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Pathway and Molecular Mechanisms for Malachite Green Biodegradation in Exiguobacterium sp. MG2

机译:Exiguobacterium sp。中孔雀石绿色生物降解的途径和分子机制。 MG2

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摘要

Malachite green (MG), N-methylated diaminotriphenylmethane, is one of the most common dyes in textile industry and has also been used as an effective antifungal agent. However, due to its negative impact on the environment and carcinogenic effects to mammalian cells, there is a significant interest in developing microbial agents to degrade this type of recalcitrant molecules. Here, an Exiguobacterium sp. MG2 was isolated from a river in Yunnan Province of China as one of the best malachite green degraders. This strain had a high decolorization capability even at the concentration of 2500 mg/l and maintained its stable activity within the pH range from 5.0 to 9.0. High-pressure liquid chromatography, liquid chromatography-mass spectrometry and gas chromatography–mass spectrometry were employed to detect the catabolic pathway of MG. Six intermediate products were identified and a potential biodegradation pathway was proposed. This pathway involves a series of reactions of N-demethylation, reduction, benzene ring-removal, and oxidation, which eventually converted N-methylated diaminotriphenylmethane into N, N-dimethylaniline that is the key precursor to MG. Furthermore, our molecular biology experiments suggested that both triphenylmethane reductase gene tmr and cytochrome P450 participated in MG degradation, consistent with their roles in the proposed pathway. Collectively, our investigation is the first report on a biodegradation pathway of triphenylmethane dye MG in bacteria.
机译:孔雀石绿(MG),N-甲基化的二氨基三苯甲烷,是纺织工业中最常见的染料之一,也已被用作有效的抗真菌剂。但是,由于其对环境的不利影响和对哺乳动物细胞的致癌作用,人们非常关注开发可降解这种难降解分子的微生物制剂。在这里,一种Exiguobacterium sp.。 MG2是从中国云南省的一条河流中分离出来的,是最好的孔雀石绿降解剂之一。该菌株即使在2500mg / l的浓度下也具有高脱色能力,并且在5.0至9.0的pH范围内保持其稳定的活性。采用高压液相色谱法,液相色谱-质谱法和气相色谱-质谱法检测MG的分解代谢途径。确定了六个中间产物,并提出了潜在的生物降解途径。该途径涉及N-去甲基化,还原,苯环去除和氧化的一系列反应,最终将N-甲基化的二氨基三苯甲烷转化为N,N-二甲基苯胺,其是MG的关键前体。此外,我们的分子生物学实验表明,三苯基甲烷还原酶基因tmr和细胞色素P450均参与了MG降解,与其在拟议途径中的作用一致。总的来说,我们的研究是关于细菌中三苯甲烷染料MG生物降解途径的首次报道。

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