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Optimization of culture conditions for production of lipase by a newly isolated bacterium Stenotrophomonas maltophilia

机译:新分离的嗜麦芽窄食单胞菌产脂肪酶的培养条件的优化

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The production of an extracellular lipase from the newly isolated Stenotrophomonas maltophilia was optimized via the statistical design method. During a screening program, the microorganism was isolated from soil samples, according to lipolytic activity on nutrient agar medium supplemented with Rhodamine B. It was identified using morphological and biochemical properties as well as 16S rDNA sequencing analysis. After the initial screening of 10 factors of the medium components, using Plackett-Burman design, results showed that four of them, included olive oil, peptone, yeast extract, and ferrous sulfate, exhibited significant effects on the lipase production by S. maltophilia. The level of each factor was subjected to optimization by using the Box-Behnken technique, and a 9.1-fold enhancement of lipase productivity (from 500. U/ml to 4559. U/ml) was achieved overall in the presence of optimum levels of the effective factors. Forty-three percent of capsaicin (initial concentration of 500. mg/L) was converted to vanillylamine after treatment with the optimized medium (lipase activity 4559. U/ml) for 18 h.
机译:通过统计设计方法优化了新分离的嗜麦芽窄食单胞菌的细胞外脂肪酶的生产。在筛选程序中,根据在补充了罗丹明B的营养琼脂培养基上的脂解活性,从土壤样品中分离出微生物。使用形态学和生化特性以及16S rDNA测序分析进行了鉴定。在使用Plackett-Burman设计初步筛选了10个因子的培养基成分后,结果表明其中的四个,包括橄榄油,蛋白p,酵母提取物和硫酸亚铁,对嗜麦芽糖酵母产生的脂肪酶产生了显着影响。使用Box-Behnken技术对每种因子的水平进行优化,在存在最佳水平的脂肪酶的情况下,总体上可使脂肪酶的生产率提高9.1倍(从500. U / ml增至4559. U / ml)。有效因素。用优化培养基(脂肪酶活性4559. U / ml)处理18小时后,将百分之43的辣椒素(初始浓度为500. mg / L)转化为香草醛。

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