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Potential of satellite-derived ecosystem functional attributes to anticipate species range shifts

Title
Potential of satellite-derived ecosystem functional attributes to anticipate species range shifts
Type
Article in International Scientific Journal
Year
2017
Authors
Alcaraz Segura, D
(Author)
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Angela Lomba
(Author)
FCUP
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Sousa Silva, R
(Author)
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Nieto Lugilde, D
(Author)
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Alves, P
(Author)
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Georges, D
(Author)
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Vicente, JR
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Joao Honrado
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FCUP
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Other information
Authenticus ID: P-00M-JZR
Abstract (EN): In a world facing rapid environmental changes, anticipating their impacts on biodiversity is of utmost relevance. Remotely-sensed Ecosystem Functional Attributes (EFAs) are promising predictors for Species Distribution Models (SDMs) by offering an early and integrative response of vegetation performance to environmental drivers. Species of high conservation concern would benefit the most from a better ability to anticipate changes in habitat suitability. Here we illustrate how yearly projections from SDMs based on EFAs could reveal short-term changes in potential habitat suitability, anticipating mid-term shifts predicted by climate-change-scenario models. We fitted two sets of SDM5 for 41 plant species of conservation concern in the Iberian Peninsula: one calibrated with climate variables for baseline conditions and projected under two climate-change-scenarios (future conditions); and the other calibrated with EFAs for 2001 and projected annually from 2001 to 2013. Range shifts predicted by climate-based models for future conditions were compared to the 2001-2013 trends from EFAs-based models. Projections of EFAs-based models estimated changes (mostly contractions) in habitat suitability that anticipated, for the majority (up to 64%) of species, the mid-term shifts projected by traditional climate-change scenario forecasting, and showed greater agreement with the business-as-usual scenario than with the sustainable-development one. This study shows how satellite-derived EFAs can be used as meaningful essential biodiversity variables in SDM5 to provide early-warnings of range shifts and predictions of short-term fluctuations in suitable conditions for multiple species. (C) 2016 Published by Elsevier B.V.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 7
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