The genetic architecture of resistance to flubendiamide insecticide in Helicoverpa armigera (Hübner)

D Douglas Amado E Eva L. Koch E Erick M. G. Cordeiro W Wellingson A. Araújo A Antonio A. F. Garcia D David G. Heckel (Max Planck Institute for Chemical Ecology) G Gabriela Montejo-Kovacevich H Henry L. North A Alberto S. Corrêa C Chris D. Jiggins (Department of Zoology, University of Cambridge) C Celso Omoto

Abstract

Insecticide resistance is a major problem in food production, environmental sustainability, and human health. The cotton bollworm Helicoverpa armigera is a globally distributed crop pest affecting over 300 crop species. H. armigera has rapidly evolved insecticide resistance, making it one of the most damaging pests worldwide. Understanding the genetic basis of insecticide resistance provides insights to develop tools, such as molecular markers, that can be used to slow or prevent the evolution of resistance. We explore the genetic architecture of H. armigera resistance to a widely used insecticide, flubendiamide, using two complementary approaches: genome-wide association studies (GWAS) in wild-caught samples and quantitative trait locus (QTL) mapping in a controlled cross of susceptible and resistant laboratory strains. Both approaches identified one locus on chromosome 2, revealing two SNPs within 976 bp that can be used to monitor field resistance to flubendiamide. This was the only region identified using linkage mapping, though GWAS revealed additional sites associated with resistance. Other loci identified by GWAS in field populations contained known insecticide detoxification genes from the ATP-binding cassette family, ABCA1, ABCA3, ABCF2 and MDR1. Our findings revealed an oligogenic genetic architecture, contrasting previous reports of monogenic resistance associated with the ryanodine receptor. This work elucidates the genetic basis of rapidly evolving insecticide resistance and will contribute to developing effective insecticide resistance management strategies.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 20, Issue 1
Published January 29, 2025
Pages e0318154
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (11)

D

Douglas Amado

E

Eva L. Koch

E

Erick M. G. Cordeiro

W

Wellingson A. Araújo

A

Antonio A. F. Garcia

D

David G. Heckel

Max Planck Institute for Chemical Ecology

G

Gabriela Montejo-Kovacevich

H

Henry L. North

A

Alberto S. Corrêa

C

Chris D. Jiggins

Department of Zoology, University of Cambridge

C

Celso Omoto