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Evolutionary History of Lake Tanganyikas Predatory Deepwater Cichlids

机译:坦any尼喀湖掠夺性深水丽鱼科鱼的进化史

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摘要

Hybridization among littoral cichlid species in Lake Tanganyika was inferred in several molecular phylogenetic studies. The phenomenon is generally attributed to the lake level-induced shoreline and habitat changes. These allow for allopatric divergence of geographically fragmented populations alternating with locally restricted secondary contact and introgression between incompletely isolated taxa. In contrast, the deepwater habitat is characterized by weak geographic structure and a high potential for gene flow, which may explain the lower species richness of deepwater than littoral lineages. For the same reason, divergent deepwater lineages should have evolved strong intrinsic reproductive isolation already in the incipient stages of diversification, and, consequently, hybridization among established lineages should have been less frequent than in littoral lineages. We test this hypothesis in the endemic Lake Tanganyika deepwater cichlid tribe Bathybatini by comparing phylogenetic trees of Hemibates and Bathybates species obtained with nuclear multilocus AFLP data with a phylogeny based on mitochondrial sequences. Consistent with our hypothesis, largely congruent tree topologies and negative tests for introgression provided no evidence for introgressive hybridization between the deepwater taxa. Together, the nuclear and mitochondrial data established a well-supported phylogeny and suggested ecological segregation during speciation.
机译:在几个分子系统发育研究中推断坦Tang尼喀湖沿岸丽鱼科动物之间的杂交。这种现象通常归因于湖平面引起的海岸线和生境的变化。这些使得地理上零散的种群的异源散布与局部受限的次要接触和不完全分离的分类群之间的渗入交替发生。相反,深水生境的特点是地理结构薄弱,基因流动的可能性高,这可能解释了深水物种丰富度比沿海沿袭物种低的原因。出于同样的原因,不同的深水谱系本应在多样化的初始阶段就已经发展出强大的内在生殖隔离,因此,与沿岸谱系相比,已建立谱系之间的杂交频率应较低。我们通过比较用核多位点AFLP数据获得的Hemibates和Bathybates物种的系统树与基于线粒体序列的系统发育树,在地方性坦Tang尼喀湖深水丽鱼科鱼Bathybatini物种中验证了这一假设。与我们的假设相符,大体上一致的树形拓扑和对渗入的否定检验没有提供深水分类群之间渗入杂交的证据。核和线粒体数据共同建立了良好的系统发育系统,并建议在物种形成过程中进行生态隔离。

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