Abstract
Tabak, Henry H. (Robert A. Taft Sanitary Engineering Center, Cincinnati, Ohio), Cecil W. Chambers, and Paul W. Kabler. Microbial metabolism of aromatic carbon compounds. I. Decomposition of phenolic compounds and aromatic hydrocarbons by phenol-adapted bacteria. J. Bacteriol. 87:910-919. 1964.-Bacteria from soil and related environments were selected or adapted to metabolize phenol, hydroxy phenols, nitrophenols, chlorophenols, methylphenols, alkylphenols, and arylphenols when cultured in mineral salts media with the specific substrate as the sole source of carbon. A phenol-adapted culture (substrate-induced enzyme synthesis proven) was challenged in respirometric tests with 104 related compounds; probable significant oxidative activity occurred with 65. Dihydric phenols were generally oxidized; trihydric phenols were not. Cresols and dimethylphenols were oxidized; adding a chloro group increased resistance. Benzoic and hydroxybenzoic acids were oxidized; sulfonated, methoxylated, nitro, and chlorobenzoic acids were not; m-toluic acid was utilized but not the o- and p-isomers. Benzaldehyde and p-hydroxybenzaldehyde were oxidized. In general, nitro- and chloro-substituted compounds and the benzenes were difficult to oxidize.
Keywords
BACTERIA
CRESOLS
EXPERIMENTAL LAB STUDY
HYDROCARBONS
MANOMETRY
METABOLISM
NITROPHENOLS
PHENOLS
SOIL MICROBIOLOGY
MeSH Terms
Bacteria
Benzaldehydes
Benzoates
Chlorophenols
Cresols
Hydrocarbons
Hydroxybenzoates
Manometry
Metabolism
Nitrophenols
Phenol
Phenols
Research
Soil Microbiology
Chemicals
Benzaldehydes
Benzoates
Chlorophenols
Cresols
Hydrocarbons
Hydroxybenzoates
Nitrophenols
Phenols
3-toluic acid
Phenol
4-hydroxybenzaldehyde
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
TABAK H H
CHAMBERS C W
KABLER P W
References (18)
18 references, click to expand
-
The bacterial oxidation of aromatic compounds. IV. Studies on the mechanism of enzymatic degradation of protocatechuic acid.
J Bacteriol. 1950 Apr;59(4):527-32
PMID: 15436426
-
The metabolism of protocatechuic acid by certain micro-organisms. A reassessment of the evidence for the participation of 2:6-dioxa-3:7-dioxobicyclo[3:3:0]octane as an intermediate.
Biochem J. 1961 May;79(2):312-6
PMID: 16748899
-
Simultaneous Adaptation: A New Technique for the Study of Metabolic Pathways.
J Bacteriol. 1947 Sep;54(3):339-48
PMID: 16561366
-
Methylnaphthalene oxidations by pseudomonads.
J Bacteriol. 1959 Jun;77(6):783-8
PMID: 13664661
-
The microbial metabolism of nitro-aromatic compounds.
J Gen Microbiol. 1958 Aug;19(1):1-14
PMID: 13575749
-
Chemistry of the oxidative metabolism of certain aromatic compounds by micro-organisms.
Nature. 1951 Nov 3;168(4279):772-5
PMID: 14882344
-
The formation of beta-ketoadipic acid by bacterial fission of aromatic rings.
Biochem J. 1951 Oct;49(5):671-4
PMID: 14886364
-
The Oxidation of Aromatic Compounds by Fluorescent Pseudomonads.
J Bacteriol. 1948 Apr;55(4):477-94
PMID: 16561481
-
Bacterial oxidation of benzene.
J Bacteriol. 1961 Mar;81:425-30
PMID: 13767102
-
ACTION OF MICROORGANISMS ON HYDROCARBONS.
Bacteriol Rev. 1946 Mar;10(1-2):1-49
PMID: 16350101
-
Effect of structurally related compounds on the oxidation of p-aminobenzoic acid by Pseudomonas fluorescens.
J Bacteriol. 1957 May;73(5):612-5
PMID: 13428705
-
Oxidation of phenol and benzoic acid by some soil bacteria.
Biochem J. 1947;41(3):373-82
PMID: 16748178
-
Pseudomonas aeruginosa--its characterization and identification.
J Gen Microbiol. 1951 Nov;5(5 Suppl.):939-50
PMID: 14908032
-
The bacterial oxidation of aromatic compounds; III. The enzymatic oxidation of catechol and protocatechuic acid to beta-ketoadipic acid.
J Bacteriol. 1950 Feb;59(2):137-51
PMID: 15421941
-
Differential diagnosis of Pseudomonas-like microorganisms in the clinical laboratory.
J Bacteriol. 1958 Oct;76(4):442-4
PMID: 13587485
-
Assimilation of hydrocarbons by microorganisms.
Adv Enzymol Relat Subj Biochem. 1950;10:443-86
PMID: 15419090
-
Practical laboratory test for the identification of Pseudomonas aeruginosa.
J Bacteriol. 1957 Sep;74(3):356-8
PMID: 13475249
-
The growth of phenol-utilizing bacteria on aromatic carbon sources.
Arch Biochem. 1950 May;26(3):401-5
PMID: 15419755