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果蝇中雌性和雄性基因型在交配后反应中的作用。

Roles of Female and Male Genotype in Post-Mating Responses in Drosophila melanogaster.

作者信息

Delbare Sofie Y N, Chow Clement Y, Wolfner Mariana F, Clark Andrew G

机构信息

Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY 14853-2703.

Department of Human Genetics, University of Utah School of Medicine, Salt Lake City, UT 84112.

出版信息

J Hered. 2017 Oct 30;108(7):740-753. doi: 10.1093/jhered/esx081.

Abstract

Mating induces a multitude of changes in female behavior, physiology, and gene expression. Interactions between female and male genotype lead to variation in post-mating phenotypes and reproductive success. So far, few female molecules responsible for these interactions have been identified. Here, we used Drosophila melanogaster from 5 geographically dispersed populations to investigate such female × male genotypic interactions at the female transcriptomic and phenotypic levels. Females from each line were singly-mated to males from the same 5 lines, for a total of 25 combinations. Reproductive output and refractoriness to re-mating were assayed in females from the 25 mating combinations. Female × male genotypic interactions resulted in significant differences in these post-mating phenotypes. To assess whether female × male genotypic interactions affect the female post-mating transcriptome, next-generation RNA sequencing was performed on virgin and mated females at 5 to 6 h post-mating. Seventy-seven genes showed strong variation in mating-induced expression changes in a female × male genotype-dependent manner. These genes were enriched for immune response and odorant-binding functions, and for expression exclusively in the head. Strikingly, variation in post-mating transcript levels of a gene encoding a spermathecal endopeptidase was correlated with short-term egg production. The transcriptional variation found in specific functional classes of genes might be a read-out of female × male compatibility at a molecular level. Understanding the roles these genes play in the female post-mating response will be crucial to better understand the evolution of post-mating responses and related conflicts between the sexes.

摘要

交配会引发雌性在行为、生理和基因表达方面的诸多变化。雌雄基因型之间的相互作用会导致交配后表型和繁殖成功率的差异。到目前为止,已鉴定出的负责这些相互作用的雌性分子很少。在这里,我们使用来自5个地理上分散的种群的黑腹果蝇,在雌性转录组和表型水平上研究这种雌雄基因型相互作用。每个品系的雌性与来自相同5个品系的雄性进行单对交配,总共25种组合。对这25种交配组合的雌性进行繁殖产出和再次交配不应性的测定。雌雄基因型相互作用导致这些交配后表型存在显著差异。为了评估雌雄基因型相互作用是否影响雌性交配后的转录组,在交配后5至6小时对未交配和已交配的雌性进行了下一代RNA测序。77个基因在交配诱导的表达变化中表现出强烈的雌雄基因型依赖性变异。这些基因在免疫反应和气味结合功能方面富集,并且仅在头部表达。引人注目的是,编码受精囊内肽酶的基因在交配后转录水平的变化与短期产卵量相关。在特定功能类别的基因中发现的转录变异可能是分子水平上雌雄兼容性的一种体现。了解这些基因在雌性交配后反应中所起的作用对于更好地理解交配后反应的进化以及两性之间的相关冲突至关重要。

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