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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Molecular phylogeny of Systellognatha (Plecoptera: Arctoperlaria) inferred from mitochondrial genome sequences
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Molecular phylogeny of Systellognatha (Plecoptera: Arctoperlaria) inferred from mitochondrial genome sequences

机译:Systellognatha(Plecoptera:Arctoperlia)的分子系统从线粒体基因组序列推断

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摘要

The infraorder Systellognatha is the most species-rich clade in the insect order Plecoptera and includes six families in two superfamilies: Pteronarcyoidea (Pteronarcyidae, Peltoperlidae, and Styloperlidae) and Perloidea (Perlidae, Perlodidae, and Chloroperlidae). To resolve the debatable phylogeny of Systellognatha, we carried out the first mitochondrial phylogenetic analysis covering all the six families, including three newly sequenced mitogenomes from two families (Perlodidae and Peltoperlidae) and 15 published mitogenomes. The three newly reported mitogenomes share conserved mitogenomic features with other sequenced stoneflies. For phylogenetic analyses, we assembled five datasets with two inference methods to assess their influence on topology and nodal support within Systellognatha. The results indicated that inclusion of the third codon positions of PCGs, exclusion of rRNA genes, the use of nucleotide datasets and Bayesian inference could improve the phylogenetic reconstruction of Systellognatha. The monophyly of Perloidea was supported in the mitochondria! phylogeny, but Pteronarcyoidea was recovered as paraphyletic and remained controversial. In this mitochondrial phylogenetic study, the relationships within Systellognatha were recovered as (((Perlidae + (Perlodidae + Chloroperlidae)) + (Pteronarcyidae + Styloperlidae)) + Peltoperlidae). (C) 2018 Elsevier B.V. All rights reserved.
机译:InfraOrder Systelloghatha是昆虫秩序Plecoptera中最丰富的含有物种的含量,包括两个超级美食的六个家庭:Pteronarcyoidea(Pteronarcyidae,Peltoperlidae和Tyldoperlidae)和Perlodea(Perlidae,Perlodidae和Chloroperlidae)。为了解决Systelloghatha的诫命系统,我们进行了覆盖了所有六个家庭的第一个线粒体系统发育分析,其中包括来自两个家庭(Perlodidae和Peltoperlidae)和15个公开的毒蛛的三种新测序的毒蛛。三种新报道的诱导型毒蛛与其他测序的石散共享保守的含有丝分裂组织。对于系统发育分析,我们组装了五种数据集,具有两种推理方法,以评估其对系统内的拓扑和节点支持的影响。结果表明,包含PCG的第三密码子位置,排除RRNA基因,使用核苷酸数据集和贝叶斯推理可以改善系统发育重建。细胞薄膜的单层是在线粒体中的支持!系统发育,但挥发性萘藻作为解剖学并保持争议。在这种线粒体发育研究中,Hystelloghatha内的关系被回收为(((perlidake +(perlodaidak +氯化物))+(Pteronarcyidae + Titchoperlidae))+ peltoperlidae)。 (c)2018年elestvier b.v.保留所有权利。

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