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Temperature synchronizes temporal variation in laying dates across European hole‐nesting passerines
Identifying the environmental drivers of variation in fitness‐related traits is a central objective in ecology and evolutionary biology. Temporal fluctuations of these environmental drivers are often synchronized at large spatial scales. Yet, whether synchronous environmental conditions can generate...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley & Sons, Inc.
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10078612/ https://www.ncbi.nlm.nih.gov/pubmed/36314902 http://dx.doi.org/10.1002/ecy.3908 |
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author | Vriend, Stefan J. G. Grøtan, Vidar Gamelon, Marlène Adriaensen, Frank Ahola, Markus P. Álvarez, Elena Bailey, Liam D. Barba, Emilio Bouvier, Jean‐Charles Burgess, Malcolm D. Bushuev, Andrey Camacho, Carlos Canal, David Charmantier, Anne Cole, Ella F. Cusimano, Camillo Doligez, Blandine F. Drobniak, Szymon M. Dubiec, Anna Eens, Marcel Eeva, Tapio Erikstad, Kjell Einar Ferns, Peter N. Goodenough, Anne E. Hartley, Ian R. Hinsley, Shelley A. Ivankina, Elena Juškaitis, Rimvydas Kempenaers, Bart Kerimov, Anvar B. Kålås, John Atle Lavigne, Claire Leivits, Agu Mainwaring, Mark C. Martínez‐Padilla, Jesús Matthysen, Erik van Oers, Kees Orell, Markku Pinxten, Rianne Reiertsen, Tone Kristin Rytkönen, Seppo Senar, Juan Carlos Sheldon, Ben C. Sorace, Alberto Török, János Vatka, Emma Visser, Marcel E. Sæther, Bernt‐Erik |
author_facet | Vriend, Stefan J. G. Grøtan, Vidar Gamelon, Marlène Adriaensen, Frank Ahola, Markus P. Álvarez, Elena Bailey, Liam D. Barba, Emilio Bouvier, Jean‐Charles Burgess, Malcolm D. Bushuev, Andrey Camacho, Carlos Canal, David Charmantier, Anne Cole, Ella F. Cusimano, Camillo Doligez, Blandine F. Drobniak, Szymon M. Dubiec, Anna Eens, Marcel Eeva, Tapio Erikstad, Kjell Einar Ferns, Peter N. Goodenough, Anne E. Hartley, Ian R. Hinsley, Shelley A. Ivankina, Elena Juškaitis, Rimvydas Kempenaers, Bart Kerimov, Anvar B. Kålås, John Atle Lavigne, Claire Leivits, Agu Mainwaring, Mark C. Martínez‐Padilla, Jesús Matthysen, Erik van Oers, Kees Orell, Markku Pinxten, Rianne Reiertsen, Tone Kristin Rytkönen, Seppo Senar, Juan Carlos Sheldon, Ben C. Sorace, Alberto Török, János Vatka, Emma Visser, Marcel E. Sæther, Bernt‐Erik |
author_sort | Vriend, Stefan J. G. |
collection | PubMed |
description | Identifying the environmental drivers of variation in fitness‐related traits is a central objective in ecology and evolutionary biology. Temporal fluctuations of these environmental drivers are often synchronized at large spatial scales. Yet, whether synchronous environmental conditions can generate spatial synchrony in fitness‐related trait values (i.e., correlated temporal trait fluctuations across populations) is poorly understood. Using data from long‐term monitored populations of blue tits (Cyanistes caeruleus, n = 31), great tits (Parus major, n = 35), and pied flycatchers (Ficedula hypoleuca, n = 20) across Europe, we assessed the influence of two local climatic variables (mean temperature and mean precipitation in February–May) on spatial synchrony in three fitness‐related traits: laying date, clutch size, and fledgling number. We found a high degree of spatial synchrony in laying date but a lower degree in clutch size and fledgling number for each species. Temperature strongly influenced spatial synchrony in laying date for resident blue tits and great tits but not for migratory pied flycatchers. This is a relevant finding in the context of environmental impacts on populations because spatial synchrony in fitness‐related trait values among populations may influence fluctuations in vital rates or population abundances. If environmentally induced spatial synchrony in fitness‐related traits increases the spatial synchrony in vital rates or population abundances, this will ultimately increase the risk of extinction for populations and species. Assessing how environmental conditions influence spatiotemporal variation in trait values improves our mechanistic understanding of environmental impacts on populations. |
format | Online Article Text |
