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Appl. Environ. Microbiol., 07 1995, 2732-2737, Vol 61, No. 7
Copyright © 1995, American Society for Microbiology

Sudden substrate dilution induces a higher rate of citric acid production by Aspergillus niger

M Legisa and M Gradisnik-Grapulin
National Institute of Chemistry, Ljubljana, Slovenia.

On the basis of the present knowledge of Aspergillus niger metabolism during citric acid fermentation, an idea on how to improve the process was formed. Initially, a higher sucrose concentration was used for the germination of spores, which caused a higher intracellular level of the osmoregulator, glycerol, to be present. When citric acid started to be excreted into the medium, the substrate was suddenly diluted. Optimization of this procedure resulted in a nearly tripled volumetric rate (grams per liter per hour) of acid production, while the overall fermentation time was halved compared with the usual batch process. Yet, a characteristic delay was observed at the start of the acid excretion after the dilution. Hypo-osmotic shock caused a prominent elevation of intracellular cyclic AMP levels. Simultaneously, the specific activity of 6-phosphofructo-1-kinase increased significantly, probably due to phosphorylation of the protein molecule by cyclic AMP- dependent protein kinase. Specific 6-phosphofructo-1-kinase activity was much higher in the treated than in the normally growing mycelium. The metabolic flow through glycolysis was expected to be higher, which should contribute to a higher volumetric rate of acid production.


This article has been cited by other articles:

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  • Saudohar, M., Bencina, M., van de Vondervoort, P. J.I, Panneman, H., Legisa, M., Visser, J., Ruijter, G. J. G. (2002). Cyclic AMP-dependent protein kinase is involved in morphogenesis of Aspergillus niger. Microbiology 148: 2635-2645 [Abstract] [Full Text]