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首页> 外文期刊>Molecular phylogenetics and evolution >Phylogenetic relationships among insect orders based on three nuclear protein-coding gene sequences
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Phylogenetic relationships among insect orders based on three nuclear protein-coding gene sequences

机译:基于三个核蛋白编码基因序列的昆虫阶之间的亲缘关系

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Many attempts to resolve the phylogenetic relationships of higher groups of insects have been made based on both morphological and molecular evidence; nonetheless, most of the interordinal relationships of insects remain unclear or are controversial. As a new approach, in this study we sequenced three nuclear genes encoding the catalytic subunit of DNA polymerase delta and the two largest subunits of RNA polymerase II from all insect orders. The predicted amino acid sequences (In total, approx. 3500 amino acid sites) of these proteins were subjected to phylogenetic analyses based on the maximum likelihood and Bayesian analysis methods with various models. The resulting trees strongly support the monophyly of Palaeoptera, Neoptera, Polyneoptera, and Holometabola, while within Polyneoptera, the groupings of Isoptera/" Blattaria" /Mantodea (Superorder Dictyoptera), Dictyoptera/Zoraptera, Dermaptera/Plecoptera, Mantophasmatodea/Grylloblattodea, and Embioptera/Phasmatodea are supported. Although Paraneoptera is not supported as a monophyletic group, the grouping of Phthiraptera/Psocoptera is robustly supported. The interordinal relationships within Holometabola are well resolved and strongly supported that the order Hymenoptera is the sister lineage to all other holometabolous insects. The other orders of Holometabola are separated into two large groups, and the interordinal relationships of each group are (((Siphonaptera, Mecoptera), Diptera), (Trichoptera, Lepidoptera)) and ((Coleoptera, Strepsiptera), (Neuroptera, Raphidioptera, Megaloptera)). The sister relationship between Strepsiptera and Diptera are significantly rejected by all the statistical tests (AU, KH and wSH), while the affinity between Hymenoptera and Mecopterida are significantly rejected only by AU and KH tests. Our results show that the use of amino acid sequences of these three nuclear genes is an effective approach for resolving the relationships of higher groups of insects.
机译:基于形态学和分子证据,已经做出了许多尝试来解决高级昆虫的系统发生关系。但是,大多数昆虫的昆虫间关系仍然不清楚或存在争议。作为一种新方法,在这项研究中,我们对所有昆虫种群中编码DNA聚合酶δ催化亚基和RNA聚合酶II的两个最大亚基的三个核基因进行了测序。基于最大似然和各种模型的贝叶斯分析方法,对这些蛋白质的预测氨基酸序列(总共约3500个氨基酸位点)进行了系统发育分析。产生的树木强烈支持单翅目,新翅目,多翅目和整翅目的单性,而在多翅目内,等翅目/“ Blattaria” /曼陀螺(超翅目翅目),Dictyoptera / Zoraptera,Dermaptera / Plecoptera,线虫,线虫和线虫支持/ Phasmatodea。尽管不支持将对翅目作为单系统种群,但强烈支持对拟杆菌/拟翅目的分组。 Holometabola内的种间关系得到了很好的解决,并强烈支持膜翅目是所有其他全代谢昆虫的姐妹谱系。 Holometabola的其他顺序分为两个大组,每组的相互关系是(((Siphonaptera,Mecoptera),Diptera),(Trichoptera,Lepidoptera))和(((Coleoptera,Strepsiptera),(Neuroptera,Raphidioptera, Megaloptera))。所有统计检验(AU,KH和wSH)都显着拒绝了链霉菌属和双翅目之间的姐妹关系,而只有AU和KH检验显着拒绝了膜翅目和Mecopterida的亲缘关系。我们的研究结果表明,使用这三个核基因的氨基酸序列是解决昆虫较高种群关系的有效方法。

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