Abstract
Fipronil, as the first commercialized member of phenylpyrazole insecticides, has been widely used to control planthoppers in China due to its high insecticidal activity and low toxicity to mammals. However, insects have developed resistance to phenylpyrazoles after their long-term use. The resistance mechanism of insects to fipronil has not been well identified, which limited the development of phenylpyrazole insecticides. In the present study, we aimed to elucidate the related fipronil-resistance mechanism in N. lugensGABAreceptors by homology modeling, molecular docking, and molecular dynamics. The results indicated that fipronil showed the weakest interaction with the mutant (R00Q + A20S) GABA receptors, which is consistent with the experimental study. The binding poses of fipronil were found to be changed when mutations were conducted. These findings verified the novel fipronil-resistance mechanism in silico and provide important information for the design of novel GABAR-targeting insecticides.
Author supplied keywords
Cite
CITATION STYLE
Tian, Y., Gao, Y., Chen, Y., Liu, G., & Ju, X. (2019). Identification of the fipronil resistance associated mutations in nilaparvata lugens GABA receptors by molecular modeling. Molecules, 24(22). https://doi.org/10.3390/molecules24224116
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.