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基因内适合度相互作用对有性重组益处的影响。

Effects of intra-gene fitness interactions on the benefit of sexual recombination.

作者信息

Watson R A, Weinreich D M, Wakeley J

机构信息

Natural Systems Group, School of Electronics and Computer Science, Southampton University, Southampton, UK.

出版信息

Biochem Soc Trans. 2006 Aug;34(Pt 4):560-1. doi: 10.1042/BST0340560.

Abstract

Whereas spontaneous point mutation operates on nucleotides individually, sexual recombination manipulates the set of nucleotides within an allele as an essentially particulate unit. In principle, these two different scales of variation enable selection to follow fitness gradients in two different spaces: in nucleotide sequence space and allele sequence space respectively. Epistasis for fitness at these two scales, between nucleotides and between genes, may be qualitatively different and may significantly influence the advantage of mutation-based and recombination-based evolutionary trajectories respectively. We examine scenarios where the genetic sequence within a gene strongly influences the fitness effect of a mutation in that gene, whereas epistatic interactions between sites in different genes are weak or absent. We find that, in cases where beneficial alleles of a gene differ from one another at several nucleotide sites, sexual populations can exhibit enormous benefit compared with asexual populations: not only discovering fit genotypes faster than asexual populations, but also discovering high-fitness genotypes that are effectively not evolvable in asexual populations.

摘要

自发点突变是逐个作用于核苷酸,而有性重组则是将一个等位基因内的核苷酸集作为一个基本的颗粒单位进行操作。原则上,这两种不同的变异尺度使选择能够在两个不同的空间中沿着适应度梯度进行:分别在核苷酸序列空间和等位基因序列空间。在这两个尺度上,核苷酸之间以及基因之间的适应度上位性可能在性质上有所不同,并且可能分别显著影响基于突变和基于重组的进化轨迹的优势。我们研究了这样的情况:一个基因内的遗传序列强烈影响该基因中一个突变的适应度效应,而不同基因位点之间的上位性相互作用较弱或不存在。我们发现,在一个基因的有益等位基因在几个核苷酸位点上彼此不同的情况下,有性种群与无性种群相比可以表现出巨大的优势:不仅比无性种群更快地发现适合的基因型,而且还能发现无性种群中实际上无法进化的高适应度基因型。

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