Using Niche-Based Modelling to Assess the Impact of Climate Change on Tree Functional Diversity in Europe. Thuiller, W.; Lavorel, S.; Sykes, M. T.; and Araújo, M. B.
Using Niche-Based Modelling to Assess the Impact of Climate Change on Tree Functional Diversity in Europe [link]Paper  doi  abstract   bibtex   
Rapid anthropogenic climate change is already affecting species distributions and ecosystem functioning worldwide. We applied niche-based models to analyse the impact of climate change on tree species and functional diversity in Europe. Present-day climate was used to predict the distributions of 122 tree species from different functional types (FT). We then explored projections of future distributions under one climate scenario for 2080, considering two alternative dispersal assumptions: no dispersal and unlimited dispersal. The species-rich broadleaved deciduous group appeared to play a key role in the future of different European regions. Temperate areas were projected to lose both species richness and functional diversity due to the loss of broadleaved deciduous trees. These were projected to migrate to boreal forests, thereby increasing their species richness and functional diversity. Atlantic areas provided an intermediate case, with a predicted reduction in the numbers of species and occasional predicted gains in functional diversity. This resulted from a loss in species within the broadleaved deciduous FT, but overall maintenance of the group. Our results illustrate the fact that both species-specific predictions and functional patterns should be examined separately in order to assess the impacts of climate change on biodiversity and gain insights into future ecosystem functioning.
@article{thuillerUsingNichebasedModelling2019,
  title = {Using Niche-Based Modelling to Assess the Impact of Climate Change on Tree Functional Diversity in {{Europe}}},
  author = {Thuiller, Wilfried and Lavorel, Sandra and Sykes, Martin T. and Araújo, Miguel B.},
  date = {2019},
  journaltitle = {Diversity and Distributions},
  pages = {49--60},
  issn = {1472-4642},
  doi = {10.1111/j.1366-9516.2006.00216.x},
  url = {https://doi.org/10.1111/j.1366-9516.2006.00216.x},
  urldate = {2019-09-06},
  abstract = {Rapid anthropogenic climate change is already affecting species distributions and ecosystem functioning worldwide. We applied niche-based models to analyse the impact of climate change on tree species and functional diversity in Europe. Present-day climate was used to predict the distributions of 122 tree species from different functional types (FT). We then explored projections of future distributions under one climate scenario for 2080, considering two alternative dispersal assumptions: no dispersal and unlimited dispersal. The species-rich broadleaved deciduous group appeared to play a key role in the future of different European regions. Temperate areas were projected to lose both species richness and functional diversity due to the loss of broadleaved deciduous trees. These were projected to migrate to boreal forests, thereby increasing their species richness and functional diversity. Atlantic areas provided an intermediate case, with a predicted reduction in the numbers of species and occasional predicted gains in functional diversity. This resulted from a loss in species within the broadleaved deciduous FT, but overall maintenance of the group. Our results illustrate the fact that both species-specific predictions and functional patterns should be examined separately in order to assess the impacts of climate change on biodiversity and gain insights into future ecosystem functioning.},
  keywords = {~INRMM-MiD:z-MZATLM6F,climate-change,europe,fuel-vs-diversity,functional-diversilty,habitat-suitability,range-shift,species-diversity,vegetation,vegetation-diversity},
  langid = {english}
}
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