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Benzoxazinone-Mediated Triazine Degradation: A Proposed Reaction Mechanism

机译:苯并恶嗪酮介导的三嗪降解:建议的反应机理

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The role of benzoxazinones (Bx, 2-hydroxy-2H-1,4-benzoxazin-3(4H)-one) in triazine resistance in plants has been studied for over half a century. In this research, fundamental parameters of the reaction between DIBOA-Glc (2-beta-D-glucopyranosyloxy-4-hydroxy-1,4-benzoxazin-3-one) and atrazine (ATR, 6-chloro-N-ethyl-N'-(1-methylethyl)-1,3,5-triazine-2,4-diamine) were examined. Through a series of experiments employing a variety of chromatographic and spectroscopic techniques, the DIBOA-Glc/ATR reaction was characterized in terms of reactant and product kinetics, stoichiometry, identification of a reaction intermediate, and reaction products formed. Results of these experiments demonstrated that the reaction mechanism proceeds via nucleophilic attack of the hydroxamic acid moiety of DIBOA-Glc at the C-2 position of the triazine ring to form hydroxyatrazine (HA, 2-hydroxy-4-ethylamino-6-isopropylamino-s-triazine), with associated degradation of DIBOA-Glc. Degradation of reactants followed first-order kinetics with a noncatalytic role of DIBOA-Glc. A reaction intermediate was identified as a DIBOA-Glc-HA conjugate, indicating a 1:1 DIBOA-Glc:ATR stoichiometry. Reaction products included HA and Cl-, but definitive identification of DIBOA-Glc reaction product(s) was not attained. With these reaction parameters elucidated, DIBOA-Glc can be evaluated in terms of its potential for a myriad of applications, including its use to address the problem of widespread ATR contamination of soil and water resources.
机译:苯并恶嗪酮(Bx,2-羟基-2H-1,4-苯并恶嗪-3(4H)-one)在植物对三嗪的抗性中的作用已研究了半个多世纪。在这项研究中,DIBOA-Glc(2-β-D-吡喃葡萄糖基氧基-4-羟基-1,4-苯并恶嗪-3-酮)与at去津(ATR,6-氯-N-乙基-N)之间反应的基本参数检查了'-(1-甲基乙基)-1,3,5-三嗪-2,4-二胺)。通过一系列采用各种色谱和光谱技术的实验,根据反应物和产物动力学,化学计量,反应中间体的鉴定和形成的反应产物对DIBOA-Glc / ATR反应进行了表征。这些实验的结果表明,反应机理是通过DIBOA-Glc的异羟肟酸部分在三嗪环的C-2位上的亲核攻击而形成的,形成羟基阿特拉津(HA,2-hydroxy-4-ethylamino-6-isopropylamino- s-triazine),以及相关的DIBOA-Glc降解。反应物的降解遵循一级动力学,具有DIBOA-Glc的非催化作用。反应中间体被鉴定为DIBOA-Glc-HA缀合物,表明1:1的DIBOA-Glc:ATR化学计量。反应产物包括HA和Cl-,但未明确鉴定DIBOA-Glc反应产物。通过阐明这些反应参数,可以评估DIBOA-Glc在众多应用中的潜力,包括其用于解决土壤和水资源广泛ATR污染的问题。

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