Key Laboratory of Zoological Systematics and Evolution, Institute of Zoology, Chinese Academy of Sciences, Chaoyang District, Beijing, China.
PLoS One. 2012;7(11):e48778. doi: 10.1371/journal.pone.0048778. Epub 2012 Nov 8.
Classically, Hemiptera is comprised of two suborders: Homoptera and Heteroptera. Homoptera includes Cicadomorpha, Fulgoromorpha and Sternorrhyncha. However, according to previous molecular phylogenetic studies based on 18S rDNA, Fulgoromorpha has a closer relationship to Heteroptera than to other hemipterans, leaving Homoptera as paraphyletic. Therefore, the position of Fulgoromorpha is important for studying phylogenetic structure of Hemiptera. We inferred the evolutionary affiliations of twenty-five superfamilies of Hemiptera using mitochondrial protein-coding genes and rRNAs. We sequenced three mitogenomes, from Pyrops candelaria, Lycorma delicatula and Ricania marginalis, representing two additional families in Fulgoromorpha. Pyrops and Lycorma are representatives of an additional major family Fulgoridae in Fulgoromorpha, whereas Ricania is a second representative of the highly derived clade Ricaniidae. The organization and size of these mitogenomes are similar to those of the sequenced fulgoroid species. Our consensus phylogeny of Hemiptera largely supported the relationships (((Fulgoromorpha,Sternorrhyncha),Cicadomorpha),Heteroptera), and thus supported the classic phylogeny of Hemiptera. Selection of optimal evolutionary models (exclusion and inclusion of two rRNA genes or of third codon positions of protein-coding genes) demonstrated that rapidly evolving and saturated sites should be removed from the analyses.
同翅目和异翅目。同翅目包括蝉亚目、沫蝉亚目和半喙目。然而,根据先前基于 18S rDNA 的分子系统发育研究,沫蝉亚目与异翅目关系更为密切,而与其他半翅目昆虫关系较远,使得同翅目成为并系群。因此,沫蝉亚目的位置对于研究半翅目系统发育结构非常重要。我们使用线粒体蛋白编码基因和 rRNA 推断了半翅目 25 个超家族的进化关系。我们对来自 Pyrops candelaria、Lycorma delicatula 和 Ricania marginalis 的三个线粒体基因组进行了测序,这三个基因组代表了沫蝉亚目中另外两个科。Pyrops 和 Lycorma 是沫蝉科中另外两个主要科的代表,而 Ricania 则是高度衍生的 Ricaniidae 类群的第二个代表。这些线粒体基因组的组织和大小与已测序的沫蝉物种相似。我们对半翅目的共识系统发育在很大程度上支持了 (((沫蝉亚目,半喙目),蝉亚目),异翅目))的关系,因此支持了经典的半翅目系统发育。最佳进化模型的选择(排除和包含两个 rRNA 基因或蛋白编码基因的第三个密码子位置)表明,应从分析中去除快速进化和饱和的位点。