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Phylogenetic and population genetic analyses of Thrips tabaci Lindeman (Thysanoptera: Thripidae) on Allium host in India
by
Sadawarte, Sharwari
, Jaiswal, Durgesh Kumar
, Khandagale, Kiran
, Gawai, Tushar
, Kulkarni, Abhijeet
, Raj, Anusha
, Gawande, Suresh
, Ade, Avinash B.
in
Agricultural Science
/ Amplicon sequencing
/ Analysis
/ Animals
/ Biological diversity
/ Cytochrome oxidase
/ Electron Transport Complex IV - genetics
/ Entomology
/ Genes
/ Genetic aspects
/ Genetic Variation - genetics
/ Genetic vectors
/ Genetics
/ Genetics, Population
/ Genomics
/ Haplotypes - genetics
/ India - epidemiology
/ mtCOI
/ Onions - genetics
/ Pesticide resistance
/ Pesticides
/ Phylogenetic analysis
/ Phylogeny
/ Population Biology
/ Population genetics
/ Quarantine
/ Single nucleotide polymorphisms
/ Thrips
/ Thrips tabaci
/ Thysanoptera - genetics
/ Zoology
2024
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Phylogenetic and population genetic analyses of Thrips tabaci Lindeman (Thysanoptera: Thripidae) on Allium host in India
by
Sadawarte, Sharwari
, Jaiswal, Durgesh Kumar
, Khandagale, Kiran
, Gawai, Tushar
, Kulkarni, Abhijeet
, Raj, Anusha
, Gawande, Suresh
, Ade, Avinash B.
in
Agricultural Science
/ Amplicon sequencing
/ Analysis
/ Animals
/ Biological diversity
/ Cytochrome oxidase
/ Electron Transport Complex IV - genetics
/ Entomology
/ Genes
/ Genetic aspects
/ Genetic Variation - genetics
/ Genetic vectors
/ Genetics
/ Genetics, Population
/ Genomics
/ Haplotypes - genetics
/ India - epidemiology
/ mtCOI
/ Onions - genetics
/ Pesticide resistance
/ Pesticides
/ Phylogenetic analysis
/ Phylogeny
/ Population Biology
/ Population genetics
/ Quarantine
/ Single nucleotide polymorphisms
/ Thrips
/ Thrips tabaci
/ Thysanoptera - genetics
/ Zoology
2024
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Phylogenetic and population genetic analyses of Thrips tabaci Lindeman (Thysanoptera: Thripidae) on Allium host in India
by
Sadawarte, Sharwari
, Jaiswal, Durgesh Kumar
, Khandagale, Kiran
, Gawai, Tushar
, Kulkarni, Abhijeet
, Raj, Anusha
, Gawande, Suresh
, Ade, Avinash B.
in
Agricultural Science
/ Amplicon sequencing
/ Analysis
/ Animals
/ Biological diversity
/ Cytochrome oxidase
/ Electron Transport Complex IV - genetics
/ Entomology
/ Genes
/ Genetic aspects
/ Genetic Variation - genetics
/ Genetic vectors
/ Genetics
/ Genetics, Population
/ Genomics
/ Haplotypes - genetics
/ India - epidemiology
/ mtCOI
/ Onions - genetics
/ Pesticide resistance
/ Pesticides
/ Phylogenetic analysis
/ Phylogeny
/ Population Biology
/ Population genetics
/ Quarantine
/ Single nucleotide polymorphisms
/ Thrips
/ Thrips tabaci
/ Thysanoptera - genetics
/ Zoology
2024
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Phylogenetic and population genetic analyses of Thrips tabaci Lindeman (Thysanoptera: Thripidae) on Allium host in India
Journal Article
Phylogenetic and population genetic analyses of Thrips tabaci Lindeman (Thysanoptera: Thripidae) on Allium host in India
2024
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Overview
Onion thrips (
) is a complex of cryptic species with subtle morphological differences and distinct genetic backgrounds; thus, species identification using traditional methods remains challenging. The existence of different haplotypes and genotypes within a species can significantly influence various aspects of its biology, including host preference, reproductive capacity, resistance to pesticides, and vector competence for plant viruses. Understanding the genetic diversity and population structure of cryptic species within
will not only aid in the development of more effective control strategies tailored to specific genetic variants but also in monitoring population dynamics, tracking invasive species, and implementing quarantine measures to prevent the spread of economically damaging thrips biotypes.
This study aims to explore intraspecies genetic diversity and molecular evolutionary relationships of the mitochondrial cytochrome oxidase gene subunit I (mtCOI) in
populations from India. To capture diversity within the Indian
populations, amplicon sequencing was performed for the thrips mtCOI gene from eight diverse localities in India. A total of 48 sequences retrieved for the mtCOI gene from the NCBI Nucleotide database were analysed.
Multiple insertions and deletions were detected at various genomic positions across the populations from different localities, with the highest variation observed in the 300-400 genome position range. Molecular diversity analyses identified 30 haplotypes within the population, with certain subpopulations exhibiting higher gene flow. Analysis of single nucleotide polymorphism patterns within the mtCOI gene across diverse Indian locales revealed significant intrapopulation genetic heterogeneity and its potential repercussions on gene functionality. Elevated F statistics (Fst) values in the northern-western subpopulations suggested high genetic variability, particularly evident in haplotype networks originating mainly from the northern region, notably Delhi. While most populations displayed stable and ancient evolutionary histories, thrips populations from northern, western, and north-eastern regions indicated rapid growth.
Publisher
PeerJ. Ltd,PeerJ Inc
Subject
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