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PMID: 4351387 Published · ppublish English Journal Article

Glucose fermentation products in Ruminococcus albus grown in continuous culture with Vibrio succinogenes: changes caused by interspecies transfer of H 2 .

Journal of bacteriology ·Vol. 114 ·No. 3 ·1973-06-00 ·Pages 1231-40

Iannotti EL, Kafkewitz D, Wolin MJ, Bryant MP

Abstract

The influence of a H(2)-utilizing organism, Vibrio succinogenes, on the fermentation of limiting amounts of glucose by a carbohydrate-fermenting, H(2)-producing organism, Ruminococcus albus, was studied in continuous cultures. Growth of V. succinogenes depended on the production of H(2) from glucose by R. albus. V. succinogenes used the H(2) produced by R. albus to obtain energy for growth by reducing fumarate in the medium. Fumarate was not metabolized by R. albus alone. The only products detected in continuous cultures of R. albus alone were acetate, ethanol, and H(2). CO(2) was not measured. The only products detected in the mixed cultures were acetate and succinate. No free H(2) was produced. No formate or any other volatile fatty acid, no succinate or other dicarboxylic acids, lactate, alcohols other than ethanol, pyruvate, or other keto-acids, acetoin, or diacetyl were detected in cultures of R. albus alone or in mixed cultures. The moles of product per 100 mol of glucose fermented were approximately 69 for ethanol, 74 for acetate, 237 for H(2) for R. albus alone and 147 for acetate and 384 for succinate for the mixed culture. Each mole of succinate is equivalent to the production of 1 mol of H(2) by R. albus. Thus, in the mixed cultures, ethanol production by R. albus is eliminated with a corresponding increase in acetate and H(2) formation. The mixed-culture pattern is consistent with the hypothesis that nicotinamide adenine dinucleotide (reduced form), formed during glycolysis by R. albus, is reoxidized during ethanol formation when R. albus is grown alone and is reoxidized by conversion to nicotinamide adenine dinucleotide and H(2) when R. albus is grown with V. succinogenes. The ecological significance of this interspecies transfer of H(2) gas and the theoretical basis for its causing changes in fermentation patterns of R. albus are discussed.

MeSH Terms
Acetates/metabolism Alcohols/metabolism Carbon Isotopes Chromatography, Gas Colorimetry Culture Media Ethanol/metabolism Fatty Acids, Volatile/metabolism Fermentation Fumarates/metabolism Glucose/metabolism Hydrogen/metabolism Mathematics NAD Succinates/metabolism Time Factors Vibrio/metabolism
Chemicals
Acetates Alcohols Carbon Isotopes Culture Media Fatty Acids, Volatile Fumarates Succinates NAD Ethanol Hydrogen Glucose
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Iannotti E L
Kafkewitz D
Wolin M J
Bryant M P
References (10)
10 references, click to expand
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Article Info
Journal
Journal of bacteriology
Abbr.
J Bacteriol
ISSN
0021-9193
Published
1973-06-00
Pages
1231-40
Language
English
Region
United States
NLM ID
2985120R
PMCID
PMC285387
Subset
IM
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