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首页> 外文期刊>Molecular phylogenetics and evolution >First molecular estimate of cyclostome bryozoan phylogeny confirms extensive homoplasy among skeletal characters used in traditional taxonomy
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First molecular estimate of cyclostome bryozoan phylogeny confirms extensive homoplasy among skeletal characters used in traditional taxonomy

机译:对环气单胞胎苔藓系统发育的第一个分子估计证实了在传统分类学中使用的骨骼特征之间的广泛同质性

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The Cyclostomata are the only extant representatives of the class Stenolaemata, an ancient group of exclusively marine bryozoans. Previous cladistic analyses of cyclostome bryozoans, based exclusively on skeletal characters, revealed extensive homoplasy amongst morphological traits. This study presents the first molecular phylogeny for Cyclostomata and confirms the previous findings of homoplasy. Almost complete lsr and ssrDNA fragments were sequenced for 22 taxa of cyclostome bryozoans, plus the outgroup (Pectinatella magnifica and Flustrellidra hispida). Three well-supported major clades were found, but their inter relationships are unclear. Suborder Tubuliporina was polyphyletic, with representatives found in all three major clades. The tubuliporine family Plagioeciidae was resolved as polyphyletic; Plagioecia grouped with Lichenoporidae and Densiporidae, whereas Entalophoroecia, Diplosolen and Cardioecia formed a paraphyletic subgroup that included Frondiporidae and Horneridae. The suborder Cerioporina was also polyphyletic; Densiporidae grouped with Plagioecia and Lichenoporidae, whereas Heteroporidae nested in a paraphyletic subgroup of tubuliporines, with the Crisiidae forming the sister-group to this clade. Cinctiporidae could not be placed unambiguously. Morphological character mapping was performed in order to find evidence favouring one of the three possible hypotheses of inter relationships of the major clades, but the results were ambiguous. This study questions the extent to which morphological characters can be used in phylogenetic studies of cyclostome bryozoans, both fossil and extant, and how far their morphology is the result of ecophenotypic plasticity and convergent evolution. The finding of numerous non-monophyletic taxa has implications for extinction rate assessment and for the use of fossil cyclostomes to calibrate molecular trees.
机译:Cyclostomata是Stenolaemata类的唯一现存代表,Stenolaemata类是仅由海洋苔藓动物组成的古老群体。以前,仅根据骨骼特征对环足苔藓虫的分类分析表明,在形态特征之间存在广泛的同质性。这项研究提出了Cyclostomata的第一个分子系统发育,并证实了同质性的先前发现。几乎完整的lsr和ssrDNA片段被测序了22个Cyclostome bryozoans类群,加上外群(Pectinatella magnifica和Flustrellidra hispida)。发现了三个支撑良好的主要进化枝,但它们之间的关系尚不清楚。 Tubuliporina子亚种是多系统的,在所有三个主要进化枝中均发现了代表。微管孢菌科斜纹夜蛾科被认为是多系的;斜鞭毛虫与苔藓科和苔藓科一起分组,而昆虫纲,双足纲和心脏纲则形成了寄生虫亚群,其中包括蕨科和霍尼迪科。子孢子虫亚目也是多系统的。 Densiporidae与Plagioecia和Lichenoporidae组合在一起,而Heteroporidae则嵌套在微生孢子虫的近生亚组中,而Crisiidae则是该进化枝的姊妹组。 inc科不能被明确地放置。为了找到有利于主要进化枝之间的相互关系的三种可能假说之一的证据,进行了形态特征映射,但是结果是模棱两可的。这项研究质疑在形态学特征上可用于化石和现存的环纹苔癣菌的系统发育研究的程度,以及它们的形态在多大程度上是生态表型可塑性和趋同进化的结果。大量非单性类群的发现对灭绝率评估和化石回旋菌用于校准分子树具有重要意义。

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