首页> 外文期刊>Journal of Agricultural and Food Chemistry >Synthesis, Insecticidal Activities, and SAR Studies of Novel Pyridylpyrazole Acid Derivatives Based on Amide Bridge Modification of Anthranilic Diamide Insecticides
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Synthesis, Insecticidal Activities, and SAR Studies of Novel Pyridylpyrazole Acid Derivatives Based on Amide Bridge Modification of Anthranilic Diamide Insecticides

机译:基于邻氨基苯甲酰胺类杀虫剂酰胺桥修饰的新型吡啶基吡唑酸衍生物的合成,杀虫活性和SAR研究

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摘要

Anthranilic diamides are one of the most important classes of modern agricultural insecticides. To discover new structure-modified compounds with high activity, series of novel carbonyl thioureas, carbonyl ureas, oxadiazoles, carbonyl thiophosphorylureas, oxadiazole-containing amides, and thiazoline-containing amides were designed through the modification of the amide bridge based on the structure of chlorantraniliprole and were synthesized, and bioassays were carried out. The compounds were characterized and confirmed by melting point, IR,~1H NMR, and elemental analyses or HRMS. Preliminary bioassays indicated that some compounds exhibited significant insecticidal activities against oriental armyworm, diamondback moth, beet armyworm, corn borer, and mosquito. Among them, trifluoroethoxyl-containing carbonyl thiourea 20a showed best larvicidal activity against oriental armyworm, with LC_(50) and LC_(95) values of 0.1812 and 0.7767 mg/L, respectively. Meanwhile, 20c and 20e showed 86 and 57% death rates against diamondback moth at 0.005 mg/L, and the LC_(50) values of the two compounds were 0.0017 and 0.0023 mg/L, respectively, which were lower than that of the control chlorantraniliprole. The relationship between structure and insecticidal activity was discussed, and the HF calculation results indicated that the carbonyl thiourea moiety plays an important role in the insecticidal activity. The present work demonstrated that the trifluoroethoxyl-containing carbonyl thioureas can be used as lead compounds for further development of novel insecticides.
机译:邻氨基苯甲酰胺是现代农业杀虫剂最重要的类别之一。为了发现具有高活性的新的结构改性化合物,通过基于氯金腈的结构对酰胺桥进行改性,设计了一系列新型羰基硫脲,羰基脲,恶二唑,羰基硫代磷酸脲,含恶二唑的酰胺和含噻唑啉的酰胺。并合成,并进行生物测定。通过熔点,IR,〜1H NMR和元素分析或HRMS对化合物进行表征和确认。初步的生物分析表明,某些化合物对东方粘虫,小菜蛾,甜菜粘虫,玉米r和蚊子具有显着的杀虫活性。其中,含三氟乙氧基的羰基硫脲20a对东方粘虫表现出最好的杀幼虫活性,其LC_(50)和LC_(95)值分别为0.1812和0.7767 mg / L。同时,20c和20e在0.005 mg / L时对小菜蛾的死亡率为86和57%,两种化合物的LC_(50)值分别为0.0017和0.0023 mg / L,低于对照组。绿藻酰胺。讨论了结构与杀虫活性之间的关系,HF计算结果表明羰基硫脲部分在杀虫活性中起重要作用。目前的工作表明,含三氟乙氧基的羰基硫脲可用作进一步开发新型杀虫剂的先导化合物。

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