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Optimization of Parameters for the Production of Lipase from Pseudomonas sp. BUP6 by Solid State Fermentation

机译:假单胞菌生产脂肪酶的参数优化BUP6通过固态发酵

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Solid-state fermentation (SSF) holds tremendous potentials for the production of industrially significant enzymes. The present study describes the production of lipase by a novel rumen bacterium, Pseudomonas sp. strain BUP6 on agro-industrial residues. Pseudomonas sp. strain BUP6 showed higher lipase production when grown in Basal salt medium (BSM) supplemented with oil cakes. Initially, five different oil cakes (obtained after extracting oil from coconut, groundnut, cotton seed, gingelly or soybean) were screened to find out the most suitable substrate-cum-inducer for the production of lipase. Among them, groundnut cake supported the maximum production of lipase (107.44 U/gds). Box-Behnken Design (BBD), followed by response surface methodology (RSM) was employed to optimize the culture parameters for maximizing the production of lipase. Using the software Minitab 14, four different parameters like temperature, pH, moisture content and incubation time were selected for the statistical optimization, which resulted in 0.7 fold increase (i.e., 180.75 U/gds) in production of lipase under the optimum culture conditions (temperature 28°C, pH 5.9, moisture 33% and incubation 2 d). Thus, this study signifies the importance of SSF for the production of industrially-significant lipase using agro-industrial residues as solid support.
机译:固态发酵(SSF)具有生产工业上重要的酶的巨大潜力。本研究描述了新型瘤胃细菌假单胞菌sp。产生脂肪酶。农药残基上的BUP6菌株。假单胞菌当在补充有油饼的基础盐培养基(BSM)中生长时,菌株BUP6表现出较高的脂肪酶产生。最初,筛选了五种不同的油饼(从椰子,花生,棉籽,齿龈或大豆中提取油后获得),以找出最适合生产脂肪酶的底物兼诱导剂。其中,花生饼支持脂肪酶的最大产量(107.44 U / gds)。采用Box-Behnken设计(BBD),然后采用响应面方法(RSM)来优化培养参数,以最大限度地提高脂肪酶的产量。使用Minitab 14软件,选择了四个不同的参数(例如温度,pH,水分含量和孵育时间)进行统计优化,结果在最佳培养条件下,脂肪酶的产量增加了0.7倍(即180.75 U / gds)(温度28°C,pH 5.9,湿度33%,孵育2 d)。因此,该研究表明SSF对于使用农业工业残渣作为固体支持物生产具有工业意义的脂肪酶的重要性。

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