School of Life Sciences, Hubei Key Laboratory of Genetic Regulation and Integrative Biology, Central China Normal University, Wuhan 430079, China.
School of Life Sciences, Hubei Key Laboratory of Genetic Regulation and Integrative Biology, Central China Normal University, Wuhan 430079, China.
Ecotoxicol Environ Saf. 2024 Jul 1;279:116450. doi: 10.1016/j.ecoenv.2024.116450. Epub 2024 May 19.
The purpose of this study is to evaluate the decolorization ability and detoxification effect of LAC-4 laccase on various types of single and mixed dyes, and lay a good foundation for better application of laccase in the efficient treatment of dye pollutants. The reaction system of the LAC-4 decolorizing single dyes (azo, anthraquinone, triphenylmethane, and indigo dyes, 17 dyes in total) were established. To explore the decolorization effect of the dye mixture by LAC-4, two dyes of the same type or different types were mixed at the same concentration (100 mg/L) in the reaction system containing 0.5 U laccase, and time-course decolorization were performed on the dye mixture. The combined dye mixtures consisted of azo + azo, azo + anthraquinone, azo + indigo, azo + triphenylmethane, indigo + triphenylmethane, and triphenylmethane + triphenylmethane. The results obtained in this study were as follows. Under optimal conditions of 30 °C and pH 5.0, LAC-4 (0.5 U) can efficiently decolorize four different types of dyes. The 24-hour decolorization efficiencies of LAC-4 for 800 mg/L Orange G and Acid Orange 7 (azo), Remazol Brilliant Blue R (anthraquinone), Bromophenol Blue and Methyl Green (triphenylmethane), and Indigo Carmine (indigo) were 75.94%, 93.30%, 96.56%, 99.94%, 96.37%, and 37.23%, respectively. LAC-4 could also efficiently decolorize mixed dyes with different structures. LAC-4 can achieve a decolorization efficiency of over 80% for various dye mixtures such as Orange G + Indigo Carmine (100 mg/L+100 mg/L), Reactive Orange 16 + Methyl Green (100 mg/L+100 mg/L), and Remazol Brilliant Blue R + Methyl Green (100 mg/L+100 mg/L). During the decolorization process of the mixed dyes by laccase, four different interaction relationships were observed between the dyes. Decolorization efficiencies and rates of the dyes that were difficult to be degraded by laccase could be greatly improved when mixed with other dyes. Degradable dyes could greatly enhance the ability of LAC-4 to decolorize extremely difficult-to-degrade dyes. It was also found that the decolorization efficiencies of the two dyes significantly increased after mixing. The possible mechanisms underlying the different interaction relationships were further discussed. Free, but not immobilized, LAC-4 showed a strong continuous batch decolorization ability for single dyes, two-dye mixtures, and four-dye mixtures with different structures. LAC-4 exhibited high stability, sustainable degradability, and good reusability in the continuous batch decolorization. The LAC-4-catalyzed decolorization markedly reduced or fully abolished the toxic effects of single dyes (azo, anthraquinone, and indigo dye) and mix dyes (nine dye mixtures containing four structural types of dyes) on plants. Our findings indicated that LAC-4 laccase had significant potential for use in bioremediation due to its efficient degradation and detoxification of single and mixed dyes with different structural types.
本研究旨在评估 LAC-4 漆酶对各种单一和混合染料的脱色能力和解毒效果,为更好地将漆酶应用于高效处理染料污染物奠定良好基础。建立了 LAC-4 脱色单一染料(偶氮、蒽醌、三苯甲烷和靛蓝染料,共 17 种染料)的反应体系。为了探索 LAC-4 对染料混合物的脱色效果,在含有 0.5 U 漆酶的反应体系中,以相同浓度(100 mg/L)混合两种相同或不同类型的染料,并对染料混合物进行时间进程脱色。组合染料混合物由偶氮+偶氮、偶氮+蒽醌、偶氮+靛蓝、偶氮+三苯甲烷、靛蓝+三苯甲烷和三苯甲烷+三苯甲烷组成。本研究获得的结果如下。在 30°C 和 pH 5.0 的最佳条件下,LAC-4(0.5 U)可以高效脱色四种不同类型的染料。LAC-4 对 800 mg/L 橙 G 和酸性橙 7(偶氮)、丽春红 Brilliant Blue R(蒽醌)、溴酚蓝和甲绿(三苯甲烷)以及靛蓝(靛蓝)的 24 小时脱色效率分别为 75.94%、93.30%、96.56%、99.94%、96.37%和 37.23%。LAC-4 还可以高效脱色具有不同结构的混合染料。LAC-4 可以实现各种染料混合物(如橙 G+靛蓝(100 mg/L+100 mg/L)、活性橙 16+甲绿(100 mg/L+100 mg/L)和丽春红 Brilliant Blue R+甲绿(100 mg/L+100 mg/L)的脱色效率超过 80%。在漆酶对混合染料的脱色过程中,观察到染料之间存在四种不同的相互作用关系。当与其他染料混合时,可大大提高漆酶难以降解的染料的脱色效率和速率。可生物降解的染料可以极大地提高 LAC-4 对极难降解染料的脱色能力。还发现两种染料混合后脱色效率显著提高。进一步讨论了不同相互作用关系的可能机制。自由的,但不是固定化的,LAC-4 对具有不同结构的单一染料、两种染料混合物和四种染料混合物具有很强的连续批量脱色能力。LAC-4 在连续批量脱色中表现出高稳定性、可持续降解性和良好的可重复使用性。LAC-4 催化的脱色显著降低或完全消除了单一染料(偶氮、蒽醌和靛蓝染料)和混合染料(九种染料混合物,包含四种结构类型的染料)对植物的毒性作用。我们的研究结果表明,由于 LAC-4 漆酶对不同结构类型的单一和混合染料具有高效的降解和解毒能力,因此在生物修复方面具有显著的应用潜力。