首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >The first mitochondrial genome from Scopuridae (Insecta: Plecoptera) reveals structural features and phylogenetic implications
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The first mitochondrial genome from Scopuridae (Insecta: Plecoptera) reveals structural features and phylogenetic implications

机译:来自Scopuridae(Inseta:Plecoptera)的第一个线粒体基因组揭示了结构特征和系统发育意义

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摘要

This study determined the first complete mitochondrial genome (mitogenome) of a stonefly, Scopura longa (Plecoptera: Scopuridae), and reconstructed a phylogeny based on two datasets of mitogenomes in eighteen available stoneflies to examine the relationships among Plecoptera. The complete mitogenome of S. longa is a circular molecule of 15,798 bp in size. It contains 13 protein-coding genes (PCGs), 22 transfer RNA genes (tRNAs), two ribosomal RNA genes (rRNAs) and a control region (CR). Most PCGs used standard ATN start codons and TAN stop codons. All tRNAs could be folded as typical cloverleaf secondary structures except tRNA(Ser(AGN)), with the dihydrouridine (DHU) arm missing. Tandem repeat regions, two potential stem-loop (SL) structures, Poly T structures and G + C-rich regions are detected in the control region. Finally, the phylogenetic relationships among the families within the Arctoperlaria were reconstructed. The topological structures of the two trees were almost identical. The present phylogenetic analysis shows that S. longa belongs to the infraorder Euholognatha. The monophyly of each family is generally well supported based on nucleotide sequences. The Pteronarcyidae is sister to ((Peltoperlidae + Styloperlidae) + (Perlidae + (Perlodidae + Chloroperlidae))). (C) 2018 Elsevier B.V. All rights reserved.
机译:该研究确定了第一个完整的线粒体基因组(促丝杆菌组)的石灰,Scopura longa(Plecoptera:scopuridae),并基于十八可用石坯中的两个毒蛛的数据集重建了系统组,以检查Plecoptera之间的关系。 S.Longa的完整促型促催化剂是15,798bp的圆形分子。它含有13个蛋白质编码基因(PCG),22转移RNA基因(TrNAS),两个核糖体RNA基因(RRNA)和对照区域(Cr)。大多数PCG使用标准ATN起始密码子和TAN停止密码子。除了TRNA(SER(AGN))之外,所有TRNA都可以折叠为典型的CLOVERLEAF二次结构(SER(AGN)),二氢鲁(DHU)缺失。在控制区域中检测到串联重复区域,两个潜在的茎环(SL)结构,多T结构和富富+区域。最后,重建了阿克拉里亚内部内部的系统发育关系。两棵树的拓扑结构几乎相同。目前的系统发育分析表明,S. Longa属于Iuholognatha。通常基于核苷酸序列得到很好地支持每个家庭的单个。 Pteronarcyidae是((Peltoperlidae + Tittoperlidae)+(Perlidae +(Perlodidae +氯丙嗪))的妹妹)。 (c)2018年elestvier b.v.保留所有权利。

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