Replication Data for: Long-term herbivore removal experiments reveal how geese and reindeer shape vegetation and ecosystem CO2-fluxes in high-Arctic tundra

DOI

Given the current rates of climate change, with associated shifts in herbivore population densities, understanding the role of different herbivores in ecosystem functioning is critical for predicting ecosystem responses. Here, we examined how migratory geese and resident, non-migratory reindeer – two dominating yet functionally contrasting herbivores – control vegetation and ecosystem processes in high-Arctic Svalbard.

R, 4.2.1

Identifier
DOI https://doi.org/10.18710/ETR83N
Related Identifier IsCitedBy https://doi.org/10.1111/1365-2745.14200
Metadata Access https://dataverse.no/oai?verb=GetRecord&metadataPrefix=oai_datacite&identifier=doi:10.18710/ETR83N
Provenance
Creator Petit Bon, Matteo ORCID logo; Hansen, Brage B. ORCID logo; Loonen, Maarten J. J. E. ORCID logo; van der Wal, René ORCID logo
Publisher DataverseNO
Contributor Petit Bon, Matteo; UiT The Arctic University of Norway; Petraglia, Alessandro; Bråthen, Kari Anne; Böhner, Hanna; Layton-Matthews, Kate; Beard, Karen H.; Le Moullec, Mathilde; Jónsdóttir, Ingibjörg S.
Publication Year 2023
Funding Reference The Research Council of Norway FRIPRO grant 276080 ; The Governor of Svalbard Svalbard Environmental Protection Fund, grant 15/128 ; The Research Council of Norway Arctic Field Grant, grant 269957
Rights CC0 1.0; info:eu-repo/semantics/openAccess; http://creativecommons.org/publicdomain/zero/1.0
OpenAccess true
Contact Petit Bon, Matteo (UiT The Arctic University of Norway)
Representation
Resource Type Data from long-term herbivore exclusion experiments; Dataset
Format text/plain
Size 5492; 4413; 5382; 16302; 19241; 9705
Version 1.1
Discipline Earth and Environmental Science; Environmental Research; Geosciences; Natural Sciences
Spatial Coverage (11.917W, 78.917S, 11.917E, 78.917N); Svalbard (Norway)