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液泡中草甘膦隔离与来自澳大利亚、南美洲和欧洲的黑麦草(Lolium spp.)的草甘膦抗性有关:31P NMR 研究。

Vacuolar glyphosate-sequestration correlates with glyphosate resistance in ryegrass (Lolium spp.) from Australia, South America, and Europe: a 31P NMR investigation.

机构信息

Department of Chemistry, Washington University, St. Louis, Missouri 63130, United States.

出版信息

J Agric Food Chem. 2012 Feb 8;60(5):1243-50. doi: 10.1021/jf203472s. Epub 2012 Jan 26.

Abstract

Lolium spp., ryegrass, variants from Australia, Brazil, Chile, and Italy showing differing levels of glyphosate resistance were examined by (31)P NMR. Extents of glyphosate (i) resistance (LD(50)), (ii) inhibition of 5-enopyruvyl-shikimate-3-phosphate synthase (EPSPS) activity (IC(50)), and (iii) translocation were quantified for glyphosate-resistant (GR) and glyphosate-sensitive (GS) Lolium multiflorum Lam. variants from Chile and Brazil. For comparison, LD(50) and IC(50) data for Lolium rigidum Gaudin variants from Italy were also analyzed. All variants showed similar cellular uptake of glyphosate by (31)P NMR. All GR variants showed glyphosate sequestration within the cell vacuole, whereas there was minimal or no vacuole sequestration in the GS variants. The extent of vacuole sequestration correlated qualitatively with the level of resistance. Previous (31)P NMR studies of horseweed ( Conyza canadensis (L.) Cronquist) revealed that glyphosate sequestration imparted glyphosate resistance. Data presented herein suggest that glyphosate vacuolar sequestration is strongly contributing, if not the major contributing, resistance mechanism in ryegrass as well.

摘要

研究了来自澳大利亚、巴西、智利和意大利的具有不同水平草甘膦抗性的梯牧草(Lolium spp.)、黑麦草,并用 (31)P NMR 进行了检测。对来自智利和巴西的具有草甘膦抗性(GR)和草甘膦敏感(GS)的多花黑麦草(Lolium multiflorum Lam.)变体进行了草甘膦(i)抗性(LD50)、(ii)5-烯醇式丙酮酰基莽草酸-3-磷酸合酶(EPSPS)活性抑制(IC50)和(iii)转运的程度的定量分析。为了进行比较,还分析了来自意大利的硬叶狗尾草(Lolium rigidum Gaudin)变体的 LD50 和 IC50 数据。所有变体均通过 (31)P NMR 显示出对草甘膦的相似细胞摄取。所有 GR 变体均显示出草甘膦在细胞液泡内的螯合,而 GS 变体中则很少或没有液泡螯合。液泡螯合的程度与抗性水平定性相关。先前对(31)P NMR 研究的加拿大飞蓬(Conyza canadensis (L.) Cronquist)表明,草甘膦的螯合赋予了草甘膦抗性。本文提供的数据表明,草甘膦液泡螯合是黑麦草抗性的主要贡献机制之一。

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