Proglacial succession of biological soil crusts and vascular plants: biotic interactions in the High Arctic

Author:

Breen Katie1,Lévesque Esther1

Affiliation:

1. Département de chimie-biologie, C.P. 500, Université du Québec à Trois-Rivières, Trois-Rivières, QC G9A 5H7, Canada; Centre d’études nordiques, Université Laval, Québec, QC G1K 7P4, Canada.

Abstract

To evaluate the hypothesis that biological soil crusts facilitate the establishment and maintenance of vascular plants during succession, we studied the distribution patterns of crusts and vascular plants along a High Arctic glacier foreland and compared the success of plants growing in and out of crusted substrate. Multivariate analyses determined that distance from the glacier and crust cover were the most important variables, explaining 11% and 9% of the variance in the vegetation data, respectively. Surfaces colonized by biological soil crusts generally supported higher plant densities and showed positive associations with the most dominant, long-lived plant species such as Saxifraga oppositifolia L., Salix arctica Pall., and Dryas integrifolia Vahl. Crusts facilitate plant establishment and growth in early and midsuccession but may compete for available resources further along the chronosequence. This study recognizes subtle direct influences of crust on vegetation density but also draws attention to a much larger overall positive effect on community structure. Succession on this foreland proceeds via a “directional-replacement” model and supports a well-developed community of biological soil crusts and vascular plants with greater species richness, cover, and density compared with other glacier foreland vegetation communities previously investigated on Ellesmere Island, Nunavut.

Publisher

Canadian Science Publishing

Subject

Plant Science

Reference59 articles.

1. ACIA. 2005. Impacts of a warming Arctic. Arctic climate impact assessment scientific report 1042. Cambridge University Press, New York.

2. The Nature and Restoration of Denuded Areas in Iceland

3. Barbour, M.G., Burk, J.H., Pitts, W.D., Gilliam, F.S., and Schwartz, M.W. 1999. Terrestrial plant ecology. Benjamin/Cummings, Menlo Park, Calif.

4. Influence of cryptobiotic soil crusts on elemental content of tissue of two desert seed plants

5. Belnap, J., and Lange, O.L. (Editors). 2001. Biological soil crusts: structure, function and management. Springer, Berlin.

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