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从核基因和线粒体基因推断真鲨目鲨鱼内部广泛的亲缘关系。

Extensive paraphylies within sharks of the order Carcharhiniformes inferred from nuclear and mitochondrial genes.

作者信息

Iglésias Samuel P, Lecointre Guillaume, Sellos Daniel Y

机构信息

UMR 5178, Station de Biologie Marine, Département Milieux et Peuplements aquatiques, Muséum national d'Histoire naturelle, Place de la Croix, BP 225, 29182 Concarneau cedex, France.

出版信息

Mol Phylogenet Evol. 2005 Mar;34(3):569-83. doi: 10.1016/j.ympev.2004.10.022. Epub 2005 Jan 11.

Abstract

Using nuclear coding and mitochondrial ribosomal genes we try to clarify relationships within Carcharhiniformes with special focus on the two most problematic groups: scyliorhinids and triakids. The mitochondrial aligned sequences are 1542 bp long, and include principally portion of 16S rRNA gene. They are obtained for two outgroup species and 43 Carcharhiniformes species, covering 5 of the 8 families and 15 of the 48 genera of the order. The nuclear RAG1 sequences are 1454 bp long, and are obtained for 17 species representative of the diversity of all species sampled. We used Maximum Parsimony and Maximum Likelihood criteria for tree reconstruction. Paraphylies within the family Scyliorhinidae was proposed for the first time by Maisey [Zool. J. Linn. Soc. 82, 33, 1984] in a morphological cladistic analysis. This result has never been proposed again until recently from molecular phylogenies [Mol. Phylogenet. Evol. 31, 214, 2004]. Here, independent and simultaneous analyses of nuclear and mitochondrial data are congruent in supporting the paraphyly of scyliorhinids. Two groups of scyliorhinids are obtained, thoroughly in line with discrimination proposed by previous authors, based on presence/absence of supraorbital crests on the chondrocranium. The first group (Scyliorhinus+Cephaloscyllium) is basal within carcharhiniforms and the second group (Apristurus+Asymbolus+Cephalurus+Galeus+Parmaturus) is sister group of all the other families investigated (Carcharhinidae, Proscyllidae, Pseudotriakidae, and Triakidae). The paraphyly of triakids appeared probable but more investigations are needed. In conclusion several independent morphological and molecular phylogenetic studies support paraphyly within scyliorhinids. So we propose a new classification for the group, with the redefinition of the family Scyliorhinidae sensu stricto and the resurrection of the family Pentanchidae with a new definition.

摘要

利用核编码基因和线粒体核糖体基因,我们试图阐明真鲨目内部的亲缘关系,特别关注两个最具问题的类群:猫鲨科和皱唇鲨科。线粒体比对序列长度为1542 bp,主要包括16S rRNA基因的部分序列。我们获得了两个外类群物种和43种真鲨目的序列,涵盖了该目8个科中的5个科以及48个属中的15个属。核RAG1序列长度为1454 bp,从所有采样物种的多样性中选取了17个代表性物种获得了该序列。我们使用最大简约法和最大似然法标准进行系统发育树重建。猫鲨科内的并系性首次由梅西[《林奈学会动物学杂志》82, 33, 1984]在形态分支分析中提出。直到最近从分子系统发育研究[《分子系统发育与进化》31, 214, 2004]中才再次提出这一结果。在此,对核数据和线粒体数据进行的独立同时分析一致支持猫鲨科的并系性。得到了两组猫鲨科,完全符合先前作者基于软骨颅上眶嵴的有无所提出的区分。第一组(星鲨属+头鲨属)在真鲨目中处于基部位置,第二组(原鲨属+无斑皱唇鲨属+头皱唇鲨属+鼬鲨属+副团扇鳐属)是所有其他被研究科(真鲨科、原鲨科、拟皱唇鲨科和皱唇鲨科)的姐妹群。皱唇鲨科的并系性似乎是可能的,但还需要更多研究。总之,几项独立的形态学和分子系统发育研究支持猫鲨科内的并系性。因此,我们为该类群提出了一个新的分类,重新定义了狭义的猫鲨科,并复活了有新定义的五鳍鲨科。

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