草甘膦
莽草酸途径
甘氨酸
转基因作物
莽草酸
蛋白质工程
芳香族氨基酸
生物
基因工程
转基因
抗除草剂
作物
定向进化
生物技术
生物化学
氨基酸
酶
基因
农学
突变体
重组DNA
作者
Loredano Pollegioni,E. Schönbrunn,Daniel L. Siehl
出处
期刊:FEBS Journal
[Wiley]
日期:2011-06-11
卷期号:278 (16): 2753-2766
被引量:208
标识
DOI:10.1111/j.1742-4658.2011.08214.x
摘要
Glyphosate (N-phosphonomethyl-glycine) is the most widely used herbicide in the world: glyphosate-based formulations exhibit broad-spectrum herbicidal activity with minimal human and environmental toxicity. The extraordinary success of this simple, small molecule is mainly attributable to the high specificity of glyphosate for the plant enzyme enolpyruvyl shikimate-3-phosphate synthase in the shikimate pathway, leading to the biosynthesis of aromatic amino acids. Starting in 1996, transgenic glyphosate-resistant plants were introduced, thus allowing application of the herbicide to the crop (post-emergence) to remove emerged weeds without crop damage. This review focuses on mechanisms of resistance to glyphosate as obtained through natural diversity, the gene-shuffling approach to molecular evolution, and a rational, structure-based approach to protein engineering. In addition, we offer a rationale for the means by which the modifications made have had their intended effect.
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