Department of Biology and Ecology, Faculty of Natural Sciences, Matej Bel University, 974 01 Banská Bystrica, Slovakia.
Imaging methods core facility at BIOCEV, Faculty of Science, Charles University, Vestec, Prague-West 252 50, Czech Republic.
J Biotechnol. 2022 Jun 10;351:50-59. doi: 10.1016/j.jbiotec.2022.04.013. Epub 2022 Apr 29.
Euglena gracilis is a freshwater flagellate possessing secondary chloroplast of green algal origin. This protist has numerous biotechnological applications such as production of biofuels and pharmaceuticals, and it can be also used for bioremediation of polluted water and wastewater. One of the highest limitations for its large-scale cultivation is that it cannot synthesize vitamins B and B which are expensive and they have to be added to media. This study revealed that E. gracilis can be grown for long time periods without the addition of vitamins B and B in the co-culture containing filamentous fungus Cladosporium westerdijkiae, and bacteria Lysinibacillus boronitolerans and Pseudobacillus badius. Growing of E. gracilis in such co-cultures without the addition of vitamins can dramatically reduce large scale cultivation costs. Moreover, C. westerdijkiae could be used in biotechnology for immobilization and effective harvesting of E. gracilis from big cultivation containers by bioflocculation.
衣藻是一种淡水鞭毛藻,具有绿藻来源的次级叶绿体。这种原生生物有许多生物技术应用,如生产生物燃料和药物,也可用于受污染水和废水的生物修复。大规模培养的一个最高限制因素是,它不能合成维生素 B 和 B,而这些维生素既昂贵又必须添加到培养基中。这项研究表明,在含有丝状真菌西地头孢霉、细菌解淀粉芽孢杆菌和短小芽孢杆菌的共培养物中,衣藻可以在不添加维生素 B 和 B 的情况下长时间生长。在没有添加维生素的情况下培养衣藻可以显著降低大规模培养的成本。此外,西地头孢霉可以用于生物技术,通过生物絮凝来固定和有效收获大型培养容器中的衣藻。