酵母制备菊粉酶与转化酶的比较研究

Mariana-Gratiela Soare (Vladu), M. Petrescu, M. Eremia
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引用次数: 1

摘要

本对比研究的目的是建立INCDCF-ICCF培养收集的酵母菌Saccharomyces、Candida和Hansenula在含菊粉为c源的培养基中深层发酵生产菊粉酶和转化酶的模型,该模型解释了数据的变化以及参数与响应之间的实际关系。菊粉浓度和微量元素组成对生物工艺培养基中干生物量、菊粉酶和转化酶的产量均有影响。生物工艺的主要参数为:接种量2% (v/v), pH 6,温度280℃,搅拌速度220 rpm。通过对胞外菊粉酶(外链和内链菊粉酶)和转化酶的比较研究,得出了树假丝酵母在M5培养基上的转化酶产量显著高于菊粉酶(35.92 U/mL转化酶活性比8.01 U/mL菊粉酶活性)。这些结果可用于工业应用,如食品工业,制药。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative study for obtaining inulinase and invertase by yeasts
The aim of this comparative study was to obtain a model for production of inulinase and invertase by species Saccharomyces, Candida and Hansenula, strains from culture collection of INCDCF-ICCF, using submerged fermentation in a medium containing inulin as source of C. This model explained the data variation and the actual relationships between the parameters and responses. The dry biomass content as well as the production of inulinase and invertase in the bioprocess medium was influenced by inulin concentration and microelement composition. The main parameters for bioprocesses were: inoculum size 2% (v/v), pH 6, temperature 280 C and 220 rpm agitation speed. Following comparative study for production of extracellular inulinase (exo and endo inulinase) and invertase were obtained for Candida arborea the best results, invertase production having significantly higher concentrations than inulinase (35.92 U/mL invertase activity vs. 8.01 U/mL inulinase activity), on M5 medium. These results could be useful for industrial applications such as food industry, pharmaceutical.
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来源期刊
Romanian Biotechnological Letters
Romanian Biotechnological Letters 生物-生物工程与应用微生物
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