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Jet stream position explains regional anomalies in European beech forest productivity and tree growth

The 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 r...

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Autores principales: Dorado-Liñán, Isabel, Ayarzagüena, Blanca, Babst, Flurin, Xu, Guobao, Gil, Luis, Battipaglia, Giovanna, Buras, Allan, Čada, Vojtěch, Camarero, J. Julio, Cavin, Liam, Claessens, Hugues, Drobyshev, Igor, Garamszegi, Balázs, Grabner, Michael, Hacket-Pain, Andrew, Hartl, Claudia, Hevia, Andrea, Janda, Pavel, Jump, Alistair S., Kazimirovic, Marko, Keren, Srdjan, Kreyling, Juergen, Land, Alexander, Latte, Nicolas, Levanič, Tom, van der Maaten, Ernst, van der Maaten-Theunissen, Marieke, Martínez-Sancho, Elisabet, Menzel, Annette, Mikoláš, Martin, Motta, Renzo, Muffler, Lena, Nola, Paola, Panayotov, Momchil, Petritan, Any Mary, Petritan, Ion Catalin, Popa, Ionel, Prislan, Peter, Roibu, Catalin-Constantin, Rydval, Miloš, Sánchez-Salguero, Raul, Scharnweber, Tobias, Stajić, Branko, Svoboda, Miroslav, Tegel, Willy, Teodosiu, Marius, Toromani, Elvin, Trotsiuk, Volodymyr, Turcu, Daniel-Ond, Weigel, Robert, Wilmking, Martin, Zang, Christian, Zlatanov, Tzvetan, Trouet, Valerie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9018849/
https://www.ncbi.nlm.nih.gov/pubmed/35440102
http://dx.doi.org/10.1038/s41467-022-29615-8
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author Dorado-Liñán, Isabel
Ayarzagüena, Blanca
Babst, Flurin
Xu, Guobao
Gil, Luis
Battipaglia, Giovanna
Buras, Allan
Čada, Vojtěch
Camarero, J. Julio
Cavin, Liam
Claessens, Hugues
Drobyshev, Igor
Garamszegi, Balázs
Grabner, Michael
Hacket-Pain, Andrew
Hartl, Claudia
Hevia, Andrea
Janda, Pavel
Jump, Alistair S.
Kazimirovic, Marko
Keren, Srdjan
Kreyling, Juergen
Land, Alexander
Latte, Nicolas
Levanič, Tom
van der Maaten, Ernst
van der Maaten-Theunissen, Marieke
Martínez-Sancho, Elisabet
Menzel, Annette
Mikoláš, Martin
Motta, Renzo
Muffler, Lena
Nola, Paola
Panayotov, Momchil
Petritan, Any Mary
Petritan, Ion Catalin
Popa, Ionel
Prislan, Peter
Roibu, Catalin-Constantin
Rydval, Miloš
Sánchez-Salguero, Raul
Scharnweber, Tobias
Stajić, Branko
Svoboda, Miroslav
Tegel, Willy
Teodosiu, Marius
Toromani, Elvin
Trotsiuk, Volodymyr
Turcu, Daniel-Ond
Weigel, Robert
Wilmking, Martin
Zang, Christian
Zlatanov, Tzvetan
Trouet, Valerie
author_facet Dorado-Liñán, Isabel
Ayarzagüena, Blanca
Babst, Flurin
Xu, Guobao
Gil, Luis
Battipaglia, Giovanna
Buras, Allan
Čada, Vojtěch
Camarero, J. Julio
Cavin, Liam
Claessens, Hugues
Drobyshev, Igor
Garamszegi, Balázs
Grabner, Michael
Hacket-Pain, Andrew
Hartl, Claudia
Hevia, Andrea
Janda, Pavel
Jump, Alistair S.
Kazimirovic, Marko
Keren, Srdjan
Kreyling, Juergen
Land, Alexander
Latte, Nicolas
Levanič, Tom
van der Maaten, Ernst
van der Maaten-Theunissen, Marieke
Martínez-Sancho, Elisabet
Menzel, Annette
Mikoláš, Martin
Motta, Renzo
Muffler, Lena
Nola, Paola
Panayotov, Momchil
Petritan, Any Mary
Petritan, Ion Catalin
Popa, Ionel
Prislan, Peter
Roibu, Catalin-Constantin
Rydval, Miloš
Sánchez-Salguero, Raul
Scharnweber, Tobias
Stajić, Branko
Svoboda, Miroslav
Tegel, Willy
Teodosiu, Marius
Toromani, Elvin
Trotsiuk, Volodymyr
Turcu, Daniel-Ond
Weigel, Robert
Wilmking, Martin
Zang, Christian
Zlatanov, Tzvetan
Trouet, Valerie
author_sort Dorado-Liñán, Isabel
collection PubMed
description The 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.
