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迈向六足动物的18S系统发育:在优化的混合核苷酸/双联体模型中考虑特定类群的性状协方差

Towards an 18S phylogeny of hexapods: accounting for group-specific character covariance in optimized mixed nucleotide/doublet models.

作者信息

Misof Bernhard, Niehuis Oliver, Bischoff Inge, Rickert Andreas, Erpenbeck Dirk, Staniczek Arnold

机构信息

Abteilung für Entomologie, Zoologisches Forschungsmuseum Alexander Koenig, Adenauerallee 160, D-53113, Bonn, Germany.

出版信息

Zoology (Jena). 2007;110(5):409-29. doi: 10.1016/j.zool.2007.08.003. Epub 2007 Oct 25.

Abstract

The phylogenetic diversification of Hexapoda is still not fully understood. Morphological and molecular analyses have resulted in partly contradicting hypotheses. In molecular analyses, 18S sequences are the most frequently employed, but it appears that 18S sequences do not contain enough phylogenetic signals to resolve basal relationships of hexapod lineages. Until recently, character interdependence in these data has never been treated seriously, though possibly accounting for the occurrence of biased results. However, software packages are readily available which can incorporate information on character interdependence within a Bayesian approach. Accounting for character covariation derived from a hexapod consensus secondary structure model and applying mixed DNA/RNA substitution models, our Bayesian analysis of 321 hexapod sequences yielded a partly robust tree that depicts many hexapod relationships congruent with morphological considerations. It appears that the application of mixed DNA/RNA models removes many of the anomalies seen in previous studies. We focus on basal hexapod relationships for which unambiguous results are missing. In particular, the strong support for a "Chiastomyaria" clade (Ephemeroptera+Neoptera) obtained in Kjer's [2004. Aligned 18S and insect phylogeny. Syst. Biol. 53, 1-9] study of 18S sequences could not be confirmed by our analysis. The hexapod tree can be rooted with monophyletic Entognatha but not with a clade Ellipura (Collembola+Protura). Compared to previously published contributions, accounting for character interdependence in analyses of rRNA data presents an improvement of phylogenetic resolution. We suggest that an integration of explicit clade-specific rRNA structural refinements is not only possible but an important step in the optimization of substitution models dealing with rRNA data.

摘要

六足动物的系统发育多样化仍未完全被理解。形态学和分子分析得出了部分相互矛盾的假说。在分子分析中,18S序列是最常使用的,但似乎18S序列不包含足够的系统发育信号来解析六足动物谱系的基部关系。直到最近,这些数据中的性状相互依存性从未得到认真对待,尽管这可能是导致有偏差结果出现的原因。然而,有现成的软件包可以在贝叶斯方法中纳入关于性状相互依存性的信息。考虑到从六足动物共有二级结构模型得出的性状协变,并应用混合DNA/RNA替换模型,我们对321个六足动物序列进行的贝叶斯分析产生了一棵部分稳健且描绘了许多与形态学考量相符的六足动物关系的树。似乎混合DNA/RNA模型的应用消除了先前研究中出现的许多异常情况。我们关注那些缺乏明确结果的基部六足动物关系。特别是,在凯尔[2004年。比对的18S与昆虫系统发育。系统生物学53,1 - 9]对18S序列的研究中获得的对“交叉双尾类”分支(蜉蝣目+新翅类)的强烈支持未被我们的分析所证实。六足动物树可以以单系的内口纲为根,但不能以分支椭圆类(弹尾目+原尾目)为根。与先前发表的研究相比,在rRNA数据分析中考虑性状相互依存性提高了系统发育分辨率。我们认为,整合明确的类群特异性rRNA结构优化不仅是可能的,而且是优化处理rRNA数据的替换模型的重要一步。

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