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新烟碱类和其他昆虫烟碱受体竞争性调节剂:进展与展望。

Neonicotinoids and Other Insect Nicotinic Receptor Competitive Modulators: Progress and Prospects.

机构信息

Environmental Chemistry and Toxicology Laboratory, Department of Environmental Science, Policy, and Management, University of California, Berkeley, California 94720; email:

出版信息

Annu Rev Entomol. 2018 Jan 7;63:125-144. doi: 10.1146/annurev-ento-020117-043042.

Abstract

Neonicotinoids (neonics) are remarkably effective as plant systemics to control sucking insects and for flea control on dogs and cats. The nitroimines imidacloprid, clothianidin, thiamethoxam, and dinotefuran are the leaders among the seven commercial neonics that also include the nitromethylene nitenpyram, the nitromethylene-derived cycloxaprid, and the cyanoimines acetamiprid and thiacloprid. Honey bees are highly sensitive to the nitroimines and nitromethylenes, but the cyanoimines are less toxic. All neonics are nicotinic acetylcholine receptor (nAChR) agonists with a common mode of action, target-site cross-resistance, and much higher potency on insect than mammalian nAChRs at defined binding sites. The structurally related sulfoximine sulfoxaflor and butenolide flupyradifurone are also nAChR agonists, and the mesoionic triflumezopyrim is a nAChR competitive modulator with little or no target-site cross-resistance. Some neonics induce stress tolerance in plants via salicylate-associated systems. The neonics in general are readily metabolized and, except for pollinators, have favorable toxicological profiles.

摘要

新烟碱类化合物(neonics)作为植物系统性杀虫剂,对控制刺吸式昆虫和猫狗跳蚤非常有效。硝基亚甲基类中的吡虫啉、噻虫胺、噻虫啉和呋虫胺,以及亚甲基硝胺类中的涕灭威,是七种商业新烟碱类化合物中的佼佼者,此外还包括亚甲基硝胺类的吡虫清、环丙烯硝胺衍生的环丙噻虫胺,以及氰基类的噻虫胺和噻虫啉。新烟碱类化合物对蜜蜂具有高度敏感性,而亚甲基硝胺类化合物的毒性则较低。所有新烟碱类化合物都是烟碱型乙酰胆碱受体(nAChR)激动剂,具有共同的作用模式、靶标部位交叉抗性,以及在定义的结合部位对昆虫 nAChR 的效力比哺乳动物 nAChR 高得多。结构相关的磺酰亚胺类化合物噻虫砜和丁烯氟虫腈,以及内酰胺类化合物三氟甲吡醚也是 nAChR 激动剂,而中氮杂环类化合物三氟咪啶酯则是 nAChR 竞争性调节剂,几乎没有或没有靶标部位交叉抗性。一些新烟碱类化合物通过与水杨酸相关的系统诱导植物的应激耐受。一般来说,新烟碱类化合物很容易代谢,除了对传粉媒介有影响外,它们具有良好的毒理学特征。

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