首页> 美国卫生研究院文献>BioMed Research International >Effect of C/N Ratio and Media Optimization through Response Surface Methodology on Simultaneous Productions of Intra- and Extracellular Inulinase and Invertase from Aspergillus niger ATCC 20611
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Effect of C/N Ratio and Media Optimization through Response Surface Methodology on Simultaneous Productions of Intra- and Extracellular Inulinase and Invertase from Aspergillus niger ATCC 20611

机译:C / N比和响应面法优化培养基对黑曲霉ATCC 20611细胞内和细胞外菊糖酶和转化酶同时生产的影响

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摘要

The study is to identify the extraction of intracellular inulinase (exo- and endoinulinase) and invertase as well as optimization medium composition for maximum productions of intra- and extracellular enzymes from Aspergillus niger ATCC 20611. From two different methods for extraction of intracellular enzymes, ultrasonic method was found more effective. Response surface methodology (RSM) with a five-variable and three-level central composite design (CCD) was employed to optimize the medium composition. The effect of five main reaction parameters including sucrose, yeast extract, NaNO3, Zn+2, and Triton X-100 on the production of enzymes was analyzed. A modified quadratic model was fitted to the data with a coefficient of determination (R 2) more than 0.90 for all responses. The intra-extracellular inulinase and invertase productions increased in the range from 16 to 8.4 times in the optimized medium (10% (w/v) sucrose, 2.5% (w/v) yeast extract, 2% (w/v) NaNO3, 1.5 mM (v/v) Zn+2, and 1% (v/v) Triton X-100) by RSM and from around 1.2 to 1.3 times greater than in the medium optimized by one-factor-at-a-time, respectively. The results of bioprocesses optimization can be useful in the scale-up fermentation and food industry.
机译:该研究旨在鉴定黑曲霉ATCC 20611提取胞内菊粉酶(外切和内切菊糖酶)和转化酶以及优化培养基组成,以最大程度地生产胞内和胞外酶。采用两种不同的胞内酶提取方法:超声波方法被发现更有效。采用具有五变量和三级中央复合设计(CCD)的响应面方法(RSM)来优化培养基成分。分析了蔗糖,酵母提取物,NaNO3,Zn +2 和Triton X-100这五个主要反应参数对酶产生的影响。对于所有响应,将修正的二次模型拟合到数据的确定系数(R 2 )大于0.90。在优化的培养基(10%(w / v)蔗糖,2.5%(w / v)酵母提取物,2%(w / v)NaNO3)中,胞内菊粉酶和转化酶的产量增加了16到8.4倍。通过RSM获得1.5μmM(v / v)Zn +2 和1%(v / v)Triton X-100),是单因素优化培养基中的约1.2至1.3倍一次一次。生物工艺优化的结果可用于大规模发酵和食品工业。

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