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固态发酵条件下产黄青霉YL-1碱性蛋白酶产量的统计优化

Statistical optimization of alkaline protease production from Penicillium citrinum YL-1 under solid-state fermentation.

作者信息

Xiao Yun-Zhu, Wu Duan-Kai, Zhao Si-Yang, Lin Wei-Min, Gao Xiang-Yang

机构信息

a College of Food Science , South China Agricultural University , Guangzhou , P.R. China.

出版信息

Prep Biochem Biotechnol. 2015;45(5):447-62. doi: 10.1080/10826068.2014.923450.

Abstract

Proteases from halotolerant and halophilic microorganisms were found in traditional Chinese fish sauce. In this study, 30 fungi were isolated from fermented fish sauce in five growth media based on their morphology. However, only one strain, YL-1, which was identified as Penicillium citrinum by internal transcribed spacer (ITS) sequence analysis, can produce alkaline protease. This study is the first to report that a protease-producing fungus strain was isolated and identified in traditional Chinese fish sauce. Furthermore, the culture conditions of alkaline protease production by P. citrinum YL-1 in solid-state fermentation were optimized by response surface methodology. First, three variables including peptone, initial pH, and moisture content were selected by Plackett-Burman design as the significant variables for alkaline protease production. The Box-Behnken design was then adopted to further investigate the interaction effects between the three variables on alkaline protease production and determine the optimal values of the variables. The maximal production (94.30 U/mL) of alkaline protease by P. citrinum YL-1 took place under the optimal conditions of peptone, initial pH, and moisture content (v/w) of 35.5 g/L, 7.73, and 136%, respectively.

摘要

在中国传统鱼露中发现了来自耐盐和嗜盐微生物的蛋白酶。在本研究中,基于形态学从五种生长培养基中的发酵鱼露中分离出30株真菌。然而,只有一株菌株YL-1,通过内部转录间隔区(ITS)序列分析鉴定为桔青霉,能够产生碱性蛋白酶。本研究首次报道了在中国传统鱼露中分离并鉴定出一株产蛋白酶的真菌菌株。此外,采用响应面法对桔青霉YL-1固态发酵产碱性蛋白酶的培养条件进行了优化。首先,通过Plackett-Burman设计选择蛋白胨、初始pH值和水分含量这三个变量作为产碱性蛋白酶的显著变量。然后采用Box-Behnken设计进一步研究这三个变量之间对碱性蛋白酶产量的相互作用效应,并确定变量的最佳值。在蛋白胨、初始pH值和水分含量(v/w)分别为35.5 g/L、7.73和136%的最佳条件下,桔青霉YL-1碱性蛋白酶的最大产量(94.30 U/mL)出现。

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