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Molecular phylogeny of the stromateoid fishes (Teleostei : Perciformes) inferred from mitochondrial DNA sequences and compared with morphology-based hypotheses

机译:从线粒体DNA序列推断并与基于形态学的假设相比较的间质鱼类(Teleostei:Perciformes)的分子系统发育

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摘要

The phylogenetic relationships among 21 species of stromateoid fishes, representing five families and 13 genera, were reconstructed using 3263 bp of mitochondrial DNA sequences, including the posterior half of the 16S rRNA and entire COI and Cytb genes. The resultant molecular phylogenies were compared with previous phylogenetic hypotheses inferred from morphological characters. Molecular phylogenctic trees were constructed using the maximum parsimony, maximum likelihood, and Bayesian methods. All three methods resulted in well-resolved trees with most nodes being supported by moderate to high support values. In contrast to previous morphological analyses, which resulted in non-monophyly of Centrolophidae, all three methods utilized for the present molecular analyses supported the monophyly of Centrolophidae, as well as the reciprocal monophyly of the other stromateoid families, previous morphological hypotheses being rejected by the Templeton and Shimodaira-Hasegawa tests. In addition, the three methods indicated a sister-group relationship between Ariommatidae and Nomeidae. The position of Tetragonuridae was, however, incongruent between the MP method and the ML and Bayesian methods, being placed in the most basal position of Stromateoidei in the former, but occupying a sister relationship to Stromateidae in the latter. Comparison of the molecular phylogenies to previous morphological hypotheses suggested that evolutionary changes in morphological characters have not occurred equally among the stromateoid lineages, the evolution of the centrolophids not having been accompanied by appreciable morphological changes, whereas other stromateoids have undergone considerable morphological changes during their evolutionary history. The molecular phylogenies also shed some light on the evolutionary pattern of the pharyngeal sac, two of the four types of sac corresponding to two main lineages of Stromateoidei. Some taxonomic implications were also discussed. (c) 2005 Elsevier Inc. All rights reserved.
机译:利用3263 bp的线粒体DNA序列(包括16S rRNA的后半部分以及整个COI和Cytb基因)重建了代表5个科和13属的21种类间鱼类的系统发育关系。将所得的分子系统发育与从形态特征推断的先前系统发育假设进行比较。使用最大简约,最大似然和贝叶斯方法构建分子系统树。所有这三种方法均导致树得到良好解析,并且大多数节点得到中等到较高的支持值。与以前的形态学分析导致​​中心虫科不具有单义性相反,用于本分子分析的所有三种方法均支持中心虫科的单义性以及其他间质类的互惠性,先前的形态学假设遭到了Templeton和Shimodaira-Hasegawa测试。另外,这三种方法表明了mm科和夜蛾科之间的姐妹群关系。然而,四角龙科的位置在MP方法与ML和贝叶斯方法之间是不一致的,在前者中Stromateoidei处于最基础的位置,但在后者中与Stromateidae有着姐妹关系。分子系统发育与先前形态学假设的比较表明,间质类谱系在形态特征上的进化变化不是均等发生的,质心体的进化没有伴随可观的形态学变化,而其他间质类在其进化过程中经历了可观的形态学变化。历史。分子系统发育也为咽囊的进化模式提供了一些启示,咽囊是四种类型囊中的两种,对应于Stromateoidei的两个主要谱系。还讨论了一些分类学意义。 (c)2005 Elsevier Inc.保留所有权利。

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