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无性繁殖的 Timema 竹节虫中有害突变的积累。

Deleterious mutation accumulation in asexual Timema stick insects.

机构信息

Zoology Department, University of Oxford, Oxford, United Kingdom.

出版信息

Mol Biol Evol. 2012 Jan;29(1):401-8. doi: 10.1093/molbev/msr237. Epub 2011 Sep 22.

Abstract

Sexual reproduction is extremely widespread in spite of its presumed costs relative to asexual reproduction, indicating that it must provide significant advantages. One postulated benefit of sex and recombination is that they facilitate the purging of mildly deleterious mutations, which would accumulate in asexual lineages and contribute to their short evolutionary life span. To test this prediction, we estimated the accumulation rate of coding (nonsynonymous) mutations, which are expected to be deleterious, in parts of one mitochondrial (COI) and two nuclear (Actin and Hsp70) genes in six independently derived asexual lineages and related sexual species of Timema stick insects. We found signatures of increased coding mutation accumulation in all six asexual Timema and for each of the three analyzed genes, with 3.6- to 13.4-fold higher rates in the asexuals as compared with the sexuals. In addition, because coding mutations in the asexuals often resulted in considerable hydrophobicity changes at the concerned amino acid positions, coding mutations in the asexuals are likely associated with more strongly deleterious effects than in the sexuals. Our results demonstrate that deleterious mutation accumulation can differentially affect sexual and asexual lineages and support the idea that deleterious mutation accumulation plays an important role in limiting the long-term persistence of all-female lineages.

摘要

尽管有证据表明与无性繁殖相比,有性繁殖存在代价,但它仍然在生物界中广泛存在,这表明它一定提供了重要的优势。有性繁殖和重组被认为有一个好处,即它们有助于清除轻度有害的突变,这些突变会在无性系中积累,并导致它们的进化寿命较短。为了验证这一预测,我们估计了六个独立衍生的无性系和相关有性物种的 Timema 竹节虫中一个线粒体(COI)和两个核(Actin 和 Hsp70)基因的部分编码(非同义)突变的积累率,这些突变预计是有害的。我们发现所有六个无性 Timema 以及三个分析基因中的每一个都存在编码突变积累增加的迹象,与有性相比,无性的积累率高出 3.6 到 13.4 倍。此外,由于无性系中的编码突变通常导致相关氨基酸位置的疏水性发生较大变化,因此无性系中的编码突变可能比有性系中的更具有害影响。我们的研究结果表明,有害突变积累会对有性和无性系产生不同的影响,并支持有害突变积累在限制所有雌性系的长期持续存在方面起着重要作用的观点。

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