Bleisch Richard, Freitag Leander, Ihadjadene Yob, Sprenger Una, Steingröwer Juliane, Walther Thomas, Krujatz Felix
Institute of Natural Materials Technology, Technische Universität Dresden, 01069 Dresden, Germany.
Biotopa gGmbH-Center for Applied Aquaculture & Bioeconomy, 01454 Radeberg, Germany.
Life (Basel). 2022 Jun 27;12(7):961. doi: 10.3390/life12070961.
Microalgal biomass and metabolites can be used as a renewable source of nutrition, pharmaceuticals and energy to maintain or improve the quality of human life. Microalgae's high volumetric productivity and low impact on the environment make them a promising raw material in terms of both ecology and economics. To optimize biotechnological processes with microalgae, improving the productivity and robustness of the cell factories is a major step towards economically viable bioprocesses. This review provides an overview of random mutagenesis techniques that are applied to microalgal cell factories, with a particular focus on physical and chemical mutagens, mutagenesis conditions and mutant characteristics.
微藻生物质和代谢产物可作为营养、药物和能源的可再生来源,以维持或改善人类生活质量。微藻的高体积生产率和对环境的低影响,使其在生态和经济方面都成为一种有前景的原材料。为了优化微藻生物技术过程,提高细胞工厂的生产率和稳健性是迈向经济可行生物过程的重要一步。本文综述了应用于微藻细胞工厂的随机诱变技术,特别关注物理和化学诱变剂、诱变条件及突变体特征。