Papanikolaou S, Chevalot I, Komaitis M, Marc I, Aggelis G
Laboratoire des Sciences du Génie Chimique-CNRS, ENSIC, UPR 6811, Vandoeuvre-lès-Nancy, France.
Appl Microbiol Biotechnol. 2002 Mar;58(3):308-12. doi: 10.1007/s00253-001-0897-0. Epub 2001 Dec 11.
The growth of an oleaginous strain of Yarrowia lipolytica on an industrial fat composed of saturated free fatty acids (stearin) was studied. Lipid accumulation during primary anabolic growth was critically influenced by the medium pH and the incubation temperature. This process was independent of the nitrogen concentration in the culture medium, but was favored at a high carbon substrate level and at a low aeration rate. At pH 6 and a temperature of 28-33 degrees C, 9-12 g/l of dry biomass was produced, whereas significant quantities of lipids were accumulated inside the yeast cells (0.44-0.54 g of lipid per gram of biomass). The strain showed the tendency to degrade its storage lipids, although significant amounts of substrate fat, rich in stearic acid, remained unconsumed in the culture medium. Y. lipolytica presented a strong fatty acid specificity. The fatty acids C12:0, C14:0, and C16:0 were rapidly incorporated and mainly used for growth needs, while C18:0 was incorporated with reduced rates and was mainly accumulated as storage material. Reserve lipids, principally composed of triacylglycerols (55% w/w of total lipids) and free fatty acids (35% w/w), were rich in stearic acid (80% w/w), while negligible amounts of unsaturated fatty acids were detected. When industrial glycerol was used as co-substrate, together with stearin, unsaturated fatty acid concentration in the reserve lipid increased.
研究了解脂耶氏酵母的一个产油菌株在由饱和游离脂肪酸(硬脂精)组成的工业脂肪上的生长情况。初级合成代谢生长过程中的脂质积累受到培养基pH值和培养温度的严重影响。这个过程与培养基中的氮浓度无关,但在高碳底物水平和低通气速率下更有利。在pH值为6、温度为28 - 33摄氏度时,可产生9 - 12克/升的干生物量,同时酵母细胞内积累了大量脂质(每克生物量含0.44 - 0.54克脂质)。尽管培养基中仍有大量富含硬脂酸 的底物脂肪未被消耗,但该菌株表现出降解其储存脂质的趋势。解脂耶氏酵母表现出很强的脂肪酸特异性。脂肪酸C12:0、C14:0和C16:0被快速吸收并主要用于生长需求,而C18:0的吸收速率较低,主要作为储存物质积累。储备脂质主要由三酰甘油(占总脂质的55% w/w)和游离脂肪酸(占35% w/w)组成,富含硬脂酸(占80% w/w),而检测到的不饱和脂肪酸含量可忽略不计。当工业甘油与硬脂精一起用作共底物时,储备脂质中的不饱和脂肪酸浓度增加。