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首页> 外文期刊>Cladistics: The international journal of the Willi Hennig Society >The phylogenetic position of the comb jellies (Ctenophora) and the importance of taxonomic sampling
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The phylogenetic position of the comb jellies (Ctenophora) and the importance of taxonomic sampling

机译:梳状果冻(Ctenophora)的系统发育位置和分类采样的重要性

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The transition to a vermiform body shape is one of the most important events in animal evolution, having led to the impressive radiation of Bilateria. However, the sister group of Bilateria has remained obscure. Cladistic analyses of morphology indicate that Ctenophora is the sister group of Bilateria. Previous analyses of SSU rRNA sequences have yielded conflicting results; in many studies Ctenophora forms the sister group of Cnidaria + Bilateria, but in others the ctenophores group with poriferans. Here we re-examine the SSU sequence by analyzing a dataset with 528 metazoan + outgroup sequences, including almost 120 poriferan and diploblast sequences. We use parsimony ratchet and jackknife methods, as well as Bayesian methods, to analyze the data. The results indicate strong phylogenetic signals for a cnidarian + bilaterian group and for the comb jellies to have branched off early within a group uniting all epithelial animals [(Ct,(Cn,Bi))]. We demonstrate the importance of inclusive taxonomic coverage of ribosomal sequences for resolving this problematic part of the metazoan tree: topological stability increases dramatically with the addition of taxa, and the jackknife frequencies of the internal nodes uniting the lineages [(Cn,Bi) and ((Ct,(Cn,Bi))] also increase. We consider the reconstructed topology to represent the current best hypothesis of the interrelationships of these old lineages. Some morphological features supporting alternative hypotheses are discussed in the light of this result.
机译:转变为蠕虫状的身体是动物进化中最重要的事件之一,导致了令人难以置信的Bilateria辐射。但是,Bilateria的姊妹团体仍然默默无闻。形态学的进化论分析表明,Ctenophora是Bilateria的姐妹群。先前对SSU rRNA序列的分析得出了相互矛盾的结果。在许多研究中,Ctenophora组成了Cnidaria + Bilateria的姐妹组,但在另一些研究中,则是带有poriferans的十足动物组。在这里,我们通过分析528个后生动物+外群序列的数据集来重新检查SSU序列,其中包括近120个poriferan和diploblast序列。我们使用简约的棘轮和折刀方法以及贝叶斯方法来分析数据。结果表明,一个刺胞动物+双语者组和梳子果冻在结合所有上皮动物的组中早已分支的强烈的系统发生信号[(Ct,(Cn,Bi))]。我们证明了核糖体序列的包容性分类覆盖对于解决后生树的这一有问题部分的重要性:随着分类单元的添加,拓扑稳定性显着提高,并且内部节点的折刀频率将谱系[(Cn,Bi)和( (Ct,(Cn,Bi))]也增加了,我们认为重建的拓扑结构代表了这些旧谱系之间的相互关系的当前最佳假设,并针对这一结果讨论了一些支持替代假设的形态特征。

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