S431F mutation on AChE1 and overexpression of P450 genes confer high pirimicarb resistance in Sitobion miscanthi

Sitobion miscanthi is a destructive wheat pest responsible for significant wheat yield losses. Pirimicarb, one of the most important representatives of N, N-dimethylcarbamate insecticides, is widely used to control wheat aphids. In present work, heterozygous S431F mutation of acetylcholinesterase 1...

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Veröffentlicht in:Pesticide biochemistry and physiology 2024-06, Vol.202, p.105957, Article 105957
Hauptverfasser: Wang, Cuicui, Dong, Wenyang, Shang, Jiao, Li, Hongbao, Chen, Zhao, Zhu, Bin, Liang, Pei, Shi, Xueyan
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Sprache:eng
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Zusammenfassung:Sitobion miscanthi is a destructive wheat pest responsible for significant wheat yield losses. Pirimicarb, one of the most important representatives of N, N-dimethylcarbamate insecticides, is widely used to control wheat aphids. In present work, heterozygous S431F mutation of acetylcholinesterase 1 (AChE1) was identified and verified in three pirimicarb-resistant S. miscanthi populations (two field populations (HA and HS, >955.8-fold) and one lab-selected population (PirR, 486.1-fold)), which has not been reported in S. miscanthi yet. The molecular docking results revealed that AChE1 containing the S431F mutation of S. miscanthi (SmAChE1S431F) showed higher free binding energy to three insecticides (pirimicarb, omethoate, and methomyl) than wild-type AChE1 of S. miscanthi (SmAChE1). Enzyme kinetic and inhibition experiments showed that the recombinant SmAChE1S431F was more insensitive to pirimicarb and omethoate than the recombinant SmAChE1. Furthermore, two overexpression P450 genes (CYP6K1 and CYP6A14) associated with pirimicarb resistance of S. miscanthi were verified by RNAi. These results suggested both target alteration and enhanced metabolism contributed to high pirimicarb resistance of S. miscanthi in the field and laboratory. These findings lay a foundation for further elucidating the mechanism of pirimicarb resistance in S. miscanthi, and have important implications for the resistance management of S. miscanthi control. [Display omitted] •>955.8-fold field-developed pirimicarb resistance was detected in S. miscanthi.•The S431F mutation on AChE1 was found in field S. miscanthi population.•S431F heterozygous mutation is associated with high pirimicarb resistance.•Suppression of CYP6K1 and CYP6A14 increased the sensitivity to pirimicarb.
ISSN:0048-3575
1095-9939
1095-9939
DOI:10.1016/j.pestbp.2024.105957