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PMID: 13945208 Published · ppublish English Journal Article

Bacterial utilization of ether glycols.

Applied microbiology ·Vol. 10 ·1962-11-00 ·Pages 542-7

FINCHER EL, PAYNE WJ

Abstract

A soil bacterium capable of using oligo- and polyethylene glycols and ether alcohols as sole sources of carbon for aerobic growth was isolated. The effects of substituent groups added to the ether bonds on the acceptability of the compounds as substrates were studied. Mechanisms for the incorporation of two-carbon compounds were demonstrated by the observation that acetate, glyoxylate, ethylene glycol, and a number of the tricarboxylic acid cycle intermediates served as growth substrates in minimal media. The rate of oxidation of the short-chained ethylene glycols by adapted resting cells varied directly with increasing numbers of two-carbon units in the chains from one to four. The amount of oxygen consumed per carbon atom of oligo- and polyethylene glycols was 100% of theoretical, but only 67% of theoretical for ethylene glycol. Resting cells oxidized oligo- and polyethylene glycols with 2 to 600 two-carbon units in the chains. Longer chained polyethylene glycols (up to 6,000) were oxidized at a very slow rate by these cells. Dehydrogenation of triethylene glycol by adapted cells was observed, coupling the reaction with methylene blue reduction.

Keywords
BACTERIA GLYCOLS SOIL MICROBIOLOGY
MeSH Terms
Alcohols Bacteria Carbon Ether Ethers Ethylene Glycols Glycols Polyethylene Glycols Soil Microbiology
Chemicals
Alcohols Ethers Ethylene Glycols Glycols Ether triethylene glycol Polyethylene Glycols Carbon
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
FINCHER E L
PAYNE W J
References (1)
1 references, click to expand
  1. Cyclic pathway for the bacterial dissimilation of 2,3-butanediol, acetylmethylcarbinol, and diacetyl. III. A comparative study of 2,3-butanediol dehydrogenases from various microorganisms.
    J Bacteriol. 1957 Dec;74(6):757-67 PMID: 13502302
Article Info
Journal
Applied microbiology
Abbr.
Appl Microbiol
ISSN
0003-6919
Published
1962-11-00
Pages
542-7
Language
English
Region
United States
NLM ID
7605802
PMCID
PMC1057911
Subset
OM
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