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February 25, 2026Proceedings of the National Academy of Sciences4 citations

Glycosylation of glyphosate drives residue reduction and herbicide tolerance in rice

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FYFan YangBLBin LiWZWentao Zhou

Key Points

  • The aim is to explore glyphosate glycosylation in rice and its role in enhancing herbicide tolerance.
  • Identified glyphosate-tolerant rice variety Kitaake
  • Analyzed UGT gene expression associated with glyphosate tolerance
  • Conducted molecular-docking analysis of UGT proteins with glyphosate
  • Examined GRGT1 protein localization and function in glyphosate metabolism
  • Tested overexpression of GRGT1 in Nipponbare to assess herbicide tolerance
  • Identified seven up-regulated UGT genes linked to glyphosate tolerance
  • GRGT1 deletion enhances expression leading to increased glycosylation of glyphosate
  • Rice lines with GRGT1–GFP can produce glycosylated glyphosate derivatives
  • Overexpression of GRGT1 in Nipponbare induces glyphosate tolerance through enhanced metabolism

Abstract

Glyphosate is the most widely used herbicide globally, especially due to the extensive cultivation of genetically modified glyphosate-resistant crops. However, its intensive application has raised public concerns about the risks to food safety and human health. Identifying enzymes capable of metabolizing glyphosate in plants represents an ideal strategy for addressing this issue, but few are known. Here, we identified the rice variety Kitaake with natural tolerance to glyphosate and demonstrated that this tolerance is driven by glyphosate glycosylation metabolism. Seven up-regulated UDP-dependent glycosyltransferase ( UGT ) genes associated with glyphosate tolerance were identified in Kitaake. Molecular-docking analysis indicated that these UGT proteins have moderate binding affinity for glyphosate. Among these, a deletion of an adenine at position –803 in the promoter region of GLYPHOSATE RESPONSIVE GLYCOSYLTRANSFERASE 1 ( GRGT1 ) enhances its expression in Kitaake. GRGT1 localizes to the endoplasmic reticulum and catalyzes glyphosate glycosylation both in vivo and in vitro. Rice lines complemented with GRGT1–GFP rescue the inability of grgt1 knockout mutants to produce glycosylated glyphosate derivatives. Overexpression of GRGT1 in the susceptible Nipponbare cultivar confers glyphosate tolerance by up-regulating glyphosate metabolism to produce glycosylated glyphosate derivatives M329, M331, and M345. This provides a strategy for developing herbicide-tolerant crops, but also offers a potential approach to consequently reduce glyphosate residues in crops.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/699e9152f5123be5ed04ed36https://doi.org/10.1073/pnas.2516099123
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