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Medium optimisation of chitinase enzyme production from shrimp waste using Bacillus licheniformis TH-1 by response surface methods

机译:地衣芽孢杆菌TH-1通过响应面法对虾废料中几丁质酶生产的培养基优化

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摘要

The optimization of fermentation medium for the production of chitinase by Bacillus licheniformis TH-1 was carried out using Response Surface Methodology (RSM) based on the two level factorial design. This procedure limited the number of actual experiments performed while allowing for possible interactions between 5 components. RSM was adopted to derive a statistical model for the effect of chitin. Yeast Extract (YE), peptone. NaNO3 and K 2 HPO4 on chitinase production. The p-value of the coefficient for linear effects of chitin, peptone and YE was 0.0001, suggesting that this was the principal experiment variable, having the greatest effect on the production of chitinase. The optimal combinations of media constituent for maximum chitinase production are determined as 10 g L-1 chitin, 0.5 g L-1 YE, 0.5 g L-1 peptone, 2.55 g L-1 NaNO3 and 1.55 g L-1 K2HPO4. The optimization of the fermentation medium resulted not only in a 5.4 fold increase of enzyme activity compared to unoptimized medium but also a reduced amount of the required medium constituents. The response surface analysis provided a useful tool for the optimization of a low cost enzyme producing medium for potential use on an industrial scale.
机译:基于二级因子设计,使用响应表面方法(RSM)对地衣芽孢杆菌TH-1生产几丁质酶的发酵培养基进行了优化。该过程限制了所执行的实际实验的数量,同时允许5个组件之间可能的相互作用。采用RSM得出甲壳素作用的统计模型。酵母提取物(YE),蛋白ept。 NaNO3和K 2 HPO4对几丁质酶的生产。几丁质,蛋白ept和YE线性效应系数的p值为0.0001,表明这是主要的实验变量,对几丁质酶的产生影响最大。确定用于最大几丁质酶生产的培养基成分的最佳组合为10 g L-1几丁质,0.5 g L-1 YE,0.5 g L-1蛋白ept,2.55 g L-1 NaNO3和1.55 g L-1 K2HPO4。与未优化的培养基相比,发酵培养基的优化不仅导致酶活性提高了5.4倍,而且减少了所需的培养基成分。响应表面分析为优化可能在工业规模上使用的低成本酶生产培养基提供了有用的工具。

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