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Parallel evolution of Nicaraguan crater lake cichlid fishes via non-parallel routes

机译:尼加拉瓜火山口丽鱼科鱼通过非平行途径平行进化

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Fundamental to understanding how biodiversity arises and adapts is whether evolution is predictable in the face of stochastic genetic and demographic factors. Here we show rapid parallel evolution across two closely related but geographically isolated radiations of Nicaraguan crater lake cichlid fishes. We find significant morphological, ecological and genetic differentiation between ecomorphs in sympatry, reflected primarily in elongated versus high-bodied shape, differential ecological niche use and genetic differentiation. These eco-morphological divergences are significantly parallel across radiations. Based on 442,644 genome-wide single nucleotide polymorphisms, we identify strong support for the monophyly of, and subsequent sympatric divergence within, each radiation. However, the order of speciation differs across radiations; in one lake the limnetic ecomorph diverged first while in the other a benthic ecomorph. Overall our results demonstrate that complex parallel phenotypes can evolve very rapidly and repeatedly in similar environments, probably due to natural selection, yet this evolution can proceed along different evolutionary genetic routes.
机译:了解生物多样性如何产生和适应的基础,是面对随机遗传和人口因素,进化是否可预测。在这里,我们展示了尼加拉瓜火山口湖丽鱼科鱼类两条紧密相关但在地理上隔离的辐射的快速平行演化。我们发现共生生态形态之间的显着形态学,生态学和遗传学差异,主要体现在细长形与高体形,生态位生态利用的差异和遗传分化上。这些生态形态差异在辐射范围内显着平行。基于442,644个全基因组范围的单核苷酸多态性,我们确定了对每个辐射的单方面性以及随后同胞发散的强烈支持。但是,不同辐射的物种形成顺序不同。在一个湖泊中,边缘型生态型首先发散,而在另一个底栖生态型中。总的来说,我们的结果表明,复杂的平行表型可以在相似的环境中非常快速且重复地进化,这可能是由于自然选择所致,但是这种进化可以沿着不同的进化遗传途径进行。

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