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The evolution of sensory divergence in the context of limited gene flow in the bumblebee bat

机译:在大黄蜂蝙蝠有限的基因流动的背景下感觉分歧的演变

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摘要

The sensory drive theory of speciation predicts that populations of the same species inhabiting different environments can differ in sensory traits, and that this sensory difference can ultimately drive speciation. However, even in the best-known examples of sensory ecology driven speciation, it is uncertain whether the variation in sensory traits is the cause or the consequence of a reduction in levels of gene flow. Here we show strong genetic differentiation, no gene flow and large echolocation differences between the allopatric Myanmar and Thai populations of the world's smallest mammal, Craseonycteris thonglongyai, and suggest that geographic isolation most likely preceded sensory divergence. Within the geographically continuous Thai population, we show that geographic distance has a primary role in limiting gene flow rather than echolocation divergence. In line with sensory-driven speciation models, we suggest that in C. thonglongyai, limited gene flow creates the suitable conditions that favour the evolution of sensory divergence via local adaptation.
机译:物种形成的感官驱动理论预测,居住在不同环境中的同一物种的种群的感官特性可能会有所不同,并且这种感官差异最终可能会导致物种形成。但是,即使在最著名的感觉生态学驱动物种形成实例中,也不确定感觉性状的变化是基因流水平降低的原因还是结果。在这里,我们显示了世界上最小的哺乳动物Craseonycteris thonglongyai的同种异体缅甸和泰国种群之间的强遗传分化,无基因流和较大的回声定位差异,并表明地理隔离很可能先于感觉差异。在地理上连续的泰国人口中,我们表明地理距离在限制基因流而不是回声定位发散中起主要作用。与感官驱动的物种形成模型相一致,我们建议在通隆衣藻中,有限的基因流动创造了有利的条件,这些条件有利于通过局部适应发展感官分歧。

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