Center of Excellence, Department of Microbiology, Dr, Ram Manohar Lohia Avadh University, Faizabad-224001, UP, India.
Microb Cell Fact. 2011 Dec 28;10:114. doi: 10.1186/1475-2859-10-114.
Production of alkaline protease from various bacterial strains using statistical methods is customary now-a-days. The present work is first attempt for the production optimization of a solvent stable thermoalkaline protease by a psychrotrophic Pseudomonas putida isolate using conventional, response surface methods, and fermentor level optimization.
The pre-screening medium amended with optimized (w/v) 1.0% glucose, 2.0% gelatin and 0.5% yeast extract, produced 278 U protease ml(-1) at 72 h incubation. Enzyme production increased to 431 Uml(-1) when Mg2+ (0.01%, w/v) was supplemented. Optimization of physical factors further enhanced protease to 514 Uml(-1) at pH 9.0, 25°C and 200 rpm within 60 h. The combined effect of conventionally optimized variables (glucose, yeast extract, MgSO4 and pH), thereafter predicted by response surface methodology yielded 617 U protease ml(-1) at glucose 1.25% (w/v), yeast extract 0.5% (w/v), MgSO4 0.01% (w/v) and pH 8.8. Bench-scale bioreactor level optimization resulted in enhanced production of 882 U protease ml(-1) at 0.8 vvm aeration and 150 rpm agitation during only 48 h incubation.
The optimization of fermentation variables using conventional, statistical approaches and aeration/agitation at fermentor level resulted in ~13.5 folds increase (882 Uml(-1)) in protease production compared to un-optimized conditions (65 Uml(-1)). This is the highest level of thermoalkaline protease reported so far by any psychrotrophic bacterium.
如今,使用统计方法从各种细菌菌株生产碱性蛋白酶已成为常规做法。本工作首次尝试使用传统的响应面方法和发酵罐水平优化,从嗜冷假单胞菌分离株中生产稳定的溶剂耐温碱性蛋白酶。
在预筛选培养基中添加优化(w/v)1.0%葡萄糖、2.0%明胶和 0.5%酵母提取物,在 72 h 孵育时产生 278 U 蛋白酶 ml(-1)。当添加 Mg2+(0.01%,w/v)时,酶产量增加到 431 Uml(-1)。进一步优化物理因素,在 pH 9.0、25°C 和 200 rpm 下,60 h 内将蛋白酶提高到 514 Uml(-1)。随后通过响应面法对常规优化变量(葡萄糖、酵母提取物、MgSO4 和 pH)进行优化,预测可得到 617 U 蛋白酶 ml(-1),葡萄糖 1.25%(w/v)、酵母提取物 0.5%(w/v)、MgSO4 0.01%(w/v)和 pH 8.8。在发酵罐水平上优化通气量和搅拌速度,结果在仅 48 h 孵育时,通气量为 0.8 vvm,搅拌速度为 150 rpm,酶产量提高到 882 U 蛋白酶 ml(-1)。
使用传统的统计方法优化发酵变量,并在发酵罐水平上进行通气/搅拌优化,与未优化条件(65 Uml(-1))相比,酶产量提高了约 13.5 倍(882 Uml(-1))。这是迄今为止任何嗜冷菌报道的最高水平的耐温碱性蛋白酶。