统计设计在里氏木霉利用芒果皮生产纤维素酶中的应用。

Q2 Biochemistry, Genetics and Molecular Biology
Enzyme Research Pub Date : 2012-01-01 Epub Date: 2012-12-06 DOI:10.1155/2012/157643
P Saravanan, R Muthuvelayudham, T Viruthagiri
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引用次数: 34

摘要

对利用里氏木霉生产纤维素酶的培养基进行了优化。在实验设计的基础上,采用统计学方法对芒果皮为底物的纤维素酶生产工艺进行了优化。使用Plackett-Burman设计筛选了九种营养素对纤维素酶生产的影响。选取Avicel、豆粕粉、KH(2)PO(4)和CoCl(2)·6H(2)O对纤维素酶产率的正向影响。采用响应面法(RSM)对所选组分的组成进行优化。最佳工艺条件为:Avicel: 25.30 g/L,豆粕粉:23.53 g/L, KH(2)PO(4): 4.90 g/L, CoCl(2)·6H(2)O: 0.95 g/L。实验验证了这些条件,纤维素酶活性提高了7.8 IU/mL。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Application of Statistical Design for the Production of Cellulase by Trichoderma reesei Using Mango Peel.

Application of Statistical Design for the Production of Cellulase by Trichoderma reesei Using Mango Peel.

Application of Statistical Design for the Production of Cellulase by Trichoderma reesei Using Mango Peel.

Application of Statistical Design for the Production of Cellulase by Trichoderma reesei Using Mango Peel.

Optimization of the culture medium for cellulase production using Trichoderma reesei was carried out. The optimization of cellulase production using mango peel as substrate was performed with statistical methodology based on experimental designs. The screening of nine nutrients for their influence on cellulase production is achieved using Plackett-Burman design. Avicel, soybean cake flour, KH(2)PO(4), and CoCl(2)·6H(2)O were selected based on their positive influence on cellulase production. The composition of the selected components was optimized using Response Surface Methodology (RSM). The optimum conditions are as follows: Avicel: 25.30 g/L, Soybean cake flour: 23.53 g/L, KH(2)PO(4): 4.90 g/L, and CoCl(2)·6H(2)O: 0.95 g/L. These conditions are validated experimentally which revealed an enhanced Cellulase activity of 7.8 IU/mL.

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来源期刊
Enzyme Research
Enzyme Research Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
4.60
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