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The Use of Response Surface Methodology as a Statistical Tool for Media Optimization in Lipase Production from the Dairy Effluent Isolate Fusarium solani

机译:响应面方法学作为统计工具优化乳制品废水分离枯萎病菌脂肪酶生产中的培养基

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摘要

The optimization of extracellular lipase production by Fusarium isolani strain SKWF7 isolated from dairy wastewater was carried out in this study. Initially, the physicochemical factors significantly influencing enzyme production were studied by varying one-factor-at-a-time (OFAT). A mesophilic temperature of 40°C, alkaline pH of 8, and incubation period of 72 hours were found to be the optimal conditions for lipase production. Among the media components, the disaccharide sucrose acted as the best carbon source; palm oil as the best inducing lipid substrate; casein and (NH4)2SO4 as the best organic and inorganic nitrogen sources; Ca2+ ion as the best trace element. In the next phase of work, statistical optimization of medium components was performed by employing the Box-Behnken design of Response Surface Methodology (RSM). The optimum concentrations of three significant factors, namely, palm oil, (NH4)2SO4, and CaCO3 were determined by this method to be 5% (v/v), 5.5 g/L, and 0.1 g/L, respectively. RSM-guided design of experiments resulted in a maximum lipase production of 73.3 U/ml, which is a 1.7-fold increase in comparison with that obtained in the unoptimized medium. These results point towards the success of the model in developing a process for the production of lipase, an enzyme of enormous industrial significance.
机译:本研究从奶牛废水中分离得到了Fusarium isolani菌株SKWF7,生产胞外脂肪酶的优化。最初,通过一次改变一个因素(OFAT)研究了显着影响酶产生的物理化学因素。发现中温温度为40°C,碱性pH为8,潜伏期为72小时是生产脂肪酶的最佳条件。在培养基成分中,二糖蔗糖是最好的碳源。棕榈油是最好的诱导脂质底物;酪蛋白和(NH4)2SO4是最好的有机和无机氮源; Ca 2 + 离子为最佳微量元素。在下一阶段的工作中,通过采用响应曲面方法(RSM)的Box-Behnken设计对培养基成分进行统计优化。通过该方法确定的三个重要因素的最佳浓度分别为棕榈油,(NH4)2SO4和CaCO3,分别为5%(v / v),5.5μg/ L和0.1μg/ L。 RSM指导的实验设计导致最大的脂肪酶产量为73.3 U / ml,与未优化的培养基相比,增加了1.7倍。这些结果表明该模型在开发脂肪酶生产过程中的成功,脂肪酶是一种具有重大工业意义的酶。

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