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中国南方双斑长跗萤叶甲地理种群遗传结构及Wolbachia感染
引用本文:李菁,张小飞,徐玲玲,申圆圆,李肖肖,王振营. 中国南方双斑长跗萤叶甲地理种群遗传结构及Wolbachia感染[J]. 昆虫学报, 2021, 64(6): 730-742. DOI: 10.16380/j.kcxb.2021.06.009
作者姓名:李菁  张小飞  徐玲玲  申圆圆  李肖肖  王振营
作者单位:.(1. 西安文理学院生物与环境工程学院, 西安 710065; 2. 西安市农业技术推广中心, 西安 710061; 3. 中国农业科学院植物保护研究所, 北京 100193)
摘    要:[目的]双斑长跗萤叶甲Monolepta hieroglyphica为多食性害虫,可取食为害多种农作物.本研究旨在探究中国南方地区分布的双斑长跗萤叶甲地理种群的遗传多样性、遗传结构及种群间的遗传分化程度与基因流水平,探究共生菌Wolbachia 在中国南方双斑长跗萤叶甲地理种群中的多样性和感染情况.[方法]以线粒体CO...

关 键 词:双斑长跗萤叶甲  地理种群  COⅡ  单倍型  遗传结构  Wolbachia

Genetic structure and Wolbachia infection in geographical populations of Monolepta hieroglyphica (Coleoptera: Chrysomelidae) in South China
LI Jing,ZHANG Xiao-Fei,XU Ling-Ling,SHEN Yuan-Yuan,LI Xiao-Xiao,WANG Zhen-Ying. Genetic structure and Wolbachia infection in geographical populations of Monolepta hieroglyphica (Coleoptera: Chrysomelidae) in South China[J]. Acta Entomologica Sinica, 2021, 64(6): 730-742. DOI: 10.16380/j.kcxb.2021.06.009
Authors:LI Jing  ZHANG Xiao-Fei  XU Ling-Ling  SHEN Yuan-Yuan  LI Xiao-Xiao  WANG Zhen-Ying
Affiliation:(1. School of Biological and Environmental Engineering, Xi′an University, Xi′an 710065, China; 2. Xi′an Agricultural Technology Extension Centre, Xi′an 710061, China; 3. State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China)
Abstract:【Aim】 Monolepta hieroglyphica is a polyphagous pest feeding on a large number of cultivated plant species. The aim of this study is to investigate the genetic diversity, genetic structure, and levels of genetic differentiation and gene flow among geographical populations of M. hieroglyphica distributed in South China, and to clarify the diversity and prevalence of the bacterial endosymbiont Wolbachia in M. hieroglyphica geographical populations in South China. 【Methods】 The mitochondrial COII gene was used as genetic marker. The partial COII gene sequences in a total of 403 individuals from 14 geographical populations of M. hieroglyphica were amplified by PCR and sequenced. The haplotype diversity (Hd), genetic differentiation coefficient (Fst) and gene flow (Nm) between populations were analyzed, and the analysis of molecular variance (AMOVA) and Tajima’s D and Fu’s Fs neutrality tests were performed. Median-joining network and phylogenetic tree were constructed based on haplotype sequences. Wolbachia wsp gene was amplified by PCR to detect population infection rates, and the obtained wsp sequences were used for strain typing and phylogenetic analysis of Wolbachia. 【Results】 For all the 403 test individuals of M. hieroglyphica in this study, 23 COII haplotypes were observed and divided into two clusters in phylogenetic tree. The Hd of total population was 0.748, ranging from 0.394 to 0.782 within each population. The neutrality test results suggested that M. hieroglyphica populations followed the neutral evolution model and there was no evidence of population expansion in recent history. The values of Fst and Nm of total population were 0.2481 and 0.76, respectively. The AMOVA results showed that a high proportion (73.75%) of the total genetic variance attributed to variation within population. There was no significant correlation between genetic distance and geographical distance among populations (R=0.2898, P=0.0640). The Wolbachia infection rates in the 14 geographical populations of M. hieroglyphica ranged from 92.59% to 100%, with an average infection rate of 97.60%. Six Wolbachia strains (named as wMhie1-wMhie6) were identified based on wsp sequences, and these strains all belong to the supergroup A, which is clearly distinguished from other representative stains and forms a unique cluster in the phylogenetic tree. 【Conclusion】 The genetic diversity of M. hieroglyphica populations distributed in South China is comparatively high. There is significant genetic differentiation among most populations and the gene flow is low among populations. No significant correlation exists between genetic differentiation and geographical isolation. High infection rates and diversity of Wolbachia exist in M. hieroglyphica populations in South China.
Keywords:Monolepta hieroglyphica  geographical population  COII  haplotype  genetic structure  Wolbachia  
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