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杀虫剂轮换方案可恢复佛罗里达州桔小实蝇噻虫嗪抗性田间种群的杀虫剂敏感性。

Insecticide rotation scheme restores insecticide susceptibility in thiamethoxam-resistant field populations of Asian citrus psyllid, Diaphorina citri Kuwayama (Hemiptera: Liviidae), in Florida.

机构信息

Entomology and Nematology Department, University of Florida, Citrus Research and Education Center, Lake Alfred, FL, USA.

出版信息

Pest Manag Sci. 2021 Jan;77(1):464-473. doi: 10.1002/ps.6039. Epub 2020 Aug 28.

Abstract

BACKGROUND

We investigated rotation using insecticides with multiple modes of action as a resistance management strategy for Asian citrus psyllid, Diaphorina citri, Kuwayama (Hemiptera: Liviidae), in Florida. The stability of thiamethoxam resistance was investigated in the laboratory by establishing populations of field-collected, resistant D. citri and rearing them under no insecticide exposure. Furthermore, recovery of susceptibility was investigated in the field by initiating rotation to insecticides in plots that previously were treated with consecutive thiamethoxam applications.

RESULTS

The resistance ratio (RR) for thiamethoxam reached between 1266.29- and 1395.00-fold after three and four consecutive applications of thiamethoxam, respectively. However, the RR for thiamethoxam remained low (1.71-5.28-fold) under both rotations at both Lake Alfred and Wauchula. Thiamethoxam was cross-resistant with imidacloprid (RR = 1059.65-fold, RR = 1595.43-fold) and clothianidin (RR = 1798.78-fold, RR = 1270.57-fold) in the nonrotated treatment at both sites. There was very low cross-resistance to other insecticides with different modes of action. Both laboratory and field investigations indicated that susceptibility to thiamethoxam fully recovered after five D. citri generations. Expression of CYP4C67 was significantly increased in resistant populations.

CONCLUSION

Our results revealed that D. citri populations develop a high level of resistance following only three or four consecutive neonicotinoid sprays; this was associated with subsequent product failure. Our data suggest that metabolic detoxification by cytochrome P450s contributes to thiamethoxam resistance in D. citri. Overall, the investigation demonstrated that resistance to thiamethoxam can be managed readily in populations of D. citri by rotating modes of action.

摘要

背景

我们研究了使用具有多种作用模式的杀虫剂作为佛罗里达州亚洲柑橘木虱 Diaphorina citri Kuwayama(半翅目:丽蝇科)的抗药性管理策略的转用情况。通过建立从田间收集的抗性 D. citri 种群并在无杀虫剂暴露的情况下进行饲养,在实验室中研究了噻虫嗪抗性的稳定性。此外,通过在先前连续使用噻虫嗪处理的地块中启动对杀虫剂的轮换,在田间研究了敏感性的恢复情况。

结果

噻虫嗪连续使用 3 次和 4 次后,噻虫嗪的抗性比(RR)分别达到 1266.29-和 1395.00 倍。然而,在阿尔弗雷德湖和沃丘拉的两种轮换处理中,噻虫嗪的 RR 均较低(1.71-5.28 倍)。噻虫嗪与噻虫啉(RR = 1059.65 倍,RR = 1595.43 倍)和噻虫胺(RR = 1798.78 倍,RR = 1270.57 倍)在两个地点的非轮换处理中均具有交叉抗性。与其他作用模式不同的杀虫剂的交叉抗性非常低。实验室和田间调查均表明,D. citri 经过五代后对噻虫嗪的敏感性完全恢复。在抗性种群中,CYP4C67 的表达显著增加。

结论

我们的研究结果表明,D. citri 种群在连续使用三或四次新烟碱类杀虫剂后会产生高水平的抗性;这与随后的产品失效有关。我们的数据表明,细胞色素 P450s 的代谢解毒作用导致了 D. citri 对噻虫嗪的抗性。总的来说,该研究表明,通过轮换作用模式,可以轻松管理 D. citri 种群对噻虫嗪的抗性。

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