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发现并描述了噻虫砜,一种针对吸食汁液害虫的新型杀虫剂。

Discovery and characterization of sulfoxaflor, a novel insecticide targeting sap-feeding pests.

机构信息

Dow AgroSciences, R&D, 9330 Zionsville Road, Indianapolis, Indiana 46268, United States.

出版信息

J Agric Food Chem. 2011 Apr 13;59(7):2950-7. doi: 10.1021/jf102765x. Epub 2010 Nov 24.

Abstract

The discovery of sulfoxaflor [N-[methyloxido[1-[6-(trifluoromethyl)-3-pyridinyl]ethyl]-λ(4)-sulfanylidene] cyanamide] resulted from an investigation of the sulfoximine functional group as a novel bioactive scaffold for insecticidal activity and a subsequent extensive structure-activity relationship study. Sulfoxaflor, the first product from this new class (the sulfoximines) of insect control agents, exhibits broad-spectrum efficacy against many sap-feeding insect pests, including aphids, whiteflies, hoppers, and Lygus, with levels of activity that are comparable to those of other classes of insecticides targeting sap-feeding insects, including the neonicotinoids. However, no cross-resistance has been observed between sulfoxaflor and neonicotinoids such as imidacloprid, apparently the result of differences in susceptibility to oxidative metabolism. Available data are consistent with sulfoxaflor acting via the insect nicotinic receptor in a complex manner. These observations reflect the unique structure of the sulfoximines compared with neonicotinoids.

摘要

硫肟醚的发现源自对亚砜亚胺官能团作为新型杀虫活性的生物活性支架的研究,以及随后对其进行的广泛的结构-活性关系研究。硫肟醚是该新型(亚砜亚胺类)昆虫防治剂的第一个产品,对许多吸食汁液的害虫具有广谱功效,包括蚜虫、粉虱、叶蝉和盲蝽,其活性水平与针对吸食汁液昆虫的其他杀虫剂类别(如新烟碱类)相当。然而,硫肟醚与新烟碱类杀虫剂如吡虫啉之间并未观察到交叉抗性,显然是由于对氧化代谢的敏感性不同所致。现有数据表明硫肟醚通过昆虫烟碱受体以复杂的方式起作用。这些观察结果反映了与新烟碱类相比,亚砜亚胺类的独特结构。

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