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A speciation gene for left–right reversal in snails results in anti-predator adaptation

机译:蜗牛左右反转的物种形成基因导致反捕食者适应

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摘要

How speciation genes can spread in a population is poorly understood. In land snails, a single gene for left–right reversal could be responsible for instant speciation, because dextral and sinistral snails have difficulty in mating. However, the traditional two-locus speciation model predicts that a mating disadvantage for the reversal should counteract this speciation. In this study, we show that specialized snake predation of the dextral majority drives prey speciation by reversal. Our experiments demonstrate that sinistral Satsuma snails (Stylommatophora: Camaenidae) survive predation by Pareas iwasakii (Colubroidea: Pareatidae). Worldwide biogeography reveals that stylommatophoran snail speciation by reversal has been accelerated in the range of pareatid snakes, especially in snails that gain stronger anti-snake defense and reproductive isolation from dextrals by sinistrality. Molecular phylogeny of Satsuma snails further provides intriguing evidence of repetitive speciation under snake predation. Our study demonstrates that a speciation gene can be fixed in populations by positive pleiotropic effects on survival.
机译:物种基因如何在种群中传播尚不清楚。在田螺中,左右反转的单个基因可能负责即时物种形成,因为右田螺和左田螺很难交配。然而,传统的两基因座物种形成模型预测,逆转的交配劣势将抵消这种物种形成。在这项研究中,我们表明右旋多数的专门蛇捕食通过逆转驱动猎物物种形成。我们的实验表明,鼻部萨摩蜗牛(Stylommatophora:Camaenidae)幸存于Pareas iwasakii(Colubroidea:Pareatidae)的捕食之下。世界范围内的生物地理学揭示,沿逆行方式传播的stylommatophoran蜗牛物种形成已经加快,尤其是在蜗牛获得更强的抗蛇防御能力以及通过鼻窦性与右手生殖分离的蜗牛中。萨摩蜗牛的分子系统发育进一步提供了在蛇捕食下重复物种形成的有趣证据。我们的研究表明,物种形成基因可以通过对生存的积极多效性效应而在种群中得到固定。

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