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Performance of a Newly Isolated Salt-Tolerant Yeast Strain Sterigmatomyces halophilus SSA-1575 for Azo Dye Decolorization and Detoxification

机译:用于氮杂染料脱色和排毒的新分离的耐盐酵母菌菌株菌株STIGMATOMYCESSSA-1575

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摘要

The effective degradation of hazardous contaminants remains an intractable challenge in wastewater processing, especially for the high concentration of salty azo dye wastewater. However, some unique yeast symbionts identified from the termite gut system present an impressive function to deconstruct some aromatic compounds, which imply that they may be valued to work on the dye degradation for various textile effluents. In this investigation, a newly isolated and unique yeast strain, Sterigmatomyces halophilus SSA-1575, was identified from the gut system of a wood-feeding termite (WFT), Reticulitermes chinensis. Under the optimized ambient conditions, the yeast strain SSA-1575 showed a complete decolorization efficiency on Reactive Black 5 (RB5) within 24 h, where this azo dye solution had a concentration of a 50 mg/L RB5. NADH-dichlorophenol indophenol (NADH-DCIP) reductase and lignin peroxidase (LiP) were determined as the key reductase and oxidase of S. halophilus SSA-1575. Enhanced decolorization was recorded when the medium was supplemented with carbon and energy sources, including glucose, ammonium sulfate, and yeast extract. To understand a possible degradation pathway well, UV-Vis spectroscopy, FTIR and Mass Spectrometry analyses were employed to analyze the possible decolorization pathway by SSA-1575. Determination of relatively high NADH-DCIP reductase suggested that the asymmetric cleavage of RB5 azo bond was mainly catalyzed by NADH-DCIP reductase, and finally resulting in the formation of colorless aromatic amines devoid of any chromophores. The ecotoxicology assessment of RB5 after a decolorization processing by SSA-1575, was finally conducted to evaluate the safety of its metabolic intermediates from RB5. The results of Microtox assay indicate a capability of S. halophilus SSA-1575, in the detoxification of the toxic RB5 pollutant. This study revealed the effectiveness of halotolerant yeasts in the eco-friendly remediation of hazardous pollutants and dye wastewater processing for the textile industry.
机译:危险污染物的有效降解仍然是废水加工中的顽固挑战,特别是对于高浓度的咸偶氮染料废水。然而,从白蚁肠道系统中鉴定的一些独特的酵母共生存在令人印象深刻的功能来解构一些芳族化合物,这意味着它们可以估值以对各种织物流出物的染料降解工作。在该研究中,从木材饲养白蚁(WFT)的肠道系统中,鉴定了新分离和独特的酵母菌菌株,刺激玉米菌菌株SSA-1575。在优化的环境条件下,酵母菌菌株SSA-1575在24小时内显示出对反应性黑5(RB5)的完全脱色效率,其中该AZO染料溶液的浓度为50mg / L RB5。 NADH-二氯苯酚靛蓝醇(NADH-DCIP)还原酶和木质素过氧化物酶(唇)被确定为SSA-1575的关键还原酶和氧化酶。当培养基补充碳和能源时,记录增强的脱色,包括葡萄糖,硫酸铵和酵母提取物。为了了解可能的降解途径良好,使用UV-Vis光谱,FTIR和质谱分析来分析SSA-1575可能的脱色途径。相对高的NADH-DCIP还原酶的测定表明RB5偶氮键的不对称切割主要由NADH-DCIP还原酶催化,最后导致形成无色芳族胺,其缺乏任何发色团。通过SSA-1575脱色处理后RB5的生态毒理学评估最终进行了评估其代谢中间体从RB5的安全性。 Microotox测定结果表明,在毒性RB5污染物的排毒中,SSA-Halophilus SSA-1575的能力。本研究揭示了Halotolerant酵母在纺织工业生态友好污染物和染料废水加工中的生态友好修复中的有效性。

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