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Evolutionary heritage influences Amazon tree ecology

Lineages tend to retain ecological characteristics of their ancestors through time. However, for some traits, selection during evolutionary history may have also played a role in determining trait values. To address the relative importance of these processes requires large-scale quantification of tr...

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Autores principales: Coelho de Souza, Fernanda, Dexter, Kyle G., Phillips, Oliver L., Brienen, Roel J. W., Chave, Jerome, Galbraith, David R., Lopez Gonzalez, Gabriela, Monteagudo Mendoza, Abel, Pennington, R. Toby, Poorter, Lourens, Alexiades, Miguel, Álvarez-Dávila, Esteban, Andrade, Ana, Aragão, Luis E. O. C., Araujo-Murakami, Alejandro, Arets, Eric J. M. M., Aymard C, Gerardo A., Baraloto, Christopher, Barroso, Jorcely G., Bonal, Damien, Boot, Rene G. A., Camargo, José L. C., Comiskey, James A., Valverde, Fernando Cornejo, de Camargo, Plínio B., Di Fiore, Anthony, Elias, Fernando, Erwin, Terry L., Feldpausch, Ted R., Ferreira, Leandro, Fyllas, Nikolaos M., Gloor, Emanuel, Herault, Bruno, Herrera, Rafael, Higuchi, Niro, Honorio Coronado, Eurídice N., Killeen, Timothy J., Laurance, William F., Laurance, Susan, Lloyd, Jon, Lovejoy, Thomas E., Malhi, Yadvinder, Maracahipes, Leandro, Marimon, Beatriz S., Marimon-Junior, Ben H., Mendoza, Casimiro, Morandi, Paulo, Neill, David A., Vargas, Percy Núñez, Oliveira, Edmar A., Lenza, Eddie, Palacios, Walter A., Peñuela-Mora, Maria C., Pipoly, John J., Pitman, Nigel C. A., Prieto, Adriana, Quesada, Carlos A., Ramirez-Angulo, Hirma, Rudas, Agustin, Ruokolainen, Kalle, Salomão, Rafael P., Silveira, Marcos, Stropp, Juliana, ter Steege, Hans, Thomas-Caesar, Raquel, van der Hout, Peter, van der Heijden, Geertje M. F., van der Meer, Peter J., Vasquez, Rodolfo V., Vieira, Simone A., Vilanova, Emilio, Vos, Vincent A., Wang, Ophelia, Young, Kenneth R., Zagt, Roderick J., Baker, Timothy R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5204144/
https://www.ncbi.nlm.nih.gov/pubmed/27974517
http://dx.doi.org/10.1098/rspb.2016.1587
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author Coelho de Souza, Fernanda
Dexter, Kyle G.
Phillips, Oliver L.
Brienen, Roel J. W.
Chave, Jerome
Galbraith, David R.
Lopez Gonzalez, Gabriela
Monteagudo Mendoza, Abel
Pennington, R. Toby
Poorter, Lourens
Alexiades, Miguel
Álvarez-Dávila, Esteban
Andrade, Ana
Aragão, Luis E. O. C.
Araujo-Murakami, Alejandro
Arets, Eric J. M. M.
Aymard C, Gerardo A.
Baraloto, Christopher
Barroso, Jorcely G.
Bonal, Damien
Boot, Rene G. A.
Camargo, José L. C.
Comiskey, James A.
Valverde, Fernando Cornejo
de Camargo, Plínio B.
Di Fiore, Anthony
Elias, Fernando
Erwin, Terry L.
Feldpausch, Ted R.
Ferreira, Leandro
Fyllas, Nikolaos M.
Gloor, Emanuel
Herault, Bruno
Herrera, Rafael
Higuchi, Niro
Honorio Coronado, Eurídice N.
Killeen, Timothy J.
Laurance, William F.
Laurance, Susan
Lloyd, Jon
Lovejoy, Thomas E.
Malhi, Yadvinder
Maracahipes, Leandro
Marimon, Beatriz S.
Marimon-Junior, Ben H.
Mendoza, Casimiro
Morandi, Paulo
Neill, David A.
Vargas, Percy Núñez
Oliveira, Edmar A.
