The role of OsBZR4 as a brassinosteroid-signaling component in mediating atrazine and isoproturon degradation in rice

J Hazard Mater. 2024 Jul 15:473:134625. doi: 10.1016/j.jhazmat.2024.134625. Epub 2024 May 15.

Abstract

Development of a biotechnological system for rapid degradation of pesticides is important to mitigate the environmental, food security, and health risks that they pose. Degradation of atrazine (ATZ) and isoproturon (IPU) in rice crops promoted by the brassinosteroid (BR) signaling component BRASSINAZOLE RESISTANT4 (OsBZR4) is explored. OsBZR4 is localized in the plasma membrane and nucleus, and is strongly induced by ATZ and IPU exposure. Transgenic rice OsBZR4-overexpression (OE) significantly enhances resistance to ATZ and IPU toxicity, improving growth, and reducing ATZ and IPU accumulation (particularly in grains) in rice crops. Genetic destruction of OsBZR4 (CRISPR/Cas9) increases rice sensitivity and leads to increased accumulation of ATZ and IPU. OE plants promote phase I, II, and III metabolic reactions, and expression of corresponding pesticide degradation genes under ATZ and IPU stress. UPLC-Q-TOF-MS/MS analysis reveals increased relative contents of ATZ and IPU metabolites and conjugates in OE plants, suggesting an increased OsBZR4 expression and consequent detoxification of ATZ and IPU in rice and the environment. The role of OsBZR4 in pesticide degradation is revealed, and its potential application in enhancing plant resistance to pesticides, and facilitating the breakdown of pesticides in rice and the environment, is discussed.

Keywords: Brassinosteroid; Detoxification; Metabolism; Pesticide; Phytoremediation; Rice.

MeSH terms

  • Atrazine* / metabolism
  • Atrazine* / toxicity
  • Biodegradation, Environmental
  • Brassinosteroids* / metabolism
  • Gene Expression Regulation, Plant / drug effects
  • Herbicides / metabolism
  • Herbicides / toxicity
  • Oryza* / drug effects
  • Oryza* / genetics
  • Oryza* / growth & development
  • Oryza* / metabolism
  • Phenylurea Compounds* / metabolism
  • Phenylurea Compounds* / pharmacology
  • Plant Proteins / genetics
  • Plant Proteins / metabolism
  • Plants, Genetically Modified*
  • Signal Transduction / drug effects

Substances

  • Phenylurea Compounds
  • Brassinosteroids
  • isoproturon
  • Atrazine
  • Plant Proteins
  • Herbicides