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Optimization of Lipase Production by Bacillus megaterium

机译:巨大芽孢杆菌生产脂肪酶的优化

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Aim: To optimize lipase production by Bacillus megaterium in submerged fermentation Study Design: Collection of palm oil press fibres and effluent from different palm oil mills located within Ibadan Municipality. Isolation of Bacillus megaterium by cultivation in medium, submerged fermentation of palm oil press fibres and effluent by B. megaterium to produce lipase. Alteration of the cultural conditions to optimize production Place and Duration of Study: All work were done in the Department of Microbiology, Faculty of Science, University of Ibadan, from January–December 2014 Methodology: Palm oil press fibres and effluent were collected from various palm oil mills and were used as the source of isolation of microorganism. The isolated species were identified by studying the morphological, biochemical, characteristics and 16SrNA gene sequencing. The selected species was screened for lipase production Results: The results obtained revealed that maximum lipase production was recorded at pH 7.0 with an activity 2.13±0.15 U/ml while the best temperature that supported the optimum production of lipase was seen at 35°C with an activity of 3.30±0.10 U/ml and the best carbon and nitrogen sources were 2% glucose and 2.5% peptone concentrations showing activities of 1.83±0.05 U/ml and 2.60±0.10 U/ml respectively. An incubation period of 72 hours produced the optimum lipase with an activity of 3.26±0.05 U/ml. The separate additions of 0.3M Ca2+ and 0.3M Cl- supported maximum production of lipase. Conclusion: This study showed that lipase production by B. megaterium can be optimized and the best conditions for optimization included pH 7.0, temperature of 35°C, 72 hours incubation period in the presence of 2% glucose, 2.5% peptone concentrations and 0.3M Ca2+ and 0.3M Cl-.
机译:目的:优化浸没式发酵中巨大芽孢杆菌的脂肪酶生产研究设计:收集位于伊巴丹市不同棕榈油厂的棕榈油压榨纤维和废水。通过在培养基中培养,棕榈油压榨纤维的深层发酵和巨大芽孢杆菌的出水的发酵来分离巨大芽孢杆菌以产生脂肪酶。改变文化条件以优化产量研究地点和持续时间:2014年1月至12月,所有工作均在伊巴丹大学理学院微生物学系完成。方法:从各种棕榈中收集棕榈油压榨纤维和废水油厂,并被用作微生物的分离来源。通过研究形态,生化,特征和16SrNA基因测序来鉴定分离的物种。筛选选定种类的脂肪酶产生结果。结果:获得的结果表明,在pH 7.0时记录的最大脂肪酶产生活性为2.13±0.15 U / ml,而在35°C时则观察到支持脂肪酶最佳产生的最佳温度。活性为3.30±0.10 U / ml,最佳碳和氮源为2%葡萄糖和2.5%蛋白p浓度,分别显示出1.83±0.05 U / ml和2.60±0.10 U / ml的活性。温育72小时产生了最佳的脂肪酶,其活性为3.26±0.05U / ml。分别添加0.3M Ca 2 + 和0.3M Cl -支持最大的脂肪酶生产。结论:这项研究表明,可以优化巨大芽孢杆菌的脂肪酶生产,最优化的最佳条件包括pH 7.0,温度35°C,在2%葡萄糖,2.5%蛋白ept浓度和0.3M的条件下孵育72小时。 Ca 2+ 和0.3M Cl -

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