Jach Monika Elżbieta, Baj Tomasz, Juda Marek, Świder Robert, Mickowska Barbara, Malm Anna
Department of Molecular Biology, The John Paul II Catholic University of Lublin, 1i Konstantynów Street, 20-708, Lublin, Poland.
Chair and Department of Pharmacognosy, Medical University of Lublin, 1 Chodzki Street, 20-093, Lublin, Poland.
AMB Express. 2020 Feb 18;10(1):35. doi: 10.1186/s13568-020-00968-x.
Yarrowia lipolytica is an oleaginous yeast species with the ability to grow on a number of substrates types, especially industrial wastes. This paper concerns the statistical optimization of fermentation parameters and media to ensure consistent and improved Y. lipolytica protein production. A strain of Y. lipolytica A-101 was observed to be proficient in producing single cell protein, amino acids, and vitamin B12 while utilizing biofuel waste instead of a complete YPD medium for yeast growth. A fractional fractal design experiment was then applied, and the two fermentation parameters of temperature and pH were recognized to have a significant effect on the protein and amino acid production. Subsequently, the response surface methodology with a three-level complete factorial design was employed to optimize these influential parameters. Therefore, five different measuring systems were utilized to construct a quadratic model and a second-order polynomial equation. Optimal levels of parameters were then obtained by analysis of the model and the numerical optimization method. When the Y. lipolytica A-101 was cultivated at optimized pH (5.0) using biofuel waste as a medium, the protein concentration was increased to 8.28-a 44% enhancement as compared to the original (3.65). This study has thus demonstrated a beneficial way to cultivate Y. lipolytica A-101 on biofuel waste for enhanced production of single cell protein and amino acids for use in human diet and in animal feed.
解脂耶氏酵母是一种产油酵母,能够在多种底物类型上生长,尤其是工业废料。本文涉及发酵参数和培养基的统计优化,以确保解脂耶氏酵母蛋白质产量的稳定和提高。观察到一株解脂耶氏酵母A - 101在利用生物燃料废料而非完整的YPD培养基促进酵母生长时,能够高效生产单细胞蛋白、氨基酸和维生素B12。随后进行了分数析因设计实验,发现温度和pH这两个发酵参数对蛋白质和氨基酸产量有显著影响。接着,采用具有三级全因子设计的响应面法对这些影响参数进行优化。因此,利用五种不同的测量系统构建了一个二次模型和一个二阶多项式方程。然后通过对模型的分析和数值优化方法获得了参数的最佳水平。当使用生物燃料废料作为培养基,在优化的pH值(5.0)下培养解脂耶氏酵母A - 101时,蛋白质浓度提高到8.28,与原来的(3.65)相比提高了44%。因此,本研究证明了一种利用生物燃料废料培养解脂耶氏酵母A - 101的有益方法,可提高用于人类饮食和动物饲料的单细胞蛋白和氨基酸的产量。