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Relaxed selective constraints drove functional modifications in peripheral photoreception of the cavefish P. andruzzii and provide insight into the time of cave colonization

机译:放宽的选择性限制驱使洞穴鱼P. andruzzii外围光接收的功能改变并洞悉洞穴定殖的时间

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摘要

The genetic basis of phenotypic changes in extreme environments is a key but rather unexplored topic in animal evolution. Here we provide an exemplar case of evolution by relaxed selection in the Somalian cavefish Phreatichthys andruzzii that has evolved in the complete absence of light for at least 2.8 million years. This has resulted in extreme degenerative phenotypes, including complete eye loss and partial degeneration of the circadian clock. We have investigated the molecular evolution of the nonvisual photoreceptor melanopsin opn4m2, whose mutation contributes to the inability of peripheral clocks to respond to light. Our intra- and inter-species analyses suggest that the ‘blind' clock in P. andruzzii evolved because of the loss of selective constraints on a trait that was no longer adaptive. Based on this change in selective regime, we estimate that the functional constraint on cavefish opn4m2 was relaxed at ∼5.3 Myr. This implies a long subterranean history, about half in complete isolation from the surface. The visual photoreceptor rhodopsin, expressed in the brain and implicated in photophobic behavior, shows similar evolutionary patterns, suggesting that extreme isolation in darkness led to a general weakening of evolutionary constraints on light-responsive mechanisms. Conversely, the same genes are still conserved in Garra barreimiae, a cavefish from Oman, that independently and more recently colonized subterranean waters and evolved troglomorphic traits. Our results contribute substantially to the open debate on the genetic bases of regressive evolution.
机译:极端环境中表型变化的遗传基础是动物进化中一个关键但尚未探索的话题。在这里,我们提供了一个示例性案例,说明了在索马里洞穴鱼Phreatichthys andruzzii中的放松选择,这种进化至少在完全没有光照的情况下已经进行了至少280万年。这导致了极端的退化表型,包括完全失明和昼夜节律的部分退化。我们已经研究了非视觉感光黑素opn4m2的分子进化,其突变导致外围时钟无法响应光。我们的种内和种间分析表明,P。andruzzii的“盲”钟进化是因为失去了对不再适应的性状的选择性限制。基于选择性机制的这种变化,我们估计对穴鱼opn4m2的功能约束在5.3 Myr处放松。这意味着很长的地下历史,其中约有一半与地面完全隔离。视觉光感受器视紫红质在大脑中表达并与畏光行为有关,显示出相似的进化模式,这表明在黑暗中极端隔离会导致对光响应机制的进化限制普遍减弱。相反,相同的基因在阿曼的一种洞穴鱼Garra barreimiae中仍然保留,该基因独立并最近在殖民地的地下水域中形成,并形成了拟绿体性状。我们的结果大大促进了关于回归进化的遗传基础的公开辩论。

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