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Genomic responses to the socio-sexual environment in male Drosophila melanogaster exposed to conspecific rivals

机译:对公共竞争对手暴露于特异性竞争对手的雄性果蝇黑素糖蛋白酶的基因组响应

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摘要

Socio-sexual environments have profound effects on fitness. Local sex ratios can alter the threat of sexual competition, to which males respond via plasticity in reproductive behaviors and ejaculate composition. In Drosophila melanogaster, males detect the presence of conspecific, same-sex mating rivals prior to mating using multiple, redundant sensory cues. Males that respond to rivals gain significant fitness benefits by altering mating duration and ejaculate composition. Here we investigated the underlying genome-wide changes involved. We used RNA-seq to analyze male transcriptomic responses 2, 26, and 50 h after exposure to rivals, a time period that was previously identified as encompassing the major facets of male responses to rivals. The results showed a strong early activation of multiple sensory genes in the head thorax (HT), prior to the expression of any phenotypic differences. This gene expression response was reduced by 26 h, at the time of maximum phenotypic change, and shut off by 50 h. In the abdomen (A), fewer genes changed in expression and gene expression responses appeared to increase over time. The results also suggested that different sets of functionally equivalent genes might be activated in different replicates. This could represent a mechanism by which robustness is conferred upon highly plastic traits. Overall, our study reveals that mRNA-seq can identify subtle genomic signatures characteristic of flexible behavioral phenotypes.
机译:社会性环境对健身产生了深远的影响。当地性别比率可以改变性竞争的威胁,雄性通过生殖行为和射精组成的可塑性反应。在果蝇黑素转渣中,男性在使用多个冗余感觉线索之前检测在配合之前的结合,同性交配竞争对手的存在。通过改变交配持续时间和射精组合物来响应竞争对手的男性可以获得显着的健身益处。在这里,我们调查了所涉及的潜在的基因组变化。我们使用RNA-SEQ暴露于竞争对手后分析男性转录组反应2,26和50小时,以前被确定为包含对竞争对手的男性反应的主要方面的时间段。结果表明,在表达任何表型差异之前,在头部胸部(HT)中的多种感觉基因的早期激活强烈激活。在最大表型变化时,该基因表达响应减少26小时,并关闭50小时。在腹部(a)中,表达和基因表达反应的更少基因似乎随着时间的推移而增加。结果还表明,不同的功能等同基因可能以不同的复制激活。这可以代表一种机制,通过这种机制可以在高度塑性性状上赋予鲁棒性。总体而言,我们的研究表明,mRNA-SEQ可以识别灵活行为表型特征的微妙基因组特征。

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