History matters: previous land use changes determine post-fire vegetation recovery in forested Mediterranean landscapes

Land use changes and shifts in disturbance regimes (e.g. wildfires) are recognized worldwide as two of the major drivers of the current global change in terrestrial ecosystems. We expect that, in areas with large-scale land use changes, legacies from previous land uses persist and affect current eco...

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Bibliographic Details
Authors: Puerta-Piñero, Carolina, Espelta Morral, Josep Maria, Sánchez Humanes, Belén, Rodrigo, Anselm, Coll Mir, Lluís, Brotons, Lluís
Format: article
Status:Versión aceptada para publicación
Publication Date:2012
Country:España
Institution:Universitat de Lleida (UdL)
Repository:Repositori Obert UdL
OAI Identifier:oai:repositori.udl.cat:10459.1/68419
Online Access:https://doi.org/10.1016/j.foreco.2012.05.020
http://hdl.handle.net/10459.1/68419
Access Level:Open access
Keyword:Global change
Mediterranean forest
Quercus
Pinus
Passive restoration
Description
Summary:Land use changes and shifts in disturbance regimes (e.g. wildfires) are recognized worldwide as two of the major drivers of the current global change in terrestrial ecosystems. We expect that, in areas with large-scale land use changes, legacies from previous land uses persist and affect current ecosystem responses to climate-associated disturbances like fire. This study analyses whether post-fire vegetation dynamics may differ according to specific historical land use histories in a Mediterranean forest landscape of about 60,000 ha that was burnt by extensive fires. For that, we assessed land use history of the whole area through the second half of the XXth century, and evaluated the post-fire regeneration success in terms of: (i) forest cover and (ii) tree species composition (biotic-dispersed, resprouter species, Quercus spp. vs. wind-dispersed species with or without fire-resistant seed bank, Pinus spp.). Results showed that stable forest areas exhibited a higher post-fire recovery than younger forests. Furthermore, the longer since crop abandonment translates into a faster post-fire recovery. Results highlight that to anticipate the impacts of disturbances on ecosystems, historical land trajectories should be taken into account.