By Bjorn Kristiansen, Joan Linden, Michael Mattey
Borregaard Industries, Ltd, Norway. Covers themes resembling mycology, redox reactions, mass and effort balances; downstream processing, fermentation substrates, and layout of commercial crops. For undergraduates and postgraduates in business microbiology, biotechnology, or biochemical engineering. Expanded-outline layout.
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Additional resources for Citric Acid Biotechnology
In: Biotechnology, Vol. 3. Eds H J REHM and G REED (Verlag Chemie, Weinheim), pp. 331–373. ROEHR, M, KUBICEK, C P, ZEHENTGRUBER, O and ORTHOFER, R, 1987. Accumulation and partial re-consumption of polyols during citric acid fermentation by Aspergillus niger, Applied Microbiology and Biotechnology, 27, 235–239. ROEHR, M, KOMINEK, J and KUBICEK, C P, 1992. Industrial acids and other small molecules. In Aspergillus: Biology and Industrial Applications. Eds J W Bennett and M A Klich (Butterworth-Heinemann), pp.
Eds B Kristiansen et al. (Scarabeus Ltd, Bratislava), pp. 28–30. Biochemistry of citric acid accumulation by A. niger 31 SCHMIDT, M, WALLRATH, J, DÖRNER, A and WEISS, H, 1992. Disturbed assembly of the respiratory chain NADH:ubiquinone reductase (complex I) in citric acid accumulating Aspergillus niger strain B 60, Applied Microbiology and Biotechnology, 36, 667–672. SCHREFERL, G, KUBICEK, C P and ROEHR, M, 1986. Inhibition of citric acid accumulation by manganese ions in Aspergillus niger mutants with reduced citrate control of phosphofructokinase, Journal of Bacteriology, 165, 1019–1022.
Glycolytic gene expression in Saccharomyces cerevisiae: nucleotide sequence of GCR1, null mutations, and evidence for expression, Molecular and Cellular Biology, 6, 3774–3784. BAKER, H V, 1991. GCR1 of Saccharomyces cerevisiae encodes a DNA binding protein whose binding is abolished by mutations in the CTTCC sequence motif, Proceedings of the National Academy of Sciences of the USA, 88, 9443–9447. BATTI, M A, 1969. 863. BERCOVITZ, A, PELEG, Y, BATTAT, E, ROKEM, J S and GOLDBERG, I, 1990. Localisation of pyruvate carboxylase in organic acid producing Aspergillus strains, Applied and Environmental Microbiology, 56, 1594–1597.