Degradation of 1,4-dichlorobenzene by a Pseudomonas sp

Author:

Spain J C,Nishino S F

Abstract

A Pseudomonas species able to degrade p-dichlorobenzene as the sole source of carbon and energy was isolated by selective enrichment from activated sludge. The organism also grew well on chlorobenzene and benzene. Washed cells released chloride in stoichiometric amounts from o-, m-, and p-dichlorobenzene, 2,5-dichlorophenol, 4-chlorophenol, 3-chlorocatechol, 4-chlorocatechol, and 3,6-dichlorocatechol. Initial steps in the pathway for p-dichlorobenzene degradation were determined by isolation of metabolites, simultaneous adaptation studies, and assay of enzymes in cell extracts. Results indicate that p-dichlorobenzene was initially converted by a dioxygenase to 3,6-dichloro-cis-1,2-dihydroxycyclohexa-3,5-diene, which was converted to 3,6-dichlorocatechol by an NAD+-dependent dehydrogenase. Ring cleavage of 3,6-dichlorocatechol was by a 1,2-oxygenase to form 2,5-dichloro-cis, cis-muconate. Enzymes for degradation of haloaromatic compounds were induced in cells grown on chlorobenzene or p-dichlorobenzene, but not in cells grown on benzene, succinate, or yeast extract. Enzymes of the ortho pathway induced in cells grown on benzene did not attack chlorobenzenes or chlorocatechols.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference38 articles.

1. Mikrobieller Abbau von chlorierten Aromaten. VI. Bildung von Dichlorphenolen und Dichlorbrenzkatechinen aus Dichlorbenzolen in mikromolarer Loosung durch Pseudomonas sp;Ballschmiter K.;Chemosphere,1980

2. The metabolism of cresols by species of Pseudomonas;Bayly R. C.;Biochem. J.,1966

3. Removal of trace chlorinated organic compounds by activated carbon and fixedfilm bacteria;Bouwer E. J.;Environ. Sci. Technol.,1982

4. Carlton B. C. and B. J. Brown. 1981. Gene mutation p. 222-242. In P. Gerhardt R. G. E. Murray R. N. Costilow E. W. Nester W. A. Wood N. R. Krieg and G. B. Phillips (ed.) Manual of methods for general bacteriology. American Society for Microbiology Washington D.C.

5. Chapman P. J. 1979. Degradation mechanisms p. 29-69. In A. W. Bourquin and P. H. Pritchard (ed.) Microbial degradation of pollutants in marine environments. EPA-600/9-79-012. U.S. Environmental Protection Agency Washington D. C.

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