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小麦蚜虫(高桥)对氟啶虫胺腈的田间进化抗性及多杀虫剂抗性的适合度代价

Fitness Cost of the Field-Evolved Resistance to Sulfoxaflor and Multi-Insecticide Resistance of the Wheat Aphid (Takahashi).

作者信息

Li Xinan, Zhu Saige, Li Qiuchi, Sun Yulin, Wang Yanbo, Tian Xujun, Ran Xiao, Li Xiangrui, Zhang Yunhui, Gao Haifeng, Zhu Xun

机构信息

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

Henan Engineering Research Center of Green Pesticide Creation & Intelligent Pesticide Residue Sensor Detection, School of Resource and Environmental Sciences, Henan Institute of Science and Technology, Xinxiang 453003, China.

出版信息

Insects. 2023 Jan 12;14(1):75. doi: 10.3390/insects14010075.

Abstract

Sulfoxaflor belongs to a new class of insecticides that is effective against many sap-feeding pests. In this study on (Takahashi) (i.e., the predominant wheat pest), a highly sulfoxaflor-resistant (SulR) population was obtained from a field. Its resistance to the other seven insecticides and its biological fitness were analyzed using a leaf-dip method and a two-sex life table approach, respectively. Compared with the relatively susceptible (SS) population, the SulR population was highly resistant to sulfoxaflor, with a relative insecticide resistance ratio (RR) of 199.8 and was moderately resistant to beta-cypermethrin (RR = 14.5) and bifenthrin (RR = 42.1) but exhibited low resistance to chlorpyrifos (RR = 5.7). Additionally, the SulR population had a relative fitness of 0.73, with a significantly prolonged developmental period as well as a lower survival rate and poorer reproductive performance than the SS population. In conclusion, our results suggest that . populations that are highly resistant to sulfoxaflor exist in the field. The possibility that insects may develop multi-resistance between sulfoxaflor and pyrethroids is a concern. Furthermore, the high sulfoxaflor resistance of . was accompanied by a considerable fitness cost. The study data may be useful for improving the rational use of insecticides and for exploring novel insecticide resistance mechanisms.

摘要

氟啶虫胺腈属于一类新型杀虫剂,对许多吸食汁液的害虫有效。在这项针对[高桥(Takahashi)(即小麦主要害虫)]的研究中,从田间获得了一个对氟啶虫胺腈具有高抗性(SulR)的种群。分别采用浸叶法和两性生命表方法分析了其对其他七种杀虫剂的抗性及其生物学适合度。与相对敏感(SS)种群相比,SulR种群对氟啶虫胺腈具有高抗性,相对杀虫剂抗性比率(RR)为199.8,对高效氯氰菊酯(RR = 14.5)和联苯菊酯(RR = 42.1)具有中等抗性,但对毒死蜱表现出低抗性(RR = 5.7)。此外,SulR种群的相对适合度为0.73,与SS种群相比,其发育期显著延长,存活率较低,繁殖性能较差。总之,我们的结果表明田间存在对氟啶虫胺腈具有高抗性的种群。昆虫可能在氟啶虫胺腈和拟除虫菊酯之间产生多抗性的可能性令人担忧。此外,[具体害虫名称]对氟啶虫胺腈的高抗性伴随着相当大的适合度代价。该研究数据可能有助于改进杀虫剂的合理使用并探索新的抗药性机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a80/9867125/5ba8ff986b5a/insects-14-00075-g001.jpg

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