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May 19, 2026Ecography0 citationsOpen Access

Simulating past and future refugia for temperate trees in northern Italy

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APAzzurra PistoneOeschger Centre for Climate Change ResearchPHPaul D. HenneUnited States Geological SurveyPKPetra KaltenriederOeschger Centre for Climate Change Research

Key Points

  • The research examines how temperate tree species responded to past climatic changes and projects future conditions that may affect their ranges.
  • Utilized LandClim to model forest landscapes during the Last Glacial Maximum (LGM).
  • Identified refugial areas in the Euganean Hills based on climate conditions and elevation.
  • Simulated future climate impacts on current forest types and species distributions.],
  • During the LGM, temperate trees likely survived in the Euganean Hills' sheltered valleys and elevated areas.
  • Future climate scenarios predict the decline of sub-mediterranean and oro-mediterranean deciduous forests, replaced by thermo-mediterranean evergreen forests.
  • Fagus sylvatica is predicted to sharply decline in the region, raising significant conservation concerns.

Abstract

During the Quaternary, trees responded to the climatic changes of glacial–interglacial cycles with large‐scale range shifts. Over cold glacials, temperate tree species contracted their ranges and survived in areas known as refugia. Several studies point to the Euganean Hills (Colli Euganei), in Veneto, northern Italy, as one of the northernmost European refugia of temperate tree species during the Last Glacial Maximum (LGM, ca 23 000–19 000 calibrated years BP). Using LandClim, a spatially explicit, dynamic forest landscape model, we demonstrate that climate conditions during the LGM likely allowed temperate tree species to persist in the Euganean Hills. The identified refugial locations lie at intermediate to high elevations and in sheltered valleys within the hilly complex. Therefore, the combined palaeoecological and modelling evidence suggests that today's temperate forests of the Euganean Hills have a full glacial legacy. Simulations under future climate conditions suggest a collapse of the sub‐mediterranean and oro‐mediterranean deciduous forests that are prevalent today and the expansion of thermo‐mediterranean evergreen forests (with e.g. Quercus ilex , Q. suber , Olea europaea and Pinus sp.). Specifically, the extrazonal population of oro‐mediterranean Fagus sylvatica , which is unique to the Po Plain and likely persisted locally through several glacial–interglacial cycles, is predicted to sharply decline and face local extinction, underscoring a conservation hazard.

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Cite This Study

Pistone et al. (2026) studied this question.

synapsesocial.com/papers/6a0bfd7a166b51b53d378e26https://doi.org/10.1002/ecog.08367
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Early expansion of mixed oak stands at 16,800–16,600 cal bp at a northern Italian glacial refugium in the Euganean Hills2024
  2. 2Hot spring oases in the periglacial desert as the Last Glacial Maximum refugia for temperate trees in Central Europe2024 · 25 citations
  3. 3Altitudinal shifting of major forest tree species in Italian mountains under climate change2024
  4. 4Latitude or altitude as the future refugium? A case for the future of forests in Asia Minor and its surroundings2024 · 4 citations
  5. 5Survival in nunatak and peripheral glacial refugia of three alpine plant species is partly predicted by altitudinal segregation2024