Literature DB >> 17917705

Degradation of mixtures of phenolic compounds by Arthrobacter chlorophenolicus A6.

Maria Unell1, Karolina Nordin, Cecilia Jernberg, John Stenström, Janet K Jansson.   

Abstract

In this study the chlorophenol-degrading actinobacterium, Arthrobacter chlorophenolicus A6, was tested for its ability to grow on mixtures of phenolic compounds. During the experiments depletion of the compounds was monitored, as were cell growth and activity. Activity assays were based on bioluminescence output from a luciferase-tagged strain. When the cells were grown on a mixture of 4-chlorophenol, 4-nitrophenol and phenol, 4-chlorophenol degradation apparently was delayed until 4-nitrophenol was almost completely depleted. Phenol was degraded more slowly than the other compounds and not until 4-nitrophenol and 4-chlorophenol were depleted, despite this being the least toxic compound of the three. A similar order of degradation was observed in non-sterile soil slurries inoculated with A. chlorophenolicus. The kinetics of degradation of the substituted phenols suggest that the preferential order of their depletion could be due to their respective pKa values and that the dissociated phenolate ions are the substrates. A mutant strain (T99), with a disrupted hydroxyquinol dioxygenase gene in the previously described 4-chlorophenol degradation gene cluster, was also studied for its ability to grow on the different phenols. The mutant strain was able to grow on phenol, but not on either of the substituted phenols, suggesting a different catabolic pathway for the degradation of phenol by this microorganism.

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Year:  2007        PMID: 17917705     DOI: 10.1007/s10532-007-9154-2

Source DB:  PubMed          Journal:  Biodegradation        ISSN: 0923-9820            Impact factor:   3.909


  13 in total

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2.  Biodegradation kinetics of 4-fluorocinnamic acid by a consortium of Arthrobacter and Ralstonia strains.

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Journal:  Biodegradation       Date:  2011-07-05       Impact factor: 3.909

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4.  Layer of organic pine forest soil on top of chlorophenol-contaminated mineral soil enhances contaminant degradation.

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5.  Biodegradation of persistent environmental pollutants by Arthrobacter sp.

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7.  Genomic heterogeneity within conservedmetabolic pathways of Arthrobacter species - a bioinformatic approach.

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Journal:  Bioinformation       Date:  2011-02-15

8.  Optimization study of 2-hydroxyquinoxaline (2-HQ) biodegradation by Ochrobactrum sp. HQ1.

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9.  Linking genomic and physiological characteristics of psychrophilic Arthrobacter to metagenomic data to explain global environmental distribution.

Authors:  Liang Shen; Yongqin Liu; Michelle A Allen; Baiqing Xu; Ninglian Wang; Timothy J Williams; Feng Wang; Yuguang Zhou; Qing Liu; Ricardo Cavicchioli
Journal:  Microbiome       Date:  2021-06-12       Impact factor: 14.650

10.  Draft Genome Sequence of the 2-Chloro-4-Nitrophenol-Degrading Bacterium Arthrobacter sp. Strain SJCon.

Authors:  Surendra Vikram; Shailesh Kumar; Bhumika Vaidya; Anil Kumar Pinnaka; Gajendra Pal Singh Raghava
Journal:  Genome Announc       Date:  2013-03-07
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