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采用统计方法在固态发酵条件下从枯草芽孢杆菌RCK生产和回收碱性胞外聚半乳糖醛酸酶

Production and recovery of an alkaline exo-polygalacturonase from Bacillus subtilis RCK under solid-state fermentation using statistical approach.

作者信息

Gupta Shefali, Kapoor Mukesh, Sharma Krishna Kant, Nair Lavanya M, Kuhad Ramesh Chander

机构信息

Lignocellulose Biotechnology Laboratory, Department of Microbiology, University of Delhi South Campus, Benito Juarez Marg, New Delhi 110021, India.

出版信息

Bioresour Technol. 2008 Mar;99(5):937-45. doi: 10.1016/j.biortech.2007.03.009. Epub 2007 Apr 24.

Abstract

The empirical models developed through two independent RSM (RSM-I, 2(3); RSM-II, 2(5)) in terms of effective operational factors of inoculum age, inoculum volume, wheat bran-to-moisture ratio (RSM-I) and contact time, extraction temperature, agitation, fermented bran-to-solvent ratio and SDS (RSM-II) were found adequate to describe the optimization of exo-polygalacturonase from Bacillus subtilis RCK under solid-state fermentation (SSF) conditions. Through the analysis of RSM-I, wheat bran-to-moisture ratio and inoculum volume were found to be the most significant factors and an increment in both had a positive effect in enhancing enzyme yield, while in RSM-II all the factors significantly affected enzyme recovery except fermented bran-to-solvent ratio, which had the least impact within the ranges investigated in enhancing enzyme recovery. Based on contour plots and variance analysis, optimum operational conditions for maximum exo-polygalacturonase yield were achieved when 1.5% (v/w) of 24h old (OD(600 nm) approximately 2.7+/-0.2) B. subtilis RCK cells were inoculated on moistened wheat bran (1:7 solid substrate-to-moisture ratio) and enzyme was harvested by addition of solvent (1:6 fermented bran-to-solvent ratio) under shaking conditions (200 rpm) in presence of SDS (0.25% w/v) for 15 min at 35 degrees C. An over all 3.4 fold (1.7-fold RSM-I; 2.0 fold RSM-II) increase in enzyme production was attained because of optimization by RSM.

摘要

通过两个独立的响应曲面法(RSM-I,2(3);RSM-II,2(5)),依据接种龄、接种量、麦麸与水分比(RSM-I)以及接触时间、提取温度、搅拌、发酵麸皮与溶剂比和十二烷基硫酸钠(SDS)(RSM-II)等有效操作因素建立的经验模型,被发现足以描述枯草芽孢杆菌RCK在固态发酵(SSF)条件下外切多聚半乳糖醛酸酶的优化过程。通过对RSM-I的分析,发现麦麸与水分比和接种量是最显著的因素,两者的增加对提高酶产量有积极影响,而在RSM-II中,除发酵麸皮与溶剂比外,所有因素均对酶回收率有显著影响,在研究范围内,发酵麸皮与溶剂比对提高酶回收率的影响最小。基于等高线图和方差分析,当将1.5%(v/w)的24小时龄(OD(600 nm)约为2.7±0.2)枯草芽孢杆菌RCK细胞接种在湿润的麦麸上(固形物与水分比为1:7),并在35℃、SDS(0.25% w/v)存在下、200 rpm振荡条件下加入溶剂(发酵麸皮与溶剂比为1:6)15分钟来收获酶时,可实现外切多聚半乳糖醛酸酶产量最大化的最佳操作条件。由于通过响应曲面法进行了优化,酶产量总体提高了3.4倍(RSM-I提高了1.7倍;RSM-II提高了2.0倍)。

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