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首页> 外文期刊>Food and Bioproducts Processing. Transactions of the Institution of Chemical Engineers, Part C >Extracellular endo-mannanase from Bacillus sp. CFR1601: economical production using response surface methodology and downstream processing using aqueous two phase system.
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Extracellular endo-mannanase from Bacillus sp. CFR1601: economical production using response surface methodology and downstream processing using aqueous two phase system.

机译:芽孢杆菌属的细胞外甘露聚糖酶。 CFR1601:使用响应面方法进行经济的生产,并使用含水两相系统进行下游处理。

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摘要

Bacillus sp. CFR1601, isolated from decaying plant litter, produced an extra-cellular endo-mannanase (198.0 IU/g) under solid state fermentation (SSF) using defatted coconut residue as the prime solid substrate. In order to enhance endo-mannanase production, three component, five level central composite design (CCD) of response surface methodology (RSM) was used. Based on contour plots and variance analysis, optimum conditions for endo-mannanase production from Bacillus sp. CFR1601 were attained when defatted coconut residue was supplemented with sesame oil meal (10.0, w/w), Tween-80 (0.2%, v/v) and inoculated with bacterial cells from log phase (12 h old; OD600 nm asymptotic-to > 3.6). The empirical model developed through RSM brought about 4.04-4.39-fold (800.0-870.0 IU/g) improvement in endo-mannanase yield as compared to un-optimized growth conditions. Downstream processing of endo-mannanase from SSF media was carried out for the first time using polyethylene glycol (PEG)/salt aqueous two phase system (ATPS). ATPS system consisting of a combination of PEG 3350 12.0% (w/w), Na2SO4 12.0% (w/w), protein load 10.0% (w/w) and pH 5.0 resulted in one-sided partitioning of endo-mannanase towards bottom phase with 3.8-fold purification and 95.4% recovery. Second stage ATPS with fresh top phase further improved purification of endo-mannanase to 12.32-fold. Our overall results suggest a cost-effective and integrated process for production and downstream processing of endo-mannanase
机译:芽孢杆菌从腐烂的植物凋落物中分离出的CFR1601在脱脂椰子残渣作为主要固体底物的固态发酵(SSF)下产生了细胞外内甘露聚糖酶(198.0 IU / g)。为了提高甘露聚糖内切酶的产量,使用了响应面分析法(RSM)的三成分五级中央复合设计(CCD)。根据等高线图和方差分析,从芽孢杆菌产生甘露聚糖内切酶的最佳条件。在脱脂椰子残渣中添加芝麻油粉(10.0,w / w),Tween-80(0.2%,v / v)并接种对数期细菌细菌细胞(12 h龄; OD 600)时,可达到CFR1601 nm 渐近至> 3.6)。与未优化的生长条件相比,通过RSM开发的经验模型使甘露聚糖内切酶产量提高了约4.04-4.39倍(800.0-870.0 IU / g)。使用聚乙二醇(PEG)/盐水溶液两相系统(ATPS)首次从SSF培养基进行下游甘露聚糖酶的下游处理。 ATPS系统由PEG 3350 12.0%(w / w),Na 2 SO 4 12.0%(w / w),蛋白质负载10.0%(w / w)的组合组成w)和pH 5.0导致内甘露聚糖酶向底部相的单侧分配,具有3.8倍的纯化和95.4%的回收率。具有新鲜上层相的第二阶段ATPS将内甘露聚糖酶的纯化进一步提高至12.32倍。我们的总体结果表明,内切甘露聚糖酶的生产和下游加工具有成本效益和综合性

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