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Microbial Communities Associated with Zones of Elevated Magnetic Susceptibility in Hydrocarbon-Contaminated Sediments

  • Carol L. Beaver
  • , Anja E. Williams
  • , Estella A. Atekwana
  • , Farag M. Mewafy
  • , Gamal Z. Abdel Aal
  • , Lee D. Slater
  • , Silvia Rossbach

Research output: Contribution to journalArticlepeer-review

Abstract

Recent studies suggest that magnetic susceptibility (MS) measurements can play an important role in identifying zones where microbial-mediated iron mineral transformations are occurring. Here we investigated the microbial community variations within zones of elevated MS in a petroleum hydrocarbon-contaminated aquifer near Bemidji, Minnesota, USA. Our main objective was to 1) identify the key microbial populations that may play a role in hydrocarbon degradation, 2) analyze which microbial populations could be connected to the elevated MS and 3) explore the use of non-destructive geophysical techniques as a tool to guide microbial sampling. Clone libraries based on the 16S rRNA gene revealed the presence of iron-reducing β-Proteobacteria in the vadose zone, whereas the free petroleum phase on the water table was characterized by a methanogenic consortium, in which the syntrophic δ-proteobacterium Smithella and the hydrogenotrophic Methanoregula predominated. Nonmetric multidimensional scaling (NMDS) found a close relationship between elevated MS values and the methanogenic hydrocarbon-degrading consortium. Our results suggest that magnetic susceptibility measurements can guide microbiologists to zones of active microbial biodegradation in aged petroleum spills.

Original languageAmerican English
JournalGeomicrobiology Journal
Volume33
DOIs
StatePublished - May 1 2016

Keywords

  • 16s rRNA Gene
  • Bemidji
  • Biodegradation
  • Bioremediation
  • Clone Libraries
  • Gene
  • Hydrocarbon Contamination
  • Magnetic Susceptibility
  • Microbial Activity
  • Microbial Community
  • Minnesota
  • Petroleum Hydrocarbon
  • Proteobacteria
  • RNA
  • Sediment Pollution
  • Smithella
  • United States

Disciplines

  • Geology

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