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Production of 2,3-butanediol by a low-acid producing Klebsiella oxytoca NBRF4

Authors
Han, Sung-HyukLee, Jung-EunPark, KyungmoonPark, Yong-Cheol
Issue Date
25-Jan-2013
Publisher
ELSEVIER SCIENCE BV
Citation
NEW BIOTECHNOLOGY, v.30, no.2, pp.166 - 172
Journal Title
NEW BIOTECHNOLOGY
Volume
30
Number
2
Start Page
166
End Page
172
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/17198
DOI
10.1016/j.nbt.2012.09.004
ISSN
1871-6784
Abstract
2,3-Butanediol (2,3-BDO) is a value-added chemical with great potential for the industrial production of synthetic rubber, plastic and solvent. For microbial production of 2,3-BDO, in this study, Klebsiella oxytoca NBRF4 was constructed by chemical mutation and screening against NaBr, NaBrO3 and fluoroacetate. Among metabolic enzymes involved in the production of lactate, acetate and 2,3-BDO, K. oxytoca NBRF4 possessed 1.2 times lower specific activities of lactate dehydrogenase and phosphotransacetylase, and 22% higher specific acetoin reductase activity than the K. oxytoca ATCC43863 control strain. A series of batch fermentations in a defined medium and application of a statistical tool of response surface method led to the determination of optimal culture conditions: 10% dissolved oxygen level, pH 4.3 and 38 degrees C. The actual results of batch fermentation at the optimal conditions using 44 g/L glucose were coincident with the predetermined values: 14.4 g/L 2,3-BDO concentration, 0.32 g/g yield. To increase 2,3-BDO titer, fed-batch fermentation of K. oxytoca NBRF4 was performed by an intermittent feeding of 800 g/L glucose to control its concentration around 5-20 g/L in the culture broth. Finally, 34.2 g/L 2,3-BDO concentration and 0.35 g/g yield were obtained without organic acid production in 70 hours of the fed-batch culture, which were 2.4 and 1.2 times higher than those of the batch fermentation using 44 g/L glucose.
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