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Reproductive Isolation through Experimental Manipulation of Sexually Antagonistic Coevolution in Drosophila melanogaster

机译:通过实验操纵性拮抗协同进化在果蝇中的生殖隔离。

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摘要

Promiscuity can drive the evolution of sexual conflict before and after mating occurs. Post mating, the male ejaculate can selfishly manipulate female physiology, leading to a chemical arms race between the sexes. Theory suggests that drift and sexually antagonistic coevolution can cause allopatric populations to evolve different chemical interactions between the sexes, thereby leading to postmating reproductive barriers and speciation. There is, however, little empirical evidence supporting this form of speciation. We tested this theory by creating an experimental evolutionary model of Drosophila melanogaster populations undergoing different levels of interlocus sexual conflict. We found that allopatric populations under elevated sexual conflict show assortative mating, indicating premating reproductive isolation. Further, these allopatric populations also show reduced copulation duration and sperm defense ability when mating happens between individuals across populations compared to that within the same population, indicating postmating prezygotic isolation. Sexual conflict can cause reproductive isolation in allopatric populations through the coevolution of chemical (postmating prezygotic) as well as behavioural (premating) interactions between the sexes. Thus, to our knowledge, we provide the first comprehensive evidence of postmating (as well as premating) reproductive isolation due to sexual conflict.
机译:在交配发生前后,滥交可以促使性冲突的发展。交配后,雄性射精可以自私地操纵雌性生理,导致两性之间发生化学军备竞赛。理论表明,漂泊和性拮抗的共同进化可导致异相种群在两性之间发展出不同的化学相互作用,从而导致繁殖障碍和物种形成过后。但是,很少有经验证据支持这种形式的物种形成。我们通过创建经历不同水平的中间性冲突的果蝇果蝇种群的实验进化模型来测试该理论。我们发现,在性冲突加剧下的异族人群显示出各种交配,表明生殖隔离过早。此外,与同一个种群内的种群相比,当这些种群之间的交配发生时,这些异种种群还表现出减少的交配持续时间和精子防御能力,这表明同卵后隔离。性冲突可通过化学作用(合子前)和性别之间的行为(合子)相互作用共同进化,从而在异相人群中引起生殖隔离。因此,据我们所知,我们提供了因性冲突而导致生殖孤立(以及过早)的第一个综合证据。

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