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Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery
The relationships that control seed production in trees are fundamental to understanding the evolution of forest species and their capacity to recover from increasing losses to drought, fire, and harvest. A synthesis of fecundity data from 714 species worldwide allowed us to examine hypotheses that...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Nature Publishing Group UK
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9061860/ https://www.ncbi.nlm.nih.gov/pubmed/35501313 http://dx.doi.org/10.1038/s41467-022-30037-9 |
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author | Qiu, Tong Andrus, Robert Aravena, Marie-Claire Ascoli, Davide Bergeron, Yves Berretti, Roberta Berveiller, Daniel Bogdziewicz, Michal Boivin, Thomas Bonal, Raul Bragg, Don C. Caignard, Thomas Calama, Rafael Camarero, J. Julio Chang-Yang, Chia-Hao Cleavitt, Natalie L. Courbaud, Benoit Courbet, Francois Curt, Thomas Das, Adrian J. Daskalakou, Evangelia Davi, Hendrik Delpierre, Nicolas Delzon, Sylvain Dietze, Michael Calderon, Sergio Donoso Dormont, Laurent Espelta, Josep Fahey, Timothy J. Farfan-Rios, William Gehring, Catherine A. Gilbert, Gregory S. Gratzer, Georg Greenberg, Cathryn H. Guo, Qinfeng Hacket-Pain, Andrew Hampe, Arndt Han, Qingmin Hille Ris Lambers, Janneke Hoshizaki, Kazuhiko Ibanez, Ines Johnstone, Jill F. Journé, Valentin Kabeya, Daisuke Kilner, Christopher L. Kitzberger, Thomas Knops, Johannes M. H. Kobe, Richard K. Kunstler, Georges Lageard, Jonathan G. A. LaMontagne, Jalene M. Ledwon, Mateusz Lefevre, Francois Leininger, Theodor Limousin, Jean-Marc Lutz, James A. Macias, Diana McIntire, Eliot J. B. Moore, Christopher M. Moran, Emily Motta, Renzo Myers, Jonathan A. Nagel, Thomas A. Noguchi, Kyotaro Ourcival, Jean-Marc Parmenter, Robert Pearse, Ian S. Perez-Ramos, Ignacio M. Piechnik, Lukasz Poulsen, John Poulton-Kamakura, Renata Redmond, Miranda D. Reid, Chantal D. Rodman, Kyle C. Rodriguez-Sanchez, Francisco Sanguinetti, Javier D. Scher, C. Lane Schlesinger, William H. Schmidt Van Marle, Harald Seget, Barbara Sharma, Shubhi Silman, Miles Steele, Michael A. Stephenson, Nathan L. Straub, Jacob N. Sun, I-Fang Sutton, Samantha Swenson, Jennifer J. Swift, Margaret Thomas, Peter A. Uriarte, Maria Vacchiano, Giorgio Veblen, Thomas T. Whipple, Amy V. Whitham, Thomas G. Wion, Andreas P. Wright, Boyd Wright, S. Joseph Zhu, Kai Zimmerman, Jess K. Zlotin, Roman Zywiec, Magdalena Clark, James S. |
author_facet | Qiu, Tong Andrus, Robert Aravena, Marie-Claire Ascoli, Davide Bergeron, Yves Berretti, Roberta Berveiller, Daniel Bogdziewicz, Michal Boivin, Thomas Bonal, Raul Bragg, Don C. Caignard, Thomas Calama, Rafael Camarero, J. Julio Chang-Yang, Chia-Hao Cleavitt, Natalie L. Courbaud, Benoit Courbet, Francois Curt, Thomas Das, Adrian J. Daskalakou, Evangelia Davi, Hendrik Delpierre, Nicolas Delzon, Sylvain Dietze, Michael Calderon, Sergio Donoso Dormont, Laurent Espelta, Josep Fahey, Timothy J. Farfan-Rios, William Gehring, Catherine A. Gilbert, Gregory S. Gratzer, Georg Greenberg, Cathryn H. Guo, Qinfeng Hacket-Pain, Andrew Hampe, Arndt Han, Qingmin Hille Ris Lambers, Janneke Hoshizaki, Kazuhiko Ibanez, Ines Johnstone, Jill F. Journé, Valentin Kabeya, Daisuke Kilner, Christopher L. Kitzberger, Thomas Knops, Johannes M. H. Kobe, Richard K. Kunstler, Georges Lageard, Jonathan G. A. LaMontagne, Jalene M. Ledwon, Mateusz Lefevre, Francois Leininger, Theodor Limousin, Jean-Marc Lutz, James A. Macias, Diana McIntire, Eliot J. B. Moore, Christopher M. Moran, Emily Motta, Renzo Myers, Jonathan A. Nagel, Thomas A. Noguchi, Kyotaro Ourcival, Jean-Marc Parmenter, Robert Pearse, Ian S. Perez-Ramos, Ignacio M. Piechnik, Lukasz Poulsen, John Poulton-Kamakura, Renata Redmond, Miranda D. Reid, Chantal D. Rodman, Kyle C. Rodriguez-Sanchez, Francisco Sanguinetti, Javier D. Scher, C. Lane Schlesinger, William H. Schmidt Van Marle, Harald Seget, Barbara Sharma, Shubhi Silman, Miles Steele, Michael A. Stephenson, Nathan L. Straub, Jacob N. Sun, I-Fang Sutton, Samantha Swenson, Jennifer J. Swift, Margaret Thomas, Peter A. Uriarte, Maria Vacchiano, Giorgio Veblen, Thomas T. Whipple, Amy V. Whitham, Thomas G. Wion, Andreas P. Wright, Boyd Wright, S. Joseph Zhu, Kai Zimmerman, Jess K. Zlotin, Roman Zywiec, Magdalena Clark, James S. |
