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Approach toward enhancement of halophilic protease production by Halobacterium sp. strain LBU50301 using statistical design response surface methodology

机译:Halobacterium sp。增强嗜盐蛋白酶生产的方法。统计设计响应面法的菌株LBU50301

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摘要

A new potent halophilic protease producer, Halobacterium sp. strain LBU50301 was isolated from salt-fermented fish samples (budu) and identified by phenotypic analysis, and 16S rDNA gene sequencing. Thereafter, sequential statistical strategy was used to optimize halophilic protease production from Halobacterium sp. strain LBU50301 by shake-flask fermentation. The classical one-factor-at-a-time (OFAT) approach determined gelatin was the best nitrogen source. Based on Plackett>–Burman (PB) experimental design; gelatin, MgSO4·7H2O, NaCl and pH significantly influenced the halophilic protease production. Central composite design (CCD) determined the optimum level of medium components. Subsequently, an 8.78-fold increase in corresponding halophilic protease yield (156.22 U/mL) was obtained, compared with that produced in the original medium (17.80 U/mL). Validation experiments proved the adequacy and accuracy of model, and the results showed the predicted value agreed well with the experimental values. An overall 13-fold increase in halophilic protease yield was achieved using a 3 L laboratory fermenter and optimized medium (231.33 U/mL).
机译:一种新的强效嗜盐蛋白酶生产商Halobacterium sp。从盐发酵鱼样品(budu)中分离菌株LBU50301,并通过表型分析和16S rDNA基因测序进行鉴定。此后,使用顺序统计策略来优化Halobacterium sp。的嗜盐蛋白酶生产。摇瓶发酵的菌株LBU50301。经典的一次一次因子(OFAT)方法确定明胶是最佳的氮源。基于Plackett > – Burman(PB)实验设计;明胶,MgSO4·7H2O,NaCl和pH值显着影响了嗜盐蛋白酶的产生。中央复合设计(CCD)确定了中等成分的最佳水平。随后,与原始培养基中产生的相应盐产量相比,相应的嗜盐蛋白酶产量(156.22 U / mL)增加了8.78倍。验证实验证明了模型的正确性和准确性,结果表明预测值与实验值吻合良好。使用3 L实验室发酵罐和优化的培养基(231.33 U / mL)可实现嗜盐蛋白酶产量的整体提高13倍。

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