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Elevated atmospheric CO2 affects soil microbial diversity associated with trembling aspen

  • Celine Lesaulnier
  • , Dimitris Papamichail
  • , Sean McCorkle
  • , Bernard Ollivier
  • , Steven Skiena
  • , Safiyh Taghavi
  • , Donald Zak
  • , Daniel Van Der Lelie
  • Brookhaven National Laboratory
  • Institut de recherche pour le développement
  • Stony Brook University
  • University of Miami
  • University of Michigan, Ann Arbor

Research output: Contribution to journalArticlepeer-review

240 Scopus citations

Abstract

The effects of elevated atmospheric CO2 (560 p.p.m.) and subsequent plant responses on the soil microbial community composition associated with trembling aspen was assessed through the classification of 6996 complete ribosomal DNA sequences amplified from the Rhinelander WI free-air CO2 and O3 enrichment (FACE) experiments microbial community metagenome. This in-depth comparative analysis provides an unprecedented, detailed and deep branching profile of population changes incurred as a response to this environmental perturbation. Total bacterial and eukaryotic abundance does not change; however, an increase in heterotrophic decomposers and ectomycorrhizal fungi is observed. Nitrate reducers of the domain bacteria and archaea, of the phylum Crenarchaea, potentially implicated in ammonium oxidation, significantly decreased with elevated CO2. These changes in soil biota are evidence for altered interactions between trembling aspen and the microorganisms in its surrounding soil, and support the theory that greater plant detritus production under elevated CO2 significantly alters soil microbial community composition.

Original languageEnglish
Pages (from-to)926-941
Number of pages16
JournalEnvironmental Microbiology
Volume10
Issue number4
DOIs
StatePublished - Apr 2008

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