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Optimizing culture conditions for production of intra and extracellular inulinase and invertase from Aspergillus niger ATCC 20611 by response surface methodology (RSM)

机译:通过响应面法(RSM)优化黑曲霉ATCC 20611产生胞内和胞外菊粉酶和转化酶的培养条件

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The aim of this study was obtain a model that maximizes growth and production of inulinase and invertase by Aspergillus niger ATCC 20611, employing response surface methodology (RSM). The RSM with a five-variable and three-level central composite design (CCD) was employed to optimize the medium composition. Results showed that the experimental data could be appropriately fitted into a second-order polynomial model with a coefficient of determination (R2) more than 0.90 for all responses. This model adequately explained the data variation and represented the actual relationships between the parameters and responses. The pH and temperature value of the cultivation medium were the most significant variables and the effects of inoculum size and agitation speed were slightly lower. The intra-extracellular inulinase, invertase production and biomass content increased 10-32 fold in the optimized medium condition (pH 6.5, temperature 30 ?°C, 6% (v/v), inoculum size and 150 rpm agitation speed) by RSM compared with medium optimized through the one-factor-at-a-time method. The process development and intensification for simultaneous production of intra-extracellular inulinase (exo and endo inulinase) and invertase from A. niger could be used for industrial applications.
机译:这项研究的目的是使用响应面方法(RSM)获得一种能使黑曲霉ATCC 20611最大化菊粉酶和转化酶的生长和产生的模型。采用具有五变量和三级中央复合设计(CCD)的RSM来优化培养基成分。结果表明,对于所有响应,实验数据都可以适当地拟合为二阶多项式模型,其确定系数(R2)大于0.90。该模型充分说明了数据变化并表示了参数与响应之间的实际关系。培养基的pH和温度值是最显着的变量,接种量和搅拌速度的影响略低。与RSM相比,在优化的培养基条件下(pH 6.5,温度30°C,6%(v / v),接种量和150 rpm搅拌速度),胞外菊粉酶,转化酶产量和生物量含量增加了10-32倍通过一次一因素法优化的培养基。同时生产黑曲霉胞内菊粉酶(外切和内切菊粉酶)和转化酶的工艺开发和强化可用于工业应用。

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