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FEMS Microbiol Ecol ; 92(10)2016 10.
Artículo en Inglés | MEDLINE | ID: mdl-27387912

RESUMEN

The increasing accessibility to navigation and offshore oil exploration brings risks of hydrocarbon releases in Arctic waters. Bioremediation of hydrocarbons is a promising mitigation strategy but challenges remain, particularly due to low microbial metabolic rates in cold, ice-covered seas. Hydrocarbon degradation potential of ice-associated microbes collected from the Northwest Passage was investigated. Microcosm incubations were run for 15 days at -1.7°C with and without oil to determine the effects of hydrocarbon exposure on microbial abundance, diversity and activity, and to estimate component-specific hydrocarbon loss. Diversity was assessed with automated ribosomal intergenic spacer analysis and Ion Torrent 16S rRNA gene sequencing. Bacterial activity was measured by (3)H-leucine uptake rates. After incubation, sub-ice and sea-ice communities degraded 94% and 48% of the initial hydrocarbons, respectively. Hydrocarbon exposure changed the composition of sea-ice and sub-ice communities; in sea-ice microcosms, Bacteroidetes (mainly Polaribacter) dominated whereas in sub-ice microcosms, the contribution of Epsilonproteobacteria increased, and that of Alphaproteobacteria and Bacteroidetes decreased. Sequencing data revealed a decline in diversity and increases in Colwellia and Moritella in oil-treated microcosms. Low concentration of dissolved organic matter (DOM) in sub-ice seawater may explain higher hydrocarbon degradation when compared to sea ice, where DOM was abundant and composed of labile exopolysaccharides.


Asunto(s)
Biodegradación Ambiental , Hidrocarburos/metabolismo , Cubierta de Hielo/microbiología , Contaminación por Petróleo , Contaminantes Químicos del Agua/metabolismo , Alphaproteobacteria/genética , Regiones Árticas , Bacteroidetes/genética , Canadá , Flavobacteriaceae/genética , Nunavut , Petróleo/metabolismo , ARN Ribosómico 16S/genética , Agua de Mar/microbiología
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