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Symbiont-Driven Male Mating Success in the Neotropical Drosophila paulistorum Superspecies

机译:共生体驱动雄性交配在新热带果蝇超级物种中的成功。

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摘要

Microbial symbionts are ubiquitous associates of living organisms but their role in mediating reproductive isolation (RI) remains controversial. We addressed this knowledge gap by employing the Drosophila paulistorum-Wolbachia model system. Semispecies in the D. paulistorum species complex exhibit strong RI between each other and knockdown of obligate mutualistic Wolbachia bacteria in female D. paulistorum flies triggers loss of assortative mating behavior against males carrying incompatible Wolbachia strains. Here we set out to determine whether de novo RI can be introduced by Wolbachia-knockdown in D. paulistorum males. We show that Wolbachia-knockdown D. paulistorum males (i) are rejected as mates by wild type females, (ii) express altered sexual pheromone profiles, and (iii) are devoid of the endosymbiont in pheromone producing cells. Our findings suggest that changes in Wolbachia titer and tissue tropism can induce de novo premating isolation by directly or indirectly modulating sexual behavior of their native D. paulistorum hosts.Electronic supplementary materialThe online version of this article (10.1007/s10519-018-9937-8) contains supplementary material, which is available to authorized users.
机译:微生物共生体是活生物体无处不在的联系者,但它们在介导生殖隔离(RI)中的作用仍存在争议。我们通过采用果蝇果蝇-沃尔巴契亚模型系统解决了这一知识鸿沟。 D. paulistorum物种复合体中的半种之间相互之间表现出较强的RI,并且击倒雌性D. paulistorum果蝇中专性互惠的Wolbachia细菌会导致其对携带不相容Wolbachia菌株的雄性的交配行为丧失。在这里,我们着手确定是否可以通过沃尔巴克氏菌敲除法将重新发现的RI引入到D. paulistorum雄性中。我们显示,Wolbachia-knockdown D. paulistorum雄性(i)被野生型雌性拒绝为伴侣,(ii)表达改变的性信息素特征,并且(iii)在产生信息素的细胞中没有内共生体。我们的发现表明,沃尔巴克虫滴度和组织嗜性的变化可通过直接或间接调节其原生D.paulistorum宿主的性行为来诱导从头分离,电子补充材料本文的在线版本(10.1007 / s10519-018-9937-8 )包含补充材料,授权用户可以使用。

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