Technical University of Denmark, Department of Biotechnology and Biomedicine, Søltofts Plads Building 223, 2800 Kgs. Lyngby, Denmark.
SBU Food, Arla Food Ingredients Group P/S, Sønderhøj 10-12, 8260 Viby J, Denmark.
N Biotechnol. 2023 Dec 25;78:105-115. doi: 10.1016/j.nbt.2023.10.005. Epub 2023 Oct 15.
The halotolerant non-conventional yeast Debaryomyces hansenii can grow in media containing high concentrations of salt (up to 4 M), metabolize alternative carbon sources than glucose, such as lactose or glycerol, and withstand a wide range of temperatures and pH. These inherent capabilities allow this yeast to grow in harsh environments and use alternative feedstock than traditional commercial media. For example, D. hansenii could be a potential cell factory for revalorizing industrial salty by-products, using them as a substrate for producing new valuable bioproducts, boosting a circular economy. In this work, three different salty by-products derived from the dairy and biopharmaceutical industry have been tested as a possible feedstock for D. hansenii's growth. The yeast was not only able to grow efficiently in all of them but also to produce a recombinant protein (Yellow Fluorescent Protein, used as a model) without altering its performance. Moreover, open cultivations at different laboratory scales (1.5 mL and 1 L) were performed under non-sterile conditions and without adding fresh water or any nutritional supplement to the cultivation, making the process cheaper and more sustainable.
耐盐非传统酵母德巴利氏酵母 Hansen 可以在含有高浓度盐(高达 4 M)的培养基中生长,代谢葡萄糖以外的替代碳源,如乳糖或甘油,并能耐受广泛的温度和 pH 值。这些固有能力使这种酵母能够在恶劣的环境中生长,并使用替代原料,而不是传统的商业培养基。例如,D. hansenii 可以成为一种有潜力的细胞工厂,用于重新利用工业含盐副产物,将其作为生产新有价值的生物制品的底物,推动循环经济。在这项工作中,已经测试了三种不同的源自乳制品和生物制药行业的含盐副产物,作为 D. hansenii 生长的可能原料。酵母不仅能够在所有这些副产物中高效生长,而且能够生产重组蛋白(黄色荧光蛋白,用作模型)而不改变其性能。此外,在不同的实验室规模(1.5 mL 和 1 L)下进行了开放式培养,在非无菌条件下进行,并且在培养过程中不添加淡水或任何营养补充剂,使该过程更便宜和更可持续。