Chitinase Production in Solid-State Fermentation by Enterobacter sp. NRG4 Using Statistical Experimental Design

被引:0
作者
Neetu Dahiya
Rupinder Tewari
Ram Prakash Tiwari
Gurinder Singh Hoondal
机构
[1] Panjab University,Department of Biotechnology
[2] Panjab University,Department of Microbiology
来源
Current Microbiology | 2005年 / 51卷
关键词
Chitin; Response Surface Methodology; Chitinase; Wheat Bran; Central Composite Design;
D O I
暂无
中图分类号
学科分类号
摘要
The optimization of nutrient levels for chitinase production by Enterobacter sp. NRG4 in solid-state fermentation conditions (SSF) was carried out using response surface methodology (RSM) based on central composite design (CCD). The design was employed by selecting wheat bran-to-flake chitin ratio, moisture level, inoculum size, and incubation time as model factors. The results of first-order factorial design experiments showed that all four independent variables have significant effects on chitinase production. The optimum concentrations for chitinase production were wheat bran-to-flake chitin ratio, 1; moisture level, 80%; inoculum size, 2.6 mL; and incubation time, 168 h. Using this statistical optimization method, chitinase production was found to increase from 616 U · g−1 dry weight of solid substrate to 1475 U · g−1 dry weight of solid substrate.
引用
收藏
页码:222 / 228
页数:6
相关论文
共 114 条
[11]  
Chang WT(1995) with shrimp and crab shell powder as a carbon source J Appl Bacteriol 87 378-383
[12]  
Chen CS(1997)Use of response surface methodology to optimize culture medium for production of lovastatin by Pharmacol Ther 76 187-218
[13]  
Wang SL(2003)Mechanisms of biocontrol of soil borne plant pathogens by rhizobacteria Proc Biochem 38 1685-1693
[14]  
Chang YN(1994)Studies on N-acetyl-β-D-glucosaminidase produced by Proc Biochem 29 497-503
[15]  
Huang JC(1997) F3 grown in solid-state fermentation Enzyme Microbial Technol 20 489-493
[16]  
Lee CC(1968)Actinobacterial chitinase like enzymes: profiles of rhizosphere versus non-rhizosphere isolates Methods Enzymol 12B 195-206
[17]  
Shih IL(1998)Chitinase production by Can J Microbiol 44 646-651
[18]  
Tzeng YM(2004): Its potential in fungal cell wall lysis Proc Biochem 39 665-671
[19]  
Chet I(1969)β-N-Acetyl-hexosaminidase: a target for the design of antifungal agents Can J Microbiol 15 689-696
[20]  
Ordentlich A(2004)Optimizing bioconversion of deproteinated cheese whey to mycelia of Proc Biochem 39 1583-1590