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一种具有潜在可行性的耐盐酵母A4用于偶氮染料的脱色和解毒及其可能的耐盐机制

A Potentially Practicable Halotolerant Yeast A4 for Decolorizing and Detoxifying Azo Dyes and Its Possible Halotolerance Mechanisms.

作者信息

Feng Yue, Cui Jingru, Xu Bingwen, Jiang Yifan, Fu Chunqing, Tan Liang

机构信息

Key Laboratory of Plant Biotechnology of Liaoning Province, School of Life Science, Liaoning Normal University, Dalian 116081, China.

Dalian Center for Certification and Food and Drug Control, Dalian 116037, China.

出版信息

J Fungi (Basel). 2023 Aug 15;9(8):851. doi: 10.3390/jof9080851.

Abstract

In this study, a halotolerant yeast that is capable of efficiently decolorizing and detoxifying azo dyes was isolated, identified and characterized for coping with the treatment of azo-dye-containing wastewaters. A characterization of the yeast, including the optimization of its metabolism and growth conditions, its detoxification effectiveness and the degradation pathway of the target azo dye, as well as a determination of the key activities of the enzyme, was performed. Finally, the possible halotolerance mechanisms of the yeast were proposed through a comparative transcriptome analysis. The results show that a halotolerant yeast, A4, which could decolorize various azo dyes, was isolated from a marine environment and was identified as . Its optimal conditions for dye decolorization were ≥1.0 g/L of sucrose, ≥0.2 g/L of (NH)SO, 0.06 g/L of yeast extract, pH 6.0, a temperature of 35 °C and a rotation speed of ≥160 rpm. The yeast, A4, degraded and detoxified ARB through a series of steps, relying on the key enzymes that might be involved in the degradation of azo dye and aromatic compounds. The halotolerance of the yeast, A4, was mainly related to the regulation of the cell wall components and the excessive uptake of Na/K and/or compatible organic solutes into the cells under different salinity conditions. The up-regulation of genes encoding Ca-ATPase and casein kinase II as well as the enrichment of KEGG pathways associated with proteasome and ribosome might also be responsible for its halotolerance.

摘要

在本研究中,分离、鉴定并表征了一种能够有效对偶氮染料进行脱色和解毒的耐盐酵母,以应对含偶氮染料废水的处理。对该酵母进行了表征,包括其代谢和生长条件的优化、解毒效果、目标偶氮染料的降解途径以及酶的关键活性测定。最后,通过比较转录组分析提出了该酵母可能的耐盐机制。结果表明,从海洋环境中分离出一种能够对多种偶氮染料进行脱色的耐盐酵母A4,鉴定为[具体名称未给出]。其染料脱色的最佳条件为蔗糖≥1.0 g/L、(NH₄)₂SO₄≥0.2 g/L、酵母提取物0.06 g/L、pH 6.0、温度35℃和转速≥160 rpm。酵母A4通过一系列步骤降解并解毒ARB,依赖于可能参与偶氮染料和芳香化合物降解的关键酶。酵母A4的耐盐性主要与细胞壁成分的调节以及在不同盐度条件下细胞对Na⁺/K⁺和/或相容性有机溶质的过量摄取有关。编码Ca²⁺-ATP酶和酪蛋白激酶II的基因上调以及与蛋白酶体和核糖体相关的KEGG途径富集也可能是其耐盐性的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfae/10456123/2bba52c82470/jof-09-00851-g001.jpg

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