Carbohydrate Metabolism by the Acetic Acid Bacteria

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Comparative carbohydrate metabolism and a proposal for a phylogenetic relationship of the acetic acid bacteria.

The oxidation of 20 carbohydrates and derivatives by 45 strains of acetic acid bacteria, representing most of the known species, was studied and correlated with the enzymic constitution of the organisms. The strains of the mesoxydans group of Frateur and the acetate-oxidizing Gluconobacters oxidized the greatest variety of substrates and contained the most complex enzyme system. The strains inv...

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Utilization of ethanol by acetic acid bacteria.

It is well known that the acetic acid bacteria can rapidly oxidize ethanol to acetic acid. But whether ethanol can serve as a source of carbon and energy for these bacteria has not been clearly established. Pasteur (1868) noted that Mycoderma aceti which is undoubtedly Acetobacter aceti (Frateur, 1950) can grow well in ethanol media only if acetic acid is also present. Addition of one or two pe...

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Deoxyribonucleic Acid Hybrids of Acetic Acid Bacteria.

De Ley, J. (State University, Ghent, Belgium), and S. Friedman. Deoxyribonucleic acid hybrids of acetic acid bacteria. J. Bacteriol. 88:937-945. 1964.-Deuterated N(15)-labeled deoxyribonucleic acid (DNA) from Acetobacter aceti (mesoxydans 4) forms hybrids with ordinary DNA from other species of this genus (A. xylinum, A. pasteurianus, A. estunensis, and possibly A. xylinoides) when the guanine ...

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Nutrition of the acetic acid bacteria.

Relatively little information is available on the specific nitrogen and growth factor requirements of the acetic acid bacteria. The early observation of Hoyer (1898) and of Beijerinck (1898) that only Acetobacter aceti can develop in a mineral salts-ammonium nitrogen medium with ethanol plus acetate as the source of carbon has acquired taxonomic and diagnostic value for this and, more recently,...

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Alduronic acid metabolism by bacteria.

In a previous study (Payne and Carlson, 1957), the metabolism of glucuronic acid and galacturonic acid by whole cells was found to proceed in a variety of enteric bacteria and plant pathogens as the result of substrate induced enzymes. Glucuronate utilization by dried cells of Serratia marcescens resulted in the production of an unidentified reducing acid which could be isolated by paper chroma...

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ژورنال

عنوان ژورنال: Agricultural and Biological Chemistry

سال: 1967

ISSN: 0002-1369

DOI: 10.1080/00021369.1967.10858872