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Optimization of culture condition for enhanced decolorization and degradation of azo dye reactive violet 1 with concomitant production of ligninolytic enzymes by Ganoderma cupreum AG-1

机译:优化培养条件以增强偶氮染料反应性紫罗兰1的脱色和降解并同时产生铜灵芝AG-1的木质素分解酶

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摘要

The strain Ganoderma cupreum AG-1 (Genbank accession no. ) isolated from the decayed wood was evaluated for its ability to decolorize azo dye reactive violet 1 as well as for the production of ligninolytic enzymes. In the initial decolorization study, the strain was capable of decolorizing 19 different azo dyes. The strain was capable of decolorizing dye over a pH range of 4.5–6 at 30 °C. The optimum pH was found to be 4.5. Various other process parameters like additional carbon and nitrogen source and initial dye concentration were also optimized. The decolorization medium was supplemented with appropriate nitrogen source (yeast extract, 5 g l−1) and carbon source (mannose, 2 g l−1); the decolorization obtained was 98 %. The pattern of enzymes involved in the biodegradation was studied and laccase and MnP were found to be the major enzymes. High laccase activity shown by G. cupreum AG-1 and its ability to decolorize dyes are a good indication of its possible use in the treatment of textile effluents.
机译:从腐烂的木材中分离出的灵芝铜菌株AG-1(Genbank登录号。)评估了其使偶氮染料活性紫1脱色的能力以及木质素分解酶的产生。在最初的脱色研究中,该菌株能够使19种不同的偶氮染料脱色。该菌株能够在30°C下在4.5-6的pH范围内使染料脱色。发现最佳pH为4.5。还优化了其他各种工艺参数,例如额外的碳和氮源以及初始染料浓度。脱色培养基中添加了适当的氮源(酵母提取物,5 g ls.sup-1)和碳源(甘露糖,2 g ls.sup-1)。得到的脱色率为98%。研究了参与生物降解的酶的模式,漆酶和MnP是主要酶。 G.cupreum AG-1所显示的高漆酶活性及其使染料脱色的能力很好地表明了其可能用于处理纺织品废水。

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