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首页> 外文期刊>Molecular biology and evolution >Phylogenetic relationships and ancient incomplete lineage sorting amongcichlid fishes in Lake Tanganyika as revealed by analysis of the insertionof retroposons
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Phylogenetic relationships and ancient incomplete lineage sorting amongcichlid fishes in Lake Tanganyika as revealed by analysis of the insertionof retroposons

机译:逆向插入的分析揭示了坦Tang尼喀湖丽鱼科鱼类的系统发育关系和古代不完整谱系排序

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摘要

Lake Tanganyika harbors numerous endemic species of extremely diverse cichlid fish that have been classified into 12 major taxonomic groups known as tribes. Analysis of short interspersed element (SINE) insertion data has been acknowledged to be a powerful tool for the elucidation of phylogenetic relationships, and we applied this method in an attempt to clarify such relationships among these cichlids. We studied insertion patterns of 38 SINEs in total, 24 of which supported the rnonophyly of three clades. The other 14 loci revealed extensive incongruence in terms of the patterns of SINE insertions. These incongruencies most likely stem from a period of adaptive radiation. One possible explanation for this phenomenon is the extensive incomplete lineage sorting of alleles for the presence or absence of a SINE during successive speciation events which took place about 5-10 MYA. The present study is the first to report the successful application of the SINE method in demonstrating the existence of such possible "ancient" incomplete lineage sorting. We discuss the possibility that it might potentially be very difficult to resolve the species phylogeny of a group that radiated explosively, even by resolving the genealogies of more than 10 nuclear loci, as a consequence of incomplete lineage sorting during speciation.
机译:坦any尼喀湖上有许多特有的丽鱼科鱼类特有物种,这些鱼类已被分类为12个主要的生物分类群,即部落。短散布元素(SINE)插入数据的分析已被认为是阐明系统发育关系的有力工具,并且我们尝试使用这种方法来阐明这些丽鱼科动物之间的这种关系。我们研究了总共38个SINE的插入模式,其中24个支持三个进化枝的精子学。其他14个基因座在SINE插入模式方面显示出广泛的不一致。这些不一致之处很可能源于一段适应性辐射。对此现象的一种可能解释是,在大约5-10 MYA的连续物种形成事件期间,是否存在SINE导致等位基因的广泛不完全谱系分类。本研究是第一个报告SINE方法在证明这种可能的“古老的”不完整谱系分类的存在中成功应用的方法。我们讨论了以下可能性:由于物种形成过程中谱系排序不完整,即使解决了10个以上的核基因座的谱系,也可能很难解决爆炸性辐射的物种的系统发育。

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