Xu Han, Liu Xiaochen, Wang Pei, Li Hu, Wu San-An
The Key Laboratory for Silviculture and Conservation of Ministry of Education, Beijing Forestry University, Beijing 100083, China.
Department of Entomology, College of Plant Protection, China Agricultural University, Beijing 100193, China.
Insects. 2023 Mar 5;14(3):257. doi: 10.3390/insects14030257.
Coccoidea (scale insects) are important plant parasites with high diversity of species. However, the phylogenetic relationship within Coccoidea has not been fully determined. In this study, we sequenced mitogenomes of six species belonging to five coccoid families. With the addition of three previously published mitogenomes, a total of 12 coccoid species were adopted for the phylogenetic reconstruction based on the maximum likelihood and Bayesian inference. The monophyly of Coccoidea was recovered and Aclerdidae and Coccidae were recovered as the sister group, successively sister to Cerococcidae, Kerriidae, and Eriococcidae. In addition, there were gene rearrangements occurring in all mitogenomes of coccoid species studied here. The novel gene rearrangement and supported the monophyly of Coccoidea and the sister relationship of Aclerdidae and Coccidae. This implies that data from the mitogenome can provide new insight for clarifying the deeper level of phylogenetic relationship within Coccoidea.
蚧总科(介壳虫)是重要的植物寄生虫,物种多样性高。然而,蚧总科内部的系统发育关系尚未完全确定。在本研究中,我们对隶属于五个蚧总科科的六个物种的线粒体基因组进行了测序。加上之前发表的三个线粒体基因组,基于最大似然法和贝叶斯推断,共采用了12个蚧总科物种进行系统发育重建。蚧总科的单系性得到恢复,粉蚧科和蚧科被恢复为姐妹群,依次是蜡蚧科、胶蚧科和绵蚧科的姐妹群。此外,在这里研究的所有蚧总科物种的线粒体基因组中都发生了基因重排。新的基因重排支持了蚧总科的单系性以及粉蚧科和蚧科的姐妹关系。这意味着线粒体基因组的数据可以为阐明蚧总科内部更深层次的系统发育关系提供新的见解。