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Does polyandry control population sex ratio via regulation of a selfish gene?

机译:一妻多夫通过调节自私基因控制人口性别比例吗?

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摘要

The extent of female multiple mating (polyandry) can strongly impact on the intensity of sexual selection, sexual conflict, and the evolution of cooperation and sociality. More subtly, polyandry may protect populations against intragenomic conflicts that result from the invasion of deleterious selfish genetic elements (SGEs). SGEs commonly impair sperm production, and so are likely to be unsuccessful in sperm competition, potentially reducing their transmission in polyandrous populations. Here, we test this prediction in nature. We demonstrate a heritable latitudinal cline in the degree of polyandry in the fruitfly Drosophila pseudoobscura across the USA, with northern population females remating more frequently in both the field and the laboratory. High remating was associated with low frequency of a sex-ratio-distorting meiotic driver in natural populations. In the laboratory, polyandry directly controls the frequency of the driver by undermining its transmission. Hence we suggest that the cline in polyandry represents an important contributor to the cline in sex ratio in nature. Furthermore, as the meiotic driver causes sex ratio bias, variation in polyandry may ultimately determine population sex ratio across the USA, a dramatic impact of female mating decisions. As SGEs are ubiquitous it is likely that the reduction of intragenomic conflict by polyandry is widespread.
机译:女性多重交配(一夫多妻制)的程度会严重影响性选择的强度,性冲突以及合作与社交的发展。更为巧妙的是,一妻多夫制可以保护人们免受有害的自私遗传元件(SGE)入侵所引起的基因组内冲突。 SGE通常会影响精子的生产,因此可能无法在精子竞争中取得成功,从而有可能减少其在多妻制人群中的传播。在这里,我们本质上测试了这一预测。我们证明了在美国全果蝇果蝇中一夫多妻制程度可遗传的纬度,北部种群雌性在田间和实验室中的繁殖频率更高。高交配率与自然种群中性别比例扭曲的减数分裂驱动器的发生频率低有关。在实验室中,一妻多夫制通过破坏驱动器的传动来直接控制其频率。因此,我们建议,一妻多夫制的性别代表自然界性别比例的重要因素。此外,由于减数分裂驱动因素导致性别比例偏差,一妻多夫制的变化最终可能决定整个美国的人口性别比,这是女性交配决定的巨大影响。由于SGE无处不在,一夫多妻制减少内部基因组冲突的可能性很广。

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