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Phylogenomics uncovers early hybridization and adaptive loci shaping the radiation of Lake Tanganyika cichlid fishes

机译:植物遗传学发现了早期杂交和适应性基因座,使坦ika尼喀湖丽鱼科鱼类的辐射得以形成

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Lake Tanganyika is the oldest and phenotypically most diverse of the three East African cichlid fish adaptive radiations. It is also the cradle for the younger parallel haplochromine cichlid radiations in Lakes Malawi and Victoria. Despite its evolutionary significance, the relationships among the main Lake Tanganyika lineages remained unresolved, as did the general timescale of cichlid evolution. Here, we disentangle the deep phylogenetic structure of the Lake Tanganyika radiation using anchored phylogenomics and uncover hybridization at its base, as well as early in the haplochromine radiation. This suggests that hybridization might have facilitated these speciation bursts. Time-calibrated trees support that the radiation of Tanganyika cichlids coincided with lake formation and that Gondwanan vicariance concurred with the earliest splits in the cichlid family tree. Genes linked to key?innovations show signals of introgression or positive selection following colonization of lake habitats and species’ dietary adaptations are revealed as major drivers of colour vision evolution. These findings shed light onto the processes shaping the evolution of adaptive radiations.
机译:坦any尼喀湖是三种东非丽鱼科鱼类适应性辐射中最古老且在表型上最多样化的。它也是马拉维湖和维多利亚州年轻的平行单倍铬碱丽鱼科鱼辐射的发源地。尽管它具有进化意义,但主要的坦Tang尼喀湖谱系之间的关系仍未得到解决,丽鱼科鱼进化的总体时间尺度也是如此。在这里,我们使用锚定的系统基因组学解开了坦any尼喀湖辐射的深层系统结构,并在其基部以及单倍铬碱辐射的早期揭示了杂交。这表明杂交可能促进了这些物种爆发。经过时间校准的树木支持坦any尼喀丽鱼科植物的辐射与湖泊的形成相吻合,冈瓦纳人的变化与丽鱼科植物的最早分裂同时发生。与关键创新相关的基因显示了在湖泊栖息地定居后渗入或正选择的信号,而物种的饮食适应被揭示为彩色视觉进化的主要驱动力。这些发现为塑造适应性辐射演化的过程提供了启示。

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