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Forest microclimates and climate change: Importance, drivers and future research agenda

AbstractForest microclimates contrast strongly with the climate outside forests. To fully understand and better predict how forests' biodiversity and functions relate to climate and climate change, microclimates need to be integrated into ecological research. Despite the potentially broad impact of microclimates on the response of forest ecosystems to global change, our understanding of how microclimates within and below tree canopies modulate biotic responses to global change at the species, community and ecosystem level is still limited. Here, we review how spatial and temporal variation in forest microclimates result from an interplay of forest features, local water balance, topography and landscape composition. We first stress and exemplify the importance of considering forest microclimates to understand variation in biodiversity and ecosystem functions across forest landscapes. Next, we explain how macroclimate warming (of the free atmosphere) can affect microclimates, and vice versa, via interactions with land‐use changes across different biomes. Finally, we perform a priority ranking of future research avenues at the interface of microclimate ecology and global change biology, with a specific focus on three key themes: (1) disentangling the abiotic and biotic drivers and feedbacks of forest microclimates; (2) global and regional mapping and predictions of forest microclimates; and (3) the impacts of microclimate on forest biodiversity and ecosystem functioning in the face of climate change. The availability of microclimatic data will significantly increase in the coming decades, characterizing climate variability at unprecedented spatial and temporal scales relevant to biological processes in forests. This will revolutionize our understanding of the dynamics, drivers and implications of forest microclimates on biodiversity and ecological functions, and the impacts of global changes. In order to support the sustainable use of forests and to secure their biodiversity and ecosystem services for future generations, microclimates cannot be ignored.
- Finnish Meteorological Institute Finland
- Stockholm University Sweden
- Ecology and Dynamics of Human Influenced Systems France
- Swiss Federal Research Inst. WSL Switzerland
- Ghent University Belgium
CANOPY STRUCTURE, 570, [SDE.MCG]Environmental Sciences/Global Changes, Climate Change, FINE-GRAIN, 577, Forests, Trees, LITTER DECOMPOSITION, BOREAL FOREST, forest, future research, offset, BEHAVIORAL THERMOREGULATION, [SDV.EE.ECO]Life Sciences [q-bio]/Ecology, environment/Ecosystems, ecosystem function, Environmental Chemistry, PLANT-COMMUNITIES, Biology, Ecosystem, General Environmental Science, biodiversity, BIRDS NEST FERNS, Global and Planetary Change, Ecology, VERTICAL STRATIFICATION, buffering, SPECIES DISTRIBUTION MODELS, Biodiversity, Microclimate, Chemistry, climate change, [SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/Climatology, Earth and Environmental Sciences, [SDV.EE.ECO]Life Sciences [q-bio]/Ecology, [SDE.BE]Environmental Sciences/Biodiversity and Ecology, environment/Ecosystems, microclimate, TROPICAL FOREST
CANOPY STRUCTURE, 570, [SDE.MCG]Environmental Sciences/Global Changes, Climate Change, FINE-GRAIN, 577, Forests, Trees, LITTER DECOMPOSITION, BOREAL FOREST, forest, future research, offset, BEHAVIORAL THERMOREGULATION, [SDV.EE.ECO]Life Sciences [q-bio]/Ecology, environment/Ecosystems, ecosystem function, Environmental Chemistry, PLANT-COMMUNITIES, Biology, Ecosystem, General Environmental Science, biodiversity, BIRDS NEST FERNS, Global and Planetary Change, Ecology, VERTICAL STRATIFICATION, buffering, SPECIES DISTRIBUTION MODELS, Biodiversity, Microclimate, Chemistry, climate change, [SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/Climatology, Earth and Environmental Sciences, [SDV.EE.ECO]Life Sciences [q-bio]/Ecology, [SDE.BE]Environmental Sciences/Biodiversity and Ecology, environment/Ecosystems, microclimate, TROPICAL FOREST
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