author_sort | Qiu, Tong |
collection | PubMed |
description | The relationships that control seed production in trees are fundamental to understanding the evolution of forest species and their capacity to recover from increasing losses to drought, fire, and harvest. A synthesis of fecundity data from 714 species worldwide allowed us to examine hypotheses that are central to quantifying reproduction, a foundation for assessing fitness in forest trees. Four major findings emerged. First, seed production is not constrained by a strict trade-off between seed size and numbers. Instead, seed numbers vary over ten orders of magnitude, with species that invest in large seeds producing more seeds than expected from the 1:1 trade-off. Second, gymnosperms have lower seed production than angiosperms, potentially due to their extra investments in protective woody cones. Third, nutrient-demanding species, indicated by high foliar phosphorus concentrations, have low seed production. Finally, sensitivity of individual species to soil fertility varies widely, limiting the response of community seed production to fertility gradients. In combination, these findings can inform models of forest response that need to incorporate reproductive potential. |
format | Online Article Text |
id | pubmed-9061860 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Nature Publishing Group UK |
record_format | MEDLINE/PubMed |
spelling | pubmed-90618602022-05-04 Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery Qiu, Tong Andrus, Robert Aravena, Marie-Claire Ascoli, Davide Bergeron, Yves Berretti, Roberta Berveiller, Daniel Bogdziewicz, Michal Boivin, Thomas Bonal, Raul Bragg, Don C. Caignard, Thomas Calama, Rafael Camarero, J. Julio Chang-Yang, Chia-Hao Cleavitt, Natalie L. Courbaud, Benoit Courbet, Francois Curt, Thomas Das, Adrian J. Daskalakou, Evangelia Davi, Hendrik Delpierre, Nicolas Delzon, Sylvain Dietze, Michael Calderon, Sergio Donoso Dormont, Laurent Espelta, Josep Fahey, Timothy J. Farfan-Rios, William Gehring, Catherine A. Gilbert, Gregory S. Gratzer, Georg Greenberg, Cathryn H. Guo, Qinfeng Hacket-Pain, Andrew Hampe, Arndt Han, Qingmin Hille Ris Lambers, Janneke Hoshizaki, Kazuhiko Ibanez, Ines Johnstone, Jill F. Journé, Valentin Kabeya, Daisuke Kilner, Christopher L. Kitzberger, Thomas Knops, Johannes M. H. Kobe, Richard K. Kunstler, Georges Lageard, Jonathan G. A. LaMontagne, Jalene M. Ledwon, Mateusz Lefevre, Francois Leininger, Theodor Limousin, Jean-Marc Lutz, James A. Macias, Diana McIntire, Eliot J. B. Moore, Christopher M. Moran, Emily Motta, Renzo Myers, Jonathan A. Nagel, Thomas A. Noguchi, Kyotaro Ourcival, Jean-Marc Parmenter, Robert Pearse, Ian S. Perez-Ramos, Ignacio M. Piechnik, Lukasz Poulsen, John Poulton-Kamakura, Renata Redmond, Miranda D. Reid, Chantal D. Rodman, Kyle C. Rodriguez-Sanchez, Francisco Sanguinetti, Javier D. Scher, C. Lane Schlesinger, William H. Schmidt Van Marle, Harald Seget, Barbara Sharma, Shubhi Silman, Miles Steele, Michael A. Stephenson, Nathan L. Straub, Jacob N. Sun, I-Fang Sutton, Samantha Swenson, Jennifer J. Swift, Margaret Thomas, Peter A. Uriarte, Maria Vacchiano, Giorgio Veblen, Thomas T. Whipple, Amy V. Whitham, Thomas G. Wion, Andreas P. Wright, Boyd Wright, S. Joseph Zhu, Kai Zimmerman, Jess K. Zlotin, Roman Zywiec, Magdalena Clark, James