Literature DB >> 8250564

Metabolism of chlorinated guaiacols by a guaiacol-degrading Acinetobacter junii strain.

B González1, C Acevedo, R Brezny, T Joyce.   

Abstract

The metabolism of chlorinated guaiacols by a pure bacterial strain identified by its ability to use guaiacol as the sole carbon and energy source was studied. This strain, identified as Acinetobacter junii 5ga, was unable to grow on several chlorinated guaiacols and catechols. However, strain 5ga grown on guaiacol degraded 4- and 5-chloroguaiacol and 4,5-dichloroguaiacol. Under the same conditions, these cells did not degrade 6-chloroguaiacol, 4,6-dichloroguaiacol, 4,5,6-trichloroguaiacol, or tetrachloroguaiacol, suggesting that the substitution at the 6 position in the ring prevents metabolism of the compound. Degradation of 4-chloroguaiacol was dependent on the initial ratio between the chlorinated compound and viable cells. Transient formation of chlorocatechols resulting from incubation of cells with 4-chloroguaiacol or 4,5-dichloroguaiacol was suggested by UV spectroscopy. Gas chromatography analyses of samples from cultures of strain 5ga grown on guaiacol and incubated with 4- and 4,5-dichloroguaiacol confirmed the presence of 4-chlorocatechol and 4,5-dichlorocatechol, respectively. The formation of the latter was corroborated by gas chromatography-mass spectrometry. Thus, this strain is able to initiate metabolism of specific chlorinated guaiacols by O-demethylation. The starting chlorinated guaiacols and their O-demethylated metabolites inhibited the growth of A. junii 5ga on guaiacol.

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Year:  1993        PMID: 8250564      PMCID: PMC182469          DOI: 10.1128/aem.59.10.3424-3429.1993

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  14 in total

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Authors:  P Adriaens; D D Focht
Journal:  Appl Environ Microbiol       Date:  1991-01       Impact factor: 4.792

2.  Hydroxylation and Dechlorination of Tetrachlorohydroquinone by Rhodococcus sp. Strain CP-2 Cell Extracts.

Authors:  M M Häggblom; D Janke; M S Salkinoja-Salonen
Journal:  Appl Environ Microbiol       Date:  1989-02       Impact factor: 4.792

3.  O-Methylation of Chlorinated para-Hydroquinones by Rhodococcus chlorophenolicus.

Authors:  M M Häggblom; J H Apajalahti; M S Salkinoja-Salonen
Journal:  Appl Environ Microbiol       Date:  1988-07       Impact factor: 4.792

4.  Biotransformations of chloroguaiacols, chlorocatechols, and chloroveratroles in sediments.

Authors:  M Remberger; A S Allard; A H Neilson
Journal:  Appl Environ Microbiol       Date:  1986-03       Impact factor: 4.792

Review 5.  Microbial degradation of haloaromatics.

Authors:  W Reineke; H J Knackmuss
Journal:  Annu Rev Microbiol       Date:  1988       Impact factor: 15.500

6.  Plasmid-mediated mineralization of 4-chlorobiphenyl.

Authors:  M S Shields; S W Hooper; G S Sayler
Journal:  J Bacteriol       Date:  1985-09       Impact factor: 3.490

7.  Chlorinated benzo-1,2-quinones: an example of chemical transformation of toxicants during tests with aquatic organisms.

Authors:  M Remberger; P A Hynning; A H Neilson
Journal:  Ecotoxicol Environ Saf       Date:  1991-12       Impact factor: 6.291

Review 8.  Microbial breakdown of halogenated aromatic pesticides and related compounds.

Authors:  M M Häggblom
Journal:  FEMS Microbiol Rev       Date:  1992-09       Impact factor: 16.408

9.  Degradation of 2-methylbenzoic acid by Pseudomonas cepacia MB2.

Authors:  F K Higson; D D Focht
Journal:  Appl Environ Microbiol       Date:  1992-01       Impact factor: 4.792

10.  Degradation and O-methylation of chlorinated phenolic compounds by Rhodococcus and Mycobacterium strains.

Authors:  M M Häggblom; L J Nohynek; M S Salkinoja-Salonen
Journal:  Appl Environ Microbiol       Date:  1988-12       Impact factor: 4.792

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  4 in total

1.  Degradation of 4,5-dichloroguaiacol by soil microorganisms.

Authors:  B González; R Brezny; M Herrera; T W Joyce
Journal:  World J Microbiol Biotechnol       Date:  1995-09       Impact factor: 3.312

2.  Efficient turnover of chlorocatechols is essential for growth of Ralstonia eutropha JMP134(pJP4) in 3-chlorobenzoic acid.

Authors:  D Pérez-Pantoja; T Ledger; D H Pieper; B González
Journal:  J Bacteriol       Date:  2003-03       Impact factor: 3.490

3.  Degradation of Chlorophenols by Alcaligenes eutrophus JMP134(pJP4) in Bleached Kraft Mill Effluent.

Authors:  J Valenzuela; U Bumann; R Cespedes; L Padilla; B Gonzalez
Journal:  Appl Environ Microbiol       Date:  1997-01       Impact factor: 4.792

4.  Influence of the Chemical Structure on Odor Qualities and Odor Thresholds of Halogenated Guaiacol-Derived Odorants.

Authors:  Florian Juhlke; Katja Lorber; Maria Wagenstaller; Andrea Buettner
Journal:  Front Chem       Date:  2017-12-18       Impact factor: 5.221

  4 in total

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