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昆虫线粒体基因组系统发生学中的非平稳进化和组成异质性。

Nonstationary evolution and compositional heterogeneity in beetle mitochondrial phylogenomics.

机构信息

Department of Biology, Brigham Young University, Provo, UT 84602, USA.

出版信息

Syst Biol. 2009 Aug;58(4):381-94. doi: 10.1093/sysbio/syp037. Epub 2009 Jul 15.

Abstract

Many published phylogenies are based on methods that assume equal nucleotide composition among taxa. Studies have shown, however, that this assumption is often not accurate, particularly in divergent lineages. Nonstationary sequence evolution, when taxa in different lineages evolve in different ways, can lead to unequal nucleotide composition. This can cause inference methods to fail and phylogenies to be inaccurate. Recent advancements in phylogenetic theory have proposed new models of nonstationary sequence evolution; these models often outperform equivalent stationary models. A variety of new phylogenetic software implementing such models has been developed, but the studies employing the new methodology are still few. We discovered convergence of nucleotide composition within mitochondrial genomes of the insect order Coleoptera (beetles). We found variation in base content both among species and among genes in the genome. To this data set, we have applied a broad range of phylogenetic methods, including some traditional stationary models of evolution and all the more recent nonstationary models. We compare 8 inference methods applied to the same data set. Although the more commonly used methods universally fail to recover established clades, we find that some of the newer software packages are more appropriate for data of this nature. The software packages p4, PHASE, and nhPhyML were able to overcome the systematic bias in our data set, but parsimony, MrBayes, NJ, LogDet, and PhyloBayes were not.

摘要

许多已发表的系统发育树是基于假设分类单元之间核苷酸组成相等的方法构建的。然而,研究表明,这种假设通常并不准确,特别是在分歧较大的谱系中。非平稳序列进化,即不同谱系中的分类单元以不同的方式进化,可能导致核苷酸组成不等。这会导致推断方法失败,系统发育树不准确。最近的系统发育理论进展提出了新的非平稳序列进化模型;这些模型通常优于等效的平稳模型。已经开发了各种新的实现这种模型的系统发育软件,但采用新方法的研究仍然很少。我们发现昆虫目鞘翅目(甲虫)的线粒体基因组中的核苷酸组成趋同。我们发现物种之间和基因组中基因之间的碱基含量都存在差异。我们将广泛的系统发育方法应用于这个数据集,包括一些传统的进化平稳模型和所有最近的非平稳模型。我们比较了 8 种应用于同一数据集的推断方法。虽然更常用的方法普遍无法恢复已建立的进化枝,但我们发现一些较新的软件包更适合这种性质的数据。软件包 p4、PHASE 和 nhPhyML 能够克服我们数据集的系统偏差,但简约法、MrBayes、NJ、LogDet 和 PhyloBayes 则不能。

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