Department of Autotrophic Microorganisms, Institute of Microbiology, Academy of Sciences, Opatovický Mlýn, 37981 Třeboň, Czech Republic.
J Ind Microbiol Biotechnol. 2010 Dec;37(12):1307-17. doi: 10.1007/s10295-010-0802-x. Epub 2010 Nov 18.
Microscopic algae and cyanobacteria are excellent sources of numerous compounds, from raw biomass rich in proteins, oils, and antioxidants to valuable secondary metabolites with potential medical use. In the former Czechoslovakia, microalgal biotechnology developed rapidly in the 1960s with the main aim of providing industrial, high-yield sources of algal biomass. Unique cultivation techniques that are still in use were successfully developed and tested. Gradually, the focus changed from bulk production to more sophisticated use of microalgae, including production of bioactive compounds. Along the way, better understanding of the physiology and cell biology of productive microalgal strains was achieved. Currently, microalgae are in the focus again, mostly as possible sources of bioactive compounds and next-generation biofuels for the 21st century.
微观藻类和蓝细菌是许多化合物的绝佳来源,从富含蛋白质、油和抗氧化剂的原始生物质到具有潜在医学用途的有价值的次生代谢物。在前捷克斯洛伐克,微藻生物技术在 20 世纪 60 年代迅速发展,主要目的是提供工业上高产的藻类生物质来源。独特的培养技术被成功开发和测试。逐渐地,重点从批量生产转向更复杂地利用微藻,包括生产生物活性化合物。在此过程中,对生产性微藻菌株的生理学和细胞生物学有了更好的理解。目前,微藻再次成为焦点,主要作为生物活性化合物和 21 世纪新一代生物燃料的可能来源。