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Benefits of protected areas for nonbreeding waterbirds adjusting their distributions under climate warming
Climate warming is driving changes in species distributions and community composition. Many species have a so‐called climatic debt, that is, shifts in range lag behind shifts in temperature isoclines. Inside protected areas (PAs), community changes in response to climate warming can be facilitated b...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8247957/ https://www.ncbi.nlm.nih.gov/pubmed/33009673 http://dx.doi.org/10.1111/cobi.13648 |
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author | Gaget, Elie Pavón‐Jordán, Diego Johnston, Alison Lehikoinen, Aleksi Hochachka, Wesley M. Sandercock, Brett K. Soultan, Alaaeldin Azafzaf, Hichem Bendjedda, Nadjiba Bino, Taulant Božič, Luka Clausen, Preben Dakki, Mohamed Devos, Koen Domsa, Cristi Encarnação, Vitor Erciyas‐Yavuz, Kiraz Faragó, Sándor Frost, Teresa Gaudard, Clemence Gosztonyi, Lívia Haas, Fredrik Hornman, Menno Langendoen, Tom Ieronymidou, Christina Kostyushin, Vasiliy A. Lewis, Lesley J. Lorentsen, Svein‐Håkon Luigujõe, Leho Meissner, Włodzimierz Mikuska, Tibor Molina, Blas Musilová, Zuzana Natykanets, Viktor Paquet, Jean‐Yves Petkov, Nicky Portolou, Danae Ridzoň, Jozef Sayoud, Samir Šćiban, Marko Sniauksta, Laimonas Stīpniece, Antra Strebel, Nicolas Teufelbauer, Norbert Topić, Goran Uzunova, Danka Vizi, Andrej Wahl, Johannes Zenatello, Marco Brommer, Jon E. |
author_facet | Gaget, Elie Pavón‐Jordán, Diego Johnston, Alison Lehikoinen, Aleksi Hochachka, Wesley M. Sandercock, Brett K. Soultan, Alaaeldin Azafzaf, Hichem Bendjedda, Nadjiba Bino, Taulant Božič, Luka Clausen, Preben Dakki, Mohamed Devos, Koen Domsa, Cristi Encarnação, Vitor Erciyas‐Yavuz, Kiraz Faragó, Sándor Frost, Teresa Gaudard, Clemence Gosztonyi, Lívia Haas, Fredrik Hornman, Menno Langendoen, Tom Ieronymidou, Christina Kostyushin, Vasiliy A. Lewis, Lesley J. Lorentsen, Svein‐Håkon Luigujõe, Leho Meissner, Włodzimierz Mikuska, Tibor Molina, Blas Musilová, Zuzana Natykanets, Viktor Paquet, Jean‐Yves Petkov, Nicky Portolou, Danae Ridzoň, Jozef Sayoud, Samir Šćiban, Marko Sniauksta, Laimonas Stīpniece, Antra Strebel, Nicolas Teufelbauer, Norbert Topić, Goran Uzunova, Danka Vizi, Andrej Wahl, Johannes Zenatello, Marco Brommer, Jon E. |
author_sort | Gaget, Elie |
collection | PubMed |
description | Climate warming is driving changes in species distributions and community composition. Many species have a so‐called climatic debt, that is, shifts in range lag behind shifts in temperature isoclines. Inside protected areas (PAs), community changes in response to climate warming can be facilitated by greater colonization rates by warm‐dwelling species, but also mitigated by lowering extirpation rates of cold‐dwelling species. An evaluation of the relative importance of colonization‐extirpation processes is important to inform conservation strategies that aim for both climate debt reduction and species conservation. We assessed the colonization‐extirpation dynamics involved in community changes in response to climate inside and outside PAs. To do so, we used 25 years of occurrence data of nonbreeding waterbirds in the western Palearctic (97 species, 7071 sites, 39 countries, 1993–2017). We used a community temperature index (CTI) framework based on species thermal affinities to investigate species turnover induced by temperature increase. We determined whether thermal community adjustment was associated with colonization by warm‐dwelling species or extirpation of cold‐dwelling species by modeling change in standard deviation of the CTI (CTI(SD)). Using linear mixed‐effects models, we investigated whether communities in PAs had lower climatic debt and different patterns of community change than communities outside PAs. For CTI and CTI(SD) combined, communities inside PAs had more species, higher colonization, lower extirpation, and lower climatic debt (16%) than communities outside PAs. Thus, our results suggest that PAs facilitate 2 independent processes that shape community dynamics and maintain biodiversity. The community adjustment was, however, not sufficiently fast to keep pace with the large temperature increases in the central and northeastern western Palearctic. Our results underline the potential of combining CTI and CTI(SD) metrics to improve understanding of the colonization‐extirpation patterns driven by climate warming. |
format | Online Article Text |
