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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >A statistical approach for optimization of polyhydroxybutyrate production by Bacillus sphaericus NCIM 5149 under submerged fermentation using central composite design
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A statistical approach for optimization of polyhydroxybutyrate production by Bacillus sphaericus NCIM 5149 under submerged fermentation using central composite design

机译:使用中心复合设计优化淹没发酵条件下球形芽孢杆菌NCIM 5149产生多羟基丁酸酯的统计方法

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The aim of this work was to statistically optimize the cultural and nutritional parameters for the production of polyhydroxybutyrate (PHB) under submerged fermentation using jackfruit seed hydrolysate as the sole carbon source. On the basis of results obtained from "one variable at a time" experiment, inoculum age, jackfruit seed hydrolysate concentration, and pH were selected for response surface methodology studies. A central composite design (CCD) was employed to get the optimum level of these three factors to maximize the PHB production. The CCD results predicted that jackfruit seed hydrolysates containing 2.5% reducing sugar, inoculum age of 18 h, and initial medium pH 6 could enhance the production of PHB to reach 49% of the biomass (biomass 4.5 g/l and PHB concentration 2.2 g/l). Analysis of variance exhibited a high coefficient of determination (R ~2) value of 0.910 and 0.928 for biomass and PHB concentration, respectively, and ensured that the quadratic model with the experimental data was a satisfactory one. This is the first report on PHB production by Bacillus sphaericus using statistical experimental design and RSM in submerged fermentation with jackfruit seed hydrolysate as the sole source of carbon.
机译:这项工作的目的是在统计学上优化使用菠萝蜜种子水解产物作为唯一碳源的水下发酵生产多羟基丁酸酯(PHB)的文化和营养参数。根据从“一次一个变量”实验获得的结果,选择接种物年龄,菠萝蜜种子水解物浓度和pH值用于响应面方法学研究。采用中央复合设计(CCD)获得这三个因素的最佳水平,以最大程度地提高PHB的产量。 CCD结果表明,菠萝蜜种子水解物含有2.5%的还原糖,接种物的年龄为18 h,初始培养基的pH值为6,可以提高PHB的产量,使其达到生物量的49%(生物量4.5 g / l,PHB浓度2.2 g / l)。方差分析显示生物质和PHB浓度的高测定系数(R〜2)分别为0.910和0.928,并确保具有实验数据的二次模型是令人满意的。这是关于球形芽孢杆菌利用统计实验设计和RSM在菠萝蜜种子水解产物作为唯一碳源的深层发酵中生产PHB的第一份报告。

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