).

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补偿突变的适应效应分析。
补偿突变是一种能改善其他有害突变的突变(本身是有害的),从而减轻种群的遗传负荷。由于补偿突变从本质上改变了有害突变的分布形状,因此研究补偿突变的影响时,要比较没有补偿突变的有害突变和有补偿突变的有害突变的分布。研究了有效种群大小(N(e))、适合度分布形状和突变率对种群适合度降低的影响。结果表明:首先,种群的 N(e)越小,补偿突变对恢复体能的影响就越大,而且补偿效应随着 N(e)的减小而急剧增加。其次,有害突变对适应性影响的平方变异系数越大,补偿突变的作用就越大。第三,在 N(e)固定的情况下,有害突变率越高,补偿突变对适性恢复的作用就越大,这种效应在 N(e)较小的情况下更为明显。
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Hfsp Journal
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