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分析核苷酸序列中的重组。

Analysing recombination in nucleotide sequences.

机构信息

Computational Biology Group, Institute of Infectious Diseases and Molecular Medicine, University of Cape Town, Cape Town, South Africa.

出版信息

Mol Ecol Resour. 2011 Nov;11(6):943-55. doi: 10.1111/j.1755-0998.2011.03026.x. Epub 2011 May 19.

DOI:10.1111/j.1755-0998.2011.03026.x
PMID:21592314
Abstract

Throughout the living world, genetic recombination and nucleotide substitution are the primary processes that create the genetic variation upon which natural selection acts. Just as analyses of substitution patterns can reveal a great deal about evolution, so too can analyses of recombination. Evidence of genetic recombination within the genomes of apparently asexual species can equate with evidence of cryptic sexuality. In sexually reproducing species, nonrandom patterns of sequence exchange can provide direct evidence of population subdivisions that prevent certain individuals from mating. Although an interesting topic in its own right, an important reason for analysing recombination is to account for its potentially disruptive influences on various phylogenetic-based molecular evolution analyses. Specifically, the evolutionary histories of recombinant sequences cannot be accurately described by standard bifurcating phylogenetic trees. Taking recombination into account can therefore be pivotal to the success of selection, molecular clock and various other analyses that require adequate modelling of shared ancestry and draw increased power from accurately inferred phylogenetic trees. Here, we review various computational approaches to studying recombination and provide guidelines both on how to gain insights into this important evolutionary process and on how it can be properly accounted for during molecular evolution studies.

摘要

在整个生命世界中,基因重组和核苷酸替换是产生自然选择作用的遗传变异的主要过程。正如替换模式的分析可以揭示很多关于进化的信息一样,重组的分析也是如此。在明显的无性物种的基因组中发现遗传重组的证据,可以等同于隐性性行为的证据。在有性繁殖的物种中,序列交换的非随机模式可以提供直接的证据,证明种群的细分阻止了某些个体交配。虽然这本身就是一个有趣的话题,但分析重组的一个重要原因是,它可能会对各种基于系统发育的分子进化分析产生破坏性影响。具体来说,重组序列的进化历史不能用标准的分支系统发育树准确描述。因此,考虑到重组可以对选择、分子钟和其他各种分析的成功至关重要,这些分析需要充分建模共同的祖先,并从准确推断的系统发育树中获得更大的力量。在这里,我们回顾了各种研究重组的计算方法,并提供了一些指导,既可以深入了解这个重要的进化过程,也可以在分子进化研究中正确考虑它。

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