Dominance of in the Growing Stock and Its Relationship to Climate-An Analysis Using Modeled Stand-Level Climate Data.

Plants (Basel)

Department of Wood Science and Technology, Biotechnical Faculty, University of Ljubljana, Jamnikarjeva 101, 1000 Ljubljana, Slovenia.

Published: September 2022

AI Article Synopsis

  • Climate change is predicted to shift the distribution of tree species in Europe, impacting the European beech, which is significant both ecologically and economically.
  • In Slovenia, European beech constitutes 33% of forest growth, but this proportion varies across Europe, raising questions about the role of climate vs. historical management practices.
  • The study used data from 341,341 forest stands and modeled climate information to explore how climatic factors influence the dominance of beech trees, helping improve future forest management strategies.

Article Abstract

In the future, climate change is expected to affect the spatial distribution of most tree species in Europe. The European beech (), a drought-sensitive tree species, is currently distributed throughout Europe, where it is an ecologically and economically important species. In Slovenia, the European beech represents 33% of the growing stock, but such a proportion greatly varies across Europe. Whether such a variation is related to the climate environmental gradients or because of historical or management decisions is an as-yet unexplored question. For this study, we employed the Slovenian Forests Service inventory, where the proportion of beech in the forest stock has been monitored in 341,341 forest stands across the country. Modeled climate data from the SLOCLIM database, calculated for each of the stands, was also used to test the hypothesis that although beech forests have always been influenced by human activity, the dominance of beech trees in forest stands is at least partially dictated by the climate. The results showed the distribution of the main climate variables (annual precipitation, the share of summer and spring precipitation, and annual maximum and minimum temperatures) and how they affect the current dominance of beech trees at the stand level. Due to the large number and variability of forest stands studied, the results should be transferable to better understand and manage the climatic suitability and risks of . The modeled data is publicly available in the web repository Zenodo.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9572527PMC
http://dx.doi.org/10.3390/plants11192541DOI Listing

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