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In vivo NMR investigations of glyphosate influences on plant metabolism

机译:在对草甘膦对植物代谢的影响的体内NMR研究

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Glyphosate is the world's most widely used herbicide; popular due to its relative low cost, low toxicity, and high efficacy in controlling most common weed species. Genetic engineering of crop seeds to be glyphosate-tolerant has facilitated the modern global agricultural practice whereby both weeds and crops are treated with herbicide, while only the crops survive. However, due to extreme selective pressure, glyphosate-resistant (GR) weed species are now found with increasing frequency in nature, threatening the dominant weed management system used in large-scale agriculture across much of the globe. In vivo NMR studies of plants have facilitated the discovery and understanding of the glyphosate-resistance mechanism of the multi-continent, highly invasive weed species, GR horseweed Conyza canadensis (L.) Cronq. and GR ryegrass (Lolium spp.). This study exemplifies how in vivo NMR spectroscopy can be used to better understand herbicide-associated metabolic alterations observed in living plants, which poses a significant threat to modern agriculture as it is currently practiced. (C) 2018 Elsevier Inc. All rights reserved.
机译:草甘膦是世界上使用最广泛的除草剂;由于其相对低成本,低毒性和控制最常见的杂草物种的疗效高。作物种子的遗传工程是耐草甘膦的促进,促进了现代的全球农业实践,其中杂草和作物都用除草剂治疗,同时只有农作物存活。然而,由于极端的选择性压力,目前在大自然中增加了频率的频率增加,抗丙酸盐(GR)杂草物种,威胁到大量农业的主要杂草管理系统。在体内NMR植物研究方面促进了对多方大陆的草甘膦抗性机制的发现和理解,高度侵入性杂草物种,GR Hotsweed Conyza Canadensis(L.)Cronq。和gr Ryegrass(lolium spp。)。本研究举例说明了在体内NMR光谱中如何用于更好地了解在生活植物中观察到的除草剂相关的代谢改变,这对现代农业构成了重大威胁。 (c)2018年Elsevier Inc.保留所有权利。

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