Statistical Optimization of the Medium Composition by Response Surface Methodology to Enhance Schizophyllan Production by Schizophyllum commune

被引:8
作者
Li, Wenbing [2 ]
Zhou, Pengpeng [1 ]
Yu, Longjiang [1 ]
机构
[1] Huazhong Univ Sci & Technol, Coll Life Sci & Technol, Wuhan 430074, Peoples R China
[2] Wuhan Univ Sci & Technol, Coll Chem Engn & Technol, Wuhan 430081, Peoples R China
来源
ZEITSCHRIFT FUR NATURFORSCHUNG SECTION C-A JOURNAL OF BIOSCIENCES | 2011年 / 66卷 / 3-4期
关键词
Schizophyllan; Response Surface Methodology; Medium Optimization; SUBMERGED CULTURE; MYCELIAL BIOMASS; EXOPOLYSACCHARIDES;
D O I
10.5560/ZNC.2011.66c0173
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The response surface methodology (RSM) involving central composite design (CCD) was employed to optimize the fermentation medium for the cell growth and schizophllan production by Schizophyllum commune CGMCC 5.113 in submerged culture at pH 6.5 and 26 degrees C. The four variables involved in this study were glucose, yeast extract, ammonium nitrate, and magnesium sulfate. The statistical analysis of the results showed that, in the range studied, glucose and yeast extract had a highly significant effect on schizophyllan production. The optimal medium for schizophyllan production calculated from the regression model of RSM was as follows: glucose, 18 g/l; yeast extract, 0.5 g/l; NH4NO3, 0.48 g/l; and MgSO4, 0.05 g/l, with a predicted maximum schizophyllan production of 11.74 g/l. These predicted values were experimentally validated. The excellent correlation between predicted and measured values justifies the validity of the response model. The results of bioreactor fermentation also show that the optimized medium enhanced schizophyllan production (12.80 g/l) by S. commune in a 5-l fermenter.
引用
收藏
页码:173 / 181
页数:9
相关论文
共 25 条
[1]  
Bolla K, 2008, AFR J MICROBIOL RES, V2, P349
[2]   Optimization for the production of exopolysaccharide from Fomes fomentarius in submerged culture and its antitumor effect in vitro [J].
Chen, Wei ;
Zhao, Zhao ;
Chen, Shi-Fei ;
Li, Yong-Quan .
BIORESOURCE TECHNOLOGY, 2008, 99 (08) :3187-3194
[3]   Production of exopolysaccharides by submerged mycelial culture of a mushroom Tremella fuciformis [J].
Cho, Eun Jae ;
Oh, Jung Young ;
Chang, Hyun You ;
Yun, Jong Won .
JOURNAL OF BIOTECHNOLOGY, 2006, 127 (01) :129-140
[4]  
El-Dein M. M. N., 2004, Pakistan Journal of Biological Sciences, V7, P1078, DOI 10.3923/pjbs.2004.1078.1084
[5]   Optimization of Effect Factors for Mycelial Growth and Exopolysaccharide Production by Schizophyllum commune [J].
Hao, Li-min ;
Xing, Xin-hui ;
Li, Zheng ;
Zhang, Jian-chun ;
Sun, Jin-xu ;
Jia, Shi-ru ;
Qiao, Chang-sheng ;
Wu, Tianyi .
APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 2010, 160 (02) :621-631
[6]  
Hobbs C., 1996, MED MUSHROOMS EXPLOR, V3, P251
[7]   Medium optimization for polysaccharide production of Cordyceps sinensis [J].
Hsieh, CY ;
Tsai, MJ ;
Hsu, TH ;
Chang, DM ;
Lo, CT .
APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 2005, 120 (02) :145-157
[8]  
Huang DM, 2007, FOOD TECHNOL BIOTECH, V45, P389
[9]   Response surface analysis and simulation as a tool for bioprocess design and optimization [J].
Kalil, SJ ;
Maugeri, F ;
Rodrigues, MI .
PROCESS BIOCHEMISTRY, 2000, 35 (06) :539-550
[10]   Optimization of submerged culture condition for the production of mycelial biomass and exopolysaccharides by Agrocybe cylindracea [J].
Kim, HO ;
Lim, JM ;
Joo, JH ;
Kim, SW ;
Hwang, HJ ;
Choi, JW ;
Yun, JW .
BIORESOURCE TECHNOLOGY, 2005, 96 (10) :1175-1182