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Research article - Peer-reviewed, 2009

Can small-scale experiments predict ecosystem responses? An example from peatlands

Wiedermann, Magdalena M.; Gunnarsson, Urban; Nilsson, Mats B.; Nordin, Annika; Ericson, Lars

Abstract

Oligotrophic, Sphagnum-dominated peatlands have been regarded as long-term stable ecosystems that function as carbon sinks. As a result of environmental perturbations, particularly anthropogenic N deposition, this view is now increasingly questioned. We examined whether small-scale field experiments can predict the direction and magnitude of ecosystem responses to increased N supply. We, therefore, compared data from a 10-year field experiment (involving deposition of 2, 15 and 30 kg N ha(-1) year(-1)) with data from a gradient associated with increased N deposition (2, 8 and 12 kg N ha(-1) year(-1)). We chose to compare: (1) the physiological response of Sphagnum balticum, measured in the form of N accumulation as free amino acids (N-AA); and (2) changes in the total Sphagnum cover, the cover of S. balticum, and vascular plant cover. In all cases we found a highly significant correlation between the two data sets. We attribute the high correspondence between the two data sets to the key function of the dominant group of organisms, the Sphagna, that monopolize N availability and control the water balance, creating an environment hostile to vascular plants. Thus the key role of Sphagna as ecosystem engineers seems to supersede the role of other, scale-dependent processes. We also conclude that N-AA is a sensitive indicator that can be used to signal the slow and gradual shift from Sphagnum to vascular plant dominance.

Published in

Oikos
2009, volume: 118, number: 3, pages: 449-456

Authors' information

Wiedermann, Magdalena M.
Gunnarsson, Urban
Swedish University of Agricultural Sciences, Department of Forest Ecology and Management
Swedish University of Agricultural Sciences, Department of Forest Genetics and Plant Physiology
Ericson, Lars
Umeå University

Sustainable Development Goals

SDG13 Climate action

UKÄ Subject classification

Environmental Sciences related to Agriculture and Land-use

Publication Identifiers

DOI: https://doi.org/10.1111/j.1600-0706.2008.17129.x

URI (permanent link to this page)

https://res.slu.se/id/publ/25312