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除草剂作用机制概述。

Overview of herbicide mechanisms of action.

作者信息

Duke S O

机构信息

U.S. Department of Agriculture, Southern Weed Science Laboratory, Stoneville, MS 38776.

出版信息

Environ Health Perspect. 1990 Jul;87:263-71. doi: 10.1289/ehp.9087263.

Abstract

Commercial herbicides exhibit many different mechanisms of action. Several enzymes involved in biosynthesis of amino acids are sites of action for herbicides. A large number of different herbicide classes inhibit photosynthesis by binding to the quinone-binding protein, D-1, to prevent photosynthetic electron transfer. Several different types of herbicides apparently cause accumulation of photodynamic porphyrins by inhibiting protoporphyrinogen oxidase. Bipyridyliums and heteropentalenes cause the production of superoxide radicals by energy diversion from photosystem I of photosynthesis. Lipid synthesis is the site of action of a broad array of herbicides used in controlling monocot weeds. Herbicides of several classes apparently act by inhibiting mitosis through direct interaction with tubulin. Several other molecular sites of herbicide action are known. Despite a growing body of knowledge, the exact molecular sites of action of many herbicides are unknown. Some herbicides are known to have more than one site of action. Virtually all knowledge of herbicide structure-activity relationships is semiempirical. In addition to site of action structure-activity relationships, herbicide structure and chemical properties also strongly influence absorption, translocation, bioactivation, and environmental stability. Considering how little is known about all the potential sites of herbicide action, it is unlikely that during the next decade more than a relatively small number of site-specific herbicide structure-activity relationships will be developed.

摘要

商业除草剂具有多种不同的作用机制。参与氨基酸生物合成的几种酶是除草剂的作用位点。大量不同类别的除草剂通过与醌结合蛋白D - 1结合来抑制光合作用,从而阻止光合电子传递。几种不同类型的除草剂显然通过抑制原卟啉原氧化酶导致光动力卟啉积累。联吡啶和杂戊搭烯通过光合作用光系统I的能量转移导致超氧自由基的产生。脂质合成是用于控制单子叶杂草的多种除草剂的作用位点。几类除草剂显然通过与微管蛋白直接相互作用抑制有丝分裂而起作用。已知还有其他几个除草剂作用的分子位点。尽管知识不断增加,但许多除草剂的确切分子作用位点仍不清楚。已知一些除草剂有不止一个作用位点。几乎所有关于除草剂构效关系的知识都是半经验性的。除了作用位点构效关系外,除草剂的结构和化学性质也强烈影响吸收、转运、生物活化和环境稳定性。考虑到对除草剂所有潜在作用位点的了解甚少,在未来十年内不太可能开发出超过相对少量的位点特异性除草剂构效关系。

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