Ha Iksu, Kim Seungjun, Lee Yun-Yeong, Lee Junseo, Yun Jeonghee
Department of Forest Products and Biotechnology, Kookmin University, Seoul 02707, Republic of Korea.
Forest Carbon Graduate School, Kookmin University, 77 Jeongneungro, Seongbukgu, Seoul 02707, Republic of Korea.
Int J Mol Sci. 2025 Aug 19;26(16):8000. doi: 10.3390/ijms26168000.
This study aimed to optimize the parameters, including medium formulations and culture conditions, for submerged fermentation (SmF) systems using a mutant strain of sp., Mut-4. Optimization was performed using the one-factor-at-a-time (OFAT) method to enhance cellulase activity and productivity. Parameters such as the blending ratio of carbon sources, type of nitrogen source, and initial pH were evaluated for their effects on enzyme activity and productivity. The optimal conditions were determined to be as follows: a 3:1 Avicel-to-cellulose ratio, yeast extract as the nitrogen source, and an initial pH of 5.5. Under these conditions, cellulase production was initiated earlier, and the activity of all cellulase components, along with protein concentration, increased by 1.17- to 1.43-fold at the flask scale and by 1.3- to 2.0-fold at the reactor scale. These results demonstrate the superior activity and productivity of Mut-4 under optimized conditions, highlighting its potential for application in large-scale cellulase production.
本研究旨在优化使用sp.突变株Mut-4的深层发酵(SmF)系统的参数,包括培养基配方和培养条件。采用一次单因素(OFAT)方法进行优化,以提高纤维素酶活性和生产率。评估了碳源混合比例、氮源类型和初始pH等参数对酶活性和生产率的影响。确定的最佳条件如下:微晶纤维素与纤维素的比例为3:1,酵母提取物作为氮源,初始pH为5.5。在这些条件下,纤维素酶的产生更早开始,在摇瓶规模下,所有纤维素酶组分的活性以及蛋白质浓度提高了1.17至1.43倍,在反应器规模下提高了1.3至2.0倍。这些结果证明了Mut-4在优化条件下具有卓越的活性和生产率,突出了其在大规模纤维素酶生产中的应用潜力。