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spelling pubmed-90188492022-04-28 Jet stream position explains regional anomalies in European beech forest productivity and tree growth Dorado-Liñán, Isabel Ayarzagüena, Blanca Babst, Flurin Xu, Guobao Gil, Luis Battipaglia, Giovanna Buras, Allan Čada, Vojtěch Camarero, J. Julio Cavin, Liam Claessens, Hugues Drobyshev, Igor Garamszegi, Balázs Grabner, Michael Hacket-Pain, Andrew Hartl, Claudia Hevia, Andrea Janda, Pavel Jump, Alistair S. Kazimirovic, Marko Keren, Srdjan Kreyling, Juergen Land, Alexander Latte, Nicolas Levanič, Tom van der Maaten, Ernst van der Maaten-Theunissen, Marieke Martínez-Sancho, Elisabet Menzel, Annette Mikoláš, Martin Motta, Renzo Muffler, Lena Nola, Paola Panayotov, Momchil Petritan, Any Mary Petritan, Ion Catalin Popa, Ionel Prislan, Peter Roibu, Catalin-Constantin Rydval, Miloš Sánchez-Salguero, Raul Scharnweber, Tobias Stajić, Branko Svoboda, Miroslav Tegel, Willy Teodosiu, Marius Toromani, Elvin Trotsiuk, Volodymyr Turcu, Daniel-Ond Weigel, Robert Wilmking, Martin Zang, Christian Zlatanov, Tzvetan Trouet, Valerie Nat Commun Article The 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. Nature Publishing Group UK 2022-04-19 /pmc/articles/PMC9018849/ /pubmed/35440102 http://dx.doi.org/10.1038/s41467-022-29615-8 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Dorado-Liñán, Isabel
Ayarzagüena, Blanca
Babst, Flurin
Xu, Guobao
Gil, Luis
Battipaglia, Giovanna
Buras, Allan
Čada, Vojtěch
Camarero, J. Julio
Cavin, Liam
Claessens, Hugues
Drobyshev, Igor
Garamszegi, Balázs
Grabner, Michael
Hacket-Pain, Andrew
Hartl, Claudia
Hevia, Andrea
Janda, Pavel
Jump, Alistair S.
Kazimirovic, Marko
Keren, Srdjan
Kreyling, Juergen
Land, Alexander
Latte, Nicolas
Levanič, Tom
van der Maaten, Ernst
van der Maaten-Theunissen, Marieke
Martínez-Sancho, Elisabet
Menzel, Annette
Mikoláš, Martin
Motta, Renzo
Muffler, Lena
Nola, Paola
Panayotov, Momchil
Petritan, Any Mary
Petritan, Ion Catalin
Popa, Ionel
Prislan, Peter
Roibu, Catalin-Constantin
Rydval, Miloš
Sánchez-Salguero, Raul
Scharnweber, Tobias
Stajić, Branko
Svoboda, Miroslav
Tegel, Willy
Teodosiu, Marius
Toromani, Elvin
Trotsiuk, Volodymyr
Turcu, Daniel-Ond
Weigel, Robert
Wilmking, Martin
Zang, Christian
Zlatanov, Tzvetan
Trouet, Valerie
Jet stream position explains regional anomalies in European beech forest productivity and tree growth
title Jet stream position explains regional anomalies in European beech forest productivity and tree growth
title_full Jet stream position explains regional anomalies in European beech forest productivity and tree growth
title_fullStr Jet stream position explains regional anomalies in European beech forest productivity and tree growth
title_full_unstemmed Jet stream position explains regional anomalies in European beech forest productivity and tree growth
title_short Jet stream position explains regional anomalies in European beech forest productivity and tree growth
title_sort jet stream position explains regional anomalies in european beech forest productivity and tree growth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9018849/
https://www.ncbi.nlm.nih.gov/pubmed/35440102
http://dx.doi.org/10.1038/s41467-022-29615-8
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