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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enzymatic degradation and detoxification of azo dye Congo red by a new laccase from Oudemansiella canarii
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Enzymatic degradation and detoxification of azo dye Congo red by a new laccase from Oudemansiella canarii

机译:来自Oudemansiella Canarii的新漆酶的酶促降解和Azo染料刚果红的解毒

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摘要

A single laccase with molecular weight of 41 kDa was produced by the white-rot fungus Oudemansiella canarii cultured on solid state fermentation using a mixture of sugarcane bagasse-wheat bran as substrate. The enzyme (5 U) was able to decolourize 80% of 50 mg/L Congo red within 24 h at 30 degrees C and pH 5.5. The relationship between the decolorization rate and dye concentration obeyed Michaelis-Menten kinetics, with K-M and V-max values of 46.180 +/- 6.245 mu M and 1.840 +/- 0.101 mu mol/min, respectively. Fourier transform infrared spectroscopy (FTIR) and mass spectrometry allowed to conclude that the laccase acts not only on the dye chromophore group, but also that it cleaves different covalent bonds, causing an effective fragmentation of the molecule. The action of the laccase caused a significant reduction in toxicity, as indicated by the Microtox test. In conclusion, O. canarii laccase could be useful in future biological strategies aiming at degrading azo dyes.
机译:使用甘蔗甘蔗渣 - 小麦麸的混合物作为底物,通过培养的白色发酵培养的白腐真菌Oudemansiella Canaarii生产单个具有41kDa的单个漆酶。 酶(5U)能够在30℃和pH5.5的24小时内脱色80%的50mg / l刚果红色。 脱色率和染料浓度之间的关系服从迈克莱斯 - 麦龄动力学,K-M和V-MAT值46.180 +/-6.245μm和1.840 +/- 0.101 mm mol / min。 傅里叶变换红外光谱(FTIR)和质谱允许得出结论,漆酶不仅作用于染料发色团,还可以切割不同的共价键,导致分子的有效碎片。 如MicroRox试验所示,漆酶的作用导致毒性显着降低。 总之,O. Canarii LaCcase可用于旨在降解偶氮染料的未来生物策略。

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