Abstract
Isolates able to grow on 3- or 4-hydroxybiphenyl (HB) as the sole carbon source were obtained by enrichment culture. The 3-HB degrader Pseudomonas sp. strain FH12 used an NADPH-dependent monooxygenase restricted to 3- and 3,3'-HBs to introduce an ortho-hydroxyl. The 4-HB degrader Pseudomonas sp. strain FH23 used either a mono- or dioxygenase to generate a 2,3-diphenolic substitution pattern which allowed meta-fission of the aromatic ring. By using 3-chlorocatechol to inhibit catechol dioxygenase activity, it was found that 2- and 3-HBs were converted by FH23 to 2,3-HB, whereas biphenyl and 4-HB were attacked by dioxygenation. 4-HB was metabolized to 2,3,4'-trihydroxybiphenyl. Neither organism attacked chlorinated HBs. The degradation of 3- and 4-HBs by these strains is therefore analogous to the metabolism of biphenyl, 2-HB, and naphthalene in the requirement for 2,3-catechol formation.
MeSH Terms
Biodegradation, Environmental
Biphenyl Compounds/metabolism
Chemical Phenomena
Chemistry
Magnetic Resonance Spectroscopy
Mass Spectrometry
Oxygen Consumption
Pseudomonas/metabolism
Chemicals
Biphenyl Compounds
4-phenylphenol
3-hydroxybiphenyl
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Higson F K
Department of Soil and Environmental Sciences, University of California, Riverside 92521.
Focht D D
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