Oxygen-dependent xylitol metabolism in Pichia stipitis

被引:0
作者
H. Jeppsson
K. Holmgren
B. Hahn-Hägerdal
机构
[1] Department of Applied Microbiology,
[2] Center for Chemistry and Chemical Engineering,undefined
[3] Lund Institute of Technology/Lund University,undefined
[4] P.O. Box 124,undefined
[5] S-221 00 Lund,undefined
[6] Sweden e-mail: Barbel.Hahn-Hagerdal@tmb.lth.se Tel: +46-46-2228428 Fax: +46-46-2224203,undefined
来源
Applied Microbiology and Biotechnology | 1999年 / 53卷
关键词
Pyruvate; Xylose; Anaerobic Condition; Xylitol; Alcohol Dehydrogenase;
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摘要
Pichia stipitis CBS 6054 was cultivated in chemostat cultures under aerobic and oxygen-limited conditions with xylitol alone, a mixture of xylitol and glucose and a mixture of xylitol and xylose. Xylitol metabolism was strictly respiratory and no ethanol was formed. Simultaneous feeding of xylitol and glucose and xylitol and xylose to oxygen-limited xylitol-pregrown cells resulted in ethanol formation. In vitro both pyruvate decarboxylase activity and alcohol dehydrogenase activity were present in cells metabolising xylitol under oxygen-limited conditions; however, this did not result in ethanol formation. Glucose, xylose and xylitol utilisation, respectively, were compared under anaerobic conditions with regard to growth rate, carbon source and oxygenation level during pre-cultivation. Irrespective of pre-growth conditions, xylitol was not metabolised under anaerobic conditions, whereas ethanol was formed from both xylose and glucose. Anaerobic xylose utilisation required induction of a xylose-utilising metabolic pathway during pre-cultivation.
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页码:92 / 97
页数:5
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