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Aerobic biotransformation of 2,4-dinitroanisole in soil and soil Bacillus sp.

机译:土壤和土壤芽孢杆菌中2,4-二硝基苯甲醚的有氧生物转化

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2,4-Dinitroanisole (DNAN) is a low sensitive melt-cast chemical being tested by the Military Industry as a replacement for 2,4,6-trinitrotoluene (TNT) in explosive formulations. Little is known about the fate of DNAN and its transformation products in the natural environment. Here we report aerobic biotransformation of DNAN in artificially contaminated soil microcosms. DNAN was completely transformed in 8 days in soil slurries supplemented with carbon and nitrogen sources. DNAN was completely transformed in 34 days in slurries supplemented with carbons alone and persisted in unamended microcosms. A strain of Bacillus (named 13G) that transformed DNAN by co-metabolism was isolated from the soil. HPLC and LC–MS analyses of cell-free and resting cell assays of Bacillus 13G with DNAN showed the formation of 2-amino-4-nitroanisole as the major end-product via the intermediary formation of the arylnitroso (ArNO) and arylhydroxylamino (ArNHOH) derivatives, indicating regioselective reduction of the ortho-nitro group. A series of secondary reactions involving ArNO and ArNHOH gave the corresponding azoxy- and azo-dimers. Acetylated and demethylated products were identified. Overall, this paper provides the evidence of fast DNAN transformation by the indigenous microbial populations of an amended soil with no history of contamination with explosives and a first insight into the aerobic metabolism of DNAN by the soil isolate Bacillus 13G.
机译:2,4-二硝基苯甲醚(DNAN)是一种低敏感度的熔铸化学品,已由军工公司进行了测试,可替代炸药配方中的2,4,6-三硝基甲苯(TNT)。对DNAN及其在自然环境中的转化产物的命运知之甚少。在这里,我们报告在人工污染的土壤微观世界中DNAN的需氧生物转化。 DNAN在补充碳和氮源的土壤泥浆中经过8天的完全转化。在仅添加碳的浆液中,DNAN可以在34天之内完全转化,并且可以在未修改的微观世界中持续存在。从土壤中分离出了通过共代谢转化DNAN的芽孢杆菌菌株(命名为13G)。用DNAN对芽孢杆菌13G进行的无细胞和静息细胞分析的HPLC和LC-MS分析表明,通过中间形成芳基亚硝基(ArNO)和芳基羟胺基(ArNHOH),形成了2-氨基-4-硝基茴香醚作为主要终产物。 )衍生物,表明邻硝基的区域选择性还原。涉及ArNO和ArNHOH的一系列二级反应产生了相应的a氧基和偶氮二聚体。鉴定出乙酰化和去甲基化产物。总体而言,本文提供了经过改良的土壤中原生微生物种群快速进行DNAN转化的证据,没有爆炸物污染的历史,并且首次认识到土壤13C分离芽孢杆菌对DNAN的需氧代谢。

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