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首页> 外文期刊>Molecular phylogenetics and evolution >Reconstructing intraordinal relationships in Lepidoptera using mitochondrial genome data with the description of two newly sequenced lycaenids, Spindasis takanonis and Protantigius superans (Lepidoptera: Lycaenidae)
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Reconstructing intraordinal relationships in Lepidoptera using mitochondrial genome data with the description of two newly sequenced lycaenids, Spindasis takanonis and Protantigius superans (Lepidoptera: Lycaenidae)

机译:使用线粒体基因组数据和两个新测序的lycaenids,Spindasis takanonis和Protantigius superans(鳞翅目:Lycaenidae)的描述重建鳞翅目的内部关系。

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摘要

Lepidoptera is one of the largest insect orders, but the phylogenetic relationships within this order, have yet to be adequately described. Among these unresolved relationships include those regarding the monophyly of the Macrolepidoptera and interfamilial relationships of the true butterflies superfamily Papilionoidea. We present two new mitochondrial genomes (mitogenomes) belonging to the butterfly family Lycaenidae to explore the phylogenetic relationships existing among lepidopteran superfamilies and true butterfly families from a mitogenome perspective, and to evaluate the characteristics of the lepidopteran mitogenomes. Our consensus phylogeny of the Lepidoptera largely supported the superfamilial relationships (((((Bombycoidea + Geometroidea) + Noctuoidea) + Pyraloidea) + Papilionoidea) + Tortricoidea), signifying a lack of support for a traditionally defined Macrolepidoptera. The familial relationships of the true butterflies concordantly recovered the previously proposed phylogenetic hypothesis (((Lycaenidae + Nymphalidae) + Pieridae) + Papilionidae). The test for the effect of optimization schemes (exclusion and inclusion of third codon position of PCGs and two rRNA genes, with and without partitions) on the resolution and relationships within the Lepidoptera have demonstrated that the majority of analyses did not substantially alter the relevant topology and node support, possibly as the result of relatively strong signal in mitogenomes for intraordinal relationships in Lepidoptera.
机译:鳞翅目是最大的昆虫纲之一,但在该次序内的系统发育关系尚未得到充分描述。在这些未解决的关系中,包括有关大型鳞翅目的单亲关系和真正的蝴蝶超科蝶形蝶科的亲属关系。我们提出了两个新的属于蝴蝶科Lycaenidae的线粒体基因组(有丝分裂基因组),以从有丝分裂基因组的角度探讨鳞翅目超家族和真正的蝴蝶科之间存在的系统发育关系,并评估了鳞翅目有丝分裂基因组的特征。我们对鳞翅目的共有系统发育学在很大程度上支持了超家族关系((((((Bombycoidea + Geometroidea)+ Noctuoidea)+ Pyraloidea)+ Papilionoidea)+ Tortricoidea),这表明缺乏对传统定义的大型鳞翅目的支持。真蝴蝶的家族关系一致地恢复了先前提出的系统发育假说(((Lycaenidae + Nymphalidae)+ Pieridae)+ Papilionidae)。测试优化方案(排除和包含PCG和三个rRNA基因的第三密码子位置,有或没有分区)对鳞翅目内部的分辨率和关系的影响已证明,大多数分析并未实质性改变相关拓扑节点支持,可能是由于鳞翅目内有序关系的有丝分裂基因组中信号相对较强的结果。

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