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视觉环境间的差异生存支持趋异感官驱动在丽鱼科鱼类物种形成中的作用。

Differential Survival between Visual Environments Supports a Role of Divergent Sensory Drive in Cichlid Fish Speciation.

作者信息

Maan Martine E, Seehausen Ole, Groothuis Ton G G

出版信息

Am Nat. 2017 Jan;189(1):78-85. doi: 10.1086/689605. Epub 2016 Nov 30.

Abstract

Identifying the selective forces that initiate ecological speciation is a major challenge in evolutionary biology. Sensory drive has been implicated in speciation in various taxa, largely based on phenotype-environment correlations and signatures of selection in sensory genes. Here, we present a reciprocal transplant experiment revealing species differences in performance in alternative visual environments, consistent with speciation by divergent sensory drive. The closely related cichlids Pundamilia pundamilia and Pundamilia nyererei inhabit different visual environments in Lake Victoria and show associated differences in visual system properties. Mimicking the two light environments in the laboratory, we find a substantial reduction in survival of both species when reared in the other species' visual environment. This implies that the observed differences in Pundamilia color vision are indeed adaptive and substantiates the implicit assumption in sensory drive speciation models that divergent environmental selection is strong enough to drive divergence in sensory properties.

摘要

识别引发生态物种形成的选择力量是进化生物学中的一项重大挑战。感觉驱动在各种分类群的物种形成中都有涉及,这主要基于表型与环境的相关性以及感觉基因中的选择特征。在此,我们展示了一项 reciprocal transplant 实验,该实验揭示了在不同视觉环境中表现的物种差异,这与通过不同感觉驱动实现的物种形成相一致。亲缘关系密切的丽鱼科鱼类潘氏钝塘鳢和奈氏钝塘鳢栖息在维多利亚湖的不同视觉环境中,并在视觉系统特性上表现出相关差异。在实验室中模拟这两种光照环境,我们发现当在另一个物种的视觉环境中饲养时,两个物种的存活率都大幅降低。这意味着在潘氏钝塘鳢中观察到的色觉差异确实具有适应性,并证实了感觉驱动物种形成模型中的隐含假设,即不同的环境选择足够强大,足以推动感觉特性的分化。

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