Literature DB >> 12450855

Soil microbial community structure across a thermal gradient following a geothermal heating event.

Tracy B Norris1, Jon M Wraith, Richard W Castenholz, Timothy R McDermott.   

Abstract

In this study microbial species diversity was assessed across a landscape in Yellowstone National Park, where an abrupt increase in soil temperature had occurred due to recent geothermal activity. Soil temperatures were measured, and samples were taken across a temperature gradient (35 to 65 degrees C at a 15-cm depth) that spanned geothermally disturbed and unimpacted soils; thermally perturbed soils were visually apparent by the occurrence of dead or dying lodgepole pine trees. Changes in soil microbial diversity across the temperature gradient were qualitatively assessed based on 16S rRNA sequence variation as detected by denaturing gradient gel electrophoresis (DGGE) using both ribosomal DNA (rDNA) and rRNA as PCR templates and primers specific for the Bacteria or Archaea domain. The impact of the major heating disturbance was apparent in that DGGE profiles from heated soils appeared less complex than those from the unaffected soils. Phylogenetic analysis of a bacterial 16S rDNA PCR clone library from a recently heated soil showed that a majority of the clones belonged to the Acidobacterium (51%) and Planctomyces (18%) divisions. Agar plate counts of soil suspensions cultured on dilute yeast extract and R2A agar media incubated at 25 or 50 degrees C revealed that thermophile populations were two to three orders of magnitude greater in the recently heated soil. A soil microcosm laboratory experiment simulated the geothermal heating event. As determined by both RNA- and DNA-based PCR coupled with DGGE, changes in community structure (marked change in the DGGE profile) of soils incubated at 50 degrees C occurred within 1 week and appeared to stabilize after 3 weeks. The results of our molecular and culture data suggest that thermophiles or thermotolerant species are randomly distributed in this area within Yellowstone National Park and that localized thermal activity selects for them.

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Year:  2002        PMID: 12450855      PMCID: PMC134386          DOI: 10.1128/AEM.68.12.6300-6309.2002

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  27 in total

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10.  Use of phospholipid fatty acids and carbon source utilization patterns To track microbial community succession in developing compost.

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2.  Bacterial community structure and diversity in a century-old manure-treated agroecosystem.

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4.  Experimentally simulated global warming and nitrogen enrichment effects on microbial litter decomposers in a marsh.

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6.  Diversity of Planctomycetes in soil in relation to soil history and environmental heterogeneity.

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7.  A molecular approach to identify active microbes in environmental eukaryote clone libraries.

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8.  Forest floor bacterial community composition and catabolic profiles in relation to landscape features in Québec's southern boreal forest.

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10.  Autecology of an arsenite chemolithotroph: sulfide constraints on function and distribution in a geothermal spring.

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