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Plant-derived compounds stimulate the decomposition of organic matter in arctic permafrost soils

  • Birgit Wild*
  • , Norman Gentsch
  • , Petr Capek
  • , Katerina Diáková
  • , Ricardo J.Eloy Alves
  • , Jiri Bárta
  • , Antje Gittel
  • , Gustaf Hugelius
  • , Anna Knoltsch
  • , Peter Kuhry
  • , Nikolay Lashchinskiy
  • , Robert Mikutta
  • , Juri Palmtag
  • , Christa Schleper
  • , Jörg Schnecker
  • , Olga Shibistova
  • , Mounir Takriti
  • , Vigdis L. Torsvik
  • , Tim Urich
  • , Margarete Watzka
  • Hana Šantrūcková, Georg Guggenberger, Andreas Richter
*Corresponding author for this work

    Research output: Contribution to journalArticleResearchpeer review

    Abstract

    Arctic ecosystems are warming rapidly, which is expected to promote soil organic matter (SOM) decomposition. In addition to the direct warming effect, decomposition can also be indirectly stimulated via increased plant productivity and plant-soil C allocation, and this so called € priming effect € might significantly alter the ecosystem C balance. In this study, we provide first mechanistic insights into the susceptibility of SOM decomposition in arctic permafrost soils to priming. By comparing 119 soils from four locations across the Siberian Arctic that cover all horizons of active layer and upper permafrost, we found that an increased availability of plant-derived organic C particularly stimulated decomposition in subsoil horizons where most of the arctic soil carbon is located. Considering the 1,035 Pg of arctic soil carbon, such an additional stimulation of decomposition beyond the direct temperature effect can accelerate net ecosystem C losses, and amplify the positive feedback to global warming.

    Original languageEnglish
    Article number25607
    JournalScientific reports
    Volume6
    DOIs
    Publication statusPublished - 9 May 2016

    ASJC Scopus subject areas

    • General

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