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Modelling landscape constraints on farmland bird species range shifts under climate change

Several studies estimating the effects of global environmental change on biodiversity are focused on climate change. Yet, non-climatic factors such as changes in land cover can also be of paramount importance. This may be particularly important for habitat specialists associated with human-dominated landscapes, where land cover and climate changes may be largely decoupled. Here, we tested this idea by modelling the influence of climate, landscape composition and pattern, on the predicted future (2021-2050) distributions of 21 farmland bird species in the Iberian Peninsula, using boosted regression trees and 10-km resolution presence/absence data. We also evaluated whether habitat specialist species were more affected by landscape factors than generalist species. Overall, this study showed that the contribution of current landscape composition and pattern to the performance of species distribution models (SDMs) was relatively low. However, SDMs built using either climate or climate plus landscape variables yielded very different predictions of future species range shifts and, hence, of the geographical patterns of change in species richness. Our results indicate that open habitat specialist species tend to expand their range, whereas habitat generalist species tend to retract under climate change scenarios. The effect of incorporating landscape factors were particularly marked on open habitat specialists of conservation concern, for which the expected expansion under climate change seems to be severely constrained by land cover change. Overall, results suggest that particular attention should be given to landscape change in addition to climate when modelling the impacts of environmental changes for both farmland specialist and generalist bird distributions.
- University of Jyväskylä Finland
- Centro de Estudos Florestais Portugal
- University of Porto Portugal
- University of Copenhagen Denmark
- University of Lisbon Portugal
mallintaminen, climate changes, Boosting regression trees, Climate Change, Ecology and Evolutionary Biology, ta1172, modelling (creation related to information), Conservation, maisema, Birds, Specialist and generalist species, Animals, Ekologia ja evoluutiobiologia, Global change scenarios, Ecosystem, biodiversity, Farmland birds, Biodiversity, ilmastonmuutokset, landscape, biodiversiteetti, Spain, birds, Environmental envelope models, ta1181, linnut, Environmental Monitoring
mallintaminen, climate changes, Boosting regression trees, Climate Change, Ecology and Evolutionary Biology, ta1172, modelling (creation related to information), Conservation, maisema, Birds, Specialist and generalist species, Animals, Ekologia ja evoluutiobiologia, Global change scenarios, Ecosystem, biodiversity, Farmland birds, Biodiversity, ilmastonmuutokset, landscape, biodiversiteetti, Spain, birds, Environmental envelope models, ta1181, linnut, Environmental Monitoring
citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).26 popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.Top 10% influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).Average impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.Top 10% visibility views 33 download downloads 16 - 33views16downloads
Data source Views Downloads DIGITAL.CSIC 33 16


