College of Life Science, Shandong Province Key Laboratory of Applied Mycology, Qingdao Agricultural University, Qingdao, 266109, China.
College of Plant Health and Medicine, The Key Laboratory of Integrated Crop Pest Management of Shandong Province, Qingdao Agricultural University, Qingdao, 266109, China.
Bioprocess Biosyst Eng. 2018 Nov;41(11):1707-1716. doi: 10.1007/s00449-018-1994-0. Epub 2018 Aug 1.
Microbial oils can be used for biodiesel production and fumaric acid (FA) is widely used in the food and chemical industries. In this study, the production of lipids and FA by Aureobasidium pullulans var. aubasidani DH177 was investigated. A high initial carbon/nitrogen ratio in the medium promoted the accumulation of lipids and FA. When the medium contained 12.0% glucose and 0.2% NHNO, the yeast strain DH177 accumulated 64.7% (w/w) oil in its cells, 22.4 g/l cell biomass and 32.3 g/l FA in a 5-L batch fermentation. The maximum yields of oil and FA were 0.12 g/g and 0.27 g/g of consumed sugar, respectively. The compositions of the produced fatty acids were C (0.6%), C (24.9%), C (4.4%), C (2.1%), C (57.6%), and C (10.2%). Biodiesel obtained from the extracted oil burned well. This study provides the pioneering utilization of the yeast strain DH177 for the integrated production of oil and FA.
微生物油脂可用于生物柴油生产,富马酸(FA)广泛应用于食品和化学工业。本研究以出芽短梗霉 DH177 为出发菌株,研究了其产油脂和 FA 的条件。结果表明,培养基中较高的初始碳氮比有利于油脂和 FA 的积累。当培养基中含有 12.0%葡萄糖和 0.2% NHNO 时,酵母菌株 DH177 在 5-L 分批发酵中积累了 64.7%(w/w)的细胞油脂、22.4 g/L 的细胞生物量和 32.3 g/L 的 FA。油脂和 FA 的最大产率分别为 0.12 g/g 和 0.27 g/g 消耗的糖。所产生的脂肪酸组成分别为 C(0.6%)、C(24.9%)、C(4.4%)、C(2.1%)、C(57.6%)和 C(10.2%)。提取的油脂制备的生物柴油燃烧性能良好。本研究为出芽短梗霉 DH177 用于油脂和 FA 的联产提供了开创性的应用。