Department of Chemical Engineering, Federal University of Santa Maria, Santa Maria, Brazil.
Department of Rural Engineering, Federal University of Santa Maria, Santa Maria, Brazil.
Nat Prod Res. 2024 May;38(10):1662-1669. doi: 10.1080/14786419.2023.2214946. Epub 2023 May 21.
Microbial lipids are a valuable source of potential biofuels and essential polyunsaturated fatty acids. The optimization of the fermentation conditions is a strategy that affects the total lipid concentration. The genus sp. has been the target of investigations based on its potential bioherbicidal action. Therefore, this study developed a strategy to maximize the biomass concentration and lipid accumulation by sp. in submerged fermentation. Different media compositions and process variables were investigated in shaken flasks and bioreactor in batch and fed-batch modes. Maximum biomass concentration and lipid accumulations were 40.17 g/L and 21.32 wt% in the bioreactor, which was 2.1 and 5.4 times higher than the same condition in shaken flasks, respectively. This study presents relevant information to the production of fungal lipids since few investigations are exploring the fed-batch strategy to increase the yield of fungi lipids, as well as few studies investigating sp. to produce lipids.
微生物油脂是有价值的生物燃料和必需多不饱和脂肪酸的潜在来源。优化发酵条件是一种影响总脂质浓度的策略。属 已成为研究的目标,因为它具有潜在的生物除草作用。因此,本研究开发了一种通过 属在浸没发酵中最大化生物量浓度和脂质积累的策略。在摇瓶和生物反应器中以分批和补料分批模式研究了不同的培养基组成和过程变量。在生物反应器中获得的最大生物量浓度和脂质积累分别为 40.17g/L 和 21.32wt%,分别比摇瓶中的相同条件高 2.1 倍和 5.4 倍。本研究提供了与真菌油脂生产相关的信息,因为很少有研究探索补料分批策略来提高真菌油脂的产量,也很少有研究调查 属来生产油脂。