Dataset Accompanying the Study by Boeschoten et al. 'All reforestation methods can support tropical tree diversity recovery, but drivers and species composition vary'

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Hauptverfasser: Boeschoten, Laura Emily, GUILLEMOT, Joannès, van Melis, Juliano, Poorter, Lourens, Rodrigues, Ricardo R., Bongers, Frans, Molin, Paulo Guilherme, Peña-Claros, Marielos, Souza, Vinicius, Toledo, Cassio, Faria Fernandes, Patrick, Ferreira, Marcelo P., Resende, Angélica, Porcari Simões, Laura Helena, Torres de Almeida, Catherine, Uriarte, Maria, Brancalion, Pedro
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Veröffentlicht: Zenodo 2026
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author Boeschoten, Laura Emily
GUILLEMOT, Joannès
van Melis, Juliano
Poorter, Lourens
Rodrigues, Ricardo R.
Bongers, Frans
Molin, Paulo Guilherme
Peña-Claros, Marielos
Souza, Vinicius
Toledo, Cassio
Faria Fernandes, Patrick
Ferreira, Marcelo P.
Resende, Angélica
Porcari Simões, Laura Helena
Torres de Almeida, Catherine
Uriarte, Maria
Brancalion, Pedro
author_facet Boeschoten, Laura Emily
GUILLEMOT, Joannès
van Melis, Juliano
Poorter, Lourens
Rodrigues, Ricardo R.
Bongers, Frans
Molin, Paulo Guilherme
Peña-Claros, Marielos
Souza, Vinicius
Toledo, Cassio
Faria Fernandes, Patrick
Ferreira, Marcelo P.
Resende, Angélica
Porcari Simões, Laura Helena
Torres de Almeida, Catherine
Uriarte, Maria
Brancalion, Pedro
contents <p>This Zenodo repository contains the processed dataset used in the research paper titled "All reforestation methods can support tropical tree diversity recovery, but drivers and species composition vary" <em>Global Change biology</em> (2026) (https://doi.org/10.1111/gcb.70721). In this study, we present the first comprehensive comparison of tree diversity restoration and the drivers of recovery across five main reforestation methods (naturally regenerating forests, biodiverse restoration plantings, short- and long-rotation tree monocultures, agroforests) relative to three reference systems (agropastoral lands, degraded and conserved forest remnants).</p> <p><strong>Key Finding</strong>: Tree diversity levels comparable to those in conserved and degraded forest remnants occur across most reforestation methods; however, similar species composition was observed only in naturally regenerating forests.</p>
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spellingShingle Dataset Accompanying the Study by Boeschoten et al. 'All reforestation methods can support tropical tree diversity recovery, but drivers and species composition vary'
Boeschoten, Laura Emily
GUILLEMOT, Joannès
van Melis, Juliano
Poorter, Lourens
Rodrigues, Ricardo R.
Bongers, Frans
Molin, Paulo Guilherme
Peña-Claros, Marielos
Souza, Vinicius
Toledo, Cassio
Faria Fernandes, Patrick
Ferreira, Marcelo P.
Resende, Angélica
Porcari Simões, Laura Helena
Torres de Almeida, Catherine
Uriarte, Maria
Brancalion, Pedro
Reforestation
Biodiversity crisis
Habitat fragmentation
Forest restoration
Agroforests
Natural regeneration
Active restoration
Passive restoration
Atlantic forest
Tropical forest
<p>This Zenodo repository contains the processed dataset used in the research paper titled "All reforestation methods can support tropical tree diversity recovery, but drivers and species composition vary" <em>Global Change biology</em> (2026) (https://doi.org/10.1111/gcb.70721). In this study, we present the first comprehensive comparison of tree diversity restoration and the drivers of recovery across five main reforestation methods (naturally regenerating forests, biodiverse restoration plantings, short- and long-rotation tree monocultures, agroforests) relative to three reference systems (agropastoral lands, degraded and conserved forest remnants).</p> <p><strong>Key Finding</strong>: Tree diversity levels comparable to those in conserved and degraded forest remnants occur across most reforestation methods; however, similar species composition was observed only in naturally regenerating forests.</p>
title Dataset Accompanying the Study by Boeschoten et al. 'All reforestation methods can support tropical tree diversity recovery, but drivers and species composition vary'
topic Reforestation
Biodiversity crisis
Habitat fragmentation
Forest restoration
Agroforests
Natural regeneration
Active restoration
Passive restoration
Atlantic forest
Tropical forest
url https://doi.org/10.5281/zenodo.18244528