FB2026_03 , released September 17, 2026
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Liu, Z., Zhou, Y., Wang, D., Li, R., Tian, Z., Li, Y., Liu, J. (2026). From Field Overexpression to Biochemical Function: PxCYP6B4-Mediated Hydroxylation Confers Pyrethroid Resistance in Plutella xylostella.  J. Agric. Food Chem. 74(6): 5162--5171.
FlyBase ID
FBrf0264700
Publication Type
Research paper
Abstract
The rapid evolution of insecticide resistance threatens global food security, with cytochrome P450-mediated detoxification representing a key adaptive mechanism in insects. However, direct biochemical evidence linking specific P450s to pyrethroid metabolism in Plutella xylostella remains limited. Here, we investigated the molecular basis of high-level pyrethroid resistance in P. xylostella. Comparative transcriptomic analyses of a susceptible strain and two highly resistant field populations (resistance ratios >650-fold) identified PxCYP6B4 as the most strongly overexpressed P450 (>95-fold). RNA interference-mediated knockdown of PxCYP6B4 significantly increased larval susceptibility to pyrethroids, while heterologous expression in Drosophila melanogaster conferred a 5.27-fold increase in tolerance to lambda-cyhalothrin. Importantly, in vitro assays using recombinant PxCYP6B4 expressed in Sf9 cells, combined with LC-MS/MS analysis, demonstrated direct hydroxylation of lambda-cyhalothrin to 4'-hydroxy-lambda-cyhalothrin. These results establish a direct molecular and biochemical link between PxCYP6B4 overexpression and pyrethroid detoxification.
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    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    J. Agric. Food Chem.
    Title
    Journal of Agricultural and Food Chemistry
    Publication Year
    1953-
    ISBN/ISSN
    0021-8561
    Data From Reference
    Alleles (2)
    Chemicals (1)
    Genes (2)
    Natural transposons (1)
    Experimental Tools (1)
    Transgenic Constructs (2)