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拟南芥中TNT的植物转化途径特征:芳香羟胺的作用

TNT phytotransformation pathway characteristics in Arabidopsis: role of aromatic hydroxylamines.

作者信息

Subramanian Murali, Oliver David J, Shanks Jacqueline V

机构信息

Department of Chemical and Biological Engineering, Iowa State University, Ames, Iowa 50011, USA.

出版信息

Biotechnol Prog. 2006 Jan-Feb;22(1):208-16. doi: 10.1021/bp050241g.

Abstract

Basic knowledge of the plant transformation pathways of TNT will aid phytoremediation design and assessment. While TNT transformation by plant metabolism has been demonstrated in previous studies, the presence and role of hydroxylamines in the transformation pathway has not been sufficiently understood. Hydroxylamines are unequivocally shown to be formed by plant transformation of TNT by two axenic plant systems (Arabidopsis thaliana and Catharanthusroseus). In addition, confirmation was obtained for conversion of these hydroxylamines to previously identified conjugates. Further characteristics of TNT transformation in Arabidopsis, an increasingly popular model system for genetic and biochemical studies of TNT transformation, were elucidated by [U-14C]TNT mass balance studies and metabolite feeding studies. These studies showed the rapid conversion of TNT to unextractable bound compounds by Arabidopsis seedlings in agreement with the green-liver model. Arabidopsis seedlings formed and transformed 4-substituted metabolites more efficiently than the 2-substituted metabolites. A qualitative kinetic rate analysis of the pathway was performed to propose rate-limiting steps in the pathway and theoretical schemes for improved rates are suggested.

摘要

三硝基甲苯(TNT)植物转化途径的基础知识将有助于植物修复的设计和评估。虽然先前的研究已经证明了植物代谢对TNT的转化作用,但对转化途径中羟胺的存在及其作用尚未有充分的了解。通过两个无菌植物系统(拟南芥和长春花)明确表明,羟胺是由植物对TNT的转化形成的。此外,还证实了这些羟胺可转化为先前鉴定出的共轭物。通过[U-14C]TNT质量平衡研究和代谢物饲喂研究,进一步阐明了拟南芥中TNT转化的其他特征,拟南芥是一种越来越受欢迎的用于TNT转化遗传和生化研究的模型系统。这些研究表明,拟南芥幼苗能将TNT快速转化为不可提取的结合化合物,这与“绿色肝脏”模型一致。拟南芥幼苗形成并转化4-取代代谢物的效率高于2-取代代谢物。对该途径进行了定性动力学速率分析,以提出该途径中的限速步骤,并给出了提高速率的理论方案。

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