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Adaptation to experimental alterations of the operational sex ratio in populations of Drosophila melanogaster

机译:适应果蝇果蝇操作性别比的实验性改变

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Theory predicts that males adapt to sperm competition by increasing their investment in testis mass to transfer larger ejaculates. Experimental and comparative data support this prediction. Nevertheless, the relative importance of sperm competition in testis size evolution remains elusive, because experiments vary only sperm competition whereas comparative approaches confound it with other variables, in particular male mating rate. We addressed the relative importance of sperm competition and male mating rate by taking an experimental evolution approach. We subjected populations of Drosophila melanogaster to sex ratios of 1:1, 4:1, and 10:1 (female:male). Female bias decreased sperm competition but increased male mating rate and sperm depletion. After 28 generations of evolution, males from the 10:1 treatment had larger testes than males from other treatments. Thus, testis size evolved in response to mating rate and sperm depletion, not sperm competition. Furthermore, our experiment demonstrated that drift associated with sex ratio distortion limits adaptation; testis size only evolved in populations in which the effect of sex ratio bias on the effective population size had been compensated by increasing the numerical size. We discuss these results with respect to reproductive evolution, genetic drift in natural and experimental populations, and consequences of natural sex ratio distortion.
机译:理论预测,雄性会通过增加对睾丸质量的投资来转移更大的精液来适应精子竞争。实验和比较数据支持这一预测。尽管如此,精子竞争在睾丸大小演变中的相对重要性仍然难以捉摸,因为实验仅改变了精子竞争,而比较方法将其与其他变量(尤其是男性交配率)混淆了。我们通过实验性进化的方法解决了精子竞争和男性交配率的相对重要性。我们对果蝇果蝇的性别比为1:1、4:1和10:1(女性:男性)进行了研究。女性偏见减少了精子竞争,但增加了男性的交配率和精子消耗。经过28代的进化,来自10:1处理的雄性的睾丸比其他处理的雄性大。因此,睾丸的大小是根据交配率和精子耗竭而不是精子竞争而变化的。此外,我们的实验表明,与性别比例失真相关的漂移限制了适应能力;睾丸的大小仅在通过增加数字大小可以弥补性别比例偏差对有效人口大小的影响的人群中得到发展。我们讨论了有关生殖进化,自然和实验人群中的遗传漂移以及自然性别比例失真的后果的这些结果。

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