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Pesticide Biochemistry and Physiology|March 14, 2026
Thiamethoxam resistance evolution, fitness cost, and transcriptome-based functional insights in the whitefly Bemisia tabaciJing Yang, Qimei Tan, Xuegao Wei, et al.Pesticide Biochemistry and Physiology|July 23, 2026
NPFF2 regulate thiamethoxam resistance by over-expressing CYP6CX4 in Bemisia tabaciYing Zhang, Rong Zhang, Hantang Lu, et al.Journal of Agricultural and Food Chemistry|June 26, 2025
m6A-Mediated Regulation of CYP417B1 Contributes to Imidacloprid Resistance in Bemisia tabaciJing Yang, Hu Xue, Mingjiao Huang, et al.Cell Reports|December 3, 2025
Multi-site phosphorylation of a transcription factor orchestrates imidacloprid resistance in whiteflyShaonan Liu, Buli Fu, Peipan Gong, et al.Pesticide Biochemistry and Physiology|April 30, 2024
Glutathione S-transferase directly metabolizes imidacloprid in the whitefly, Bemisia tabaciRong Zhang, Jing Yang, Jinyu Hu, et al.International Journal of Biological Macromolecules|July 10, 2021
Knockdown of UGT352A5 decreases the thiamethoxam resistance in Bemisia tabaci (Hemiptera: Gennadius)Tianhua Du, Buli Fu, Xuegao Wei, et al.Pest Management Science|July 10, 2024
Field-evolved resistance to nitenpyram is associated with fitness costs in whiteflyHantang Lu, Buli Fu, Qimei Tan, et al.Proceedings of the National Academy of Sciences of the United States of America|April 25, 2020
MAPK-directed activation of the whitefly transcription factor CREB leads to P450-mediated imidacloprid resistanceXin Yang, Shun Deng, Xuegao Wei, et al.Journal of Agricultural and Food Chemistry|March 1, 2024
Cytochrome P450 CYP6EM1 Underpins Dinotefuran Resistance in the Whitefly Bemisia tabaciMingjiao Huang, Buli Fu, Cheng Yin, et al.Science Advances|May 6, 2021
Epitranscriptomic regulation of insecticide resistanceXin Yang, Xuegao Wei, Jing Yang, et al.Pageof 2