Global ecosystem thresholds driven by aridity

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Título: Global ecosystem thresholds driven by aridity
Autor/es: Berdugo, Miguel | Delgado-Baquerizo, Manuel | Soliveres, Santiago | Hernández Clemente, Rocío | Zhao, Yanchuang | Gaitán, Juan J. | Gross, Nicolas | Saiz, Hugo | Maire, Vincent | Lehman, Anika | Rillig, Matthias C. | Solé, Ricard V. | Maestre, Fernando T.
Grupo/s de investigación o GITE: Gestión de Ecosistemas y de la Biodiversidad (GEB)
Centro, Departamento o Servicio: Universidad de Alicante. Departamento de Ecología | Universidad de Alicante. Instituto Multidisciplinar para el Estudio del Medio "Ramón Margalef"
Palabras clave: Aridity | Climate change | Dryland ecosystems
Área/s de conocimiento: Ecología
Fecha de publicación: 14-feb-2020
Editor: American Association for the Advancement of Science
Cita bibliográfica: Science. 2020, 367(6479): 787-790. doi:10.1126/science.aay5958
Resumen: Aridity, which is increasing worldwide because of climate change, affects the structure and functioning of dryland ecosystems. Whether aridification leads to gradual (versus abrupt) and systemic (versus specific) ecosystem changes is largely unknown. We investigated how 20 structural and functional ecosystem attributes respond to aridity in global drylands. Aridification led to systemic and abrupt changes in multiple ecosystem attributes. These changes occurred sequentially in three phases characterized by abrupt decays in plant productivity, soil fertility, and plant cover and richness at aridity values of 0.54, 0.7, and 0.8, respectively. More than 20% of the terrestrial surface will cross one or several of these thresholds by 2100, which calls for immediate actions to minimize the negative impacts of aridification on essential ecosystem services for the more than 2 billion people living in drylands.
Patrocinador/es: This research was supported by the European Research Council [ERC grant nos. 242658 (BIOCOM) and 647038 (BIODESERT) awarded to F.T.M.]. M.B. acknowledges support from a Juan de la Cierva Formación grant from the Spanish Ministry of Economy and Competitiveness (FJCI-2018-036520-I). F.T.M. acknowledges support from Generalitat Valenciana (CIDEGENT/2018/041), the Alexander von Humboldt Foundation, and the Synthesis Centre for Biodiversity Sciences (sDiv) of the German Centre for Integrative Biodiversity Research (iDiv). M.D.-B. acknowledges support from the Marie Sklodowska-Curie Actions of the Horizon 2020 Framework Program H2020-MSCA-IF-2016 under REA grant no. 702057. S.S. was supported by the Spanish Government under a Ramón y Cajal contract (RYC-2016- 20604). N.G. was supported by the AgreenSkills+ fellowship program, which has received funding from the EU’s Seventh Framework Programme under grant no. FP7-609398 (AgreenSkills+ contract). V.M. was supported by FRQNT-2017-NC-198009 and NSERC Discovery 2016-05716 grants from the government of Canada. H.S. was supported by a Juan de la Cierva Formación grant from the Spanish Ministry of Economy and Competitiveness (FJCI-2015-26782). A.L. and M.C.R. were supported by an ERC Advanced Grant (Gradual Change grant no. 694368) and by the Deutsche Forschungsgesellschaft (grant no. RI 1815/16-1). Y.Z. was supported by the Strategic Priority Research Program of the Chinese Academy of Sciences (grant no. XDA19030500).
URI: http://hdl.handle.net/10045/102872
ISSN: 0036-8075 (Print) | 1095-9203 (Online)
DOI: 10.1126/science.aay5958
Idioma: eng
Tipo: info:eu-repo/semantics/article
Derechos: © 2020 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science
Revisión científica: si
Versión del editor: https://doi.org/10.1126/science.aay5958
Aparece en las colecciones:INV - DRYEX - Artículos de Revistas
INV - GEB - Artículos de Revistas
Investigaciones financiadas por la UE
INV - DRYLAB - Artículos de Revistas

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