Department of Systems Biotechnology, Institute of Industrial and Environmental Biotechnology, National Institute of Genetic Engineering and Biotechnology (NIGEB), Tehran, Iran.
Faculty of Chemical Engineering, Babol Noshirvani University of Technology, Babol, Iran.
Biotechnol Lett. 2022 Oct;44(10):1217-1230. doi: 10.1007/s10529-022-03297-0. Epub 2022 Sep 4.
Ergosterol as a primary metabolite and precursor of vitamin D2, is the most plentiful mycosterols in fungal cell membrane. Process optimization to increase the yield and productivity of biological products is a topic of interest. Ultrasonic waves have many applications in biotechnology, like cell disruption, and enhancement of primary and secondary metabolites production. This study disclosed an optimal condition for ultrasound-assisted production (UAP) of ergosterol from Penicillium brevicompactum MUCL 19,011 using L Taguchi statistical method. The intensity (IS), time of sonication (TS), treatment frequency (TF), and number of days of treatment (DT) were allocated to study the effects of ultrasound on ergosterol production. The results were analyzed using Minitab version 19. The maximum ergosterol, 11 mg/g cell dry weight (CDW), was produced on the tenth day while all factors were at a low level. The days of treatment with a contribution of 45.48% was the most significant factor for ergosterol production. For the first time, this study revealed the positive effect of ultrasound on the production of ergosterol. Ergosterol production increased 73% (4.63 mg/g CDW) after process optimization. Finally, a mathematical model of ultrasound factors with a regression coefficient of R = 0.978 was obtained for the ergosterol production during ultrasound treatment.
麦角甾醇是维生素 D2 的主要代谢物和前体,是真菌细胞膜中最丰富的麦角固醇。优化工艺以提高生物制品的产量和生产力是一个研究热点。超声波在生物技术中有许多应用,如细胞破碎和提高初级和次级代谢产物的生产。本研究采用 L 型 Taguchi 统计方法,揭示了从 Penicillium brevicompactum MUCL 19,011 中超声辅助生产(UAP)麦角甾醇的最佳条件。强度(IS)、超声时间(TS)、处理频率(TF)和处理天数(DT)被分配来研究超声对麦角甾醇生产的影响。结果使用 Minitab 版本 19 进行分析。在所有因素处于低水平的情况下,第十天产生了最大量的麦角甾醇,为 11mg/g 细胞干重(CDW)。处理天数的贡献为 45.48%,是麦角甾醇生产的最重要因素。本研究首次揭示了超声对麦角甾醇生产的积极影响。经过工艺优化,麦角甾醇产量增加了 73%(4.63mg/g CDW)。最后,获得了超声处理期间麦角甾醇产量的超声因素数学模型,回归系数 R = 0.978。