Invalidity of the acetylene reduction assay in alkane-utilizing, nitrogen-fixing bacteria

Author:

De Bont J A,Mulder E G

Abstract

The cause of the failure of the C2H2-C2H4 assay for nitrogen-fixing bacteria growing on lower alkanes was studied. Acetylene was a strong competitive inhibitor of methane oxidation for methane-utilizing bacteria, as well as for the oxidation of lower alkanes by other bacteria, so that energy and reducing power were no longer available for the reduction of acetylene by nitrogenase. Nitrogen-fixing bacteria grown on alkanes may reduce acetylene when intermediates of alkane-breakdown or other substrates oxidizable in the presence of acetylene are supplied. Ethylene co-oxidation is not responsible for the failure of the test, because acetylene also inhibits this co-oxidation along with methane oxidation.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference14 articles.

1. Inhibition of growth of Clostridium pasteurianum by acetylene: implication for nitrogen fixing assay;Brouzes R.;Can. J. Microbiol.,1971

2. Nitrogen fixation and co-oxidation of ethylene by a methaneutilizing bacterium;de Bont J. A. M.;J. Gen. Microbiol.,1974

3. Oxidation of ethylene by bacteria;de Bont J. A. M.;Ann. Appl. Biol.,1975

4. Acetylene reduction by rumen microflora;Elleway R. F.;Arch. Microbiol.,1971

5. Carbon monoxide-stimulated respiration in methane-utilizing bacteria;Ferenci T.;FEBS Lett.,1974

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