Guo Lei, Zhang Zhuang, Xu Wei, Ma Jiangya, Liang Ni, Li Changyou, Chu Dong
Key Lab of Integrated Crop Pest Management of Shandong Province, College of Plant Health and Medicine, Qingdao Agricultural University, Qingdao, Shandong Province, China.
Food Futures Institute, Murdoch University, Murdoch, WA, Australia.
Insect Sci. 2023 Feb;30(1):146-160. doi: 10.1111/1744-7917.13081. Epub 2022 Jun 13.
Bemisia tabaci (Gennadius) (Hemiptera: Aleyrodidae) is a cosmopolitan insect pest causing serious damage to crop production. Cytochromes P450 (CYPs) of B. tabaci are widely known to be involved in the metabolic resistance to a variety of insecticides, continuously increasing the difficulty in controlling this pest. In this study, four P450 genes (CYP6CM1, CYP6CX1, CYP6CX3, and CYP402C1) in B. tabaci exhibited correlations with the resistance to imidacloprid. We have focused on trying to understand the function and metabolism capacity of CYP402C1. The expression profiles of CYP402C1 were examined by reverse transcription quantitative real-time PCR and fluorescence in situ hybridizations. Its role in resistance to imidacloprid was investigated by RNA interference, transgenic Drosophila melanogaster, and heterologous expression. The results showed that CYP402C1 was highly expressed in the active feeding stages of B. tabaci, such as nymphs and female adults. CYP402C1 was mainly expressed in midguts of nymphs and adults, especially in the filter chamber. Knockdown of CYP402C1 significantly decreased the resistance of B. tabaci to imidacloprid by 3.96-fold (50% lethal concentration: 186.46 versus 47.08 mg/L). Overexpression of CYP402C1 in a transgenic D. melanogaster line (Gal4 > UAS-CYP402C1) significantly increased the resistance to imidacloprid from 12.68- to 14.92-fold (129.01 and 151.80 mg/L versus 1925.14 mg/L). The heterologous expression of CYP402C1 showed a metabolism ability of imidacloprid (imidacloprid decreased by 12.51% within 2 h). This study provides new insights for CYP402C1 function in B. tabaci and will help develop new strategies in B. tabaci control and its insecticide resistance.
烟粉虱(Bemisia tabaci (Gennadius),半翅目:粉虱科)是一种世界性害虫,对作物生产造成严重损害。众所周知,烟粉虱的细胞色素P450(CYPs)参与对多种杀虫剂的代谢抗性,这使得控制这种害虫的难度不断增加。在本研究中,烟粉虱的四个P450基因(CYP6CM1、CYP6CX1、CYP6CX3和CYP402C1)与对吡虫啉的抗性相关。我们致力于了解CYP402C1的功能和代谢能力。通过逆转录定量实时PCR和荧光原位杂交检测了CYP402C1的表达谱。通过RNA干扰、转基因黑腹果蝇和异源表达研究了其对吡虫啉抗性的作用。结果表明,CYP402C1在烟粉虱的活跃取食阶段(如若虫和雌成虫)中高表达。CYP402C1主要在若虫和成虫的中肠中表达,尤其是在滤室中。敲低CYP402C1显著降低了烟粉虱对吡虫啉的抗性,抗性降低了3.96倍(半数致死浓度:186.46对47.08mg/L)。在转基因黑腹果蝇品系(Gal4 > UAS-CYP402C1)中过表达CYP402C1显著提高了对吡虫啉的抗性,从12.68倍提高到14.92倍(129.01和151.80mg/L对1925.14mg/L)。CYP402C1的异源表达显示出对吡虫啉的代谢能力(吡虫啉在2小时内减少了12.51%)。本研究为CYP402C1在烟粉虱中的功能提供了新的见解,并将有助于制定烟粉虱防治及其抗药性的新策略。