Ethanol Production from a Mixture of Glucose and Xylose by Co-Culture of Pichia stipitis and a Respiratory-Deficient Mutant of Saccharomyces cerevisiae
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概要
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The effect of oxygenation on ethanol production from xylose or glucose by Pichia stipitis in batch culture was investigated. The fermentation parameters with respect to ethanol production by P. stipitis were strongly dependent on the oxygen transfer rate (OTR). On the basis of OTR values, the relationship between the optimum specific oxygen uptake rate (qO_2) and maximum specific ethanol production rate ((q_p)_<max>) was evaluated. The optimum qO_2 for ethanol production was 14.3 or 66.7 mg・(g cell)^<-1>.h<-1> when xylose or glucose was used as a carbon source, respectively. When a mixture of glucose and xylose was used as the carbon source in a culture of P. stipitis alone, the yield and productivity of ethanol were significantly enhanced when qO_2 was adjusted to an optimum level dependent upon the type of sugar consumed. In a co-culture of Saccharomyces cerevisiae and P. stipitis, it was impossible to control qO_2 at an optimum value for xylose fermentation by P. stipitis because oxygen was consumed by the S. cerevisiae. In a co-culture of P. stipitis and a respiratory-deficient mutant of S. cervisiae, the optimum qO_2 for xylose fermentation by P. stipitis was successfully maintained due to the low oxygen consumption of the mutant yeast strain. Co-culture of these two strains resulted in the maximum yield and the highest productivity of ethanol from a mixture of glucose and xulose.
- 社団法人日本生物工学会の論文
- 1997-04-25
著者
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Taniguchi Masayuki
Department of Materials Science and Technology, Niigata University
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FUJII Michihiro
Department of Chemical Engineering, Faculty of Engineering, Niigata University
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Taniguchi M
Fac. Engineering Niigata Jpn
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Taniguchi M
Department Of Material Science And Technology Faculty Of Engineering
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Taniguchi M
Department Of Materials Science And Technology Niigata University
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Taniguchi Masayuki
Department Of Food Science And Technology Faculty Of Agriculture Kyoto University
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Taiyouji Mayumi
Gaduate School Of Science And Technology Niigata University:food Research Center Niigata Agricultura
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Taniguchi Masayuki
Department Of Materials Science And Technology Niigata University
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Taniguchi Masayuki
Gaduate School Of Science And Technology Niigata University:food Research Center Niigata Agricultura
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Tanaka Mitsuo
Department Of Food Science And Technology Faculty Of Agriculture Kyoto University
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ITAYA TAKAHIRO
Department of Material Science and Technology, Faculty of Engineering, Niigata University
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TOHMA TOSHIHIRO
Department of Material Science and Technology, Faculty of Engineering, Niigata University
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Fujii M
Osaka Prefecture Univ. Osaka Jpn
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Fujii Michihiro
Department Of Chemical Engineering Faclty Of Engineering Niigata University
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Taniguchi Masayuki
Department Of Cardiology Jikei University School Of Medicine Daisan Hospital
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Itaya Takahiro
Department Of Material Science And Technology Faculty Of Engineering Niigata University
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Itaya Takahiro
Department Of Electronics And Informatics Ryukoku University
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Tohma Toshihiro
Department Of Material Science And Technology Faculty Of Engineering Niigata University
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Taniguchi Masayuki
Department Of Physics Faculty Of Science Kobe University
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Takahashi Masafumi
Department of Materials Science and Technology, Niigata University
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