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通过拆分长分支来解析鸟类线粒体基因组树的根源。

Resolving the root of the avian mitogenomic tree by breaking up long branches.

作者信息

Slack Kerryn E, Delsuc Frédéric, McLenachan Patricia A, Arnason Ulfur, Penny David

机构信息

Allan Wilson Center for Molecular Ecology and Evolution, Massey University, Palmerston North, New Zealand.

出版信息

Mol Phylogenet Evol. 2007 Jan;42(1):1-13. doi: 10.1016/j.ympev.2006.06.002. Epub 2006 Jun 7.

Abstract

Incomplete taxon sampling has been a major problem in resolving the early divergences in birds. Five new mitochondrial genomes are reported here (brush-turkey, lyrebird, suboscine flycatcher, turkey vulture, and a gull) and three break up long branches that tended to attract the distant reptilian outgroup. These long branches were to galliforms, and to oscine and suboscine passeriformes. Breaking these long branches leaves the root, as inferred by maximum likelihood and Bayesian phylogenetic analyses, between paleognaths and neognaths. This means that morphological, nuclear, and mitochondrial data are now in agreement on the position of the root of the avian tree and we can, move on to other questions. An overview is then given of the deepest divisions in the mitogenomic tree inferred from complete mitochondrial genomes. The strict monophyly of both the galloanseres and the passerines is strongly supported, leaving the deep six-way split within Neoaves as the next major question for which resolution is still lacking. Incomplete taxon sampling was also a problem for Neoaves, and although some resolution is now available there are still problems because current phylogenetic methods still fail to account for real features of DNA sequence evolution.

摘要

分类群抽样不完整一直是解决鸟类早期分化问题的一个主要障碍。本文报道了五个新的线粒体基因组(灌丛火鸡、琴鸟、亚鸣禽捕蝇鸟、红头美洲鹫和一种鸥),其中三个打破了倾向于吸引远缘爬行动物外类群的长分支。这些长分支分别通向鸡形目、鸣禽和亚鸣禽雀形目。通过最大似然法和贝叶斯系统发育分析推断,打破这些长分支后,古颚类和新颚类之间出现了根部。这意味着形态学、核基因和线粒体数据现在在鸟类谱系根部的位置上达成了一致,我们可以继续探讨其他问题。接着概述了从完整线粒体基因组推断出的有丝分裂基因组树中的最深分支。鸡雁小纲和雀形目的严格单系性得到了有力支持,新鸟亚纲内的深度六分法仍是下一个尚未解决的主要问题。分类群抽样不完整也是新鸟亚纲面临的一个问题,虽然现在已有一些解决方案,但仍然存在问题,因为目前的系统发育方法仍未能考虑到DNA序列进化的实际特征。

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