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向无性生殖的转变会导致过多的氨基酸替换。

Transitions to asexuality result in excess amino acid substitutions.

作者信息

Paland Susanne, Lynch Michael

机构信息

Department of Biology, Indiana University, 1001 East 3rd Street, Bloomington, IN 47405, USA.

出版信息

Science. 2006 Feb 17;311(5763):990-2. doi: 10.1126/science.1118152.

Abstract

Theory predicts that linkage between genetic loci reduces the efficiency of purifying selection. Because of the permanent linkage of all heritable genetic material, asexual lineages may be exceptionally prone to deleterious-mutation accumulation in both nuclear and organelle genes. Here, we show that the ratio of the rate of amino acid to silent substitution (Ka/Ks) in mitochondrial protein-coding genes is higher in obligately asexual lineages than in sexual lineages of the microcrustacean Daphnia pulex. Using a phylogeny-based approach to quantify the frequency of mutational-effect classes, we estimate that mitochondrial protein-coding genes in asexual lineages accumulate deleterious amino acid substitutions at four times the rate in sexual lineages. These results support the hypothesis that sexual reproduction plays a prominent role in reducing the mutational burden in populations.

摘要

理论预测,基因座之间的连锁会降低纯化选择的效率。由于所有可遗传遗传物质的永久连锁,无性谱系在核基因和细胞器基因中可能特别容易积累有害突变。在这里,我们表明,在微甲壳动物水蚤的专性无性谱系中,线粒体蛋白质编码基因中氨基酸替换率与沉默替换率的比值(Ka/Ks)高于有性谱系。使用基于系统发育的方法来量化突变效应类别的频率,我们估计无性谱系中线粒体蛋白质编码基因积累有害氨基酸替换的速度是有性谱系的四倍。这些结果支持了这样的假设,即有性生殖在减轻种群中的突变负担方面发挥着重要作用。

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