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Sökning: id:"swepub:oai:DiVA.org:umu-216900" > Short- and long-ter...

Short- and long-term plant and microbial uptake of 15N-labelled urea in a mesic tundra heath, West Greenland

Barthelemy, Hélène (författare)
Department of Biological Science, University of Bergen, Bergen, Norway
Nobel, Liv Alexa (författare)
Department of Biology, Terrestrial Ecology, University of Copenhagen, Copenhagen, Denmark; Center for Permafrost (CENPERM), University of Copenhagen, Copenhagen, Denmark
Stark, Sari (författare)
Arctic Centre, University of Lapland, Rovaniemi, Finland
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Väisänen, Maria (författare)
Arctic Centre, University of Lapland, Rovaniemi, Finland; Ecology and Genetics Research Unit, University of Oulu, Oulu, Finland
Olofsson, Johan (författare)
Umeå universitet,Institutionen för ekologi, miljö och geovetenskap
Michelsen, Anders (författare)
Department of Biology, Terrestrial Ecology, University of Copenhagen, Copenhagen, Denmark; Center for Permafrost (CENPERM), University of Copenhagen, Copenhagen, Denmark
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 (creator_code:org_t)
Springer Nature, 2024
2024
Engelska.
Ingår i: Polar Biology. - : Springer Nature. - 0722-4060 .- 1432-2056. ; 47:1, s. 1-15
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Terrestrial animals are key elements in the cycling of elements in the Arctic where nutrient availability is low. Waste production by herbivores, in particular urine deposition, has a crucial role for nitrogen (N) recycling, still, it remains largely unexplored. Also, experimental evidence is biased toward short-term studies and Arctic regions under high herbivore pressure. In this study, we aimed to examine the fate of N derived from urine in a nutrient poor tundra heath in West Greenland, with historical low level of herbivory. We performed a pulse labelling with 15N-urea over the plant canopy and explored ecosystem N partition and retention in the short-term (2 weeks and 1 year) and longer-term (5 years). We found that all vascular plants, irrespective of their traits, could rapidly take up N-urea, but mosses and lichens were even more efficient. Total 15N enrichment was severely reduced for all plants 5 years after tracer addition, with the exception of cryptogams, indicating that non-vascular plants constituted a long-term sink of 15N-urea. The 15N recovery was also high in the litter suggesting high N immobilization in this layer, potentially delaying the nutrients from urine entering the soil compartment. Long-term 15N recovery in soil microbial biomass was minimal, but as much as 30% of added 15N remained in the non-microbial fraction after 5 years. Our results demonstrate that tundra plants that have evolved under low herbivory pressure are well adapted to quickly take advantage of labile urea, with urine having only a transient effect on soil nutrient availability.

Ämnesord

NATURVETENSKAP  -- Biologi -- Ekologi (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences -- Ecology (hsv//eng)

Nyckelord

15N labelling
Arctic tundra
Ecosystem N retention
Microbial N immobilization
Plant nitrogen uptake
Urine

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