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源自耐温耐pH值的毛栓菌真菌菌株(MTCC 11397)的漆酶生产

Laccase Production from a Temperature and pH Tolerant Fungal Strain of Trametes hirsuta (MTCC 11397).

作者信息

Dhakar Kusum, Pandey Anita

机构信息

G. B. Pant Institute of Himalayan Environment and Development, Kosi-Katarmal, Almora, Uttarakhand 263 643, India.

出版信息

Enzyme Res. 2013;2013:869062. doi: 10.1155/2013/869062. Epub 2013 Apr 24.

Abstract

Laccase production by a temperature and pH tolerant fungal strain (GBPI-CDF-03) isolated from a glacial site in Indian Himalayan Region (IHR) has been investigated. The fungus developed white cottony mass on potato dextrose agar and revealed thread-like mycelium under microscope. ITS region analysis of fungus showed its 100% similarity with Trametes hirsuta. The fungus tolerated temperature from 4 to 48°C ± 2 (25°C opt.) and pH 3-13 (5-7 opt.). Molecular weight of laccase was determined approximately 45 kDa by native PAGE. Amplification of laccase gene fragment (corresponding to the copper-binding conserved domain) contained 200 bp. The optimum pH for laccase production, at optimum growth temperature, was determined between 5.5 and 7.5. In optimization experiments, fructose and ammonium sulfate were found to be the best carbon and nitrogen sources, respectively, for enhancing the laccase production. Production of laccase was favored by high carbon/nitrogen ratio. Addition of CuSO4 (up to 1.0 mM) induced laccase production up to 2-fold, in case of 0.4 mM concentration. Addition of organic solvents also induced the production of laccase; acetone showed the highest (2-fold) induction. The study has implications in bioprospecting of ecologically resilient microbial strains.

摘要

对从印度喜马拉雅地区(IHR)一个冰川地点分离出的耐温度和pH值的真菌菌株(GBPI-CDF-03)产漆酶情况进行了研究。该真菌在马铃薯葡萄糖琼脂上形成白色棉絮状菌团,在显微镜下显示出丝状菌丝体。对该真菌的ITS区域分析表明,它与糙皮侧耳的相似度为100%。该真菌能耐受4至48°C±2(最适温度为25°C)的温度和pH值3至13(最适pH值为5至7)。通过非变性聚丙烯酰胺凝胶电泳测定漆酶的分子量约为45 kDa。漆酶基因片段(对应于铜结合保守结构域)的扩增片段包含200 bp。在最适生长温度下,漆酶产生的最适pH值在5.5至7.5之间。在优化实验中,发现果糖和硫酸铵分别是提高漆酶产量的最佳碳源和氮源。高碳氮比有利于漆酶的产生。添加硫酸铜(高达1.0 mM)可使漆酶产量提高至2倍,在浓度为0.4 mM时效果最佳。添加有机溶剂也可诱导漆酶的产生;丙酮的诱导效果最高(2倍)。该研究对具有生态适应能力的微生物菌株的生物勘探具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdc7/3655567/efe36c92934e/ER2013-869062.001.jpg

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