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Stomping in silence : conceptualizing trampling effects on soils in polar tundra

Tuomi, Maria; Väisänen, Maria; Ylänne, Henni; Brearley, Francis Q.; Barrio, Isabel C.; Bråthen, Kari Anne; Eischeid, Isabell; Forbes, Bruce C.; Jónsdóttir, Ingibjörg S.; Kolstad, Anders L.; Macek, Petr; Petit Bon, Matteo; Speed, James D. M.; Stark, Sari; Svavarsdóttir, Kristin; Thórsson, Jóhann; Bueno, C. Guillermo (2020-11-24)

 
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URL:
https://doi.org/10.1111/1365-2435.13719

Tuomi, Maria
Väisänen, Maria
Ylänne, Henni
Brearley, Francis Q.
Barrio, Isabel C.
Bråthen, Kari Anne
Eischeid, Isabell
Forbes, Bruce C.
Jónsdóttir, Ingibjörg S.
Kolstad, Anders L.
Macek, Petr
Petit Bon, Matteo
Speed, James D. M.
Stark, Sari
Svavarsdóttir, Kristin
Thórsson, Jóhann
Bueno, C. Guillermo
John Wiley & Sons
24.11.2020

Tuomi, M, Väisänen, M, Ylänne, H, et al. Stomping in silence: Conceptualizing trampling effects on soils in polar tundra. Funct Ecol. 2021; 35: 306– 317. https://doi.org/10.1111/1365-2435.13719

https://rightsstatements.org/vocab/InC/1.0/
© 2020 British Ecological Society. This is the peer reviewed version of the following article: Tuomi, M, Väisänen, M, Ylänne, H, et al. Stomping in silence: Conceptualizing trampling effects on soils in polar tundra. Funct Ecol. 2021; 35: 306– 317, which has been published in final form at https://doi.org/10.1111/1365-2435.13719. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Self-Archiving.
https://rightsstatements.org/vocab/InC/1.0/
doi:https://doi.org/10.1111/1365-2435.13719
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Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi-fe20201217101088
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Abstract

1. Ungulate trampling modifies soils and interlinked ecosystem functions across biomes. Until today, most research has focused on temperate ecosystems and mineral soils while trampling effects on cold and organic matter‐rich tundra soils remain largely unknown.

2. We aimed to develop a general model of trampling effects on soil structure, biota, microclimate and biogeochemical processes, with a particular focus on polar tundra soils. To reach this goal, we reviewed literature about the effects of trampling and physical disturbances on soils across biomes and used this to discuss the knowns and unknowns of trampling effects on tundra soils.

3. We identified the following four pathways through which trampling affects soils: (a) soil compaction; (b) reductions in soil fauna and fungi; (c) rapid losses in vegetation biomass and cover; and (d) longer term shifts in vegetation community composition.

4. We found that, in polar tundra, soil responses to trampling pathways 1 and 3 could be characterized by nonlinear dynamics and tundra‐specific context dependencies that we formulated into testable hypotheses.

5. In conclusion, trampling may affect tundra soil significantly but many direct, interacting and cascading responses remain unknown. We call for research to advance the understanding of trampling effects on soils to support informed efforts to manage and predict the functioning of tundra systems under global changes.

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