生物
遗传学
基因
ATP结合盒运输机
基因簇
计算生物学
染色体
RNA干扰
抗药性
抗性(生态学)
基因表达谱
遗传关联
基因复制
多药耐药蛋白2
全基因组关联研究
基因命名
数量性状位点
基因剂量
抗药性
基因组
作者
Dandan Shi,Wenjuan Hua,Kunkun Wang,Lu Li,Ningning Wu,Pei Liang
标识
DOI:10.1021/acs.jafc.5c15594
摘要
The diamondback moth, Plutella xylostella (L.) (Lepidoptera: Plutellidae), has evolved pronounced resistance to nearly all major classes of insecticides, posing a persistent threat to global agricultural productivity. Although ATP-binding cassette (ABC) transporters are known to contribute to multiple insecticide resistance, their functional significance in P. xylostella remains inadequately elucidated. A genome-wide association study (GWAS) comparing resistant and susceptible strains revealed a genomically clustered trio of ABCG genes (PxABCG4, PxABCG8, PxABCG9) on chromosome 12 that was strongly correlated with the resistance phenotype. Functional characterization through RNAi and CRISPR/Cas9 confirmed that PxABCG4 and PxABCG9 contribute to resistance against indoxacarb, chlorantraniliprole, and beta-cypermethrin. PxABCG8 was implicated in resistance to chlorantraniliprole and beta-cypermethrin in P. xylostella. Furthermore, molecular docking analyses demonstrated high-affinity binding between insecticides and PxABCG4, PxABCG8, and PxABCG9. These findings establish that this ABCG gene cluster constitutes a genetic basis of broad-spectrum insecticide resistance in P. xylostella and provides new insights for understanding the functions of ABCG genes in insects.
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