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新型 1,3-二取代咪唑烷或六氢嘧啶衍生物作为除草剂安全剂的设计、合成及 SAR 研究。

Design, Synthesis, and SAR of Novel 1,3-Disubstituted Imidazolidine or Hexahydropyrimidine Derivatives as Herbicide Safeners.

机构信息

Department of Applied Chemistry, College of Arts and Sciences, Northeast Agricultural University, Harbin 150030, China.

出版信息

J Agric Food Chem. 2021 Jan 13;69(1):45-54. doi: 10.1021/acs.jafc.0c04436. Epub 2020 Dec 29.

Abstract

Herbicide safeners enhance herbicide detoxification in crops without reducing their herbicidal efficacy against target weeds. To alleviate maize injury caused by the sulfonylurea herbicide nicosulfuron, a series of 1,3-disubstituted imidazolidine or hexahydropyrimidine derivatives were rationally designed via bioisosterism and active subunit combinations. Thirty novel compounds were synthesized using an efficient one-pot method and low-cost raw materials and characterized by IR, H NMR, C NMR, and high-resolution mass spectrometer (HRMS). Bioactivity and structure-activity relationship (SAR) were evaluated for herbicide safeners tested against nicosulfuron injury. Most of the compounds effectively protected sensitive maize against nicosulfuron damage. The parent skeletons and substituents of the target compounds both substantially influenced their safener activity. Compound exhibited superior bioactivity compared to the safener isoxadifen-ethyl. Molecular docking simulations disclosed that compound competed with nicosulfuron for the acetolactate synthase active site and demonstrated that this is the protective mechanism of safeners. The target compound presented with strong herbicide safener activity in maize and is, therefore, a potential candidate for the development of a novel herbicide safener.

摘要

除草剂解毒剂增强了作物中除草剂的解毒作用,而不会降低其对靶标杂草的除草效果。为了减轻磺酰脲类除草剂烟嘧磺隆对玉米的伤害,通过生物等排和活性亚基组合,合理设计了一系列 1,3-取代的咪唑烷或六氢嘧啶衍生物。使用高效一锅法和低成本原料合成了 30 种新型化合物,并通过 IR、H NMR、C NMR 和高分辨率质谱(HRMS)进行了表征。对测试的除草剂解毒剂进行了生物活性和构效关系(SAR)评价,以对抗烟嘧磺隆损伤。大多数化合物有效地保护了敏感玉米免受烟嘧磺隆的损害。目标化合物的母体骨架和取代基都对其解毒剂活性有很大影响。化合物 表现出比解毒剂异噁唑草酮-乙基更好的生物活性。分子对接模拟表明,化合物 与烟嘧磺隆竞争乙酰乳酸合酶的活性部位,并证明这是解毒剂的保护机制。目标化合物 在玉米中表现出很强的除草剂解毒剂活性,因此是开发新型除草剂解毒剂的潜在候选物。

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