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首页> 外文期刊>Biotechnology & Biotechnological Equipment >IMPROVEMENT OF beta-GLUCOSIDASE PRODUCTION BY PROTOPLAST FUSION BETWEEN ASPERGILLUS ORYZAE 3.481 AND ASPERGILLUS NIGER 3.316 USING RESPONSE SURFACE METHODOLOGY
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IMPROVEMENT OF beta-GLUCOSIDASE PRODUCTION BY PROTOPLAST FUSION BETWEEN ASPERGILLUS ORYZAE 3.481 AND ASPERGILLUS NIGER 3.316 USING RESPONSE SURFACE METHODOLOGY

机译:响应表面法通过原生质体融合来改良谷胱甘肽3.481和黑僵菌3.316产生的β-葡糖苷酶

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摘要

beta-Glucosidase production by protoplast fusion between Aspergillus oryzae 3.481 and Aspergillus niger 3.316 in shake flask culture was optimized by statistical analysis using response surface methodology (RSM) The fused protoplasts had been regenerated on a specific medium and fusants were selected for further studies. Screening of variables to find their relative effect on beta-glucosidase production was done using single-factor test and analysis of variance (ANOVA). The effect of substrate concentration and initial pH on beta-glucosidase production was studied The initial pH and concentration of mixed carbon source of bran and starch, ammonium sulphate, CaCl2 and KCl, were found to influence the enzyme production significantly. The optimal levels of these variables and the effect of their mutual interactions on beta-glucosidase production were determined using Box-Behnken design. This led to a further optimization of the fermentation conditions to achieve higher enzyme activities, which reached 4.124 U/mL. Biotechnol. & Biotechnol. Eq. 2012, 26(6), 3378-3384
机译:通过使用响应面方法(RSM)进行统计分析,优化了摇瓶培养中米曲霉3.481和黑曲霉3.316之间原生质体融合产生的β-葡萄糖苷酶。已在特定培养基上再生了融合的原生质,并选择了融合剂进行进一步研究。使用单因素检验和方差分析(ANOVA)对变量进行筛选,以发现它们对β-葡萄糖苷酶生产的相对影响。研究了底物浓度和初始pH值对β-葡糖苷酶产生的影响。发现麸皮和淀粉,硫酸铵,CaCl2和KCl的混合碳源的初始pH值和浓度显着影响酶的产生。使用Box-Behnken设计确定了这些变量的最佳水平及其相互作用对β-葡萄糖苷酶产生的影响。这导致发酵条件的进一步优化以实现更高的酶活性,达到4.124 U / mL。生物技术。和生物技术。等式2012,26(6),3378-3384

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