Szotkowski Martin, Plhalová Žaneta, Sniegoňová Pavlína, Holub Jiří, Chujanov Oleg, Špačková Dominika, Blažková Jana, Márová Ivana
Faculty of Chemistry, Brno University of Technology, 612 00 Brno, Czech Republic.
Microorganisms. 2023 Apr 13;11(4):1013. doi: 10.3390/microorganisms11041013.
The consequence of the massive increase in population in recent years is the enormous production of mainly industrial waste. The effort to minimize these waste products is, therefore, no longer sufficient. Biotechnologists, therefore, started looking for ways to not only reuse these waste products, but also to valorise them. This work focuses on the biotechnological use and processing of waste oils/fats and waste glycerol by carotenogenic yeasts of the genus and . The results of this work show that the selected yeast strains are able to process waste glycerol as well as some oils and fats in a circular economy model and, moreover, are resistant to potential antimicrobial compounds present in the medium. The best-growing strains, CCY 062-002-004 and CCY 020-002-026, were selected for fed-batch cultivation in a laboratory bioreactor in a medium containing a mixture of coffee oil and waste glycerol. The results show that both strains were able to produce more than 18 g of biomass per litre of media with a high content of carotenoids (10.757 ± 1.007 mg/g of CDW in and 10.514 ± 1.520 mg/g of CDW in , respectively). The overall results prove that combining different waste substrates is a promising option for producing yeast biomass enriched with carotenoids, lipids, and beta-glucans.
近年来人口大量增加的后果是主要工业废物的大量产生。因此,将这些废物产量降至最低的努力已不再足够。于是,生物技术专家开始寻找方法,不仅要再利用这些废物,还要使其增值。这项工作聚焦于利用属于 和 的产类胡萝卜素酵母对废油脂和废甘油进行生物技术利用和处理。这项工作的结果表明,所选酵母菌株能够在循环经济模式下处理废甘油以及一些油脂,而且对培养基中存在的潜在抗菌化合物具有抗性。选择生长最佳的菌株,即 CCY 062 - 002 - 004和 CCY 020 - 002 - 026,在实验室生物反应器中于含有咖啡油和废甘油混合物的培养基中进行分批补料培养。结果表明,两种菌株每升培养基都能够产生超过18克的生物质,且类胡萝卜素含量高( 中为10.757 ± 1.007毫克/克细胞干重, 中为10.514 ± 1.520毫克/克细胞干重)。总体结果证明,将不同的废弃底物结合起来是生产富含类胡萝卜素、脂质和β - 葡聚糖的酵母生物质的一个有前景的选择。