TY - GEN
T1 - Navigating the future: unveiling the resilience of trees in evolving UK climates
AU - Martin, K.W.E.
AU - Sjöman, H.
PY - 2025
Y1 - 2025
N2 - As the UK undergoes dynamic shifts in climate patterns marked by increased warmth, precipitation, and sunlight, understanding the adaptability of tree populations becomes imperative. This study examines the long-term implications of climate change on arboreal landscapes, botanical gardens, and urban greenery. By employing climate modelling and species occurrence data, we predict the future suitability of tree species for various environments. Our findings highlight significant shifts towards warmer and drier conditions, particularly in urban settings. This research enhances our understanding of tree resilience and provides a practical framework for sustainable urban and landscape planning amidst climate change. Specifically, we focus on five common species (Betula pendula, Prunus padus, Quercus robur, Tilia cordata, Tilia platyphyllos) within the living collection of the Royal Botanic Gardens Kew, which are also prevalent in wider landscapes.
AB - As the UK undergoes dynamic shifts in climate patterns marked by increased warmth, precipitation, and sunlight, understanding the adaptability of tree populations becomes imperative. This study examines the long-term implications of climate change on arboreal landscapes, botanical gardens, and urban greenery. By employing climate modelling and species occurrence data, we predict the future suitability of tree species for various environments. Our findings highlight significant shifts towards warmer and drier conditions, particularly in urban settings. This research enhances our understanding of tree resilience and provides a practical framework for sustainable urban and landscape planning amidst climate change. Specifically, we focus on five common species (Betula pendula, Prunus padus, Quercus robur, Tilia cordata, Tilia platyphyllos) within the living collection of the Royal Botanic Gardens Kew, which are also prevalent in wider landscapes.
KW - climatic adaptation
KW - horticultural traits
KW - seed sourcing for urban landscapes
KW - species suitability modelling
KW - tree species selection
KW - urban heat mitigation
KW - climatic adaptation
KW - horticultural traits
KW - seed sourcing for urban landscapes
KW - species suitability modelling
KW - tree species selection
KW - urban heat mitigation
UR - https://res.slu.se/id/publ/142912
U2 - 10.17660/ActaHortic.2025.1429.9
DO - 10.17660/ActaHortic.2025.1429.9
M3 - Conference paper in proceedings
SN - 978-94-62614-28-4
T3 - Acta Horticulturae
SP - 77
EP - 83
BT - Proceedings of the III International Symposium on Greener Cities: Improving Ecosystem Services in a Climate-Changing World (GreenCities2024)
PB - International Society for Horticultural Science
ER -