S. Nat Commun Article The relationships that control seed production in trees are fundamental to understanding the evolution of forest species and their capacity to recover from increasing losses to drought, fire, and harvest. A synthesis of fecundity data from 714 species worldwide allowed us to examine hypotheses that are central to quantifying reproduction, a foundation for assessing fitness in forest trees. Four major findings emerged. First, seed production is not constrained by a strict trade-off between seed size and numbers. Instead, seed numbers vary over ten orders of magnitude, with species that invest in large seeds producing more seeds than expected from the 1:1 trade-off. Second, gymnosperms have lower seed production than angiosperms, potentially due to their extra investments in protective woody cones. Third, nutrient-demanding species, indicated by high foliar phosphorus concentrations, have low seed production. Finally, sensitivity of individual species to soil fertility varies widely, limiting the response of community seed production to fertility gradients. In combination, these findings can inform models of forest response that need to incorporate reproductive potential. Nature Publishing Group UK 2022-05-02 /pmc/articles/PMC9061860/ /pubmed/35501313 http://dx.doi.org/10.1038/s41467-022-30037-9 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 Qiu, Tong Andrus, Robert Aravena, Marie-Claire Ascoli, Davide Bergeron, Yves Berretti, Roberta Berveiller, Daniel Bogdziewicz, Michal Boivin, Thomas Bonal, Raul Bragg, Don C. Caignard, Thomas Calama, Rafael Camarero, J. Julio Chang-Yang, Chia-Hao Cleavitt, Natalie L. Courbaud, Benoit Courbet, Francois Curt, Thomas Das, Adrian J. Daskalakou, Evangelia Davi, Hendrik Delpierre, Nicolas Delzon, Sylvain Dietze, Michael Calderon, Sergio Donoso Dormont, Laurent Espelta, Josep Fahey, Timothy J. Farfan-Rios, William Gehring, Catherine A. Gilbert, Gregory S. Gratzer, Georg Greenberg, Cathryn H. Guo, Qinfeng Hacket-Pain, Andrew Hampe, Arndt Han, Qingmin Hille Ris Lambers, Janneke Hoshizaki, Kazuhiko Ibanez, Ines Johnstone, Jill F. Journé, Valentin Kabeya, Daisuke Kilner, Christopher L. Kitzberger, Thomas Knops, Johannes M. H. Kobe, Richard K. Kunstler, Georges Lageard, Jonathan G. A. LaMontagne, Jalene M. Ledwon, Mateusz Lefevre, Francois Leininger, Theodor Limousin, Jean-Marc Lutz, James A. Macias, Diana McIntire, Eliot J. B. Moore, Christopher M. Moran, Emily Motta, Renzo Myers, Jonathan A. Nagel, Thomas A. Noguchi, Kyotaro Ourcival, Jean-Marc Parmenter, Robert Pearse, Ian S. Perez-Ramos, Ignacio M. Piechnik, Lukasz Poulsen, John Poulton-Kamakura, Renata Redmond, Miranda D. Reid, Chantal D. Rodman, Kyle C. Rodriguez-Sanchez, Francisco Sanguinetti, Javier D. Scher, C. Lane Schlesinger, William H. Schmidt Van Marle, Harald Seget, Barbara Sharma, Shubhi Silman, Miles Steele, Michael A. Stephenson, Nathan L. Straub, Jacob N. Sun, I-Fang Sutton, Samantha Swenson, Jennifer J. Swift, Margaret Thomas, Peter A. Uriarte, Maria Vacchiano, Giorgio Veblen, Thomas T. Whipple, Amy V. Whitham, Thomas G. Wion, Andreas P. Wright, Boyd Wright, S. Joseph Zhu, Kai Zimmerman, Jess K. Zlotin, Roman Zywiec, Magdalena Clark, James S. Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery |
title | Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery |
title_full | Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery |
title_fullStr | Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery |
title_full_unstemmed | Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery |
title_short | Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery |
title_sort | limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9061860/ https://www.ncbi.nlm.nih.gov/pubmed/35501313 http://dx.doi.org/10.1038/s41467-022-30037-9 |
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