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Local variation and parallel evolution: morphological and genetic diversity across a species complex of neotropical crater lake cichlid fishes

机译:局部变异和平行演化:新热带陨石坑丽鱼科鱼类鱼类群的形态和遗传多样性

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The polychromatic and trophically polymorphic Midas cichlid fish species complex (Amphilophus cf. citrinellus) is an excellent model system for studying the mechanisms of speciation and patterns of phenotypic diversification in allopatry and in sympatry. Here, we first review research to date on the species complex and the geological history of its habitat. We analyse body shape variation from all currently described species in the complex, sampled from six crater lakes (maximally 1.2–23.9 kyr old) and both great lakes in Nicaragua. We find that Midas cichlid populations in each lake have their own characteristic body shape. In lakes with multiple sympatric species of Midas cichlid, each species has a distinct body shape. Across the species complex, most body shape change relates to body depth, head, snout and mouth shape and caudal peduncle length. There is independent parallel evolution of an elongate limnetic species in at least two crater lakes. Mitochondrial genetic diversity is higher in crater lakes with multiple species. Midas cichlid species richness increases with the size and age of the crater lakes, though no such relationship exists for the other syntopic fishes. We suggest that crater lake Midas cichlids follow the predicted pattern of an adaptive radiation, with early divergence of each crater lake colonization, followed by intralacustrine diversification and speciation by ecological adaptation and sexual selection.
机译:多色的和营养丰富的麦达斯丽鱼科鱼类复合体(Amphilophus cf. citrinellus)是研究异位和交配中表型多样化形态和机制的极好模型系统。在这里,我们首先回顾迄今为止有关物种复合体及其栖息地的地质历史的研究。我们分析了该复合体中所有目前描述的物种的体形变化,这些物种是从尼加拉瓜的六个火山口湖(最大年龄为1.2-23.9吉尔)和两个大湖中取样的。我们发现,每个湖中的迈达斯丽鱼科鱼种群都有自己独特的身体形态。在具有多种麦达斯慈鲷的同伴物种的湖泊中,每种物种都有独特的身体形态。在整个物种中,大多数体形变化与体深,头,口鼻和嘴形以及尾柄长度有关。在至少两个火山口湖中,一个细长的边缘岩系有独立的平行演化。在具有多个物种的火山口湖中,线粒体的遗传多样性较高。麦达斯慈鲷的物种丰富度随火山口湖的大小和年龄的增加而增加,尽管其他同系鱼类不存在这种关系。我们建议火山口湖Midas丽鱼科鱼遵循适应性辐射的预测模式,每个火山口湖殖民地都有较早的发散,然后通过生态适应和性选择对湖内湖泊进行多样化和物种形成。

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