Wang_2016_Pestic.Biochem.Physiol_130_44

Reference

Title : Functional characterization of an alpha-esterase gene involving malathion detoxification in Bactrocera dorsalis (Hendel) - Wang_2016_Pestic.Biochem.Physiol_130_44
Author(s) : Wang LL , Lu XP , Meng LW , Huang Y , Wei D , Jiang HB , Smagghe G , Wang JJ
Ref : Pestic Biochem Physiol , 130 :44 , 2016
Abstract :

Extensive use of insecticides in many orchards has prompted resistance development in the oriental fruit fly, Bactrocera dorsalis (Hendel). In this study, a laboratory selected strain of B. dorsalis (MR) with a 21-fold higher resistance to malathion was used to examine the resistance mechanisms to this organophosphate insecticide. Carboxylesterase (CarE) was found to be involved in malathion resistance in B. dorsalis from the synergism bioassay by CarE-specific inhibitor triphenylphosphate (TPP). Molecular studies further identified a previously uncharacterized alpha-esterase gene, BdCarE2, that may function in the development of malathion resistance in B. dorsalis via gene upregulation. This gene is predominantly expressed in the Malpighian tubules, a key insect tissue for detoxification. The transcript levels of BdCarE2 were also compared between the MR and a malathion-susceptible (MS) strain of B. dorsalis, and it was significantly more abundant in the MR strain. No sequence mutation or gene copy changes were detected between the two strains. Functional studies using RNA interference (RNAi)-mediated knockdown of BdCarE2 significantly increased the malathion susceptibility in the adult files. Furthermore, heterologous expression of BdCarE2 combined with cytotoxicity assay in Sf9 cells demonstrated that BdCarE2 could probably detoxify malathion. Taken together, the current study bring new molecular evidence supporting the involvement of CarE-mediated metabolism in resistance development against malathion in B. dorsalis and also provide bases on functional analysis of insect alpha-esterase associated with insecticide resistance.

PubMedSearch : Wang_2016_Pestic.Biochem.Physiol_130_44
PubMedID: 27155483
Gene_locus related to this paper: bacdo-a0a034w7m1

Related information

Inhibitor TPHP
Gene_locus bacdo-a0a034w7m1
Family Carb_B_Arthropoda

Citations formats

Wang LL, Lu XP, Meng LW, Huang Y, Wei D, Jiang HB, Smagghe G, Wang JJ (2016)
Functional characterization of an alpha-esterase gene involving malathion detoxification in Bactrocera dorsalis (Hendel)
Pestic Biochem Physiol 130 :44

Wang LL, Lu XP, Meng LW, Huang Y, Wei D, Jiang HB, Smagghe G, Wang JJ (2016)
Pestic Biochem Physiol 130 :44