Affiliation:
1. Laboratory of Botany, Department of Biology, University of Patras, 26504 Patras, Greece
Abstract
Endemic island species face heightened extinction risk from climate-driven shifts, yet standard models often underestimate threat levels for those like Quercus alnifolia, an iconic Cypriot oak with pre-adaptations to aridity. Through species distribution modelling, we investigated the potential shifts in its distribution under future climate and land-use change scenarios. Our approach uniquely combines dispersal constraints, detailed soil characteristics, hydrological factors, and anticipated soil erosion data, offering a comprehensive assessment of environmental suitability. We quantified the species’ sensitivity, exposure, and vulnerability to projected changes, conducting a preliminary IUCN extinction risk assessment according to Criteria A and B. Our projections uniformly predict range reductions, with a median decrease of 67.8% by the 2070s under the most extreme scenarios. Additionally, our research indicates Quercus alnifolia’s resilience to diverse erosion conditions and preference for relatively dry climates within a specific annual temperature range. The preliminary IUCN risk assessment designates Quercus alnifolia as Critically Endangered in the future, highlighting the need for focused conservation efforts. Climate and land-use changes are critical threats to the species’ survival, emphasising the importance of comprehensive modelling techniques and the urgent requirement for dedicated conservation measures to safeguard this iconic species.
Reference204 articles.
1. Brondízio, E., Settele, J., Díaz, S., and Ngo, H. (2019). Global Assessment Report of the Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services, IPBES.
2. Mediterranean island biodiversity and climate change: The last 10,000 years and the future;Vogiatzakis;Biodivers. Conserv.,2016
3. Wiens, J.J., and Zelinka, J. (2024). How many species will earth lose to climate change?. Glob. Chang. Biol., 30.
4. Hotspots within hotspots: Endemic plant richness, environmental drivers, and implications for conservation;Fenu;Biol. Conserv.,2014
5. MedECC (2020). Climate and Environmental Change in the Mediterranean Basin—Current Situation and Risks for the Future, MedECC. First Mediterranean Assessment Report.