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Review of Glyphosate and Als-inhibiting Herbicide Crop Resistance and Resistant Weed Management

机译:草甘膦和Als抑制除草剂作物抗性和抗性杂草处理综述

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摘要

Weed management is a perennial challenge for growers, and continual innovation is essential to maintain the effectiveness of management technologies. The first generation of herbicide-resistant crops revolutionized weed control. However, weeds are adapting to crop systems that rely on a single mode of herbicide action. Crops with resistance to multiple modes of herbicide action could help maintain weed management. GAT/HRA is a new multiple herbicide–resistance technology for corn, soybean, and other crops. GAT/HRA combines metabolic glyphosate inactivation with an acetolactate synthase (ALS) enzyme that is insensitive to ALS-inhibiting herbicides. The mechanism to inactivate glyphosate is the glyphosate N-acetyltransferase enzyme, which transforms glyphosate into a nonphytotoxic metabolite. The gat gene is derived from a naturally occurring soil bacterium and optimized by repetitive gene shuffling and screening. The resistance mechanism to ALS-inhibiting herbicides is a double-mutant, highly resistant ALS (HRA) that is insensitive to all five classes of ALS herbicides. GAT/HRA crops will maintain natural tolerance to selective herbicides and thus provide more weed management options for growers to help deter weed spectrum shifts and delay the evolution of herbicide-resistant weeds.
机译:杂草管理对种植者来说是一个长期的挑战,持续创新对于维持管理技术的有效性至关重要。第一代抗除草剂作物彻底改变了杂草控制。但是,杂草正在适应依赖于单一除草剂作用模式的作物系统。对多种除草剂作用有抗性的农作物可以帮助维持杂草处理。 GAT / HRA是一种针对玉米,大豆和其他农作物的新型抗多重除草剂技术。 GAT / HRA将代谢草甘膦灭活与对ALS抑制性除草剂不敏感的乙酰乳酸合酶(ALS)酶结合在一起。草甘膦失活的机制是草甘膦N-乙酰基转移酶,它可以将草甘膦转化为非植物毒性的代谢产物。 gat基因源自自然存在的土壤细菌,并通过重复基因改组和筛选进行优化。对ALS抑制性除草剂的抗性机制是对所有五类ALS除草剂均不敏感的双突变,高抗性ALS(HRA)。 GAT / HRA作物将保持对选择性除草剂的自然耐受性,从而为种植者提供更多杂草管理选择,以帮助阻止杂草光谱变化并延缓抗除草剂杂草的进化。

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