Henan Key Laboratory for Creation and Application of New Pesticides, College of Plant Protection, Henan Agricultural University, Zhengzhou 450002, China.
Green Catalysis Center, College of Chemistry, Zhengzhou University, Zhengzhou 450001, China.
J Agric Food Chem. 2021 Nov 10;69(44):12974-12984. doi: 10.1021/acs.jafc.1c04725. Epub 2021 Nov 1.
Fluensulfone (FSF) becomes increasingly popular because of its nonfumigation application method. However, studies on the metabolic mechanism of FSF in plants are lacking. Here, tomato seedling was cultivated in hydroponic media to investigate the connection among FSF's metabolism in tomato, the regulation of tomato endogenous glycosides, and the elimination of hydrogen peroxide in tomato cells. The accumulation of FSF was only detected in the lower stems of tomatoes; FSF was mainly metabolized into -glycosylated conjugates in the roots, and the roots were the tissues with the highest metabolite content; and no FSF and metabolites were detected in the upper leaves. In response to FSF stress (2 mg/L for 7 d), the content of sugar and glycosides in the stems of tomato seedlings significantly increased. The amount of some compounds on the pathway related to glucose was affected by FSF. The three precursor compounds (homomethioine, isoleucine, and l-tyrosine) in the pathway of glucosinolate biosynthesis increased significantly under the stress of FSF, which indicates that FSF may compete with them for UGT74B1. Besides, FSF-induced flavonoid glycosides may play a role in the process of removing hydrogen peroxide. This research provides inspiration for the fate of many xenobiotics containing sulfonyl groups in plants.
氟磺隆(FSF)因其非熏蒸的应用方法而变得越来越受欢迎。然而,关于 FSF 在植物中的代谢机制的研究还很缺乏。本研究以番茄幼苗为试材,采用水培的方式,探讨了 FSF 在番茄中的代谢、番茄内源性糖苷的调控以及番茄细胞中过氧化氢的消除之间的关系。FSF 的积累仅在番茄的下茎中被检测到;FSF 主要在根部代谢为 -糖苷化的轭合物,且根部是代谢物含量最高的组织;在上叶中未检测到 FSF 和代谢物。在 FSF 胁迫(2mg/L 处理 7d)下,番茄幼苗茎中的糖和糖苷含量显著增加。FSF 还影响了与葡萄糖相关的途径中的一些化合物的含量。在葡萄糖苷生物合成途径中,三种前体化合物(同型蛋氨酸、异亮氨酸和 l-酪氨酸)在 FSF 胁迫下显著增加,这表明 FSF 可能与其竞争 UGT74B1。此外,FSF 诱导的类黄酮糖苷可能在清除过氧化氢的过程中发挥作用。该研究为许多含磺酰基的外源化学物质在植物中的命运提供了启示。