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外源甘氨酸甜菜碱对水稻中乙氧氟草醚多相代谢的协同作用及其降低环境风险的机制研究

Insights into the synergistic effects of exogenous glycine betaine on the multiphase metabolism of oxyfluorfen in Oryza sativa for reducing environmental risks.

作者信息

Chen Zhao Jie, Shi Xu Zhen, Qu Ya Nan, Li Si Ying, Ai Gan, Wang Yi Zhuo, Zeng Li Qing, Liu Xiao Liang, Li Xuesheng, Wang Yan Hui

机构信息

Guangxi Key Laboratory of Agric-Environment and Agric-Products Safety, College of Agriculture, Guangxi University, Nanning, Guangxi 530004, China.

Guangxi Key Laboratory of Agric-Environment and Agric-Products Safety, College of Agriculture, Guangxi University, Nanning, Guangxi 530004, China.

出版信息

J Hazard Mater. 2025 Jul 5;491:137970. doi: 10.1016/j.jhazmat.2025.137970. Epub 2025 Mar 19.

Abstract

Glycine betaine (GB), a secondary metabolite that regulates plant responses to biotic and abiotic stresses, may help reduce pesticide phytotoxicity, but this fact remains unestablished. This study investigated the physiological response of rice (Oryza sativa) to six dosages of oxyfluorfen (OFF) (0-0.25 mg/L) and two concentrations of GB (0 and 175 mg/L). GB treatment counteracted the considerable decrease in rice seedling growth caused by OFF treatment at doses higher than 0.15 mg/L. The biochemical processes and catalytic events associated with OFF-triggered degradation in rice were investigated using RNA-Seq-LC-Q-TOF-HRMS/MS after six rice root and shoot libraries were created and subjected to either OFF or OFF-GB. Rice treated with both GB and an ecologically relevant dose of OFF showed a marked upregulation of 1039 root genes and 111 shoot genes compared with those treated with OFF alone. Multiple OFF-degradative enzymes implicated in molecular metabolism and xenobiotic tolerance to environmental stress were identified by gene enrichment analysis. In comparison to treated with 0.25 mg/L OFF alone, exogenous GB administration decreased OFF accumulation, with the OFF concentration in roots being 44.47 % and in shoots being 51.03 %. The production of essential enzymes involved in the OFF decay process was attributed to certain genes with variable expression, including cytochrome P450, methyltransferase, glycosyltransferases, and acetyltransferases. Using LC-Q-TOF-HRMS/MS, 3 metabolites and 16 conjugates were identified in metabolic pathways including hydrolysis, acetylation, glycosylation, and interaction with amino acids in order to enhance OFF-degradative metabolism. All things considered, by reducing phytotoxicity and OFF buildup, external GB treatment can increase rice's resistance to oxidative stress caused by OFF. This study offers valuable insights into the function of GB in enhancing OFF degradation, which may have ramifications for designing genotypes that maximize OFF accumulation in rice crops and promote OFF degradation in paddy crops.

摘要

甘氨酸甜菜碱(GB)是一种调节植物对生物和非生物胁迫反应的次生代谢产物,可能有助于降低农药的植物毒性,但这一事实尚未得到证实。本研究调查了水稻(Oryza sativa)对六种剂量的乙氧氟草醚(OFF)(0 - 0.25毫克/升)和两种浓度的GB(0和175毫克/升)的生理反应。GB处理抵消了高于0.15毫克/升剂量的OFF处理导致的水稻幼苗生长显著下降。在创建了六个水稻根和地上部分文库并分别用OFF或OFF - GB处理后,使用RNA - Seq - LC - Q - TOF - HRMS/MS研究了与水稻中OFF引发的降解相关的生化过程和催化事件。与单独用OFF处理的水稻相比,同时用GB和生态相关剂量的OFF处理的水稻,其根中有1039个基因和地上部分有111个基因显著上调。通过基因富集分析鉴定了多种参与分子代谢和对环境胁迫的异源物质耐受性的OFF降解酶。与单独用0.25毫克/升OFF处理相比,外源施用GB降低了OFF的积累,根中OFF浓度降低了44.47%,地上部分降低了51.03%。参与OFF降解过程的必需酶的产生归因于某些表达可变的基因,包括细胞色素P450、甲基转移酶、糖基转移酶和乙酰转移酶。使用LC - Q - TOF - HRMS/MS,在包括水解、乙酰化、糖基化以及与氨基酸相互作用的代谢途径中鉴定出3种代谢物和16种共轭物,以增强OFF的降解代谢。综上所述,通过降低植物毒性和OFF积累,外部GB处理可以提高水稻对OFF引起的氧化应激的抗性。本研究为GB在增强OFF降解中的作用提供了有价值的见解,这可能对设计使水稻作物中OFF积累最大化并促进稻田作物中OFF降解的基因型具有影响。

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