Huang Zhiqiang, Cui Quanmin, Xiong Lixia, Wang Ziwen, Wang Kaiyun, Zhao Qiqi, Bi Fuchun, Wang Qingmin
State Key Laboratory of Elemento-Organic Chemistry, Institute of Elemento-Organic Chemistry, Nankai University, Tianjin, People's Republic of China.
J Agric Food Chem. 2009 Mar 25;57(6):2447-56. doi: 10.1021/jf8036193.
Two series of novel N'-tert-butyl-N'-substituted benzoyl-N-2,3-dihydrobenzofuran-5-carbohydrazide derivatives were synthesized, their activities and different insecticidal action modes for different Lepidopteral larvicidal assays were evaluated carefully. The results of larvicidal activities against oriental armyworm and mosquito indicate that different benzoheterocyclic analogues of diacylhydrazide have different structure-activity relationships according to the types and patterns of substitution on the benzene, and 3,5-dimethyl is the most efficient substituent for benzoheterocyclic diacylhydrazine. Among them, N'-tert-butyl-N'-(3,5-dimethylbenzoyl)-N-2,4-dimethyl-2,3-dihydrobenzofuran-5-carbohydrazide (Ii) stood out as the best compound with high activity. Compound Ii and N'-tert-butyl-N'-(3,5-dimethylbenzoyl)-N-5-chloro-6-chromanecarbohydrazide (F) have higher contact activities against diamond-back moth and stomach toxicities against cotton bollworm than ANS-118 and JS-118. Compound F has higher contact toxicity against beet armyworm than ANS-118 and JS-118. These results indicate that different heterocycles and substitutents on the benzene rings of benzoheterocyle moiety not only influence the larvicidal activities strongly but also are very sensitive to the insecticidal action modes for different Lepidopteran larvicidal insects.
合成了两个系列的新型N'-叔丁基-N'-取代苯甲酰基-N-2,3-二氢苯并呋喃-5-碳酰肼衍生物,并对其在不同鳞翅目幼虫杀虫试验中的活性和不同杀虫作用方式进行了仔细评估。对东方粘虫和蚊子的杀幼虫活性结果表明,根据苯环上取代基的类型和模式,二酰肼的不同苯并杂环类似物具有不同的构效关系,3,5-二甲基是苯并杂环二酰肼最有效的取代基。其中,N'-叔丁基-N'-(3,5-二甲基苯甲酰基)-N-2,4-二甲基-2,3-二氢苯并呋喃-5-碳酰肼(Ii)作为活性最高的最佳化合物脱颖而出。化合物Ii和N'-叔丁基-N'-(3,5-二甲基苯甲酰基)-N-5-氯-6-色满碳酰肼(F)对小菜蛾的触杀活性和对棉铃虫的胃毒活性均高于ANS-118和JS-118。化合物F对甜菜夜蛾的触杀毒性高于ANS-118和JS-118。这些结果表明,苯并杂环部分苯环上的不同杂环和取代基不仅对杀幼虫活性有强烈影响,而且对不同鳞翅目幼虫杀虫剂的杀虫作用方式非常敏感。