Characterisation of the effect of a simulated hydrocarbon spill on diazotrophs in mangrove sediment mesocosm

  • R.G. Taketani*
  • , H.F. dos Santos
  • , J.D. van Elsas
  • , A.S. Rosado
  • *Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

32 Citations (Scopus)
61 Downloads (Pure)

Abstract

An analysis of the effect of an oil spill on mangrove sediments was carried out by contamination of mesocosms derived from two different mangroves, one with a history of contamination and one pristine. The association between N(2) fixers and hydrocarbon degradation was assessed using quantitative PCR (qPCR) for the genes rrs and nifH, nifH clone library sequencing and total petroleum hydrocarbon (TPH) quantification using gas chromatography. TPH showed that the microbial communities of both mangroves were able to degrade the hydrocarbons added; however, whereas the majority of oil added to the mesocosm derived from the polluted mangrove was degraded in the 75 days of the experiment, there was only partially degradation in the mesocosm derived from the pristine mangrove. qPCR showed that the addition of oil led to an increase in rrs gene copy numbers in both mesocosms, having almost no effect on the nifH copy numbers in the pristine mangrove. Sequencing of nifH clones indicated that the changes promoted by the oil in the polluted mangrove were greater than those observed in the pristine mesocosm. The main effect observed in the polluted mesocosm was the selection of a single phylotype which is probably adapted to the presence of petroleum. These results, together with previous reports, give hints about the relationship between N(2) fixation and hydrocarbon degradation in natural ecosystems.

Original languageEnglish
Pages (from-to)343-354
Number of pages12
JournalAntonie Van Leeuwenhoek: International Journal of General and Molecular Microbiology
Volume96
Issue number3
DOIs
Publication statusPublished - Oct-2009

Keywords

  • Diazotrophs
  • Mangrove sediment
  • Microbial community
  • Oil degradation
  • POLYMERASE-CHAIN-REACTION
  • NITROGEN-FIXING BACTERIA
  • GEL-ELECTROPHORESIS ANALYSIS
  • 16S RIBOSOMAL-RNA
  • MICROBIAL COMMUNITIES
  • MOLECULAR CHARACTERIZATION
  • ALKANE BIODEGRADATION
  • CONTAMINATED SOIL
  • ALPINE SOILS
  • OIL

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