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Forever panting and forever growing: physiology of Saccharomyces cerevisiae at extremely low oxygen availability in the absence of ergosterol and unsaturated fatty acids

机译:永远气喘吁吁和永远生长:在没有Ergosterol和不饱和脂肪酸的情况下,Saccharomyces酿酒酵母的生理学

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We sought to investigate how far the growth of Saccharomyces cerevisiae under full anaerobiosis is dependent on the widely used anaerobic growth factors (AGF) ergosterol and oleic acid. A continuous cultivation setup was employed and, even forcing ultrapure N-2 gas through an O-2 trap upstream of the bioreactor, neither cells from S. cerevisiae CEN.PK113-7D (a lab strain) nor from PE-2 (an industrial strain) washed out after an aerobic-to-anaerobic switch in the absence of AGF. S. cerevisiae PE-2 seemed to cope better than the laboratory strain with this extremely low O-2 availability, since it presented higher biomass yield, lower specific rates of glucose consumption and CO2 formation, and higher survival at low pH. Lipid (fatty acid and sterol) composition dramatically altered when cells were grown anaerobically without AGF: saturated fatty acid, squalene and lanosterol contents increased, when compared to either cells grown aerobically or anaerobically with AGF. We concluded that these lipid alterations negatively affect cell viability during exposure to low pH or high ethanol titers.
机译:我们试图探讨酿酒酵母在完全厌氧病下的酿酒酵母的生长依赖于广泛使用的厌氧生长因子(AGF)Eralosterol和油酸。采用连续培养设置,甚至迫使超薄N-2气体通过生物反应器上游的O-2捕集器,既不是来自S.Cerevisiae CEN.PK113-7D(实验室应变)也不是来自PE-2(工业在没有AGF的情况下,在有氧到厌氧开关后洗掉。 S.酿酒酵母PE-2似乎与实验室菌株更好,因为它具有极低的O-2可用性,因为它呈现出更高的生物量产量,较低的葡萄糖消耗和CO 2形成的比率,并且在低pH下的存活率较高。当没有AGF的细胞生长细胞的细胞生长时,脂质(脂肪酸和甾醇)组成显着改变:与饱和脂肪酸,饱和脂肪酸,饱和脂肪酸,角鲨烯和LANETTOLOL含量增加,与AGF的多种细胞一起生长或厌氧。我们得出结论,这些脂质改变在暴露于低pH或高乙醇滴度期间对细胞活力产生负面影响。

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