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2,4-二硝基苯甲醚在拟南芥中的代谢和光解。

Metabolism and Photolysis of 2,4-Dinitroanisole in Arabidopsis.

机构信息

Civil & Environmental Engineering, The University of Iowa , Iowa City, Iowa 52242, United States.

Occupational & Environmental Health, The University of Iowa , Iowa City, Iowa 52246, United States.

出版信息

Environ Sci Technol. 2017 Dec 5;51(23):13714-13722. doi: 10.1021/acs.est.7b04220. Epub 2017 Nov 13.

Abstract

New insensitive munitions explosives, including 2,4-dinitroanisole (DNAN), are replacing traditional explosive compounds to protect soldiers and simplify transport logistics. Despite the occupational safety benefits of these new explosives, feasible strategies for cleaning up DNAN from soil and water have not been developed. Here, we evaluate the metabolism of DNAN by the model plant Arabidopsis to determine whether phytoremediation can be used to clean up contaminated sites. Furthermore, we evaluate the role of photodegradation of DNAN and its plant metabolites within Arabidopsis leaves to determine the potential impact of photolysis on the phytoremediation of contaminants. When exposed to DNAN for three days, Arabidopsis took up and metabolized 67% of the DNAN in hydroponic solution. We used high resolution and tandem mass spectrometry in combination with stable-isotope labeled DNAN to confirm ten phase II DNAN metabolites in Arabidopsis. The plants separately reduced both the para- and ortho-nitro groups and produced glycosylated products that accumulated within plant tissues. Both DNAN and a glycosylated metabolite were subsequently photolyzed within leaf tissue under simulated sunlight, and [N]DNAN yielded NO in leaves. Therefore, photolysis inside leaves may be an important, yet under-explored, phytoremediation mechanism.

摘要

新型非敏感弹药炸药,包括 2,4-二硝基苯甲醚(DNAN),正在取代传统爆炸化合物,以保护士兵并简化运输后勤。尽管这些新型炸药具有职业安全效益,但尚未开发出从土壤和水中清理 DNAN 的可行策略。在这里,我们评估了模式植物拟南芥对 DNAN 的代谢作用,以确定植物修复是否可用于清理污染场地。此外,我们评估了 DNAN 及其在拟南芥叶片内的植物代谢物的光降解作用,以确定光解对污染物植物修复的潜在影响。当拟南芥在水培溶液中暴露于 DNAN 三天时,它吸收并代谢了 67%的 DNAN。我们使用高分辨率和串联质谱以及稳定同位素标记的 DNAN 结合使用,在拟南芥中确认了十种 DNAN 代谢物。植物分别还原了对硝基和邻硝基,并产生了在植物组织内积累的糖基化产物。DNAN 和一种糖基化代谢物随后在模拟阳光下在叶片组织内光解,并且[N]DNAN 在叶片中产生了 NO。因此,叶片内的光解可能是一种重要但尚未充分探索的植物修复机制。

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