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利用响应面法优化哈茨木霉 ZF-2 产漆酶的培养基。

Media optimization for laccase production by Trichoderma harzianum ZF-2 using response surface methodology.

机构信息

College of Forestry, Shandong Agricultural University, Shandong 271018, China.

出版信息

J Microbiol Biotechnol. 2013 Dec;23(12):1757-64. doi: 10.4014/jmb.1302.02057.

Abstract

Trichoderma harzianum ZF-2 producing laccase was isolated from decaying samples from Shandong, China, and showed dye decolorization activities. The objective of this study was to optimize its culture conditions using a statistical analysis of its laccase production. The interactions between different fermentation parameters for laccase production were characterized using a Plackett-Burman design and the response surface methodology. The different media components were initially optimized using the conventional one-factor-at-a-time method and an orthogonal test design, and a Plackett-Burman experiment was then performed to evaluate the effects on laccase production. Wheat straw powder, soybean meal, and CuSO4 were all found to have a significant influence on laccase production, and the optimal concentrations of these three factors were then sequentially investigated using the response surface methodology with a central composite design. The resulting optimal medium components for laccase production were determined as follows: wheat straw powder 7.63 g/l, soybean meal 23.07 g/l, (NH4)2SO4 1 g/l, CuSO4 0.51 g/l, Tween-20 1 g/l, MgSO4 1 g/l, and KH2PO4 0.6 g/l. Using this optimized fermentation method, the yield of laccase was increased 59.68 times to 67.258 U/ml compared with the laccase production with an unoptimized medium. This is the first report on the statistical optimization of laccase production by Trichoderma harzianum ZF-2.

摘要

哈茨木霉 ZF-2 产生漆酶,从中国山东腐烂的样本中分离出来,并表现出染料脱色活性。本研究的目的是通过统计分析其漆酶生产来优化其培养条件。利用 Plackett-Burman 设计和响应面法对不同发酵参数对漆酶生产的相互作用进行了表征。最初使用常规单因素试验法和正交试验设计对不同培养基成分进行了优化,然后进行 Plackett-Burman 实验,以评估这些因素对漆酶生产的影响。麦秸粉、豆粕和 CuSO4 都对漆酶生产有显著影响,然后使用响应面法中的中心复合设计对这三个因素的最佳浓度进行了进一步研究。确定了用于漆酶生产的最佳培养基成分如下:麦秸粉 7.63 g/l、豆粕 23.07 g/l、(NH4)2SO4 1 g/l、CuSO4 0.51 g/l、Tween-20 1 g/l、MgSO4 1 g/l 和 KH2PO4 0.6 g/l。使用这种优化的发酵方法,漆酶的产量比未优化培养基的漆酶产量增加了 59.68 倍,达到 67.258 U/ml。这是哈茨木霉 ZF-2 统计优化漆酶生产的首次报道。

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