Uridine diphosphate glucosyltransferase is vital for fenpropathrin resistance in Bombyx mori (Lepidoptera)

Author:

Zheng Kai‐yi1,Zhang Xiao‐ying1,Lisan Fasihul1,Lai Wen‐Qin1,Zhang Qiang1,Lv Jun‐li1,Lu Zhan‐peng1,Qin Sheng12,Sun Xia12,Zhang Shang‐zhi3,Wang Xue‐yang12ORCID,Dai Li‐shang4,Li Mu‐wang12ORCID

Affiliation:

1. Jiangsu Key Laboratory of Sericultural and Animal Biotechnology, School of Biotechnology Jiangsu University of Science and Technology Zhenjiang China

2. Key Laboratory of Silkworm and Mulberry Genetic Improvement Ministry of Agriculture and Rural Affairs, Sericultural Scientific Research Center, Chinese Academy of Agricultural Sciences Zhenjiang China

3. College of Agriculture and Biotechnology Hunan University of Humanities, Science and Technology Loudi China

4. School of Pharmaceutical Sciences Wenzhou Medical University Wenzhou China

Abstract

AbstractThe silkworm (Bombyx mori) is an important model lepidopteran insect and can be used to identify pesticide resistance‐related genes of great significance for biological control of pests. Uridine diphosphate glucosyltransferases (UGTs), found in all organisms, are the main secondary enzymes involved in the metabolism of heterologous substances. However, it remains uncertain if silkworm resistance to fenpropathrin involves UGT. This study observes significant variations in BmUGT expression among B. mori strains with variable fenpropathrin resistance post‐feeding, indicating BmUGT's role in fenpropathrin detoxification. Knockdown of BmUGT with RNA interference and overexpression of BmUGT significantly decreased and increased BmN cell activity, respectively, indicating that BmUGT plays an important role in the resistance of silkworms to fenpropathrin. In addition, fenpropathrin residues were significantly reduced after incubation for 12 h with different concentrations of a recombinant BmUGT fusion protein. Finally, we verified the conservation of UGT to detoxify fenpropathrin in Spodoptera exigua: Its resistance to fenpropathrin decreased significantly after knocking down SeUGT. In a word, UGT plays an important role in silkworm resistance to fenpropathrin by directly degrading the compound, a function seen across other insects. The results of this study are of great significance for breeding silkworm varieties with high resistance and for biological control of pests.

Publisher

Wiley

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