首页> 外文期刊>Pesticide Biochemistry and Physiology >Insecticidal activity and mode of action of novel nicotinoids synthesized by new acylpyridinium salt chemistry and directed lithiation.
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Insecticidal activity and mode of action of novel nicotinoids synthesized by new acylpyridinium salt chemistry and directed lithiation.

机译:通过新的酰基吡啶鎓盐化学和定向锂化合成的新型烟碱的杀虫活性和作用方式。

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Novel acylpyridinium salt chemistry and directed lithiation methodology was developed to add for the first time substitutions directly to the phenylpyridine heterocyclic ring of nicotine. A variety of 3-(1-methylpyrrolidin-2-yl)-4-(alkyl, aromatic, heterocyclic and silanyl) and -N-alkyl pyridines were synthesized (compounds 1-9). In vial tests with the green peach aphid, Myzus persicae, compounds 1-4 were 1.1, 1.8, 2.3 and 1.9x, respectively, more active than nicotine and 64, 40, 31 and 38x, respectively, less active than acetamiprid. Against the western flower thrips, Frankliniella occidentalis, 1-4 were 1.4, 2.1, 2.0 and 1.6x, respectively, more active than nicotine and 9, 6, 6 and 8x, respectively, less active than acetamiprid. For the cotton aphid, Aphis gossypii, the activity of 1-9 was similar to nicotine. Compounds 7 and 9 when incorporated into artificial diet produced low mortality for larvae of the beet armyworm, Spodoptera exigua, but were not active against the corn earworm, Helicoverpa zea. When 1-4 and 6-9 were injected into larvae of the beet armyworm, a variety of symptoms similar to acetamiprid were observed which included tremors, uncoordinated movement, diuresis, paralysis and death. In addition, imidacloprid-binding to membranes from the house fly head, Musca domestica, was inhibited by compounds 1-9, when using a concentration range of 1-100 micro M. These studies demonstrate that our new chemistry enhances the insecticidal activity of nicotine with an apparent mode of action as an acetylcholine agonist..
机译:开发了新的酰基吡啶鎓盐化学和定向锂化方法,以首次将取代基直接添加到尼古丁的苯基吡啶杂环上。合成了多种3-(1-甲基吡咯烷-2-基)-4-(烷基,芳族,杂环和甲硅烷基)和-N-烷基吡啶(化合物1-9)。在绿色桃蚜蚜虫的小瓶测试中,化合物1-4的活性分别比尼古丁高1.1、1.8、2.3和1.9x,分别比乙草胺的活性低64、40、31和38x。在西方花蓟马上,西方富兰克氏菌1-4的活性分别是尼古丁的1.4、2.1、2.0和1.6倍,而活性分别比乙草胺的活性低9、6、6和8x。对于棉蚜Aphis gossypii,其1-9的活性类似于尼古丁。将化合物7和9掺入人工饮食后,甜菜夜蛾幼虫的幼虫死亡率较低,但对玉米穗虫Helicoverpa zea没有活性。在甜菜夜蛾幼虫中注射1-4和6-9时,观察到了多种类似于乙酰胺的症状,包括震颤,运动不协调,利尿,瘫痪和死亡。此外,当使用浓度范围为1-100 micro M时,化合物1-9抑制吡虫啉与家蝇蝇头膜的结合。这些研究表明,我们的新化学方法增强了尼古丁的杀虫活性。具有明显的作用方式,可作为乙酰胆碱激动剂。

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