4.5 Article

Influence of temperature and soil water content on bacterial, archaeal and denitrifying microbial communities in drained fen grassland soil microcosms

Journal

FEMS MICROBIOLOGY ECOLOGY
Volume 66, Issue 1, Pages 110-122

Publisher

OXFORD UNIV PRESS
DOI: 10.1111/j.1574-6941.2008.00555.x

Keywords

fen soil; temperature; soil water content; microcosms; T-RFLP; greenhouse gases

Categories

Funding

  1. Slovenian Ministry of Higher Education ARRS [J4-6149-0481-04, P4-0116]
  2. Centre of Excellence for Environmental Technologies [3211-05000183]

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In this study, microcosms were used to investigate the influence of temperature (4 and 28 degrees C) and water content (45% and 90% WHC) on microbial communities and activities in carbon-rich fen soil. Bacterial, archaeal and denitrifier community composition was assessed during incubation of microcosms for 12 weeks using terminal restriction fragment length polymorphism (T-RFLP) profiling of 16S rRNA and nitrous oxide reductase (nosZ) genes. In addition, microbial and denitrifier abundance, potential denitrification activity and production of greenhouse gases were measured. No detectable changes were observed in prokaryote or denitrifier abundance. In general, cumulatively after 12 weeks more carbon was respired at the higher temperature (3.7 mg CO2 g(-1) soil), irrespective of the water content, whereas nitrous oxide production was greater under wet conditions (98-336 mu g N2O g(-1) soil). After an initial lag phase, methane emissions (963 mu g CH4 g(-1) soil) were observed only under warm and wet conditions. T-RFLP analyses of bacterial 16S rRNA and nosZ genes revealed small or undetectable community changes in response to temperature and water content, suggesting that bacterial and denitrifying microbial communities are stable and do not respond significantly to seasonal changes in soil conditions. In contrast, archaeal microbial community structure was more dynamic and was strongly influenced by temperature.

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