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叶蝉亚科(半翅目:叶蝉科)线粒体基因组描述及系统发育分析

Description of mitochondrial genomes and phylogenetic analysis of Megophthalminae (Hemiptera: Cicadellidae).

作者信息

Sun Mingming, Wang Jiajia, Smagghe Guy, Dai RenHuai, Wang Xianyi, Yang Yanqiong, Li Min, You Siying

机构信息

Department of Institute of Entomology, Guizhou University, The Provincial Key Laboratory for Agricultural Pest Management Mountainous Region, Guiyang, Guizhou, China.

Department of College of Biology and Food Engineering, Chuzhou University, Chuzhou, Anhui, China.

出版信息

J Insect Sci. 2024 Nov 1;24(6). doi: 10.1093/jisesa/ieae109.

Abstract

To elucidate phylogenetic relationships within the leafhopper's subfamily Megophthalminae (Hemiptera: Cicadellidae), mitogenomes of 12 species of the subfamily were sequenced and assembled. These were added to the mitogenomes of the eight other species that are currently available. Mitogenome size ranged from 15,193 bp in Onukigallia onukii (Matsumura, 1912) to 15,986 bp in Multinervis guangxiensis (Li and Li, 2013), they all contained 37 genes, and gene order was similar to that in other leafhoppers. Nucleotide composition analysis showed that the AT content was higher than that of GC, and the protein-coding genes usually ended with A/T at the 3rd codon position. The Ka/Ks ratio showed that the CYTB gene has the slowest evolutionary rate, while ND4 is the gene with the fastest evolutionary rate. Relative synonymous codon usage analysis revealed the most frequently used codon was UUA (L), followed by CGA (R), and the least frequently used codon was CCG (P). Parity plot and neutrality plot analyses showed that the codon usage bias of mitochondrial genes was influenced by natural selection and mutation pressure. However, natural selection plays a major role, while the effect of mutation pressure was small. Effective number of codons values were 40.15-49.17, which represented relatively low codon bias. Phylogenetic analyses based on three datasets (AA, 13PCG, 13PCG_2rRNA) using two methods (maximum likelihood and Bayesian inference). In the obtained topology, the Megophthalminae species were clustered into a monophyletic group. In conclusion, our results clarify structural modules of the mitochondrial genes and confirm the monophyly of Megophthalminae within Cicadellidae.

摘要

为了阐明叶蝉亚科大眼叶蝉亚科(半翅目:叶蝉科)内的系统发育关系,对该亚科12种叶蝉的线粒体基因组进行了测序和组装。这些序列被添加到目前已有的其他8种叶蝉的线粒体基因组中。线粒体基因组大小从大野氏大眼叶蝉(松村,1912)的15,193 bp到广西多脉叶蝉(李和李,2013)的15,986 bp不等,它们都包含37个基因,基因顺序与其他叶蝉相似。核苷酸组成分析表明,AT含量高于GC含量,蛋白质编码基因在第3个密码子位置通常以A/T结尾。Ka/Ks比值表明,CYTB基因进化速率最慢,而ND4基因进化速率最快。相对同义密码子使用分析显示,最常用的密码子是UUA(L),其次是CGA(R),最不常用的密码子是CCG(P)。奇偶图和中性图分析表明,线粒体基因的密码子使用偏好受自然选择和突变压力的影响。然而,自然选择起主要作用,而突变压力的影响较小。有效密码子数的值为40.15 - 49.17,代表相对较低的密码子偏好。基于三个数据集(氨基酸序列、13个蛋白质编码基因、13个蛋白质编码基因 + 2个核糖体RNA)使用两种方法(最大似然法和贝叶斯推断)进行系统发育分析。在得到的拓扑结构中,大眼叶蝉亚科的物种聚为一个单系类群。总之,我们的结果阐明了线粒体基因的结构模块,并证实了大眼叶蝉亚科在叶蝉科内的单系性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c266/11631095/0c2d537b98db/ieae109_fig1.jpg

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