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Biotransformation of 3-Methyl-4-nitrophenol,a Main Product of the Insecticide Fenitrothion,by Aspergillus niger

机译:黑曲霉对杀虫剂杀nitro硫磷的主要产物3-甲基-4-硝基苯酚的生物转化

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摘要

Biotransformation of the environmental pollutant 3-methyl-4-nitrophenol(MNP),a newly characterized estrogenic chemical,and the primary breakdown product of the heavily used insecticide fenitrothion was investigated using a common soil fungus.In 96 h,daily culture sacrifice,extraction,and analysis showed that the filamentous fungus,Aspergillus nigerVKM F-1119,removed more than 85% of the MNP present in solution(original concentration = 25 mg/L),mostly through biodegradation.Additionally,in 16-day time-course studies,A.niger was capable of biotransformation of MNP at concentrations as high as 70 mg/L.Gas chromatography mass spectroscopy(MS)analyses of culture fluid extracts indicated the formation of four metabolites:2-methyl-1,4-benzenediol,4-amino-3-methylphenol,and two singly hydroxylated derivatives of MNP.Culture scale up and metabolite analysis by liquid chromatography MS resulted in the confirmation of the original metabolites plus the detection of an azo derivative metabolite that has not been previously reported before during MNP biodegradation by any micro-organisms.
机译:使用一种常见的土壤真菌,研究了一种新近表征的雌激素化学物质环境污染物3-甲基-4-硝基苯酚(MNP)的生物转化以及常用杀虫剂杀虫硫磷的主要分解产物。在96小时内,每天进行培养牺牲,提取分析表明,丝状真菌黑曲霉VKM F-1119去除了溶液中85%以上的MNP(原始浓度= 25 mg / L),主要是通过生物降解。此外,在16天的时间过程研究中尼日尔能够在高达70 mg / L的浓度下对MNP进行生物转化。气相色谱质谱(MS)对培养液提取物的分析表明形成了四种代谢物:2-甲基-1,4-苯二醇,4 -氨基-3-甲基苯酚和两个单核苷酸羟基化的MNP衍生物。通过放大培养和通过液相色谱MS进行代谢物分析,可以确定原始代谢物,并检测出偶氮衍生物代谢物tha之前尚未有任何微生物在MNP生物降解之前报道过t。

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