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米曲霉CFR 202利用农业副产品进行固态发酵生产果糖基转移酶

Production of fructosyl transferase by Aspergillus oryzae CFR 202 in solid-state fermentation using agricultural by-products.

作者信息

Sangeetha P T, Ramesh M N, Prapulla S G

机构信息

Department of Fermentation Technology and Bioengineering, Central Food Technological Research Institute, 570 013, Mysore, India.

出版信息

Appl Microbiol Biotechnol. 2004 Oct;65(5):530-7. doi: 10.1007/s00253-004-1618-2. Epub 2004 Jun 25.

Abstract

Fructosyl transferase (FTase) production by Aspergillus oryzae CFR 202 was carried out by solid-state fermentation (SSF), using various agricultural by-products like cereal bran, corn products, sugarcane bagasse,cassava bagasse (tippi) and by-products of coffee and tea processing. The FTase produced was used for the production of fructo-oligosaccharides (FOS), using 60% sucrose as substrate. Among the cereal bran used, rice bran and wheat bran were good substrates for FTase production by A. oryzae CFR 202. Among the various corn products used, corn germ supported maximum FTase production, whereas among the by-products of coffee and tea processing used, spent coffee and spent tea were good substrates, with supplementation of yeast extract and complete synthetic media. FTase had maximum activity at 60 degrees C and pH 6.0. FTase was stable up to 40 degrees C and in the pH range 5.0-7.0. Maximum FOS production was obtained with FTase after 8 h of reaction with 60% sucrose. FTase produced by SSF using wheat bran was purified 107-fold by ammonium sulphate precipitation (30-80%), DEAE cellulose chromatography and Sephadex G-200 chromatography. The molecular mass of the purified FTase was 116.3 kDa by SDS-PAGE. This study indicates the potential for the use of agricultural by-products for the efficient production of FTase enzyme by A. oryzae CFR 202 in SSF, thereby resulting in value addition of those by-products.

摘要

米曲霉CFR 202通过固态发酵(SSF)生产果糖基转移酶(FTase),使用各种农业副产品,如谷糠、玉米制品、甘蔗渣、木薯渣(蒂皮)以及咖啡和茶叶加工副产品。所生产的FTase用于以60%蔗糖为底物生产低聚果糖(FOS)。在所使用的谷糠中,米糠和麦麸是米曲霉CFR 202生产FTase的良好底物。在所使用的各种玉米制品中,玉米胚芽支持最大量的FTase生产,而在所使用的咖啡和茶叶加工副产品中,咖啡渣和茶渣是良好的底物,添加酵母提取物和完全合成培养基后效果更佳。FTase在60℃和pH 6.0时具有最大活性。FTase在40℃及pH 5.0 - 7.0范围内稳定。与60%蔗糖反应8小时后,使用FTase可获得最大量的FOS。通过固态发酵使用麦麸生产的FTase经硫酸铵沉淀(30 - 80%)、DEAE纤维素色谱和Sephadex G - 200色谱纯化了107倍。通过SDS - PAGE测定,纯化后的FTase分子量为116.3 kDa。本研究表明,利用农业副产品通过米曲霉CFR 202在固态发酵中高效生产FTase酶具有潜力,从而使这些副产品增值。

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