Guo Meishu, Wang JiaJia, Li Hu, Yu Kai, Yang Yanqiong, Li Min, Smagghe Guy, Dai RenHuai
Guizhou Provincial Key Laboratory for Agricultural Pest Management of the Mountainous Region, Institute of Entomology Guizhou University Guiyang P. R. China.
College of Biology and Food Engineering Chuzhou University Chuzhou P. R. China.
Ecol Evol. 2024 Sep 10;14(9):e70268. doi: 10.1002/ece3.70268. eCollection 2024 Sep.
Macropsini is a tribe of Eurymelinae in the family Cicadellidae that is widely distributed worldwide. Still, its taxonomic status has been unstable, and the classification of certain clades at the genus level has been controversial. The aim of this study is to address the patterns and processes that explain the structure and the evolution of the mitogenomes of Macropsini, while contributing to the resolution of systematic issues involving five of their genera. To this task, the mitogenomes of 26 species of the tribe were sequenced and characterized, and their phylogenetic relationships were reconstructed. The results revealed that the nucleotide composition of mitochondrial genes in these 26 species was significantly skewed toward A and T. Codons ending with T or A in relative synonymous codon usage were significantly more prevalent than those ending with C or G. The parity plot, neutrality plot, and correspondence analysis revealed that mutation and selective pressure affect codon usage patterns. In the phylogenetic relationships of the Macropsini, the monophyly of and was well-supported. Meanwhile, revealed paraphyletic regarding . In conclusion, this research not only contributes the valuable data to the understanding of the mitogenome of the Macropsini but also provides a reference for future investigations on codon usage patterns, potential adaptive evolution, and the phylogeny of the mitogenome within the subfamily Eurymelinae.
大叶蝉族是叶蝉科广头叶蝉亚科的一个族,广泛分布于全球。然而,其分类地位一直不稳定,某些类群在属级水平上的分类一直存在争议。本研究的目的是探讨解释大叶蝉族线粒体基因组结构和进化的模式及过程,同时为解决涉及其五个属的系统发育问题做出贡献。为此,对该族26个物种的线粒体基因组进行了测序和特征分析,并重建了它们的系统发育关系。结果表明,这26个物种线粒体基因的核苷酸组成明显偏向于A和T。相对同义密码子使用中以T或A结尾的密码子明显比以C或G结尾的更普遍。奇偶图、中性图和对应分析表明,突变和选择压力影响密码子使用模式。在大叶蝉族的系统发育关系中,[具体属名1]和[具体属名2]的单系性得到了很好的支持。同时,[具体属名3]相对于[具体属名4]显示为并系。总之,本研究不仅为理解大叶蝉族线粒体基因组提供了有价值的数据,也为未来关于密码子使用模式、潜在适应性进化以及广头叶蝉亚科线粒体系统发育的研究提供了参考。