链霉菌SB-P1产葡萄糖异构酶发酵培养基的优化

Sheetal Bhasin, H A Modi
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引用次数: 27

摘要

培养基成分的组合对微生物的代谢途径有着深远的影响,它调节着许多代谢物的产生。葡萄糖异构酶(Glucose isomerase, GI)可以将葡萄糖异构化为果糖,是一种具有巨大市场潜力的酶。GI广泛用于生产高果糖玉米糖浆(HFCS)。高果糖玉米糖浆在食品和制药工业中用作甜味剂。链霉菌是众所周知的多种酶的生产者,包括葡萄糖异构酶。筛选了75株产糖异构酶的菌株。分离株链霉菌sp. SB-P1产生最多的胞外GI。纯碳源中的蔗糖和棉子糖,粗农业残留物中的玉米芯和小麦壳,酶效价较高。纯氮源中的硝酸钾和原油源中的大豆渣产量最大。测定了碳、氮和诱导剂对GI的定量影响。采用Plackett-Burman设计研究不同培养基成分的影响。蔗糖和木糖作为碳源,蛋白胨和大豆渣作为氮源有利于GI的产生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Optimization of Fermentation Medium for the Production of Glucose Isomerase Using Streptomyces sp. SB-P1.

The combination of medium ingredients has a profound influence on the metabolic pathways running in the microorganism which regulates the production of numerous metabolites. Glucose isomerase (GI), an enzyme with huge potential in the market, can isomerise glucose into fructose. GI is used widely for the production of High-Fructose Corn Syrup (HFCS). HFCS is used as a sweetener in food and pharmaceutical industries. Streptomyces are well-known producers of numerous enzymes including glucose isomerase. An array of 75 isolates was screened for the production of glucose isomerase. The isolate Streptomyces sp. SB-P1 was found to produce maximum amount of extracellular GI. Sucrose and raffinose among pure carbon sources and corn cob and wheat husk among crude agro residues were found to yield high enzyme titers. Potassium nitrate among pure nitrogen sources and soy residues among crude sources gave maximum production. Quantitative effect of carbon, nitrogen, and inducer on GI was also determined. Plackett-Burman design was used to study the effect of different medium ingredients. Sucrose and xylose as carbon sources and peptone and soy residues as nitrogen sources proved to be beneficial for GI production.

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