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Environ Technol ; 43(26): 4200-4211, 2022 Nov.
Article in English | MEDLINE | ID: mdl-34148513

ABSTRACT

Polycyclic aromatic hydrocarbons (PAHs) are key organic pollutants in the environment that pose threats to the ecosystem and human health. The degradation of high molecular weight (HMW) PAHs by enriched bacterial consortia has been previously studied, while the involved metabolisms and microbial communities are still unclear and warrant further investigations. In this study, five bacterial consortia capable of utilizing different PAHs (naphthalene, anthracene, and pyrene) as the sole carbon and energy sources were enriched from PAH-contaminated soil samples. Among the five consortia, consortium TC exhibited the highest pyrene degradation efficiency (91%) after 19 d of incubation. The degradation efficiency was further enhanced up to 99% by supplementing yeast extract. Besides, consortium TC showed tolerances to high concentrations of pyrene (up to 1000 mg/L) and different heavy metal stresses (including Zn2+, Cd2+, and Pb2+). The dominant genus in consortium TC, GS, and PL showing relatively higher degradation efficiency for anthracene and pyrene was Pseudomonas, whereas consortium PG and GD were predominated by genus Achromobacter and class Enterobacteriaceae, respectively. Consortium TC, as a highly efficient HMW PAH-degrading consortium, could be applied for synergistic biodegradation of HMW PAHs and in situ bioremediation of the sites contaminated with both PAHs and heavy metals.


Subject(s)
Metals, Heavy , Polycyclic Aromatic Hydrocarbons , Soil Pollutants , Humans , Biodegradation, Environmental , Polycyclic Aromatic Hydrocarbons/metabolism , Ecosystem , Molecular Weight , Soil Pollutants/metabolism , Bacteria/metabolism , Pyrenes , Metals, Heavy/metabolism , Anthracenes/metabolism , Soil Microbiology
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