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甘油生成对葡萄酒酵母星形假丝酵母好氧和厌氧生长的影响。

Influence of glycerol production on the aerobic and anaerobic growth of the wine yeast Candida stellata.

作者信息

Ciani M, Ferraro L, Fatichenti F

机构信息

Sez. Microbiologia applicata, Dipartimento di Biologia Vegetale e Biotecnologie Agroambientali Università di Perugia, 06121, Perugia, Italy

出版信息

Enzyme Microb Technol. 2000 Nov 15;27(9):698-703. doi: 10.1016/s0141-0229(00)00269-6.

Abstract

Candida stellata is frequently found in wine fermentations and may be used as a yeast starter in beverage production. In order to acquire additional knowledge on the physiology of C. stellata, a study on sugar metabolism in aerobic and anaerobic conditions was carried out. We found that under anaerobic conditions the low growth rate and biomass yield of C. stellata were due to the diversion of carbon flux from ethanol to glycerol. C. stellata had lower ADHI (alcohol dehydrogenase) activity (3-4 fold) and higher GPDH (glycerol-3-phosphate dehydrogenase) activity (40 and 15 times higher in anaerobiosis and aerobiosis respectively) than that of a Saccharomyces cerevisiae control strain. In aerobic sugar-limited chemostat culture C. stellata exhibited lower maximum biomass concentration [5.23 gl(-1) (dry weight)] than other respirofermentative yeasts at very low dilution rates (up to D = 0.042 h(-1)). While glycerol was constantly produced, ethanol and sugar residue appeared at D = 0.042 h(-1) and D = 0.065 h(-1) respectively. The tendency of C. stellata to form glycerol is probably the main cause of its very low growth and fermentation rates.

摘要

星状假丝酵母常见于葡萄酒发酵过程中,可作为饮料生产中的酵母发酵剂。为了进一步了解星状假丝酵母的生理学特性,开展了一项关于其在有氧和无氧条件下糖代谢的研究。我们发现,在无氧条件下,星状假丝酵母生长速率低、生物量产量低是由于碳通量从乙醇转向甘油所致。与酿酒酵母对照菌株相比,星状假丝酵母的乙醇脱氢酶(ADHI)活性较低(低3 - 4倍),而甘油-3-磷酸脱氢酶(GPDH)活性较高(在无氧和有氧条件下分别高40倍和15倍)。在有氧糖限制恒化器培养中,在极低稀释率(最高D = 0.042 h⁻¹)下,星状假丝酵母的最大生物量浓度[5.2 g l⁻¹(干重)]低于其他呼吸发酵型酵母。虽然甘油持续产生,但乙醇和糖残留分别在D = 0.042 h⁻¹和D = 0.065 h⁻¹时出现。星状假丝酵母形成甘油的趋势可能是其生长和发酵速率极低的主要原因。

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