Biotransformation of nitro aromatic amines in artificial alkaline habitat by pseudomonas DL17.

Environmental analysis, health and toxicology Pub Date : 2022-03-01 Epub Date: 2022-02-03 DOI:10.5620/eaht.2022001
Vasudeo Sarwade, Sharad Funde
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Abstract

Nitro-aromatics are listed in carcinogenic, teratogenic, and mutagenic compounds list. p- nitro-aniline is one of them used as a precursor of various chemical compounds in many industries like dyes, drugs, paints and several others. These are mostly given out as an effluent in rivers, lakes or open passage of land which exert several hazards to living creatures and environment. Some of the organic compounds are stable in alkaline condition and persist longer in environment. Very few reports are elaborating bio-remediation in alkaline condition using different hydrocarbons. This study was planned to elaborate mechanism of detoxification and searching the potential of decontamination of p-nitro-aniline in alkaline condition by experimental microbial strain. The bacterial strain pseudomonas DL17 was isolated from alkaline Lake Lonar, Buldana, (MS.) India; and employed in this experiment considering its indigenous property to tolerate the alkaline pH. It also showed resistance to p-nitro-aniline with its raising concentrations on testing after adaptation. The experimental microbial stain showed 100% biodegradation of (500 mg/L) p-nitro-aniline within 48h. On shaking incubator with 110 rpm and at 32 °C optimum temperature. The centrifugate obtained after spinning at 10,000 g by cold centrifuge was used for solvent extraction. Generally, ethyl acetate or DCM was used for solvent extraction. The estimation of residual remains of p-nitro aniline by 6h. intervals was carried after removal of flasks from shaking incubator and centrifugation. At the optimum temperature and pH experiments were carried after knowing the resistance to experimental contaminant range (100-400 mg/L) of p-nitro aniline one month and further extended to 500 mg/L for 15days more. The residual metabolites were purified by column chromatography and various spectrometric studies such as UV-Vis spectroscopy, HNMR, FTIR and GCMS revealed that p-Phenylenediamine, acetanilide, aniline, acetaminophen, catechol, p-bezoquinone, cis-cis muconate as a metabolites. On the basis of the metabolites isolated and characterized by different spectroscopic studies the bio-catalytic mechanism was deduced. The induced enzymes such as nitroreductase, catalase, peroxidase, acetanilide hydroxylase, super oxide dismutase, catechol 1, 2 dioxygenase, catechol 2, 3 dioxygenase has commercial importance in biochemical industries. Induction of such biotransformation enzymes and consumption of p-nitro aniline concentration in experiments makes sure that this microbial strain pseudomonas DL17 can be employed for decontamination of nitro aniline polluted sites as well as isolation of such metabolites characterized and enzymes studied.

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假单胞菌DL17在人工碱性环境中对硝基芳香胺的生物转化。
硝基芳香族化合物被列入致癌、致畸和致突变化合物清单。对硝基苯胺是其中一种,在染料、药物、油漆等许多工业中被用作各种化合物的前体。这些物质大多作为污水排放到河流、湖泊或开阔的土地上,对生物和环境造成了一些危害。有些有机化合物在碱性条件下是稳定的,在环境中存留时间较长。在碱性条件下利用不同碳氢化合物进行生物修复的报道很少。本研究旨在阐明对硝基苯胺在碱性条件下的解毒机理,探索实验菌株对硝基苯胺的去污潜力。假单胞菌DL17分离自印度布尔达纳(ms) Lonar碱性湖;考虑到其耐碱性的特性,在本试验中选用了它。在适应后的测试中,它对对硝基苯胺也表现出抗性,其浓度升高。实验微生物染色显示(500 mg/L)对硝基苯胺在48h内生物降解率100%。在摇培养箱上,转速为110转,最佳温度为32℃。冷离心10000 g旋转得到的离心分离机用于溶剂萃取。一般采用乙酸乙酯或DCM进行溶剂萃取。6h对硝基苯胺残留量的估计。从摇瓶培养箱中取出烧瓶并离心后进行间隔测定。在最适温度和pH条件下,对硝基苯胺的耐实验范围(100-400 mg/L)为1个月,再延长至500 mg/L为15天。通过柱层析和紫外-可见光谱、核磁共振、红外光谱、气相色谱等多种光谱分析方法对残留代谢物进行了纯化,发现代谢物为对苯二胺、乙酰苯胺、苯胺、对乙酰氨基酚、儿茶酚、对苯醌、顺-顺式黏液酸酯。根据分离得到的代谢物和不同光谱的表征,推断了生物催化机理。硝基还原酶、过氧化氢酶、过氧化物酶、乙酰苯胺羟化酶、超氧化物歧化酶、儿茶酚1,2双加氧酶、儿茶酚2,3双加氧酶等诱导酶在生化工业中具有重要的商业意义。实验中对这些生物转化酶的诱导和对硝基苯胺浓度的消耗,确保了该菌株假单胞菌DL17可以用于硝基苯胺污染部位的净化,以及对这些代谢产物和酶的分离。
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