Optimum Medium for Lipase Production by Lipolytic Filamentous Fungi Isolated from Kendari Landfill Soil

N. Rayani, Miftahul Ilmi
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引用次数: 1

Abstract

Lipase produced by Aspergillus is widely known and used in many industrial sectors. In a previous study, three lipolytic filamentous fungi were isolated from Kendari (Southeast Sulawesi, Indonesia) landfill soil and identified as Aspergillus niger KE1, Aspergillus terreus KC1, and Aspergillus fumigatus KE6. However, the optimization of these isolates has not been reported. In this study, statistical optimization was selected because it is more effective, efficient, economical, and robust in achieving results, and the possibility of analyzing the interaction effects among factors. Three lipolytic isolates were screened in the initial medium to obtain the highest lipolytic isolate, which was used in the medium optimization process. Optimization was performed using the series experimental design of Taguchi and RSM. Optimization successfully obtained the optimum medium with the reduction of the medium component from the previously reported medium. Aspergillus niger KE1 was the selected isolate with the highest lipase productivity after 72 h in the initial medium. The significant factors affecting lipase production were peptone, olive oil, glucose, and MgSO4 .7H2O. The model equation obtained was Y = 1043 ? 228 A + 300 B ? 19803 C + 99 A*A + 5720 B*B + 292855 C*C ? 979 A*B + 6563 A*C ? 56338 B*C. This model successfully predicted the lipase productivity with an R2 of 96.9%. The optimized medium was composed of 2% peptone, 0.1% olive oil, 0.5% glucose, and 0.075% MgSO4 .7H2O. Using the medium, lipase productivity increases 4.7-fold. Our results suggest that A. niger KE1 is a potential lipase source which catalyses the esterification reaction. Further research is needed to purify and characterize the lipase enzyme of this isolate.
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Kendari垃圾填埋场土壤溶脂丝状真菌产脂肪酶的最佳培养基
曲霉产生的脂肪酶是众所周知的,并在许多工业部门中使用。在之前的一项研究中,从Kendari(印度尼西亚东南苏拉威西)垃圾填埋场土壤中分离出三种溶脂丝状真菌,鉴定为黑曲霉KE1、土曲霉KC1和烟曲霉KE6。然而,这些分离物的优化还没有报道。在本研究中,选择统计优化是因为它在实现结果方面更有效、更高效、更经济、更稳健,并且有可能分析因素之间的相互作用效应。在初始培养基中筛选出三个脂解分离株,获得最高的脂解分离物,用于培养基优化过程。使用田口和RSM的系列实验设计进行优化。优化成功地获得了最佳培养基,从先前报道的培养基中减少了培养基成分。黑曲霉KE1是在初始培养基中72小时后脂肪酶生产率最高的菌株。影响脂肪酶生成的主要因素是蛋白胨、橄榄油、葡萄糖和MgSO4。7H2O。得到的模型方程为Y=1043?228 A+300 B?19803 C+99 A*A+5720 B*B+292855 C*C?979 A*B+6563 A*C?56338 B*C。该模型成功地预测了脂肪酶的产率,R2为96.9%。优化的培养基由2%蛋白胨、0.1%橄榄油、0.5%葡萄糖和0.075%MgSO4·7H2O组成。使用该培养基,脂肪酶的产率提高了4.7倍。我们的结果表明,黑曲霉KE1是催化酯化反应的潜在脂肪酶来源。需要进一步的研究来纯化和鉴定该分离物的脂肪酶。
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来源期刊
Asean Journal on Science and Technology for Development
Asean Journal on Science and Technology for Development Environmental Science-Waste Management and Disposal
CiteScore
1.50
自引率
0.00%
发文量
10
审稿时长
14 weeks
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