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费尔斯滕森区域的分子系统发育学:利用5.8S和28S核糖体DNA序列解决捻翅目问题

Molecular phylogenetics at the Felsenstein zone: approaching the Strepsiptera problem using 5.8S and 28S rDNA sequences.

作者信息

Hwang U W, Kim W, Tautz D, Friedrich M

机构信息

Zoologisches Institut der Universität München, Luisenstrasse 14, Munich, 80333, Germany.

出版信息

Mol Phylogenet Evol. 1998 Jun;9(3):470-80. doi: 10.1006/mpev.1998.0518.

DOI:10.1006/mpev.1998.0518
PMID:9667995
Abstract

Recent efforts to reconstruct the phylogenetic position of the insect order Strepsiptera have elicited a major controversy in molecular phylogenetics. We sequenced the 5.8S rDNA and major parts of the 28S rDNA 5' region of the strepsipteran species Stylops melittae. Their evolutionary dynamics were analyzed together with previously published insect rDNA sequences to identify tree estimation bias risks and to explore additional sources of phylogenetic information. Several major secondary structure changes were found as being autapomorphic for the Diptera, the Strepsiptera, or the Archaeognatha. Besides elevated substitution rates a significant AT bias was present in dipteran and strepsipteran 28S rDNA which, however, was restricted to stem sites in the Diptera while also affecting single-stranded sites in the Strepsiptera. When dipteran taxa were excluded from tree estimation all methods consistently supported the placement of Strepsiptera to within the Holometabola. When dipteran taxa were included maximum likelihood continued to favor a sister-group relationship of Strepsiptera with Mecoptera while remaining methods strongly supported a sister-group relationship with Diptera. Parametric bootstrap analysis revealed maximum likelihood as a consistent estimator if rate heterogeneity across sites was taken into account. Though the position of Strepsiptera within Holometabola remains elusive, we conclude that the evolution of dipteran and strepsipteran rDNA involved similar yet independent changes of substitution parameters.

摘要

近期重建捻翅目昆虫系统发育位置的努力在分子系统发育学领域引发了一场重大争议。我们对捻翅目昆虫梅氏蜂捻翅虫的5.8S rDNA以及28S rDNA 5'区域的主要部分进行了测序。将它们的进化动态与先前发表的昆虫rDNA序列一起进行分析,以识别树形估计偏差风险,并探索系统发育信息的其他来源。发现了一些主要的二级结构变化,这些变化是双翅目、捻翅目或石蛃目的自有衍征。除了替换率升高外,双翅目和捻翅目的28S rDNA中还存在显著的AT偏向,然而,这种偏向在双翅目中仅限于茎位点,而在捻翅目中也影响单链位点。当在树形估计中排除双翅目分类群时,所有方法都一致支持捻翅目置于全变态类昆虫之中。当纳入双翅目分类群时,最大似然法继续支持捻翅目与长翅目为姐妹群关系,而其余方法则强烈支持与双翅目为姐妹群关系。参数自展分析表明,如果考虑位点间的速率异质性,最大似然法是一种一致的估计方法。尽管捻翅目在全变态类昆虫中的位置仍然难以确定,但我们得出结论,双翅目和捻翅目rDNA的进化涉及替换参数的相似但独立的变化。

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