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dc.contributor.authorVerheyen, Kris-
dc.contributor.authorVanhellemont, Margot-
dc.contributor.authorAuge, Harald-
dc.contributor.authorBaeten, Lander-
dc.contributor.authorBaraloto, Christopher-
dc.contributor.authorBarsoum, Nadia-
dc.contributor.authorBilodeau-Gauthier, Simon-
dc.contributor.authorBruelheide, Helge-
dc.contributor.authorCastagneyrol, Bastien-
dc.contributor.authorGodbold, Douglas L.-
dc.contributor.authorHaase, Josephine-
dc.contributor.authorHector, Andy-
dc.contributor.authorJactel, Hervé-
dc.contributor.authorKoricheva, Julia-
dc.contributor.authorLoreau, Michel-
dc.contributor.authorMereu, Simone-
dc.contributor.authorMessier, Christian-
dc.contributor.authorMuys, Bart-
dc.contributor.authorNolet, Philippe-
dc.contributor.authorPaquette, Alain-
dc.contributor.authorParker, John D.-
dc.contributor.authorPerring, Michael P.-
dc.contributor.authorPonette, Quentin-
dc.contributor.authorPotvin, Catherine-
dc.contributor.authorReich, Peter B.-
dc.contributor.authorSmith, Andrew R.-
dc.contributor.authorWeih, Martin-
dc.contributor.authorScherer-Lorenzen, Michael-
dc.date.accessioned2020-05-19T14:25:48Z-
dc.date.available2020-05-19T14:25:48Z-
dc.date.issued2016-
dc.identifier.urihttps://repositorio.inpa.gov.br/handle/1/15838-
dc.description.abstractThe area of forest plantations is increasing worldwide helping to meet timber demand and protect natural forests. However, with global change, monospecific plantations are increasingly vulnerable to abiotic and biotic disturbances. As an adaption measure we need to move to plantations that are more diverse in genotypes, species, and structure, with a design underpinned by science. TreeDivNet, a global network of tree diversity experiments, responds to this need by assessing the advantages and disadvantages of mixed species plantations. The network currently consists of 18 experiments, distributed over 36 sites and five ecoregions. With plantations 1–15 years old, TreeDivNet can already provide relevant data for forest policy and management. In this paper, we highlight some early results on the carbon sequestration and pest resistance potential of more diverse plantations. Finally, suggestions are made for new, innovative experiments in understudied regions to complement the existing network. © 2015, Royal Swedish Academy of Sciences.en
dc.language.isoenpt_BR
dc.relation.ispartofVolume 45, Número 1, Pags. 29-41pt_BR
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Brazil*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/br/*
dc.subjectBiodiversityen
dc.subjectCarbon Sequestrationen
dc.subjectData Acquisitionen
dc.subjectExperimental Designen
dc.subjectForest Managementen
dc.subjectForestry Policyen
dc.subjectGenotype-environment Interactionen
dc.subjectGlobal Perspectiveen
dc.subjectPest Resistanceen
dc.subjectPlantation Forestryen
dc.subjectRestoration Ecologyen
dc.subjectSustainabilityen
dc.subjectSustainable Forestryen
dc.subjectTimber Industryen
dc.subjectVulnerabilityen
dc.subjectBiodiversityen
dc.subjectEcosystemen
dc.subjectEnvironmental Monitoringen
dc.subjectEnvironmental Protectionen
dc.subjectForesten
dc.subjectProceduresen
dc.subjectTreeen
dc.subjectBiodiversityen
dc.subjectConservation Of Natural Resourcesen
dc.subjectEcosystemen
dc.subjectEnvironmental Monitoringen
dc.subjectForestsen
dc.subjectTreesen
dc.titleContributions of a global network of tree diversity experiments to sustainable forest plantationsen
dc.typeArtigopt_BR
dc.identifier.doi10.1007/s13280-015-0685-1-
dc.publisher.journalAmbiopt_BR
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