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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Association of polyandry and sex-ratio drive prevalence in natural populations of Drosophila neotestacea
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Association of polyandry and sex-ratio drive prevalence in natural populations of Drosophila neotestacea

机译:新婚果蝇果蝇自然种群中一妻多夫和性别比驱动流行的关联

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摘要

Selfish genetic elements bias their own transmission to the next generation, even at the expense of the fitness of their carrier. Sex-ratio (SR) meiotic drive occurs when an X-chromosome causes Y-bearing sperm to die during male spermatogenesis, so that it is passed on to all of the male’s offspring, which are all daughters. How SR is maintained as a stable polymorphism in the absence of genetic suppressors of drive is unknown. Here, we investigate the potential for the female remating rate to affect SR dynamics in natural populations, using the fly Drosophila neotestacea. In controlled laboratory conditions, females from populations where SR is rare mate more often than females from populations where SR is common. Furthermore, only when males mate multiply does the average fertility of SR males relative to wild-type males decrease to a level that can prevent SR from spreading. Our results suggest that differences in the female mating rate among populations may contribute to SR dynamics in the wild, and thus also affect the outcome of this intragenomic conflict. In line with this, we also present evidence of a localized population crash due to SR that may have resulted from habitat fragmentation along with a reduced mating rate.
机译:自私的遗传元素即使将其携带者的健康作为代价,也会偏向下一代。当男性雄性精子发生过程中X染色体导致含Y的精子死亡时,就会发生性别比例减数分裂驱动,并将其传给所有雄性的后代,这些后代都是女儿。在没有遗传抑制因素的情况下,如何将SR作为稳定的多态性维持。在这里,我们使用果蝇新睾丸研究雌性繁殖率影响自然种群中SR动态的潜力。在受控的实验室条件下,SR罕见的种群中的雌性比SR常见的种群中的雌性更为频繁。此外,只有雄性交配时,SR雄性相对于野生型雄性的平均生育能力才会降低到可以阻止SR扩散的水平。我们的结果表明,种群之间雌性交配率的差异可能会导致野生环境中的SR动态,从而也影响这种基因组内部冲突的结果。与此相符,我们还提供了证据表明,SR可能导致了局部种群崩溃,这可能是由于栖息地破碎化以及交配率降低所致。

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