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dc.creatorDorado-Linan, Isabel
dc.creatorAyarzaguena, Blanca
dc.creatorBabst, Flurin
dc.creatorXu, Guobao
dc.creatorGil, Luis
dc.creatorBattipaglia, Giovanna
dc.creatorBuras, Allan
dc.creatorCada, Vojtech
dc.creatorJulio Camarero, J.
dc.creatorCavin, Liam
dc.creatorClaessens, Hugues
dc.creatorDrobyshev, Igor
dc.creatorGaramszegi, Balazs
dc.creatorGrabner, Michael
dc.creatorHacket-Pain, Andrew
dc.creatorHartl, Claudia
dc.creatorHevia, Andrea
dc.creatorJanda, Pavel
dc.creatorJump, Alistair S.
dc.creatorKazimirović, Marko
dc.creatorKeren, Srđan
dc.creatorKreyling, Juergen
dc.creatorLand, Alexander
dc.creatorLatte, Nicolas
dc.creatorLevanić, Tom
dc.creatorvan der Maaten, Ernst
dc.creatorVan der Maaten-Theunissen, Marieke
dc.creatorMartinez-Sancho, Elisabet
dc.creatorMenzel, Annette
dc.creatorMikolas, Martin
dc.creatorMotta, Renzo
dc.creatorMuffler, Lena
dc.creatorNola, Paola
dc.creatorPanayotov, Momchil
dc.creatorPetritan, Any Mary
dc.creatorPetritan, Ion Catalin
dc.creatorPopa, Ionel
dc.creatorPrislan, Peter
dc.creatorRoibu, Catalin-Constantin
dc.creatorRydval, Miloš
dc.creatorSanchez-Salguero, Raul
dc.creatorScharnweber, Tobias
dc.creatorStajić, Branko
dc.creatorSvoboda, Miroslav
dc.creatorTegel, Willy
dc.creatorTeodosiu, Marius
dc.creatorToromani, Elvin
dc.creatorTrotsiuk, Volodymyr
dc.creatorTurcu, Daniel-Ond
dc.creatorWeigel, Robert
dc.creatorWilmking, Martin
dc.creatorZang, Christian
dc.creatorZlatanov, Tzvetan
dc.creatorTrouet, Valerie
dc.date.accessioned2024-12-20T14:14:15Z
dc.date.available2024-12-20T14:14:15Z
dc.date.issued2022
dc.identifier.issn2041-1723 (online)
dc.identifier.urihttps://omorika.sfb.bg.ac.rs/handle/123456789/1370
dc.description.abstractThe mechanistic pathways connecting ocean-atmosphere variability and terrestrial productivity are well-established theoretically, but remain challenging to quantify empirically. Such quantification will greatly improve the assessment and prediction of changes in terrestrial carbon sequestration in response to dynamically induced climatic extremes. The jet stream latitude (JSL) over the North Atlantic-European domain provides a synthetic and robust physical framework that integrates climate variability not accounted for by atmospheric circulation patterns alone. Surface climate impacts of north-south summer JSL displacements are not uniform across Europe, but rather create a northwestern-southeastern dipole in forest productivity and radial-growth anomalies. Summer JSL variability over the eastern North Atlantic-European domain (5-40E) exerts the strongest impact on European beech, inducing anomalies of up to 30% in modelled gross primary productivity and 50% in radial tree growth. The net effects of JSL movements on terrestrial carbon fluxes depend on forest density, carbon stocks, and productivity imbalances across biogeographic regions. Here the authors show that extremes in the summer jet stream position over Europe create a beech forest productivity dipole between northwestern and southeastern Europe and can result in regional anomalies in forest carbon uptake and growth.en
dc.relationFundacio La Caixa through the Junior Leader Program [LCF/BQ/LR18/11640004]
dc.relationUniversidad Politecnica de Madrid through the Programa Propio [PINV-18-SBSYN2-105-F1TXYR]
dc.relationAgnese N. Haury Visiting Scholar & Trainee Fellowship (Laboratory of Tree-Ring Research, University of Arizona)
dc.relationMobility Award Jose Castillejo, Ministry of Education, Spanish Government [CAS19/00331]
dc.relationPrograma de Ayudas Beatriz Galindo, Secretaria de Estado de Universidades, Investigacion, Desarrollo e Innovacion [BG20/00065]
dc.relationNational Science Foundation CAREER grant [AGS-1349942]
dc.relationSpanish Ministry of Science and Innovation through the JeDiS project [RTI-2018-096402-B-I00]
dc.relationproject "Inside out" - HOMING program of the Foundation for Polish Science - European Union under the European Regional Development Fund [POIR.04.04.00-00-5F85/18-00]
dc.relationBavarian Ministry of Science and the Arts
dc.relationERD Funds, Andalusia Regional Government, Consejeria de Economia, Conocimiento, Empresas y Universidad 2014-2020 [UHU-1266324]
dc.relationSwiss National Science Foundation project TRoxy [200021_175888]
dc.relationNatural Environment Research Council [NE/V00929X/1, NE/S010041/1]
dc.relationresearch training group RESPONSE - German Research Council [DFG Fi 846/8-1, DFG GRK2010]
dc.relationRomanian Ministry of Research, Innovation, and Digitization [PN-19070506, 12N/2019]
dc.relationRomanian Ministry of Education and Research, CNCS-UEFISCDI within PNCDI III [PN-III-P4-ID-PCE-2020-2696]
dc.relationMinistry of Science, Innovation and Universities, Spain [EQC2018-005303-P]
dc.relationDendrOlavide II [IE19_074 UPO]
dc.relationVURECLIM [P20_00813]
dc.relationVULBOS [UPO-1263216]
dc.relationSlovenian Research Agency [P4-0107]
dc.relationNERC [NE/V00929X/1, NE/S010041/1] Funding Source: UKRI
dc.relationSwiss National Science Foundation (SNF) [200021_175888] Funding Source: Swiss National Science Foundation (SNF)
dc.rightsrestrictedAccess
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.sourceNature Communications
dc.titleJet stream position explains regional anomalies in European beech forest productivity and tree growthen
dc.typearticle
dc.rights.licenseBY
dc.citation.issue1
dc.citation.other13(1): -
dc.citation.volume13
dc.identifier.doi10.1038/s41467-022-29615-8
dc.identifier.pmid35440102
dc.identifier.rcubconv_1629
dc.identifier.scopus2-s2.0-85128415705
dc.identifier.wos000784997300067
dc.type.versionpublishedVersion


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