印度棉叶蝉Amrasca biguttula biguttula (Ishida)居群线粒体coi遗传多样性分析

IF 1.1 4区 生物学 Q4 GENETICS & HEREDITY
S. Kranthi, A. Ghodke, Raghavendra K Puttuswamy, M. Mandle, R. Nandanwar, U. Satija, R. Pareek, H. Desai, S. Udikeri, Dhara Jothi Balakrishna, Bheemanna M Hugar, D. Monga, K. Kranthi
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引用次数: 12

摘要

摘要棉叶蝉(Amrasca biguttula biguttula, Ishida)是亚洲和东南亚国家的一种多食性害虫。我们对来自印度北部、中部和南部7个主要棉花种植区的67只棉叶蝉的线粒体COI基因片段进行了测序。对全印度叶跳种群的遗传分化分析证实了单种的存在。总共有30个单倍型在印度的不同地区被确定。印度北部的人口以单一的单倍型为主,而印度南部和中部的人口则表现出不同的单倍型在该地区的分散。对北印度人口中性测试的拒绝也表明人口扩张。遗传分化和基因流分析共同证实了石田A. biguttula biguttula石田A. biguttula石田的系统地理结构是距离隔离的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mitochondria COI-based genetic diversity of the cotton leafhopper Amrasca biguttula biguttula (Ishida) populations from India
Abstract Amrasca biguttula biguttula (Ishida), the cotton leafhopper, is a polyphagous insect pest of Asia and Southeast Asian countries. We sequenced a mitochondrial COI gene fragment from 67 individuals of cotton leafhopper collected from 7 major cotton growing states of North, Central, and South India. Genetic divergence analysis of leaf hopper population across India confirmed the presence of single species. Thirty haplotypes, in total, were determined across different regions of India. While population from North India was dominated by single haplotype, the south and central Indian populations show dispersion of different haplotypes across the region. The neutrality test rejection for the north Indian population also suggests population expansion. The genetic differentiation and gene flow analysis together confirmed the phylogeographic structure of the A. biguttula biguttula Ishida as isolated by distance.
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来源期刊
Mitochondrial Dna Part a
Mitochondrial Dna Part a Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
3.00
自引率
0.00%
发文量
6
期刊介绍: Mitochondrial DNA Part A publishes original high-quality manuscripts on physical, chemical, and biochemical aspects of mtDNA and proteins involved in mtDNA metabolism, and/or interactions. Manuscripts on cytosolic and extracellular mtDNA, and on dysfunction caused by alterations in mtDNA integrity as well as methodological papers detailing novel approaches for mtDNA manipulation in vitro and in vivo are welcome. Descriptive papers on DNA sequences from mitochondrial genomes, and also analytical papers in the areas of population genetics, phylogenetics and human evolution that use mitochondrial DNA as a source of evidence for studies will be considered for publication. The Journal also considers manuscripts that examine population genetic and systematic theory that specifically address the use of mitochondrial DNA sequences, as well as papers that discuss the utility of mitochondrial DNA information in medical studies and in human evolutionary biology.
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