Design, synthesis and biological activity of novel triketone‐containing quinoxaline as HPPD inhibitor

甲基磺草酮 喹喔啉 双加氧酶 立体化学 化学 铅化合物 体外 生物化学 生物 杀虫剂 有机化学 农学 阿特拉津
作者
Wei Hu,Shuang Gao,Lixia Zhao,Ke‐Liang Guo,Jiayu Wang,Ying‐Chao Gao,Xin‐Xin Shao,Ying Fu,Fei Ye
出处
期刊:Pest Management Science [Wiley]
卷期号:78 (3): 938-946 被引量:37
标识
DOI:10.1002/ps.6703
摘要

4-Hydroxyphenyl pyruvate dioxygenase (EC 1.13.11.27, HPPD) is one of the important target enzymes used to address the issue of weed control. HPPD-inhibiting herbicides can reduce the carotenoid content in plants and hinder photosynthesis, eventually causing albinism and death. Exploring novel HPPD-inhibiting herbicides is a significant direction in pesticide research. In the process of exploring new high-efficiency HPPD inhibitors, a series of novel quinoxaline derivatives were designed and synthesized using an active fragment splicing strategy.The title compounds were unambiguously characterized by infrared, 1 H NMR, 13 C NMR, and high-resolution mass spectroscopy. The results of the in vitro tests indicated that the majority of the title compounds showed potent inhibition of Arabidopsis thaliana HPPD (AtHPPD). Preliminary bioevaluation results revealed that a number of novel compounds displayed better or excellent herbicidal activity against broadleaf and monocotyledonous weeds. Compound III-5 showed herbicidal effects comparable to those of mesotrione at a rate of 150 g of active ingredient (ai)/ha for post-emergence application. The results of molecular dynamics verified that compound III-5 had a more stable protein-binding ability. Molecular docking results showed that compound III-5 and mesotrione shared homologous interplay with the surrounding residues. In addition, the enlarged aromatic ring system adds more force, and the hydrogen bond formed can enhance the synergy with π-π stacking.The present work indicates that compound III-5 may be a potential lead structure for the development of new HPPD inhibitors.
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