Lenza, Eddie
Palacios, Walter A.
Peñuela-Mora, Maria C.
Pipoly, John J.
Pitman, Nigel C. A.
Prieto, Adriana
Quesada, Carlos A.
Ramirez-Angulo, Hirma
Rudas, Agustin
Ruokolainen, Kalle
Salomão, Rafael P.
Silveira, Marcos
Stropp, Juliana
ter Steege, Hans
Thomas-Caesar, Raquel
van der Hout, Peter
van der Heijden, Geertje M. F.
van der Meer, Peter J.
Vasquez, Rodolfo V.
Vieira, Simone A.
Vilanova, Emilio
Vos, Vincent A.
Wang, Ophelia
Young, Kenneth R.
Zagt, Roderick J.
Baker, Timothy R.
author_facet Coelho de Souza, Fernanda
Dexter, Kyle G.
Phillips, Oliver L.
Brienen, Roel J. W.
Chave, Jerome
Galbraith, David R.
Lopez Gonzalez, Gabriela
Monteagudo Mendoza, Abel
Pennington, R. Toby
Poorter, Lourens
Alexiades, Miguel
Álvarez-Dávila, Esteban
Andrade, Ana
Aragão, Luis E. O. C.
Araujo-Murakami, Alejandro
Arets, Eric J. M. M.
Aymard C, Gerardo A.
Baraloto, Christopher
Barroso, Jorcely G.
Bonal, Damien
Boot, Rene G. A.
Camargo, José L. C.
Comiskey, James A.
Valverde, Fernando Cornejo
de Camargo, Plínio B.
Di Fiore, Anthony
Elias, Fernando
Erwin, Terry L.
Feldpausch, Ted R.
Ferreira, Leandro
Fyllas, Nikolaos M.
Gloor, Emanuel
Herault, Bruno
Herrera, Rafael
Higuchi, Niro
Honorio Coronado, Eurídice N.
Killeen, Timothy J.
Laurance, William F.
Laurance, Susan
Lloyd, Jon
Lovejoy, Thomas E.
Malhi, Yadvinder
Maracahipes, Leandro
Marimon, Beatriz S.
Marimon-Junior, Ben H.
Mendoza, Casimiro
Morandi, Paulo
Neill, David A.
Vargas, Percy Núñez
Oliveira, Edmar A.
Lenza, Eddie
Palacios, Walter A.
Peñuela-Mora, Maria C.
Pipoly, John J.
Pitman, Nigel C. A.
Prieto, Adriana
Quesada, Carlos A.
Ramirez-Angulo, Hirma
Rudas, Agustin
Ruokolainen, Kalle
Salomão, Rafael P.
Silveira, Marcos
Stropp, Juliana
ter Steege, Hans
Thomas-Caesar, Raquel
van der Hout, Peter
van der Heijden, Geertje M. F.
van der Meer, Peter J.
Vasquez, Rodolfo V.
Vieira, Simone A.
Vilanova, Emilio
Vos, Vincent A.
Wang, Ophelia
Young, Kenneth R.
Zagt, Roderick J.
Baker, Timothy R.
author_sort Coelho de Souza, Fernanda
collection PubMed
description Lineages tend to retain ecological characteristics of their ancestors through time. However, for some traits, selection during evolutionary history may have also played a role in determining trait values. To address the relative importance of these processes requires large-scale quantification of traits and evolutionary relationships among species. The Amazonian tree flora comprises a high diversity of angiosperm lineages and species with widely differing life-history characteristics, providing an excellent system to investigate the combined influences of evolutionary heritage and selection in determining trait variation. We used trait data related to the major axes of life-history variation among tropical trees (e.g. growth and mortality rates) from 577 inventory plots in closed-canopy forest, mapped onto a phylogenetic hypothesis spanning more than 300 genera including all major angiosperm clades to test for evolutionary constraints on traits. We found significant phylogenetic signal (PS) for all traits, consistent with evolutionarily related genera having more similar characteristics than expected by chance. Although there is also evidence for repeated evolution of pioneer and shade tolerant life-history strategies within independent lineages, the existence of significant PS allows clearer predictions of the links between evolutionary diversity, ecosystem function and the response of tropical forests to global change.
