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Tree-rings,genetics and the environment: Complex interactions at the rear edge of species distribution range
Institution:1. Department of Forest Biodiversity, Institute of Forest Ecology and Silviculture, Faculty of Forestry, University of Agriculture in Krakow, al. 29-Listopada 46, 31-425 Kraków, Poland;2. Department of Applied Mathematics, Institute of Mathematics, Faculty of Mathematics and Computer Science, Jagiellonian University, ul. ?ojasiewicza 6, 30-348 Kraków, Poland;3. University of Lorraine, Faculty of Sciences and Technology, F-54506 Vandoeuvre-les-Nancy, France;4. Gorce Mountains National Park, 34-735 Nied?wied?, Poland
Abstract:Under climate change, modifications on plants’ growth are expected to be the strongest at species margins. Therein, tree acclimation could play a key role as migration is predicted to be too slow to track shifts of bioclimatic envelops. A requirement is, however, that intra-population genetic diversity be high enough for allowing such adaptation of tree populations to climate change. In this study, we tested for the existence of relationships between genetic diversity, site environmental conditions, and the response of annual tree growth to climate of Pinus cembra at its southern limit in the Alps. Site-specific climatic and environmental factors predominantly determined the response of trees along the precipitation gradient. The growth-climate interactions were chiefly linked to mean annual precipitation and temperature, slope and tree-size, and less to genetic diversity. We show that genetic background of Pinus cembra has exclusively indirect modulating power with limited effects on tree-ring formation, and within the southern limit in the Alps, genetic variability is not necessarily well expressed in the patterns of annual tree growth. Our results may imply little adaptive capacity of these populations to future changes in the water balance.
Keywords:Dendrochronology  Grow-climate relationship  Functional trait  Genetic diversity  Subalpine forest
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