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毛栓菌产漆酶、特性及其对叶绿素的脱色能力

Laccase production by Trametes hirsuta, characterization, and its capability of decoloring chlorophyll.

作者信息

Liu Jiayang, Liu Wenhua, Cai Yujie, Liao Xiangru, Huang Qingguo, Liang Xiaohui

出版信息

Pol J Microbiol. 2014;63(3):323-33.

Abstract

The present study focused on laccase production, characterization, and its involvement in chlorophyll decolorization. Extracellular laccase, with the highest activity of 11 U/ml on day 8, was efficiently produced from Trametes hirsuta in 5 l bioreactor with optimized media comprising dual carbon sources, glucose and water hyacinth. A laccase was then purified from the supernatant to homogeneity with purification fold of 9.51 and recovery of 39.8% and an estimated molecular mass of 62 kDa by SDS-PAGE. The laccase showed activity at pH 2-6 and temperature 30-80°C and was relatively thermally stable at below 70°C and neutral pH. The laccase was applied to decolorize chlorophyll under different factors: temperature, pH, mediator, metal ions, and enzyme dosage. Other fungal laccases were also found to be able to degrade chlorophyll with rating from 52% to 88% following 1 h treatment with two laccase dosages (5 or 10 U/ml) in the absence of any other mediators at room temperature. These findings may be an important step in developing new, important, and commercially viable industrial applications for laccase enzymes.

摘要

本研究聚焦于漆酶的产生、特性及其在叶绿素脱色中的作用。在含有葡萄糖和凤眼莲这两种碳源的优化培养基中,于5升生物反应器中由毛栓菌高效生产出胞外漆酶,在第8天其最高酶活为11 U/ml。随后从上清液中纯化漆酶至均一,通过SDS-PAGE分析,纯化倍数为9.51,回收率为39.8%,估计分子量为62 kDa。该漆酶在pH 2 - 6和温度30 - 80°C下具有活性,在70°C以下和中性pH条件下相对热稳定。将该漆酶应用于在不同因素(温度、pH、介体、金属离子和酶用量)下对叶绿素进行脱色。还发现其他真菌漆酶在室温下、无任何其他介体存在的情况下,用两种漆酶用量(5或10 U/ml)处理1小时后,能够降解叶绿素,降解率在52%至88%之间。这些发现可能是为漆酶开发新的、重要的且具有商业可行性的工业应用的重要一步。

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