首页> 外文期刊>World Journal of Microbiology & Biotechnology >Application of response surface methodology in medium optimization for spore production of Coniothyrium minitans in solid-state fermentation
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Application of response surface methodology in medium optimization for spore production of Coniothyrium minitans in solid-state fermentation

机译:响应面法在固态发酵小锥孢子菌孢子生产培养基优化中的应用

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摘要

Spore production of Coniothyrium minitans was optimized by using response surface methodology (RSM), which is a powerful mathematical approach widely applied in the optimization of fermentation process. In the first step of optimization, with Plackett - Burman design, soluble starch, urea and KH2PO4 were found to be the important factors affecting C. minitans spore production significantly. In the second step, a 2 3 full factorial central composite design and RSM were applied to determine the optimal concentration of each significant variable. A second-order polynomial was determined by the multiple regression analysis of the experimental data. The optimum values for the critical components for the maximum were obtained as follows: soluble starch 0.643 ( 36.43 g. l(-1)), urea -0.544 (3.91 g l(-1)) and KH2PO4 0.049 ( 1.02 g l(-1)) with a predicted value of maximum spore production of 9.94 x 10(9) spores/g IDM. Under the optimal conditions, the practical spore production was 1.04 x 10(10) spores/g IDM. The determination coefficient (R-2) was 0.923, which ensure an adequate credibility of the model.
机译:通过使用响应面法(RSM)优化了小锥孢霉菌的孢子生产,这是一种广泛用于发酵过程优化的强大数学方法。在优化的第一步中,采用Plackett-Burman设计,发现可溶性淀粉,尿素和KH2PO4是显着影响小孢梭菌孢子产生的重要因素。第二步,应用2 3全因子中心复合设计和RSM来确定每个显着变量的最佳浓度。通过对实验数据进行多元回归分析确定了二阶多项式。关键组分的最佳最大值获得如下:可溶性淀粉0.643(36.43 g.l(-1)),尿素-0.544(3.91 gl(-1))和KH2PO4 0.049(1.02 gl(-1) )的最大孢子产生量的预测值为9.94 x 10(9)孢子/ g IDM。在最佳条件下,实际孢子产量为1.04 x 10(10)孢子/ g IDM。确定系数(R-2)为0.923,可确保模型具有足够的可信度。

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