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首页> 外文期刊>Molecular phylogenetics and evolution >The complete mitochondrial genomes of deep-sea squid (Bathyteuthis abyssicola), bob-tail squid (Semirossia patagonica) and four giant cuttlefish (Sepia apama, S. latimanus, S. lycidas and S. pharaonis), and their application to the phylogenetic analysis of Decapodiformes
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The complete mitochondrial genomes of deep-sea squid (Bathyteuthis abyssicola), bob-tail squid (Semirossia patagonica) and four giant cuttlefish (Sepia apama, S. latimanus, S. lycidas and S. pharaonis), and their application to the phylogenetic analysis of Decapodiformes

机译:深海乌贼(Bathyteuthis abyssicola),短尾乌贼(Semirossia patagonica)和四个巨型墨鱼(Sepia apama,S。latimanus,S。lycidas和S. pharaonis)的完整线粒体基因组及其在系统发育分析中的应用十足动物

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摘要

We determined the complete mitochondrial (mt) genomes of the deep-sea squid (Bathyteuthis abyssicola; supperfamily Bathyteuthoidea), the bob-tail squid (Semirossia patagonica; order Sepiolida) and four giant cuttlefish (Sepia apama, S. latimanus, S. lycidas and S. pharaonis; order Sepiida). The unique structures of the mt genomes of Bathyteuthis and Semirossia provide new information about the evolution of decapodiform mt genomes. We show that the mt genome of B. abyssicola, like those of other oegopsids studied so far, has two long duplicated regions that include seven genes (COX1-3, ATP6 and ATP8, tRNAAsn, and either ND2 or ND3) and that one of the duplicated COX3 genes has lost its function. The mt genome of S. patagonica is unlike any other decapodiforms and, like Nautilus, its ATP6 and ATP8 genes are not adjacent to each other. The four giant cuttlefish have identical mt gene order to other cuttlefish determined to date. Molecular phylogenetic analyses using maximum likelihood and Bayesian methods suggest that traditional order Sepioidea (Sepiolida+Sepiida) is paraphyletic and Sepia (cuttlefish) has the sister-relationship with all other decapodiforms. Taking both the phylogenetic analyses and the mt gene order analyses into account, it is likely that the octopus-type mt genome is an ancestral state and that it had maintained from at least the Cephalopoda ancestor to the common ancestor of Oegopsida, Myopsida and Sepiolida.
机译:我们确定了深海鱿鱼(Bathyteuthis abyssicola;超科Bathyteuthoidea),短尾鱿鱼(Semirossia patagonica; Sepiiolida)和四个巨型墨鱼(Sepia apama,S。latimanus,S。lycidas)的完整线粒体(mt)基因组。和S. pharaonis;订购Sepiida)。贝氏杆菌和塞米罗斯亚的mt基因组的独特结构提供了十足形mt基因组进化的新信息。我们显示,与迄今研究的其他拟卵菌一样,深渊芽孢杆菌的mt基因组具有两个长的重复区域,其中包括七个基因(COX1-3,ATP6和ATP8,tRNAAsn和ND2或ND3),并且其中一个复制的COX3基因失去了功能。巴氏链霉菌的mt基因组与其他十足动物不同,与鹦鹉螺一样,其ATP6和ATP8基因彼此不相邻。四个巨型墨鱼与迄今为止确定的其他墨鱼具有相同的mt基因顺序。使用最大似然法和贝叶斯方法进行的分子系统发育分析表明,传统的乌贼属(Sepiolida + Sepiida)是副生的,乌贼属(乌贼)与所有其他十足动物具有姐妹关系。考虑到系统发育分析和mt基因顺序分析,章鱼型mt基因组很可能是祖先状态,并且至少从头足目祖先一直保留到卵翅目,Myopsida和Sepiolida的共同祖先。

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