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首页> 外文期刊>Molecular phylogenetics and evolution >Molecular phylogenetic relationships of the deep-sea fish genus Coryphaenoides (Gadiformes: Macrouridae) based on mitochondrial DNA.
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Molecular phylogenetic relationships of the deep-sea fish genus Coryphaenoides (Gadiformes: Macrouridae) based on mitochondrial DNA.

机译:基于线粒体DNA的深海鱼类类鳞翅目(Gadiformes:Macrouridae)的分子系统发育关系。

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摘要

In order to characterize the phylogenetic relationship and deep-sea adaptation process of the deep-sea fish genus Coryphaenoides, the nucleotide sequences of the mitochondrial (mt) 12 S rRNA and COI gene sequences for seven Coryphaenoides species were analyzed. Our molecular phylogenetic tree shows a new arrangement of seven Coryphaenoides species, which form two distinct groups, abyssal and nonabyssal species, and differs from the results of previous taxonomic studies. Using the mutation rate of mitochondrial genes, the divergence time between abyssal and nonabyssal Coryphaenoides was found to be 3.2-7.6 million years ago. Our study suggests that hydraulic pressure plays an important role in the speciation process in the marine environment. Copyright 1999 Academic Press.
机译:为了刻画深海鱼类属的类属的亲缘关系和深海适应过程,分析了七种属的线粒体(mt)12 S rRNA的核苷酸序列和COI基因序列。我们的分子系统发育树显示了七个新甲虫的新排列,它们形成了两个不同的群体,即深渊和非深渊物种,与先前的分类学研究结果不同。利用线粒体基因的突变率,发现深渊和非深渊刺蛇鱼之间的分歧时间为3.2-760万年前。我们的研究表明,液压在海洋环境的形成过程中起着重要作用。版权所有1999 Academic Press。

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