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利用木质素共培养白腐真菌的高效偶氮染料生物脱色系统

Efficient Azo Dye Biodecolorization System Using Lignin-Co-Cultured White-Rot Fungus.

作者信息

Sun Su, Liu Pengyang, Ullah Mati

机构信息

College of Urban Construction, Wuchang Shouyi University, Wuhan 430064, China.

Key Laboratory of Molecular Biophysics of MOE, Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074, China.

出版信息

J Fungi (Basel). 2023 Jan 7;9(1):91. doi: 10.3390/jof9010091.

Abstract

The extensive use of azo dyes by the global textile industry induces significant environmental and human health hazards, which makes efficient remediation crucial but also challenging. Improving dye removal efficiency will benefit the development of bioremediation techniques for textile effluents. In this study, an efficient system for azo dye (Direct Red 5B, DR5B) biodecolorization is reported, which uses the white-rot fungus EN2 and alkali lignin. This study suggests that the decolorization of DR5B could be effectively enhanced (from 40.34% to 95.16%) within 48 h in the presence of alkali lignin. The dye adsorption test further confirmed that the alkali-lignin-enhanced decolorization of DR5B was essentially due to biodegradation rather than physical adsorption, evaluating the role of alkali lignin in the dye biodegradation system. Moreover, the gas chromatography/mass spectrometry analysis and DR5B decolorization experiments also indicated that alkali lignin carried an excellent potential for promoting dye decolorization and displayed a significant role in improving the activity of lignin-modifying enzymes. This was mainly because of the laccase-mediator system, which was established by the induced laccase activity and lignin-derived small aromatic compounds.

摘要

全球纺织行业对偶氮染料的广泛使用引发了重大的环境和人类健康危害,这使得高效修复至关重要但也具有挑战性。提高染料去除效率将有利于纺织废水生物修复技术的发展。在本研究中,报道了一种利用白腐真菌EN2和碱木质素对偶氮染料(直接红5B,DR5B)进行生物脱色的高效系统。本研究表明,在碱木质素存在的情况下,DR5B的脱色率可在48小时内有效提高(从40.34%提高到95.16%)。染料吸附试验进一步证实,碱木质素增强的DR5B脱色主要是由于生物降解而非物理吸附,评估了碱木质素在染料生物降解系统中的作用。此外,气相色谱/质谱分析和DR5B脱色实验还表明,碱木质素具有促进染料脱色的巨大潜力,并且在提高木质素修饰酶的活性方面发挥了重要作用。这主要是由于由诱导的漆酶活性和木质素衍生的小芳香化合物建立的漆酶-介体系统。

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