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Bacterial Degradation of Aromatic Compounds

Jong‐Su SeoYoung-Soo KeumQing X. Li

Abstract

Aromatic compounds are among the most prevalent and persistent pollutants in the environment. Petroleum-contaminated soil and sediment commonly contain a mixture of polycyclic aromatic hydrocarbons (PAHs) and heterocyclic aromatics. Aromatics derived from industrial activities often have functional groups such as alkyls, halogens and nitro groups. Biodegradation is a major mechanism of removal of organic pollutants from a contaminated site. This review focuses on bacterial degradation pathways of selected aromatic compounds. Catabolic pathways of naphthalene, fluorene, phenanthrene, fluoranthene, pyrene, and benzo[a]pyrene are described in detail. Bacterial catabolism of the heterocycles dibenzofuran, carbazole, dibenzothiophene, and dibenzodioxin is discussed. Bacterial catabolism of alkylated PAHs is summarized, followed by a brief discussion of proteomics and metabolomics as powerful tools for elucidation of biodegradation mechanisms.

Microbial bioremediation and biosurfactantsToxic Organic Pollutants ImpactPharmaceutical and Antibiotic Environmental ImpactsDibenzofuranBiodegradationChemistryFluoranthenePhenanthreneEnvironmental chemistryPyreneDibenzothiopheneMicrobial biodegradationOrganic chemistry

MeSH terms

AerobiosisBacteriaBiodegradation, EnvironmentalEnvironmental PollutantsHeterocyclic CompoundsPolycyclic Aromatic HydrocarbonsProteomicsMetabolic Networks and Pathways

Funding

  • U.S. Environmental Protection Agency
  • U.S. Department of Agriculture
Citations
948
FWCI
20.62
field-weighted impact
References
158
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100%
vs. same field & year
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