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雌性对果蝇前交配和后交配性选择及其遗传基础的影响。

Female influence on pre- and post-copulatory sexual selection and its genetic basis in Drosophila melanogaster.

机构信息

Department of Biological Sciences, Binghamton University, Binghamton, NY 13902, USA.

出版信息

Mol Ecol. 2011 Oct;20(19):4098-108. doi: 10.1111/j.1365-294X.2011.05253.x. Epub 2011 Sep 9.

Abstract

Genetic variation among females is likely to influence the outcome of both pre- and post-copulatory sexual selection in Drosophila melanogaster. Here we use association testing to survey natural variation in 10 candidate female genes for their effects on female reproduction. Females from 91 chromosome two substitution lines were scored for phenotypes affecting pre- and post-copulatory sexual selection such as mating and remating rate, propensity to use sperm from the second male to mate, and measures of fertility. There were significant genetic contributions to phenotypic variation for all the traits measured. Resequencing of the 10 candidate genes in the 91 lines yielded 68 non-synonymous polymorphisms which were tested for associations with the measured phenotypes. Twelve significant associations (markerwise P<0.01) were identified. Polymorphisms in the putative serine protease homolog CG9897 and the putative odorant binding protein CG11797 associated with female propensity to remate and met an experimentwise significance of P<0.05. Several other associations, including those impacting both fertility and female remating rate suggest that sperm storage might be an important factor mitigating female influence on sexual selection.

摘要

在果蝇中,雌性个体间的遗传变异可能会影响交配前和交配后的性选择结果。在这里,我们使用关联测试来调查 10 个候选雌性基因的自然变异对雌性生殖的影响。从 91 条染色体 2 号替换系的雌性中,对影响交配前和交配后性选择的表型进行评分,如交配和再次交配的速度、使用第二只雄性精子交配的倾向,以及生育能力的衡量标准。所有测量的特征都存在显著的遗传贡献。对 91 条系中的 10 个候选基因进行重测序,得到了 68 个非同义多态性,这些多态性与测量的表型进行了关联测试。鉴定出 12 个显著关联(标记水平 P<0.01)。假定丝氨酸蛋白酶同源物 CG9897 和假定气味结合蛋白 CG11797 中的多态性与雌性再次交配的倾向相关,并达到了 P<0.05 的实验意义。其他一些关联,包括那些同时影响生育能力和雌性再次交配率的关联,表明精子储存可能是减轻雌性对性选择影响的一个重要因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b299/3183161/6e09e41dffd8/nihms315076f1.jpg

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