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Environ Sci Technol ; 49(24): 14732-9, 2015 Dec 15.
Article in English | MEDLINE | ID: mdl-26571341

ABSTRACT

iso-Alkanes are major components of petroleum and have been considered recalcitrant to biodegradation under methanogenic conditions. However, indigenous microbes in oil sands tailings ponds exposed to solvents rich in 2-methylbutane, 2-methylpentane, 3-methylpentane, n-pentane, and n-hexane produce methane in situ. We incubated defined mixtures of iso- or n-alkanes with mature fine tailings from two tailings ponds of different ages historically exposed to different solvents: one, ~10 years old, receiving C5-C6 paraffins and the other, ~35 years old, receiving naphtha. A lengthy incubation (>6 years) revealed iso-alkane biodegradation after lag phases of 900-1800 and ~280 days, respectively, before the onset of methanogenesis, although lag phases were shorter with n-alkanes (~650-1675 and ~170 days, respectively). 2-Methylpentane and both n-alkanes were completely depleted during ~2400 days of incubation, whereas 2-methylbutane and 3-methylpentane were partially depleted only during active degradation of 2-methylpentane, suggesting co-metabolism. In both cases, pyrotag sequencing of 16S rRNA genes showed codominance of Peptococcaceae with acetoclastic (Methanosaeta) and hydrogenotrophic (Methanoregula and Methanolinea) methanogens. These observations are important for predicting long-term greenhouse-gas emissions from oil sands tailings ponds and extend the known range of hydrocarbons susceptible to methanogenic biodegradation in petroleum-impacted anaerobic environments.


Subject(s)
Alkanes/metabolism , Microbial Consortia/physiology , Oil and Gas Fields/microbiology , Alkanes/chemistry , Biodegradation, Environmental , Hexanes/metabolism , Methane/metabolism , Methanosarcinaceae/genetics , Methanosarcinaceae/metabolism , Microbial Consortia/genetics , Pentanes/metabolism , Peptococcaceae/genetics , Peptococcaceae/metabolism , Petroleum/metabolism , RNA, Ribosomal, 16S/genetics
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