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一种基于中心复合设计的统计方法,用于优化米根霉从凤眼莲固态发酵中同时生产β-葡萄糖苷酶和内切葡聚糖酶。

A Statistical Approach for Optimization of Simultaneous Production of β-Glucosidase and Endoglucanase by Rhizopus oryzae from Solid-State Fermentation of Water Hyacinth Using Central Composite Design.

作者信息

Karmakar Moumita, Ray Rina Rani

机构信息

Microbiology Laboratory, Department of Zoology, Molecular Biology & Genetics, Presidency University, 86/1, College Street, Kolkata, 700 073, India.

出版信息

Biotechnol Res Int. 2011;2011:574983. doi: 10.4061/2011/574983. Epub 2011 May 30.

Abstract

The production cost of β-glucosidase and endoglucanase could be reduced by using water hyacinth, an aquatic weed, as the sole carbon source and using cost-efficient fermentation strategies like solid-state fermentation (SSF). In the present study, the effect of different production conditions on the yield of β-glucosidase and endoglucanase by Rhizopus oryzae MTCC 9642 from water hyacinth was investigated systematically using response surface methodology. A Central composite experimental design was applied to optimize the impact of three variables, namely, substrate concentration, pH, and temperature, on enzyme production. The optimal level of each parameter for maximum enzyme production by the fungus was determined. Highest activity of endoglucanase of 495 U/mL was achieved at a substrate concentration of 1.23%, pH 7.29, and temperature 29.93°C whereas maximum β-glucosidase activity of 137.32 U/ml was achieved at a substrate concentration of 1.25%, pH 6.66, and temperature 32.09°C. There was a direct correlation between the levels of enzymatic activities and the substrate concentration of water hyacinth as carbon source.

摘要

通过使用水葫芦(一种水生杂草)作为唯一碳源,并采用固态发酵(SSF)等成本效益高的发酵策略,可以降低β-葡萄糖苷酶和内切葡聚糖酶的生产成本。在本研究中,采用响应面法系统研究了不同生产条件对米根霉MTCC 9642利用水葫芦生产β-葡萄糖苷酶和内切葡聚糖酶产量的影响。应用中心复合实验设计来优化底物浓度、pH值和温度这三个变量对酶生产的影响。确定了真菌产生最大量酶时每个参数的最佳水平。在底物浓度为1.23%、pH值为7.29、温度为29.93°C时,内切葡聚糖酶的最高活性达到495 U/mL,而在底物浓度为1.25%、pH值为6.66、温度为32.09°C时,β-葡萄糖苷酶的最大活性达到137.32 U/ml。作为碳源的水葫芦的底物浓度与酶活性水平之间存在直接相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11ff/3113439/05eb4d7f72c2/BTRI2011-574983.001.jpg

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