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Niche divergence facilitated by fine‐scale ecological partitioning in a recent cichlid fish adaptive radiation

机译:在最近的慈鲷鱼适应性辐射中通过精细的生态分区促进了生态位发散

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摘要

Ecomorphological differentiation is a key feature of adaptive radiations, with a general trend for specialization and niche expansion following divergence. Ecological opportunity afforded by invasion of a new habitat is thought to act as an ecological release, facilitating divergence, and speciation. Here, we investigate trophic adaptive morphology and ecology of an endemic clade of oreochromine cichlid fishes (Alcolapia) that radiated along a herbivorous trophic axis following colonization of an isolated lacustrine environment, and demonstrate phenotype‐environment correlation. Ecological and morphological divergence of the Alcolapia species flock are examined in a phylogenomic context, to infer ecological niche occupation within the radiation. Species divergence is observed in both ecology and morphology, supporting the importance of ecological speciation within the radiation. Comparison with an outgroup taxon reveals large‐scale ecomorphological divergence but shallow genomic differentiation within the Alcolapia adaptive radiation. Ancestral morphological reconstruction suggests lake colonization by a generalist oreochromine phenotype that diverged in Lake Natron to varied herbivorous morphologies akin to specialist herbivores in Lakes Tanganyika and Malawi.
机译:生态形态差异是适应性辐射的一个关键特征,随着趋向于发散,专业化和小生境扩展的总体趋势是普遍的。入侵新栖息地提供的生态机会被认为是生态释放,促进了分化和物种形成。在这里,我们研究了一个孤立的湖滨环境定居后沿着草食性营养轴辐射的奥利莫比奇丽鱼科鱼类(Alcolapia)的地方进化支的营养适应性形态和生态学,并证明了表型与环境的相关性。在植物学背景下检查了Alcolapia物种群的生态和形态差异,以推断辐射中生态位的占据。在生态学和形态学上都观察到了物种差异,这支持了辐射内生态物种形成的重要性。与外群分类单元的比较表明,Alcolapia适应性辐射在生态形态上存在较大差异,但基因组差异较小。祖先的形态重建表明,通配的Oreochromine表型在湖中定居,该表型在Natron湖中分化成各种草食形态,类似于Tanganyika和马拉维湖中的特殊草食动物。

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