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Contagious parthenogenesis, automixis, and a sex determination meltdown

机译:传染性孤雌生殖,自体混合和性别决定性崩溃

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Because of the twofold cost of sex, genes conferring asexual reproduction are expected to spread rapidly in sexual populations. However, in reality this simple prediction is often confounded by several complications observed in natural systems. Motivated by recent findings in the Cape honey bee and in the parasitoid wasp Lysiphlebus fabarum, we explore through mathematical models the spread of a recessive, parthenogenesis inducing allele in a haplodiploid population. The focus of these models is on the intricate interactions between the mode of parthenogenesis induction through automixis and complementary sex determination (CSD) systems. These interactions may result in asexual production of diploid male offspring and the spread of the parthenogenesis-inducing allele through these males. We demonstrate that if parthenogenetic females produce a substantial proportion of male offspring, this may prevent the parthenogenesis-inducing allele from spreading. However, this effect is weakened if these diploid males are at least partially fertile. We also predict a degradation of multilocus CSD systems during the spread of parthenogenesis, following which only a single polymorphic CSD locus is maintained. Finally, based on empirical parameter estimates from L. fabarum we predict that male production in parthenogens is unlikely to prevent the eventual loss of sexual reproduction in this system.
机译:由于性行为的双重代价,赋予无性生殖的基因有望在性人群中迅速传播。但是,实际上,这种简单的预测通常会与自然系统中观察到的多种并发症相混淆。根据最近在开普蜜蜂和寄生蜂黄蜂Lysiphlebus fabarum中的发现,我们通过数学模型探索了在单倍体种群中隐性,孤雌生殖诱导等位基因的传播。这些模型的重点是通过自体混合诱导孤雌生殖模式与互补性决定(CSD)系统之间的复杂相互作用。这些相互作用可能导致无性繁殖二倍体雄性后代,并导致孤雌生殖诱导等位基因通过这些雄性传播。我们证明,如果孤雌生殖雌性产生相当大比例的雄性后代,这可能会阻止孤雌生殖诱导等位基因扩散。但是,如果这些二倍体雄性至少部分受精,则这种作用会减弱。我们还预测在孤雌生殖的传播过程中多基因座CSD系统的降解,随后仅维持一个多态CSD基因座。最后,根据法巴氏乳杆菌的经验参数估计,我们预测单性生殖激素的雄性产生不太可能阻止该系统最终失去有性生殖。

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