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Application of RNA-seq for mitogenome reconstruction and reconsideration of long-branch artifacts in Hemiptera phylogeny

机译:RNA-seq在有丝分裂基因组重建中的应用以及半翅目系统发育中长分支假象的重新考虑

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摘要

Hemiptera make up the largest nonholometabolan insect assemblage. Despite previous efforts to elucidate phylogeny within this group, relationships among the major sub-lineages remain uncertain. In particular, mitochondrial genome (mitogenome) data are still sparse for many important hemipteran insect groups. Recent mitogenomic analyses of Hemiptera have usually included no more than 50 species, with conflicting hypotheses presented. Here, we determined the nearly complete nucleotide sequence of the mitogenome for the aphid species of Rhopalosiphum padi using RNA-seq plus gap filling. The 15,205 bp mitogenome included all mitochondrial genes except for trnF. The mitogenome organization and size for R. padi are similar to previously reported aphid species. In addition, the phylogenetic relationships for Hemiptera were examined using a mitogenomic dataset which included sequences from 103 ingroup species and 19 outgroup species. Our results showed that the seven species representing the Aleyrodidae exhibit extremely long branches, and always cluster with long-branched outgroups. This lead to the failure of recovering a monophyletic Hemiptera in most analyses. The data treatment of Degen-coding for protein-coding genes and the site-heterogeneous CAT model show improved suppression of the long-branch effect. Under these conditions, the Sternorrhyncha was often recovered as the most basal clade in Hemiptera.
机译:半翅目构成了最大的非全蝇类昆虫组合。尽管此前已经进行过努力阐明该组内的系统发育,但主要亚谱系之间的关系仍然不确定。特别是,对于许多重要的半翅目昆虫群,线粒体基因组(有丝分裂基因组)数据仍然很少。最近对半翅目的线粒体分析通常包括不超过50种,提出了相互矛盾的假设。在这里,我们使用RNA-seq加缺口填充技术确定了红景天蚜蚜种的有丝分裂基因组的近乎完整的核苷酸序列。 15205bp的有丝分裂基因组包括除trnF之外的所有线粒体基因。 R. padi的有丝分裂基因组组织和大小与以前报道的蚜虫种类相似。另外,使用线粒体基因组数据集检查了半翅目的系统发育关系,该数据集包括来自103个内部物种和19个外部物种的序列。我们的结果表明,代表representing科的七个物种表现出极长的分支,并且总是与长分支的外群聚在一起。在大多数分析中,这导致无法恢复单性半翅目。蛋白质编码基因的Degen编码和位点异构CAT模型的数据处理显示出对长分支效应的抑制作用得到改善。在这些条件下,胸腺壶菌通常被作为半翅目中最基础的分支恢复。

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