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动物系统发育和大规模测序:进展和问题
引用本文:Hervé PHILIPPE.动物系统发育和大规模测序:进展和问题[J].植物分类学报,2008,46(3):274-286.
作者姓名:Hervé  PHILIPPE
作者单位:Centre Robert Cedergren, Département de Biochimie, Université de Montréal, 2900 Boulevard Edouard-Montpetit, Montréal, Québec, H3T1J4, Canada
基金项目:This work was supported by operating funds from the Natural Sciences and Engineering Research Council and the Canada Research Chairs Program. I wish to thank Nicolas Lartillot for discussions and helpful comments.
摘    要:

关 键 词:long-branch  attraction  (LBA)  artifact  new  animal  phylogeny  phylogenomics  random  error  systematic  error.  动物  系统发育  大规模  测序  问题  sequencing  phylogeny  Animal  general  importance  secondary  simplification  animals  like  nematodes  emergence  simple  fast  standard  model
修稿时间:2008年3月26日

Animal phylogeny and large-scale sequencing: progress and pitfalls
Henner BRINKMANN,Hervé PHILIPPE.Animal phylogeny and large-scale sequencing: progress and pitfalls[J].Acta Phytotaxonomica Sinica,2008,46(3):274-286.
Authors:Henner BRINKMANN  Hervé PHILIPPE
Institution:Centre Robert Cedergren, Departement de Biochimie, Universite de Montreal, 2900 Boulevard Edouard-Montpetit, Montreal, Quebec, H3TIJ4, Canada
Abstract:Phylogenomics, the inference of phylogenetic trees using genome-scale data, is becoming the rule for resolving difficult parts of the tree of life. Its promise resides in the large amount of information available, which should eliminate stochastic error. However, systematic error, which is due to limitations of reconstruction methods, is becoming more apparent. We will illustrate, using animal phylogeny as a case study, the three most efficient approaches to avoid the pitfalls of phylogenomics (1) using a dense taxon sampling, (2) using probabilistic methods with complex models of sequence evolution that more accurately detect multiple substitutions, and (3) removing the fastest evolving part of the data (e.g., species and positions). The analysis of a dataset of 55 animal species and 102 proteins (25712 amino acid positions) shows that standard site-homogeneous model inference is sensitive to long-branch attraction artifact, whereas the site-heterogeneous CAT model is less so. The latter model correctly locates three very fast evolving species, the appendicularian tunicate Oikopleura, the acoel Convoluta and the myxozoan Buddenbrockia. Overall, the resulting tree is in excellent agreement with the new animal phylogeny, confirming that "simple" organisms like platyhelminths and nematodes are not necessarily of basal emergence. This further emphasizes the importance of secondary simplification in animals, and for organismal evolution in general.
Keywords:long-branch attraction (LBA) artifact  new animal phylogeny  phylogenomics  random error  systematic error  
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