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Kinetic and energetic parameters of carob wastes fermentation by Saccharomyces cerevisiae: Crabtree effect, ethanol toxicity, and invertase repression

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논문

Kinetic and energetic parameters of carob wastes fermentation by Saccharomyces cerevisiae: Crabtree effect, ethanol toxicity, and invertase repression

학술지

Journal of microbiology and biotechnology

저자명

Rodrigues, B.; Peinado, J.M.; Raposo, S.; Constantino, A.; Quintas, C.; Lima-Costa, M.E.

초록

Carob waste is a useful raw material for the second-generation ethanol because 50% of its dry weight is sucrose, glucose, and fructose. To optimize the process, we have studied the influence of the initial concentration of sugars on the fermentation performance of Saccharomyces cerevisiae. With initial sugar concentrations (S<sub>0</sub> ) of 20 g/l, the yeasts were derepressed and the ethanol produced during the exponential phase was consumed in a diauxic phase. The rate of ethanol consumption decreased with increasing S<sub>0</sub> and disappeared at 250 g/l when the Crabtree effect was complete and almost all the sugar consumed was transformed into ethanol with a yield factor of 0.42 g/g. Sucrose hydrolysis was delayed at high S<sub>0</sub> because of glucose repression of invertase synthesis, which was triggered at concentrations above 40 g/l. At S<sub>0</sub> higher than 250 g/l, even when glucose had been exhausted, sucrose was hydrolyzed very slowly, probably due to an inhibition at this low water activity. Although with lower metabolic rates and longer times of fermentation, 250 g/l is considered the optimal initial concentration because it avoids the diauxic consumption of ethanol and maintains enough invertase activity to consume all the sucrose, and also avoids the inhibitions due to lower water activities at higher S<sub>0</sub> .

발행연도

2015

발행기관

The Korean Society for Microbiology and Biotechnology

ISSN

1017-7825

ISSN

1738-8872

25

6

페이지

pp.837-844

주제어

Bioethanol; carob pod; fermentation; invertase synthesis; Saccharomyces; second-generation biofuels

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1 2023-12-11

논문; 2015-06-28

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