id | pubmed-10078612 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | John Wiley & Sons, Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-100786122023-04-07 Temperature synchronizes temporal variation in laying dates across European hole‐nesting passerines Vriend, Stefan J. G. Grøtan, Vidar Gamelon, Marlène Adriaensen, Frank Ahola, Markus P. Álvarez, Elena Bailey, Liam D. Barba, Emilio Bouvier, Jean‐Charles Burgess, Malcolm D. Bushuev, Andrey Camacho, Carlos Canal, David Charmantier, Anne Cole, Ella F. Cusimano, Camillo Doligez, Blandine F. Drobniak, Szymon M. Dubiec, Anna Eens, Marcel Eeva, Tapio Erikstad, Kjell Einar Ferns, Peter N. Goodenough, Anne E. Hartley, Ian R. Hinsley, Shelley A. Ivankina, Elena Juškaitis, Rimvydas Kempenaers, Bart Kerimov, Anvar B. Kålås, John Atle Lavigne, Claire Leivits, Agu Mainwaring, Mark C. Martínez‐Padilla, Jesús Matthysen, Erik van Oers, Kees Orell, Markku Pinxten, Rianne Reiertsen, Tone Kristin Rytkönen, Seppo Senar, Juan Carlos Sheldon, Ben C. Sorace, Alberto Török, János Vatka, Emma Visser, Marcel E. Sæther, Bernt‐Erik Ecology Articles Identifying the environmental drivers of variation in fitness‐related traits is a central objective in ecology and evolutionary biology. Temporal fluctuations of these environmental drivers are often synchronized at large spatial scales. Yet, whether synchronous environmental conditions can generate spatial synchrony in fitness‐related trait values (i.e., correlated temporal trait fluctuations across populations) is poorly understood. Using data from long‐term monitored populations of blue tits (Cyanistes caeruleus, n = 31), great tits (Parus major, n = 35), and pied flycatchers (Ficedula hypoleuca, n = 20) across Europe, we assessed the influence of two local climatic variables (mean temperature and mean precipitation in February–May) on spatial synchrony in three fitness‐related traits: laying date, clutch size, and fledgling number. We found a high degree of spatial synchrony in laying date but a lower degree in clutch size and fledgling number for each species. Temperature strongly influenced spatial synchrony in laying date for resident blue tits and great tits but not for migratory pied flycatchers. This is a relevant finding in the context of environmental impacts on populations because spatial synchrony in fitness‐related trait values among populations may influence fluctuations in vital rates or population abundances. If environmentally induced spatial synchrony in fitness‐related traits increases the spatial synchrony in vital rates or population abundances, this will ultimately increase the risk of extinction for populations and species. Assessing how environmental conditions influence spatiotemporal variation in trait values improves our mechanistic understanding of environmental impacts on populations. John Wiley & Sons, Inc. 2022-12-21 2023-02 /pmc/articles/PMC10078612/ /pubmed/36314902 http://dx.doi.org/10.1002/ecy.3908 Text en © 2022 The Authors. Ecology published by Wiley Periodicals LLC on behalf of The Ecological Society of America. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Articles Vriend, Stefan J. G. Grøtan, Vidar Gamelon, Marlène Adriaensen, Frank Ahola, Markus P. Álvarez, Elena Bailey, Liam D. Barba, Emilio Bouvier, Jean‐Charles Burgess, Malcolm D. Bushuev, Andrey Camacho, Carlos Canal, David Charmantier, Anne Cole, Ella F. Cusimano, Camillo Doligez, Blandine F. Drobniak, Szymon M. Dubiec, Anna Eens, Marcel Eeva, Tapio Erikstad, Kjell Einar Ferns, Peter N. Goodenough, Anne E. Hartley, Ian R. Hinsley, Shelley A. Ivankina, Elena Juškaitis, Rimvydas Kempenaers, Bart Kerimov, Anvar B. Kålås, John Atle Lavigne, Claire Leivits, Agu Mainwaring, Mark C. Martínez‐Padilla, Jesús Matthysen, Erik van Oers, Kees Orell, Markku Pinxten, Rianne Reiertsen, Tone Kristin Rytkönen, Seppo Senar, Juan Carlos Sheldon, Ben C. Sorace, Alberto Török, János Vatka, Emma Visser, Marcel E. Sæther, Bernt‐Erik Temperature synchronizes temporal variation in laying dates across European hole‐nesting passerines |
title | Temperature synchronizes temporal variation in laying dates across European hole‐nesting passerines |
title_full | Temperature synchronizes temporal variation in laying dates across European hole‐nesting passerines |
title_fullStr | Temperature synchronizes temporal variation in laying dates across European hole‐nesting passerines |
title_full_unstemmed | Temperature synchronizes temporal variation in laying dates across European hole‐nesting passerines |
title_short | Temperature synchronizes temporal variation in laying dates across European hole‐nesting passerines |
title_sort | temperature synchronizes temporal variation in laying dates across european hole‐nesting passerines |
topic | Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10078612/ https://www.ncbi.nlm.nih.gov/pubmed/36314902 http://dx.doi.org/10.1002/ecy.3908 |
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