Wang Luo-Luo, Lu Xue-Ping, Smagghe Guy, Meng Li-Wei, Wang Jin-Jun
Key Laboratory of Entomology and Pest Control Engineering, College of Plant Protection, Southwest University, Chongqing 400716, China; Department of Crop Protection, Ghent University, B-9000 Ghent, Belgium.
Key Laboratory of Entomology and Pest Control Engineering, College of Plant Protection, Southwest University, Chongqing 400716, China; Academy of Agricultural Sciences, Southwest University, Chongqing 400716, China.
Comp Biochem Physiol C Toxicol Pharmacol. 2017 Oct;200:1-8. doi: 10.1016/j.cbpc.2017.07.001. Epub 2017 Jul 8.
There are many evidences that insect carboxylesterase possess important physiological roles in xenobiotic metabolism and are implicated in the detoxification of organophosphate (OP) insecticides. Despite the ongoing resistance development in the oriental fruit fly, Bactrocera dorsalis (Hendel), the molecular basis of carboxylesterase and its ability to confer OP resistance remain largely obscure. This study was initiated to provide a better understanding of carboxylesterase-mediated resistance mechanism in a tephritid pest fly. Here, we narrow this research gap by demonstrating a well-conserved esterase B1 gene, BdB1, mediates malathion resistance development via gene upregulation with the use of a laboratory selected malathion-resistant strain (MR) of B. dorsalis. No sequence mutation of BdB1 was detected between MR and the susceptible strain (MS) of B. dorsalis. BdB1 is predominantly expressed in the midgut, a key insect tissue for detoxification. As compared with transcripts in MS, BdB1 was significantly more abundant in multiple tissues in the MR. RNA interference (RNAi)-mediated knockdown of BdB1 significantly increased malathion susceptibility. Furthermore, heterologous expression along with cytotoxicity assay revealed BdB1 could probably have the function of malathion detoxification.
有许多证据表明昆虫羧酸酯酶在异生物质代谢中具有重要的生理作用,并与有机磷(OP)杀虫剂的解毒有关。尽管东方果实蝇(Bactrocera dorsalis (Hendel))中持续出现抗性,但羧酸酯酶的分子基础及其赋予OP抗性的能力在很大程度上仍不清楚。开展本研究是为了更好地了解实蝇害虫中羧酸酯酶介导的抗性机制。在此,我们通过使用实验室筛选的东方果实蝇马拉硫磷抗性品系(MR),证明一个保守的酯酶B1基因BdB1通过基因上调介导马拉硫磷抗性的产生,从而缩小了这一研究差距。在MR和东方果实蝇敏感品系(MS)之间未检测到BdB1的序列突变。BdB1主要在中肠表达,中肠是昆虫解毒的关键组织。与MS中的转录本相比,BdB1在MR的多个组织中显著更丰富。RNA干扰(RNAi)介导的BdB1敲低显著增加了马拉硫磷敏感性。此外,异源表达及细胞毒性测定表明BdB1可能具有马拉硫磷解毒功能。