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首页> 外文期刊>Molecular phylogenetics and evolution >The mitochondrial genome of the onychophoran Opisthopatus cinctipes (Peripatopsidae) reflects the ancestral mitochondrial gene arrangement of Panarthropoda and Ecdysozoa
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The mitochondrial genome of the onychophoran Opisthopatus cinctipes (Peripatopsidae) reflects the ancestral mitochondrial gene arrangement of Panarthropoda and Ecdysozoa

机译:灰指甲Op(Opisthopatus cinctipes)(Peripatopsidae)的线粒体基因组反映了Panthropoda和Ecdysozoa的祖先线粒体基因排列。

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摘要

The ancestral genome composition in Onychophora (velvet worms) is unknown since only a single species of Peripatidae has been studied thus far, which shows a highly derived gene order with numerous translocated genes. Due to this lack of information from Onychophora, it is difficult to infer the ancestral mitochondrial gene arrangement patterns for Panarthropoda and Ecdysozoa. Hence, we analyzed the complete mitochondrial genome of the onychophoran Opisthopatus cinctipes, a representative of Peripatopsidae. Our data show that O. cinctipes possesses a highly conserved gene order, similar to that found in various arthropods. By comparing our results to those from different outgroups, we reconstruct the ancestral gene arrangement in Panarthropoda and Ecdysozoa. Our phylogenetic analysis of protein-coding gene sequences from 60 protostome species (including outgroups) provides some support for the sister group relationship of Onychophora and Arthropoda, which was not recovered by using a single species of Peripatidae, Epiperipatus biolleyi, in a previous study. A comparison of the strand-specific bias between onychophorans, arthropods, and a priapulid suggests that the peripatid E. biolleyi is less suitable for phylogenetic analyses of Ecdysozoa using mitochondrial genomic data than the peripatopsid O. cinctipes.
机译:到目前为止,studied虫(天鹅绒蠕虫)的祖先基因组组成是未知的,因为迄今为止仅研究了一种单一的Per科,它显示了高度衍生的基因顺序以及众多易位基因。由于缺乏来自甲虫的信息,因此很难推断出Panarthropoda和Ecdysozoa的祖先线粒体基因排列模式。因此,我们分析了甲虫Opisthopatus cinctipes(Peripatopsidae的代表)的完整线粒体基因组。我们的数据表明,辛辛那克酵母具有高度保守的基因顺序,类似于在各种节肢动物中发现的基因顺序。通过将我们的结果与不同人群的结果进行比较,我们重建了Panarthropoda和Ecdysozoa中的祖先基因排列。我们对60种原生动物物种(包括外群)的蛋白质编码基因序列进行系统发育分析,为甲虫和节肢动物的姊妹群关系提供了一定的支持,在先前的研究中,仅使用Per科的一种物种Epiperipatus biolleyi不能恢复这种关系。甲虫,节肢动物和普利亚普利德之间的链特异性偏倚的比较表明,使用线粒体基因组数据,周缘肠球菌E. biolleyi不适合于蜕皮纲的系统发育分析,而不是环柏卵形棘球O。

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