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Advances in Microbial Physiology edited by Robert K Poole

Contributor(s): Material type: TextTextPublication details: UK Academic Press 2000Description: vii, 296 pISBN:
  • 9780120277421
Subject(s): DDC classification:
  • 571.29 POO
Contents:
G.W. Tannock, The Intestinal Microflora: A Fertile Ground for Microbial Physiologists.D. Eide, Metal Ion Transport in Eukaryotic Microorganisms.D.A. Hodgson, Streptomycete Biology.P. Poole, Carbon Metabolism in RhizobiumR.K Poole and G. Cook, Redundancy of Oxidase Function in Bacteria: Routes, Reasons and Regulation.C.F Thurston, Microbial Cellulases and Ligninases.R. Quivey, Adaptation of Oral Streptococci to low pH.S. Cortassa, J.C. Aon, M.A. Aon, and J. Spencer, Dynamics of Cellular Energetics and Metabolism and their Interactions with the Gene Regulatory Circuitry during Sporulation in Saccharomyces cerevisiae.
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Holdings
Item type Current library Collection Call number Status Date due Barcode
General Books General Books CUTN Central Library Sciences Non-fiction 571.29 POO (Browse shelf(Opens below)) Available 27708

TOPICS COVERED IN THIS VOLUME1. Metal ion transport in eukaryotic microorganisms: insights from Saccharomyces cerevisiae2. Iron uptake by fungi: contrasted mechanisms with internal or external reduction3. Dynamics of metabolism and its interactions with gene expression during sporulation in Saccharomyces cerevisiae4. Carbon and nitrogen metabolism in rhizobium5. Redundancy of aerobic respiratory chains in bacteria? Routes, reasons and regulations

G.W. Tannock, The Intestinal Microflora: A Fertile Ground for Microbial Physiologists.D. Eide, Metal Ion Transport in Eukaryotic Microorganisms.D.A. Hodgson, Streptomycete Biology.P. Poole, Carbon Metabolism in RhizobiumR.K Poole and G. Cook, Redundancy of Oxidase Function in Bacteria: Routes, Reasons and Regulation.C.F Thurston, Microbial Cellulases and Ligninases.R. Quivey, Adaptation of Oral Streptococci to low pH.S. Cortassa, J.C. Aon, M.A. Aon, and J. Spencer, Dynamics of Cellular Energetics and Metabolism and their Interactions with the Gene Regulatory Circuitry during Sporulation in Saccharomyces cerevisiae.

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