id | pubmed-8247957 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-82479572021-07-02 Benefits of protected areas for nonbreeding waterbirds adjusting their distributions under climate warming Gaget, Elie Pavón‐Jordán, Diego Johnston, Alison Lehikoinen, Aleksi Hochachka, Wesley M. Sandercock, Brett K. Soultan, Alaaeldin Azafzaf, Hichem Bendjedda, Nadjiba Bino, Taulant Božič, Luka Clausen, Preben Dakki, Mohamed Devos, Koen Domsa, Cristi Encarnação, Vitor Erciyas‐Yavuz, Kiraz Faragó, Sándor Frost, Teresa Gaudard, Clemence Gosztonyi, Lívia Haas, Fredrik Hornman, Menno Langendoen, Tom Ieronymidou, Christina Kostyushin, Vasiliy A. Lewis, Lesley J. Lorentsen, Svein‐Håkon Luigujõe, Leho Meissner, Włodzimierz Mikuska, Tibor Molina, Blas Musilová, Zuzana Natykanets, Viktor Paquet, Jean‐Yves Petkov, Nicky Portolou, Danae Ridzoň, Jozef Sayoud, Samir Šćiban, Marko Sniauksta, Laimonas Stīpniece, Antra Strebel, Nicolas Teufelbauer, Norbert Topić, Goran Uzunova, Danka Vizi, Andrej Wahl, Johannes Zenatello, Marco Brommer, Jon E. Conserv Biol Contributed Papers Climate warming is driving changes in species distributions and community composition. Many species have a so‐called climatic debt, that is, shifts in range lag behind shifts in temperature isoclines. Inside protected areas (PAs), community changes in response to climate warming can be facilitated by greater colonization rates by warm‐dwelling species, but also mitigated by lowering extirpation rates of cold‐dwelling species. An evaluation of the relative importance of colonization‐extirpation processes is important to inform conservation strategies that aim for both climate debt reduction and species conservation. We assessed the colonization‐extirpation dynamics involved in community changes in response to climate inside and outside PAs. To do so, we used 25 years of occurrence data of nonbreeding waterbirds in the western Palearctic (97 species, 7071 sites, 39 countries, 1993–2017). We used a community temperature index (CTI) framework based on species thermal affinities to investigate species turnover induced by temperature increase. We determined whether thermal community adjustment was associated with colonization by warm‐dwelling species or extirpation of cold‐dwelling species by modeling change in standard deviation of the CTI (CTI(SD)). Using linear mixed‐effects models, we investigated whether communities in PAs had lower climatic debt and different patterns of community change than communities outside PAs. For CTI and CTI(SD) combined, communities inside PAs had more species, higher colonization, lower extirpation, and lower climatic debt (16%) than communities outside PAs. Thus, our results suggest that PAs facilitate 2 independent processes that shape community dynamics and maintain biodiversity. The community adjustment was, however, not sufficiently fast to keep pace with the large temperature increases in the central and northeastern western Palearctic. Our results underline the potential of combining CTI and CTI(SD) metrics to improve understanding of the colonization‐extirpation patterns driven by climate warming. John Wiley and Sons Inc. 2021-01-21 2021-06 /pmc/articles/PMC8247957/ /pubmed/33009673 http://dx.doi.org/10.1111/cobi.13648 Text en © 2020 The Authors. Conservation Biology published by Wiley Periodicals LLC on behalf of Society for Conservation Biology 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 | Contributed Papers Gaget, Elie Pavón‐Jordán, Diego Johnston, Alison Lehikoinen, Aleksi Hochachka, Wesley M. Sandercock, Brett K. Soultan, Alaaeldin Azafzaf, Hichem Bendjedda, Nadjiba Bino, Taulant Božič, Luka Clausen, Preben Dakki, Mohamed Devos, Koen Domsa, Cristi Encarnação, Vitor Erciyas‐Yavuz, Kiraz Faragó, Sándor Frost, Teresa Gaudard, Clemence Gosztonyi, Lívia Haas, Fredrik Hornman, Menno Langendoen, Tom Ieronymidou, Christina Kostyushin, Vasiliy A. Lewis, Lesley J. Lorentsen, Svein‐Håkon Luigujõe, Leho Meissner, Włodzimierz Mikuska, Tibor Molina, Blas Musilová, Zuzana Natykanets, Viktor Paquet, Jean‐Yves Petkov, Nicky Portolou, Danae Ridzoň, Jozef Sayoud, Samir Šćiban, Marko Sniauksta, Laimonas Stīpniece, Antra Strebel, Nicolas Teufelbauer, Norbert Topić, Goran Uzunova, Danka Vizi, Andrej Wahl, Johannes Zenatello, Marco Brommer, Jon E. Benefits of protected areas for nonbreeding waterbirds adjusting their distributions under climate warming |
title | Benefits of protected areas for nonbreeding waterbirds adjusting their distributions under climate warming |
title_full | Benefits of protected areas for nonbreeding waterbirds adjusting their distributions under climate warming |
title_fullStr | Benefits of protected areas for nonbreeding waterbirds adjusting their distributions under climate warming |
title_full_unstemmed | Benefits of protected areas for nonbreeding waterbirds adjusting their distributions under climate warming |
title_short | Benefits of protected areas for nonbreeding waterbirds adjusting their distributions under climate warming |
title_sort | benefits of protected areas for nonbreeding waterbirds adjusting their distributions under climate warming |
topic | Contributed Papers |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8247957/ https://www.ncbi.nlm.nih.gov/pubmed/33009673 http://dx.doi.org/10.1111/cobi.13648 |
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