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外类群对丽鱼科鱼类快速辐射演化支系的AFLP系统发育中根系位置和树形拓扑结构的影响

Outgroup effects on root position and tree topology in the AFLP phylogeny of a rapidly radiating lineage of cichlid fish.

作者信息

Kirchberger Paul C, Sefc Kristina M, Sturmbauer Christian, Koblmüller Stephan

机构信息

Department of Zoology, Karl-Franzens-University Graz, Universitätsplatz 2, A-8010 Graz, Austria.

出版信息

Mol Phylogenet Evol. 2014 Jan;70:57-62. doi: 10.1016/j.ympev.2013.09.005. Epub 2013 Sep 19.

Abstract

Phylogenetic analyses of rapid radiations are particularly challenging as short basal branches and incomplete lineage sorting complicate phylogenetic inference. Multilocus data of presence-absence polymorphisms such as obtained by AFLP genotyping overcome some of the difficulties, but also present their own intricacies. Here we analyze >1000 AFLP markers to address the evolutionary history of the Limnochromini, a cichlid fish lineage endemic to Lake Tanganyika, and to test for potential effects of outgroup composition on tree topology. The data support previous mitochondrial evidence on the tribe's taxonomy by confirming the polyphyly of the genus Limnochromis and - in contradiction to a recent taxonomic revision - nesting the genus Greenwoodochromis within the Limnochromini. Species relationships suggest that ecological segregation occurred during the rapid basal radiation of the Limnochromini. The large phylogenetic distance between candidate outgroup taxa and the Limnochromini radiation caused random outgroup effects. Bootstrap support for ingroup nodes was lower in outgroup-rooted than in midpoint-rooted trees, and root positions and ingroup tree topologies varied in response to the composition of the outgroup. These observations suggest that the predisposition for homoplastic evolution makes AFLP-based phylogenetic analyses particularly susceptible to random biases introduced by too-distant outgroup taxa.

摘要

对快速辐射进行系统发育分析尤其具有挑战性,因为短的基部支系和不完全的谱系分选会使系统发育推断变得复杂。通过AFLP基因分型获得的存在-缺失多态性的多位点数据克服了一些困难,但也有其自身的复杂性。在这里,我们分析了1000多个AFLP标记,以探讨坦噶尼喀湖特有的丽鱼科鱼类Limnochromini的进化历史,并测试外类群组成对树形拓扑结构的潜在影响。数据通过确认Limnochromis属的多系性,并与最近的分类修订相反,将Greenwoodochromis属嵌套在Limnochromini内,支持了先前关于该部落分类的线粒体证据。物种关系表明,生态隔离发生在Limnochromini的快速基部辐射期间。候选外类群分类单元与Limnochromini辐射之间的系统发育距离较大,导致了随机的外类群效应。在以外类群为根的树中,内类群节点的自展支持率低于以中点为根的树,并且根位置和内类群树形拓扑结构会因外类群的组成而变化。这些观察结果表明,同源进化的倾向使得基于AFLP的系统发育分析特别容易受到距离过远的外类群分类单元引入的随机偏差影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c64/3865360/285b2dea822c/fx1.jpg

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