4.7 Article

Knockdown of UGT352A5 decreases the thiamethoxam resistance in Bemisia tabaci (Hemiptera: Gennadius)

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ELSEVIER
DOI: 10.1016/j.ijbiomac.2021.07.040

关键词

UDP-glycosyltransferases; Bemisia tabaci; Thiamethoxam resistance

资金

  1. National Key Research and Devel-opment Program of China [2019YFD1002100, 2016YFD0200500]
  2. China Agriculture Research System [CARS-24-C-02]
  3. Beijing Key Laboratory for Pest Control and Sustainable Cultivation of Vegetables
  4. Science and Technology Innovation Program of the Chinese Academy of Agricultural Sciences (CAAS-ASTIP-IVFCAAS)

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The study identified and cloned two UGT genes, UGT352A4 and UGT352A5, which were found to be over-expressed in thiamethoxam-resistant B. tabaci. The results suggest that UGT352A5 may play a significant role in conferring thiamethoxam resistance in the insect.
Uridine diphosphate (UDP)-glycosyltransferases (UGTs), which are major phase II detoxification enzymes, have been implicated in the glycosylation of lipophilic endobiotics and xenobiotics and thus potentially lead to the evolution of insecticide resistance. In this study, we identified and cloned two putative UGT genes from transcriptome data which are named UGT352A4 and UGT352A5. As demonstrated by qRT-PCR, two UGT genes were over-expressed in the thiamethoxam-resistant (THQR) strain relative to the susceptible (THQS) strain. Moreover, the induction experiment revealed that the expression of the UGT352A5 gene was significantly increased following exposure to thiamethoxam in the THQR strain. Furthermore, the expression of both UGT352A4 and UGT352A5 was downregulated after RNA interference, whereas only the silencing of UGT352A5 resulted in a noticeable increase in the mortality of THQR adults. Our results represent the first line of evidence showing that UGT352A5 might be responsible for conferring thiamethoxam resistance in B. tabaci. The results will be shed new insights for obtaining a better understanding of the role of UGTs in the evolution of insecticide resistance and developing new insect resistance management tactics within the sustainable integrated pest management framework.

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