首页> 外文期刊>Food and Bioproducts Processing. Transactions of the Institution of Chemical Engineers, Part C >Optimization of extracellular lipase production by Debaryomyces hansenii isolates from dry-salted olives using response surface methodology.
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Optimization of extracellular lipase production by Debaryomyces hansenii isolates from dry-salted olives using response surface methodology.

机译:使用响应表面方法优化汉萨德巴利酵母从干盐橄榄中分离出的细胞外脂肪酶的产量。

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摘要

The lipase production by Debaryomyces hansenii strains isolated from dry-salted olives cv. Thassos was investigated. Glucose, olive oil and pH were essential to obtain a high lipase yield. Optimization of the medium components which enhance lipase production by the strain D. hansenii YLL29 was achieved with the aid of response surface methodology. The composition of the optimized medium to enhance lipase production by D. hansenii is as follows (g/L): yeast extract 5.0, peptone 10, K2HPO4 4.0, MgSO4 .7H2O 1.0, glucose 13.1, olive oil 19, Tween 80 3.8, and pH 6.4. Practical validation of the optimum medium gave lipase activity 7.44 U/mL, which was 2.28-fold higher than the unoptimized conditions. Under the optimized conditions the twenty D. hansenii isolates showed increased lipase activity fluctuating between 6.00 and 7.44 U/mL. The results corroborated the validity and the effectiveness of the model, as the statistical approaches proved to be suitable in predicting the optimum production medium composition for maximum extracellular lipase yield. The high lipolytic activity of D. hansenii YLL29 (7.44 U/mL) indicates the possible commercial importance of this isolate
机译:从干盐橄榄cv中分离出的汉逊德巴利酵母菌株产生的脂肪酶。 Thassos被调查。葡萄糖,橄榄油和pH值对于获得高脂肪酶产量至关重要。借助于响应表面方法,实现了由汉氏梭菌YLL29增强脂肪酶生产的培养基成分的优化。优化的培养基以提高汉氏梭菌的脂肪酶产量,其组成如下(g / L):酵母提取物5.0,蛋白ept10,K 2 HPO 4 4.0, MgSO 4 7H 2 O 1.0,葡萄糖13.1,橄榄油19,吐温80 3.8和pH 6.4。最佳培养基的实际验证显示脂肪酶活性为7.44 U / mL,比未优化的条件高2.28倍。在优化的条件下,二十种汉氏梭状芽孢杆菌分离株显示出增加的脂肪酶活性,在6.00至7.44 U / mL之间波动。结果证明了该模型的有效性和有效性,因为统计方法证明适合预测最大细胞外脂肪酶产量的最佳生产培养基组成。汉氏梭菌YLL29(7.44 U / mL)的高脂解活性表明该分离株可能具有商业意义

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