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Martin Sykes

Professor emeritus

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Linking Fine-Scale Sub-Arctic Vegetation Distribution in Complex Topography with Surface-Air-Temperature Modelled at 50-m Resolution

Author

  • Zhenlin Yang
  • Martin Sykes
  • Edward Hanna
  • Terry V. Callaghan

Summary, in English

Recent studies have shown that the complexities of the surface features in mountainous terrain require a re-assessment of climate impacts at the local level. We explored the importance of surface-air-temperature based on a recently published 50-m-gridded dataset, versus soil variables for explaining vegetation distribution in Swedish Lapland using generalised linear models (GLMs). The results demonstrated that the current distribution of the birch forest and snowbed community strongly relied on the surface-air-temperature. However, temperature alone is a poor predictor of many plant communities (wetland, meadow). Because of diminishing sample representation with increasing altitude, the snowbed community was under-sampled at higher altitudes. This results in underestimation of the current distribution of the snowbed community around the mountain summits. The analysis suggests that caution is warranted when applying GLMs at the local level.

Department/s

  • Dept of Physical Geography and Ecosystem Science
  • BECC: Biodiversity and Ecosystem services in a Changing Climate

Publishing year

2012

Language

English

Pages

292-302

Publication/Series

Ambio: a Journal of Human Environment

Volume

41

Document type

Journal article

Publisher

Springer

Topic

  • Physical Geography

Keywords

  • Generalised linear model
  • Mountains
  • Vegetation distribution
  • Swedish
  • sub-arctic
  • Scale

Status

Published

ISBN/ISSN/Other

  • ISSN: 0044-7447