溴氰菊酯
生物
Cas9
白纹伊蚊
清脆的
拟除虫菊酯
击倒阻力
钠通道
遗传学
埃及伊蚊
载体(分子生物学)
抗药性
基因
抗药性
伊蚊
突变
毒理
病毒学
登革热
杀虫剂
重组DNA
植物
钠
幼虫
生态学
化学
有机化学
氟氯氰菊酯
作者
Yijia Guo,Jingni Zhou,Yijie Zhao,Jielin Deng,Xinghua Su,Jianxia Tang,Guoding Zhu,Xiaojie Zhou,Jiande Gu,Guiyun Yan,Anthony James,Xiaoguang Chen
标识
DOI:10.1007/s10340-022-01557-6
摘要
Abstract Insecticide resistance in Aedes mosquitoes presents a major challenge to the control of arboviral diseases. However, resistance mechanisms for many of the insecticides remain unknown. A commonly used insecticide, deltamethrin, was used to select a resistance strain of the vector mosquito, Aedes albopictus , and we identified an F1534S substitution in the voltage-gated sodium channel ( VGSC ) gene product as the first event in generating resistance. Engineering an F1534S substitution using Cas9/gRNA technologies conferred deltamethrin resistance on a previously susceptible strain. Crosses that removed this mutation restored the susceptible phenotype. Predicted protein structural changes and differences in transcript accumulation levels were correlated with the resistance phenotype. Furthermore, F1534S mutations were detected in all resistant Ae. albopictus populations collected in the field. We conclude that the VGSC F1534S mutation is essential for resistance to deltamethrin in Ae. albopictus , and is a suitable molecular index for pyrethroid resistance detection and monitoring in this species.
科研通智能强力驱动
Strongly Powered by AbleSci AI