Race to the canopy: the development of tree size hierarchies following a partial disturbance in a boreal old-growth forest

Author:

Kulha Niko123ORCID,Ahokas Antti1,Gauthier Sylvie4,Aakala Tuomas5

Affiliation:

1. Department of Forest Sciences, University of Helsinki, P.O. Box 27, 00014 Helsinki, Finland

2. Natural Resources Institute Finland, Latokartanonkaari 9, 00790 Helsinki, Finland

3. Biodiversity Unit, Zoological Museum, University of Turku, Henrikinkatu 2, 20014 Turku, Finland

4. Canadian Forest Service, Laurentian Forestry Centre, P.O. Box 3800, Sainte-Foy, QC GIV 4C7, Canada

5. School of Forest Sciences, University of Eastern Finland, P.O. Box 111, 80101 Joensuu, Finland

Abstract

In boreal old-growth forests, advance regeneration typically attains canopy dominance through growth release events following partial disturbances. We sampled competing Picea mariana (Mill.) and Abies balsamea (L.) in disturbed old-growth stands in Quebec, Canada, to understand the intra- and interspecific size hierarchy development. We reconstructed tree size development and examined the role of initial size difference, time between germination and a disturbance, and the strength of response to the disturbance in determining tree size hierarchies. Trees that regenerated first generally dominated their intraspecific competitors also following a disturbance event. However, prolonged time between germination and disturbance resulted in a less deterministic outcome. Tree size difference prior to disturbance also influenced the development of size hierarchies. In interspecific competition between individuals of the same diameter, A. balsamea had a 61% probability of gaining dominance over P. mariana, the probability being 50% if P. mariana was 5 mm larger than A. balsamea. Dominant trees generally had the strongest response to the disturbance, reinforcing the existing size hierarchies. The largest trees typically gain dominance after a partial disturbance. However, interspecific competition is less predictable than intraspecific competition, small initial size difference, and prolonged time in suppression potentially changing tree size hierarchies.

Publisher

Canadian Science Publishing

Subject

Ecology,Forestry,Global and Planetary Change

Reference52 articles.

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