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Optimization of novel halophilic lipase production by Fusarium solani strain NFCCL 4084 using palm oil mill effluent

机译:利用棕榈油磨坊出水优化镰孢镰刀菌NFCCL 4084生产新型嗜盐脂肪酶

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摘要

Among different sources of lipases, fungal lipases have continued to attract a wide range of applications. Further, halophilic lipases are highly desirable for biodiesel production due to the need to mitigate environmental pollution caused as result of extensive use of fossil fuels. However, currently, the high production cost limits the industrial application of lipases. In order to address this issue, we have attempted to optimize lipase production by Fusarium solani NFCCL 4084 and using palm oil mill effluent (POME) based medium. The production was optimized using a combinatory approach of Plackett-Burman (PB) design, one factor at a time (OFAT) design and face centred central composite design (FCCCD). The variables (malt extract, (NH4)2SO4, CaCl2, MgSO4, olive oil, peptone, K2HPO4, NaNO3, Tween-80, POME and pH) were analyzed using PB design and the variables with positive contrast coefficient were found to be K2HPO4, NaNO3, Tween-80, POME and pH. The significant variables selected were further analyzed for possible optimum range by using OFAT approach and the findings revealed that K2HPO4, NaNO3, and Tween-80 as the most significant medium components, and thus were further optimized by using FCCCD. The optimum medium yielded a lipase with an activity of 7.8 U/ml, a significant 3.2-fold increase compared to un-optimized medium. The present findings revealed that POME is an alternative and suitable substrate for halophilic lipase production at low cost. Also, it is clearly evident that the combinatory approach employed here proved to be very effective in producing high activity halophilic lipases, in general.
机译:在脂肪酶的不同来源中,真菌脂肪酶继续吸引着广泛的应用。此外,由于需要减轻由于广泛使用化石燃料而造成的环境污染,因此对于生物柴油的生产,非常需要嗜盐脂肪酶。但是,目前,高生产成本限制了脂肪酶的工业应用。为了解决此问题,我们尝试通过使用镰刀菌NFCCL 4084并使用基于棕榈油厂废液(POME)的培养基来优化脂肪酶的生产。使用Plackett-Burman(PB)设计,一次因素(OFAT)设计和面心中央复合材料设计(FCCCD)的组合方法优化了生产。使用PB设计分析了变量(麦芽提取物,(NH4)2SO4,CaCl2,MgSO4,橄榄油,蛋白ept,K2HPO4,NaNO3,Tween-80,POME和pH),发现具有正对比度系数的变量为K2HPO4, NaNO3,Tween-80,POME和pH。通过使用OFAT方法进一步对选定的重要变量进行了可能的最佳范围分析,结果表明K2HPO4,NaNO3和Tween-80是最重要的培养基成分,因此使用FCCCD进行了进一步优化。最佳培养基产生的脂肪酶的活性为7.8 U / ml,与未优化的培养基相比,增加了3.2倍。目前的发现表明,POM是低成本生产嗜盐脂肪酶的替代和合适的底物。同样,很明显,通常证明在此使用的组合方法对于产生高活性的嗜盐脂肪酶非常有效。

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