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Arctic plants can take up inorganic nitrogen year-round
Umeå University, Faculty of Science and Technology, Department of Ecology and Environmental Sciences. Climate Impacts Research Centre, Umeå University, Abisko, Sweden.ORCID iD: 0000-0003-3745-5044
Umeå University, Faculty of Science and Technology, Department of Ecology and Environmental Sciences.ORCID iD: 0000-0003-0909-670X
Umeå University, Faculty of Science and Technology, Department of Ecology and Environmental Sciences. Climate Impacts Research Centre, Umeå University, Abisko, Sweden; Faculty of Environmental and Agricultural Sciences, Agricultural University of Iceland, Borgarness, Hvanneyri, Iceland.ORCID iD: 0009-0009-9439-3186
Umeå University, Faculty of Science and Technology, Department of Ecology and Environmental Sciences.ORCID iD: 0000-0002-1925-3265
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2026 (English)In: New Phytologist, ISSN 0028-646X, E-ISSN 1469-8137Article in journal (Refereed) Epub ahead of print
Abstract [en]
  • Arctic tundra experiences strong climatic seasonality, with cold and long winters, but effective insulation by snow might enable plants and microbes to remain active in winter.
  • We investigated year-round seasonality of plant and microbial inorganic nitrogen (N) uptake, within-plant allocation, and their dependence on snow depth in low-Arctic tundra, using monthly in situ 15N-pulse-labelling.
  • Plants and microbes took up the 15N-label throughout the year, likely due to sufficiently deep and early snow that stabilised soil temperatures c. 0°C in both study sites. Surprisingly, we found only a few indications for higher plant and microbial 15N-uptake and (estimated) plant total inorganic N-uptake during the growing season compared to the cold season (i.e. the non-growing season). Instead, N-acquisition strongly varied within the cold season, with clearly higher uptake during the cold deep-winter (November–March) than the warmer spring-winter (April–May/June).
  • Taken together, our results suggest that 78–82% of the annual plant inorganic N-uptake may take place during the long cold season and as much as 50–56% during deep-winter. This demonstrates the importance of nutrient dynamics during the cold season in the Arctic and challenges the general assumption that arctic plants remain dormant during the winter.
Place, publisher, year, edition, pages
John Wiley & Sons, 2026.
Keywords [en]
15N-tracer method, nitrogen allocation, nitrogen cycle, plant-microbe interaction, seasonal nutrient dynamics, whole-year N-budget, winter
National Category
Botany Ecology
Identifiers
URN: urn:nbn:se:umu:diva-253432DOI: 10.1111/nph.71273ISI: 001768145600001PubMedID: 42152283Scopus ID: 2-s2.0-105038980765OAI: oai:DiVA.org:umu-253432DiVA, id: diva2:2062820
Funder
Swedish Research Council, 2018-04004The Kempe Foundations, JCK-1822Knut and Alice Wallenberg Foundation, KAW 2020.0126Available from: 2026-05-27 Created: 2026-05-27 Last updated: 2026-05-27

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Blume-Werry, GescheGehrmann, FriederikeLeblans, NikiOlofsson, JohanWalz, JosefineDorrepaal, Ellen

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