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首页> 外文期刊>International Biodeterioration & Biodegradation >Optimization of medium for decolorization of Solar golden yellow R direct textile dye by Schizophyllum commune IBL-06
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Optimization of medium for decolorization of Solar golden yellow R direct textile dye by Schizophyllum commune IBL-06

机译:Schizophyllum commune IBL-06对太阳金黄色R直接纺织染料脱色介质的优化

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摘要

The ability of two new white rot fungi Schizophyllum commune IBL-06 and Ganoderma lucidum IBL-05 to decolorize direct dye Solar golden yellow R was investigated using Kirk's basal salts medium. In initial time course study, the maximum decolorization (73%) of Solar golden yellow R was caused by S. commune IBL-06 after 6 days of incubation at pH 4.5 and 35 degrees C. Different parameters like incubation time, pH, temperature, and additional carbon and nitrogen sources were optimized to achieve maximum decolorization of Solar golden yellow R by S. commune IBL-06 in minimum possible time period. Supplementation of the medium with additional carbon sources enhanced dye decolorization to a variable extent. Addition of glucose (1%) gave the best results and caused a dramatic increase in decolorization; complete decolorization (100%) of the dye was achieved after only 2 days of incubation under optimum conditions. All the additional nitrogen sources showed an inhibitory effect on enzyme induction and dye decolorization. Manganese peroxidase (MnP) was found to be the major enzyme (764 U/ml) secreted by S. commune IBL-06 followed by laccase and only a minor activity of lignin peroxidase (LiP). The results suggest an excellent potential of S. commune IBL-06 for dye decolorization that can be enhanced by careful optimization of process parameters.
机译:使用柯克的基础盐培养基研究了两种新的白腐真菌Schizophyllum combune IBL-06和灵芝IBL-05对直接染料太阳金黄色R脱色的能力。在最初的时间过程研究中,太阳金黄色R的最大脱色(73%)是由S. combune IBL-06在pH 4.5和35摄氏度下孵育6天后引起的。孵育时间,pH,温度,并优化了其他碳源和氮源,以在尽可能短的时间内通过链球菌IBL-06实现对太阳金黄色R的最大脱色。用额外的碳源补充培养基可在不同程度上增强染料的脱色。加入葡萄糖(1%)可获得最佳效果,并导致脱色显着增加。在最佳条件下孵育仅2天后,染料完全脱色(100%)。所有其他氮源均显示出对酶诱导和染料脱色的抑制作用。锰过氧化物酶(MnP)被发现是S. combune IBL-06分泌的主要酶(764 U / ml),其次是漆酶,而木质素过氧化物酶(LiP)的活性很小。结果表明,通过仔细优化工艺参数可以增强S. combune IBL-06染料脱色的巨大潜力。

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