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Lipid Accumulation in an Oleaginous Yeast (Candida 107) Growing on Glucose Under Various Conditions in a One- and Two-Stage Continuous Culture

机译:一阶段和两阶段连续培养中不同条件下在葡萄糖上生长的油质酵母(Candida 107)中的脂质积累

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Lipid accumulation and fatty acid composition in Candida 107 have been studied using a two-stage continuous culture system in which the first vessel was run under carbon-limited conditions and then the entire output was passed into a second vessel, where lipid accumulation was stimulated by adding only glucose. Maximum lipid accumulation (28% of yeast [dry weight]) occurred for a volume ratio of vessel 1 to vessel 2 of 3:5, with 30 g of glucose per liter being added to vessel 2 operated at 25°C with an aeration rate of between 0.1 and 1.0 volume of air/volume of medium per min. Although the maximum specific rate of lipid formation (0.05 g of lipid/g of yeast per h) was higher than in a nitrogen-limited, single-stage system, the efficiency of lipid formation was much less and never exceeded 14 g of lipid produced per 100 g of glucose consumed. The fatty acid composition was not significantly altered in either the two-stage or single-stage culture (nitrogen-limited) systems by changes in growth temperature (from 19 to 33°C) or aeration rates (0.05 to 1.0 volume of air/volume of medium per min); or, in the two-stage system, by changes in the residence time of the yeast in the second vessel (from 3.2 to 24.4 h), or, in the single-stage system, by changes in pH (from 3.5 to 7.5). Only when the concentration of glucose entering vessel 2 of the two-stage system was less than 30 g/liter did significant changes in the fatty acids occur. Thus, although a two-stage continuous culture system allows lipid accumulation to be separated from the growth phase, it offers no practical advantages over a single-stage system as a means of producing microbial oils and fats.
机译:已使用两阶段连续培养系统研究了念珠菌107中的脂质积累和脂肪酸组成,其中第一个容器在碳限制条件下运行,然后将全部输出物传递到第二个容器中,在该容器中,脂质积累受到刺激仅添加葡萄糖。对于容器1与容器2的体积比为3:5,发生了最大的脂质积累(酵母的28%(干重)),将每升30 g的葡萄糖每升添加到在25°C通风操作的容器2中每分钟的空气体积/介质体积在0.1到1.0空气体积之间。尽管最大的脂质形成比速率(每小时0.05 g脂质/ g酵母)比在氮限制的单级系统中要高,但是脂质形成的效率却要低得多,并且从未超过产生的14 g脂质每消耗100克葡萄糖。在两阶段或单阶段培养(氮受限)系统中,脂肪酸组成均不会因生长温度(从19到33°C)或充气速率(空气/体积的0.05-1.0体积)的变化而显着改变。每分钟媒介数);或者,在两阶段系统中,通过改变酵母在第二个容器中的停留时间(从3.2到24.4 h),或者在单阶段系统中,通过改变pH(从3.5到7.5)。仅当进入两级系统的容器2的葡萄糖浓度小于30g /升时,脂肪酸才会发生显着变化。因此,尽管两阶段连续培养系统允许脂质积累与生长期分离,但作为生产微生物油脂的手段,它与单阶段系统相比没有任何实际优势。

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