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氨苄青霉素增强了桃蚜对吡虫啉和氰虫酰胺的抗性。

Ampicillin enhanced the resistance of Myzus persicae to imidacloprid and cyantraniliprole.

作者信息

Li Zengxin, Li Wenhong, Qin Weiwei, Liu Jingyou, He Yueping

机构信息

College of Plant Science and Technology, Hubei Key Laboratory of Insect Resource Application and Sustainable Pest Control, Huazhong Agricultural University, Wuhan, China.

Institute of Plant Protection, Guizhou Academy of Agricultural Sciences, Guiyang, China.

出版信息

Pest Manag Sci. 2023 Apr;79(4):1388-1398. doi: 10.1002/ps.7310. Epub 2022 Dec 28.

Abstract

BACKGROUND

Recent studies have shown that symbionts are involved in regulating insecticide detoxification in insects. However, there are few studies on the relationship between the symbionts found in Myzus persicae and the mechanism underlying host detoxification of insecticides. In this study, antibiotic ampicillin treatment was used to investigate the possible relationship between symbiotic bacteria and the detoxification of insecticides in the host, M. persicae.

RESULTS

Bioassays showed that ampicillin significantly reduced the susceptibilities of M. persicae to imidacloprid and cyantraniliprole. Synergistic bioassays and RNAi assays showed that the susceptibilities of M. persicae to imidacloprid and cyantraniliprole were related to metabolic detoxification enzyme activities and the expression level of the cytochrome P450 gene, CYP6CY3. Also, treatment to a combination of ampicillin and enzyme inhibitors or dsCYP6CY3 showed that the negative effect of ampicillin on the susceptibility of M. persicae was effectively inhibited bydetoxification enzyme inhibitors and dsCYP6CY3. Additionally, ampicillin treatment resulted in significant increases in the activities of multifunctional oxidases and esterases, the expression level of CYP6CY3 and fitness of M. persicae. Further, ampicillin significantly reduced the total bacterial abundance and changed symbiont diversity in M. persicae. The abundance of Pseudomonadaceae decreased significantly, while the abundance of Rhodococcus and Buchnera increased significantly.

CONCLUSION

Our study showed that ampicillin enhanced the resistance levels to imidacloprid and cyantraniliprole of M. persicae, which might be related to the selective elimination of symbiotic bacteria, the upregulated activities of detoxification enzymes and the increased fitness. © 2022 Society of Chemical Industry.

摘要

背景

近期研究表明,共生体参与调控昆虫体内的杀虫剂解毒过程。然而,关于桃蚜体内共生体与宿主杀虫剂解毒机制之间的关系,相关研究较少。在本研究中,采用抗生素氨苄青霉素处理,以探究共生细菌与宿主桃蚜杀虫剂解毒作用之间的潜在关系。

结果

生物测定表明,氨苄青霉素显著降低了桃蚜对吡虫啉和氰虫酰胺的敏感性。增效生物测定和RNA干扰试验表明,桃蚜对吡虫啉和氰虫酰胺的敏感性与代谢解毒酶活性及细胞色素P450基因CYP6CY3的表达水平有关。此外,氨苄青霉素与酶抑制剂或dsCYP6CY3联合处理表明,解毒酶抑制剂和dsCYP6CY3有效抑制了氨苄青霉素对桃蚜敏感性的负面影响。此外,氨苄青霉素处理导致桃蚜多功能氧化酶和酯酶活性显著增加、CYP6CY3表达水平升高以及适合度提高。此外,氨苄青霉素显著降低了桃蚜体内的细菌总丰度,并改变了共生体多样性。假单胞菌科的丰度显著降低,而红球菌属和布赫纳氏菌属的丰度显著增加。

结论

我们的研究表明,氨苄青霉素提高了桃蚜对吡虫啉和氰虫酰胺的抗性水平,这可能与共生细菌的选择性消除、解毒酶活性上调以及适合度增加有关。©2022化学工业协会。

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