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首页> 外文期刊>ACS Omega >Franconibacter sp., 1MS: A New Strain in Decolorization and Degradation of Azo Dyes Ponceau S Red and Methyl Orange
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Franconibacter sp., 1MS: A New Strain in Decolorization and Degradation of Azo Dyes Ponceau S Red and Methyl Orange

机译:FrancoNibacter Sp。,1ms:偶氮染料Ponce S红色和甲基橙的脱色和降解的新菌株

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The aim of the present study is focused on the decolorization and degradation of azo dyes Ponceau S Red and Methyl Orange by a bacterial strain isolated from the gold mining district of San Martin de Loba, South of Bolivar (Colombia) sediment samples and identified as Franconibacter sp. 1MS (GenBank: MT568543) based on phenotypic and genotypic methods. A higher percentage of decolorization at 100 mg/L concentration, 37 °C, and pH 7 was recorded at 120 h of incubation period for both dyes. The UV–vis, Fourier transform infrared spectroscopy, and gas chromatography–mass spectrometry analysis of the original dyes and their degraded metabolites confirmed that the decolorization was due to degradation. The proposed metabolic pathways for biodegradation of both dyes have been elucidated, which showed the formation of five intermediate metabolites, namely, N ,N -dimethylbenzyl-1,4-diamine, sulfonamide, 1,4-diaminobenzene, 2,5-diaminobenzenesulfonic acid, and 1-amino-2-naphthol, which are not only highly toxic but also be able to be converted through metabolic activation into mutagenic, carcinogenic, and/or teratogenic species. The phytotoxicity studies of the original dye and degraded metabolites were tested on Phaseolus vulgaris and divulged that the degraded metabolites have toxic effects. An effective phytostimulation was observed in Ponceau S Red, which could be attributed to its capacity for enrichment of the culture medium with essential nutrients, a favorable environment for the growth of the plant.
机译:本研究的目的是通过从玻利维尔南部的圣马丁德洛巴州的金矿区矿区分离的细菌菌株分离的细菌菌株来集中于偶氮染料Poncea S红色和甲基橙的脱色和降解,并被鉴定为<我> FrancoNibacter SP。基于表型和基因型方法,1ms(Genbank:MT568543)。在100mg / L浓度下,37℃和pH7的脱色较高的脱色百分比以120小时记录两种染料的培养期。原始染料的UV-VIER,傅里叶变换红外光谱和气相色谱 - 质谱分析及其降解代谢物证实脱色是由于降解。已经阐明了用于两种染料的生物降解的所提出的代谢途径,其表明形成五种中间代谢物,即, N, N-二甲基苄基-1,4-二胺,磺酰胺,1,4-二氨基苯, 2,5-二氨基苯磺酸和1-氨基-2-萘酚,这不仅具有高度毒性,而且能够通过代谢活化转化为突变,致癌和/或致畸物种。原始染料和降解代谢物的植物毒性研究在寻常的情况下测试并泄露,降解的代谢物具有毒性作用。在Ponceae S Red中观察到有效的植物刺激,这可能归因于其具有基本营养素的富集培养基的能力,是植物生长的有利环境。

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