1981Journal of Chemical Technology & BiotechnologyRequires access

The increase in intracellular free‐lysine levels of growing Baker's yeast (Saccharomyces cerevisiae) by sodium chloride

Robert D. Tanner, L. Daniel Richmond, Chia‐Jenn Wei, Jonathan Woodward

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Abstract

Abstract Fermentation by baker's yeast was carried out in medium containing exogenously added sodium chloride. The cell, intracellular free‐lysine, glucose and ethanol concentrations were monitored at intervals of time during the fermentation. Sodium chloride (0.15–0.6M) stimulated the maximum intracellular free‐lysine concentration of baker's yeast. The greatest stimulation was observed using 0.6M sodium chloride and was accompanied by a reduction in the rate of glucose uptake from the medium and a lowering of the ethanol concentration in the medium.

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Abstract Fermentation by baker's yeast was carried out in medium containing exogenously added sodium chloride. The cell, intracellular free‐lysine, glucose and ethanol concentrations were monitored at intervals of time during the fermentation. Sodium chloride (0.15–0.6M) stimulated the maximum intracellular free‐lysine concentration of baker's yeast. The greatest stimulation was observed using 0.6M sodium chloride and was accompanied by a reduction in the rate of glucose uptake from the medium and a lowering of the ethanol concentration in the medium.

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Available abstract

Abstract Fermentation by baker's yeast was carried out in medium containing exogenously added sodium chloride. The cell, intracellular free‐lysine, glucose and ethanol concentrations were monitored at intervals of time during the fermentation. Sodium chloride (0.15–0.6M) stimulated the maximum intracellular free‐lysine concentration of baker's yeast. The greatest stimulation was observed using 0.6M sodium chloride and was accompanied by a reduction in the rate of glucose uptake from the medium and a lowering of the ethanol concentration in the medium.

Key concepts: Yeast, Sodium, Intracellular, Fermentation, Saccharomyces cerevisiae, Chemistry, Ethanol, Lysine

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