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Ancient hybridization fuels rapid cichlid fish adaptive radiations

机译:古老的杂交技术助长了丽鱼科鱼类的适应性辐射

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摘要

Understanding why some evolutionary lineages generate exceptionally high species diversity is an important goal in evolutionary biology. Haplochromine cichlid fishes of Africa's Lake Victoria region encompass >700 diverse species that all evolved in the last 150,000 years. How this ‘Lake Victoria Region Superflock' could evolve on such rapid timescales is an enduring question. Here, we demonstrate that hybridization between two divergent lineages facilitated this process by providing genetic variation that subsequently became recombined and sorted into many new species. Notably, the hybridization event generated exceptional allelic variation at an opsin gene known to be involved in adaptation and speciation. More generally, differentiation between new species is accentuated around variants that were fixed differences between the parental lineages, and that now appear in many new combinations in the radiation species. We conclude that hybridization between divergent lineages, when coincident with ecological opportunity, may facilitate rapid and extensive adaptive radiation.
机译:理解为什么某些进化谱系会产生极高的物种多样性是进化生物学的重要目标。非洲维多利亚湖地区的Haplochromine丽鱼科鱼类包括近700多种物种,这些物种在过去15万年中均已进化。这个“维多利亚湖地区超群”如何在如此快速的时间尺度上演变是一个持久的问题。在这里,我们证明了两个不同谱系之间的杂交通过提供遗传变异而促进了这一过程,该遗传变异随后被重组并分为许多新物种。值得注意的是,杂交事件在已知与适应和物种形成有关的视蛋白基因上产生了异常的等位基因变异。一般而言,新物种之间的差异围绕着亲代谱系之间的固定差异而变种,而这些变体则出现在辐射物种的许多新组合中。我们得出的结论是,当有生态机会时,不同血统之间的杂交可能会促进快速和广泛的适应性辐射。

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