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- W178518498 abstract "This chapter discusses ethanol toxicity and ethanol tolerance in yeasts. The inhibition by ethanol of growth and fermentation in S. cerevisiae and related yeasts is noncompetitive. The capacity inhibition can be linear, exponential, hyperbolic, or more complex, depending on the strain and the growth conditions. Fermentation is less sensitive to ethanol than growth. The overall kinetics of the ethanol inhibition of growth and fermentation is composite. Ethanol and other alkanols profoundly affect the temperature relations of growth and death of S. cerevisiae, Klyveromyces fragilis, and other yeasts. Ethanol and other alkanols exponentially enhance thermal death. The degree of enhancement depends on the concentration of the alkanol and its solubility in lipids. At all permissive growth and fermentation temperatures, ethanol and other alkanols inhibit the transport of glucose, maltose, ammonium, and amino acids across the plasma membrane of S. cerevisiae. The inhibition kinetics is of the noncompetitive type. However, the capacity inhibition is exponential and not of the hyperbolic type that is found in noncompetitive enzyme inhibition. Glycolytic enzymes are less resistant to ethanol in ethanol-sensitive yeasts such as K. apiculata than in S. cerevisiae and related ethanol-tolerant yeasts." @default.
- W178518498 created "2016-06-24" @default.
- W178518498 creator A5051492836 @default.
- W178518498 date "1985-01-01" @default.
- W178518498 modified "2023-10-11" @default.
- W178518498 title "Ethanol Toxicity and Ethanol Tolerance in Yeasts" @default.
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