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探索小RNA亚基和ITS序列在解析栉水母动物门内系统发育关系方面的潜力。

Exploring the potential of small RNA subunit and ITS sequences for resolving phylogenetic relationships within the phylum Ctenophora.

作者信息

Simion Paul, Bekkouche Nicolas, Jager Muriel, Quéinnec Eric, Manuel Michaël

机构信息

Institut de Biologie Paris-Seine (IBPS), Université Pierre et Marie Curie, UMR 7138 UPMC CNRS, 7 quai St Bernard, F-75005 Paris, France.

Institut de Biologie Paris-Seine (IBPS), Université Pierre et Marie Curie, UMR 7138 UPMC CNRS, 7 quai St Bernard, F-75005 Paris, France; Department of Biology, Marine Biological Section, University of Copenhagen, Strandpromenaden 5, DK-3000 Helsingør, Denmark.

出版信息

Zoology (Jena). 2015 Apr;118(2):102-14. doi: 10.1016/j.zool.2014.06.004. Epub 2014 Sep 6.

Abstract

Ctenophores are a phylum of non-bilaterian marine (mostly planktonic) animals, characterised by several unique synapomorphies (e.g., comb rows, apical organ). Relationships between and within the nine recognised ctenophore orders are far from understood, notably due to a paucity of phylogenetically informative anatomical characters. Previous attempts to address ctenophore phylogeny using molecular data (18S rRNA) led to poorly resolved trees but demonstrated the paraphyly of the order Cydippida. Here we compiled an updated 18S rRNA data set, notably including a few newly sequenced species representing previously unsampled families (Lampeidae, Euryhamphaeidae), and we constructed an additional more rapidly evolving ITS1 + 5.8S rRNA + ITS2 alignment. These data sets were analysed separately and in combination under a probabilistic framework, using different methods (maximum likelihood, Bayesian inference) and models (e.g., doublet model to accommodate secondary structure; data partitioning). An important lesson from our exploration of these datasets is that the fast-evolving internal transcribed spacer (ITS) regions are useful markers for reconstructing high-level relationships within ctenophores. Our results confirm the paraphyly of the order Cydippida (and thus a "cydippid-like" ctenophore common ancestor) and suggest that the family Mertensiidae could be the sister group of all other ctenophores. The family Lampeidae (also part of the former "Cydippida") is probably the sister group of the order Platyctenida (benthic ctenophores). The order Beroida might not be monophyletic, due to the position of Beroe abyssicola outside of a clade grouping the other Beroe species and members of the "Cydippida" family Haeckeliidae. Many relationships (e.g. between Pleurobrachiidae, Beroida, Cestida, Lobata, Thalassocalycida) remain unresolved. Future progress in understanding ctenophore phylogeny will come from the use of additional rapidly evolving markers and improvement of taxonomic sampling.

摘要

栉水母是一类非两侧对称的海洋(主要是浮游)动物,其特征是具有几个独特的共衍征(例如,栉板带、顶器)。九个公认的栉水母目之间以及目内的关系远未明确,特别是由于系统发育信息丰富的解剖学特征匮乏。先前利用分子数据(18S rRNA)研究栉水母系统发育的尝试得到的系统树分辨率很低,但表明兜水母目是并系群。在此,我们汇编了一个更新的18S rRNA数据集,特别纳入了一些新测序的物种,这些物种代表了之前未采样的科(灯水母科、宽吻栉水母科),并且我们构建了一个额外的进化更快的ITS1 + 5.8S rRNA + ITS2比对。这些数据集在概率框架下分别和合并进行分析,使用了不同的方法(最大似然法、贝叶斯推断)和模型(例如,用于适应二级结构的双重模型;数据划分)。我们对这些数据集探索得到的一个重要经验是,快速进化的内部转录间隔区(ITS)区域是重建栉水母目内高级别关系的有用标记。我们的结果证实了兜水母目的并系性(因此有一个“类兜水母”的栉水母共同祖先),并表明美光水母科可能是所有其他栉水母的姐妹群。灯水母科(也是之前“兜水母目”的一部分)可能是扁栉水母目(底栖栉水母)的姐妹群。由于深海贝罗水母位于一个将其他贝罗水母物种和“兜水母目”海克尔水母科成员归为一类的分支之外,贝罗水母目可能不是单系群。许多关系(例如,侧腕水母科、贝罗水母目、带栉水母目、瓣水母目、杯状栉水母目之间的关系)仍未解决。未来在理解栉水母系统发育方面的进展将来自使用更多快速进化的标记以及改善分类采样。

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