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新型二氮杂双环衍生物作为安全剂的设计、合成及生物活性

Design, Synthesis, and Biological Activity of Novel Diazabicyclo Derivatives as Safeners.

作者信息

Zhang Yuan-Yuan, Gao Shuang, Liu Yong-Xuan, Wang Chen, Jiang Wei, Zhao Li-Xia, Fu Ying, Ye Fei

机构信息

Department of Applied Chemistry, College of Arts and Sciences, Northeast Agricultural University, Harbin, Heilongjiang 150030, People's Republic of China.

出版信息

J Agric Food Chem. 2020 Mar 18;68(11):3403-3414. doi: 10.1021/acs.jafc.9b07449. Epub 2020 Mar 4.

Abstract

Herbicide safeners selectively protect crops from herbicide damage without reducing the herbicidal efficiency on target weed species. The title compounds were designed by the intermediate derivatization approach and fragment splicing to exploit novel potential safeners. A total of 31 novel diazabicyclo derivatives were synthesized by the microwave-assistant method using isoxazole-4-carbonyl chloride and diazabicyclo derivatives. All synthetic compounds were confirmed by infrared, H and C nuclear magnetic resonance, and high-resolution mass spectrometry. The bioassay results demonstrated that most of the title compounds could reduce the nicosulfuron phytotoxicity on maize. The glutathione -transferase (GST) activity was assayed, and compound () revealed an inspiring safener activity comparable to commercialized safeners isoxadifen-ethyl and BAS-145138. The molecular docking model exhibited that the competition at the active sites of target enzymes between compound () and nicosulfuron was investigated with respect to herbicide detoxification. The current work not only provided a powerful supplement to the intermediate derivatization approach and fragment splicing in design pesticide bioactive molecules but also assisted safener development and optimization.

摘要

除草剂安全剂可选择性地保护作物免受除草剂损害,同时又不降低对目标杂草物种的除草效果。通过中间体衍生化方法和片段拼接设计了标题化合物,以开发新型潜在安全剂。使用异恶唑-4-羰基氯和二氮杂双环衍生物,通过微波辅助方法合成了总共31种新型二氮杂双环衍生物。所有合成化合物均通过红外光谱、氢和碳核磁共振以及高分辨率质谱进行了确认。生物测定结果表明,大多数标题化合物可降低烟嘧磺隆对玉米的植物毒性。测定了谷胱甘肽-S-转移酶(GST)活性,化合物()显示出与商业化安全剂异恶草酮和BAS-145138相当的令人鼓舞的安全剂活性。分子对接模型表明,针对除草剂解毒研究了化合物()与烟嘧磺隆在靶标酶活性位点的竞争。当前的工作不仅为设计农药生物活性分子的中间体衍生化方法和片段拼接提供了有力补充,还协助了安全剂的开发和优化。

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