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R79E Mutation in the Nicotinic Acetylcholine Receptor β1 Subunit Drives High-Level Resistance to Neonicotinoid Insecticides in Bemisia tabaci
Journal article   Peer reviewed

R79E Mutation in the Nicotinic Acetylcholine Receptor β1 Subunit Drives High-Level Resistance to Neonicotinoid Insecticides in Bemisia tabaci

Kaixin Li, Ningning Wu, Jinghao Hu, Xichao Hu, Haoyu Tang, Wei Xu, Ziqi Dong, Xiaodong Lai, Lihan Xu, Chongzhen Fu, …
Journal of agricultural and food chemistry, Vol.74(29), pp.22633-22647
2026
PMID: 42334210

Abstract

target mutation whitefly near-isogenic line resistance mechanism neonicotinoid insecticide bulked segregant analysis
The whitefly, Bemisia tabaci, a globally significant pest transmitting over 200 plant viruses, has developed substantial resistance to insecticides, particularly neonicotinoids. Using near-isogenic lines, bulked segregant analysis (BSA), and genetic linkage analysis, we identified a major resistance locus on chromosome 6. The locus harbored dual mutations in the nicotinic acetylcholine receptor (nAChR) β1 subunit gene associated with high-level neonicotinoid resistance. Bioassays using gene-edited Drosophila melanogaster strains revealed that the R79E mutation conferred significant resistance to neonicotinoids. A field population carrying the R79E single mutation and exhibiting high-level resistance was subsequently identified using an optimized hybridization and backcrossing strategy combined with BSA. Furthermore, a six-year resistance monitoring program revealed that R79E is a major contributor to high-level neonicotinoid resistance in B. tabaci field populations. These findings improve our understanding of target-site resistance mechanism in agricultural pests and support the development of molecular tools for resistance monitoring and management.

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Web Of Science research areas
Agriculture, Multidisciplinary
Chemistry, Applied
Food Science & Technology
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Agricultural Sciences
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