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spelling pubmed-52041442017-01-05 Evolutionary heritage influences Amazon tree ecology Coelho de Souza, Fernanda Dexter, Kyle G. Phillips, Oliver L. Brienen, Roel J. W. Chave, Jerome Galbraith, David R. Lopez Gonzalez, Gabriela Monteagudo Mendoza, Abel Pennington, R. Toby Poorter, Lourens Alexiades, Miguel Álvarez-Dávila, Esteban Andrade, Ana Aragão, Luis E. O. C. Araujo-Murakami, Alejandro Arets, Eric J. M. M. Aymard C, Gerardo A. Baraloto, Christopher Barroso, Jorcely G. Bonal, Damien Boot, Rene G. A. Camargo, José L. C. Comiskey, James A. Valverde, Fernando Cornejo de Camargo, Plínio B. Di Fiore, Anthony Elias, Fernando Erwin, Terry L. Feldpausch, Ted R. Ferreira, Leandro Fyllas, Nikolaos M. Gloor, Emanuel Herault, Bruno Herrera, Rafael Higuchi, Niro Honorio Coronado, Eurídice N. Killeen, Timothy J. Laurance, William F. Laurance, Susan Lloyd, Jon Lovejoy, Thomas E. Malhi, Yadvinder Maracahipes, Leandro Marimon, Beatriz S. Marimon-Junior, Ben H. Mendoza, Casimiro Morandi, Paulo Neill, David A. Vargas, Percy Núñez Oliveira, Edmar A. Lenza, Eddie Palacios, Walter A. Peñuela-Mora, Maria C. Pipoly, John J. Pitman, Nigel C. A. Prieto, Adriana Quesada, Carlos A. Ramirez-Angulo, Hirma Rudas, Agustin Ruokolainen, Kalle Salomão, Rafael P. Silveira, Marcos Stropp, Juliana ter Steege, Hans Thomas-Caesar, Raquel van der Hout, Peter van der Heijden, Geertje M. F. van der Meer, Peter J. Vasquez, Rodolfo V. Vieira, Simone A. Vilanova, Emilio Vos, Vincent A. Wang, Ophelia Young, Kenneth R. Zagt, Roderick J. Baker, Timothy R. Proc Biol Sci Research Articles Lineages tend to retain ecological characteristics of their ancestors through time. However, for some traits, selection during evolutionary history may have also played a role in determining trait values. To address the relative importance of these processes requires large-scale quantification of traits and evolutionary relationships among species. The Amazonian tree flora comprises a high diversity of angiosperm lineages and species with widely differing life-history characteristics, providing an excellent system to investigate the combined influences of evolutionary heritage and selection in determining trait variation. We used trait data related to the major axes of life-history variation among tropical trees (e.g. growth and mortality rates) from 577 inventory plots in closed-canopy forest, mapped onto a phylogenetic hypothesis spanning more than 300 genera including all major angiosperm clades to test for evolutionary constraints on traits. We found significant phylogenetic signal (PS) for all traits, consistent with evolutionarily related genera having more similar characteristics than expected by chance. Although there is also evidence for repeated evolution of pioneer and shade tolerant life-history strategies within independent lineages, the existence of significant PS allows clearer predictions of the links between evolutionary diversity, ecosystem function and the response of tropical forests to global change. The Royal Society 2016-12-14 /pmc/articles/PMC5204144/ /pubmed/27974517 http://dx.doi.org/10.1098/rspb.2016.1587 Text en © 2016 The Authors. http://creativecommons.org/licenses/by/4.0/ Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Research Articles
Coelho de Souza, Fernanda
Dexter, Kyle G.
Phillips, Oliver L.
Brienen, Roel J. W.
Chave, Jerome
Galbraith, David R.
Lopez Gonzalez, Gabriela
Monteagudo Mendoza, Abel
Pennington, R. Toby
Poorter, Lourens
Alexiades, Miguel
Álvarez-Dávila, Esteban
Andrade, Ana
Aragão, Luis E. O. C.
Araujo-Murakami, Alejandro
Arets, Eric J. M. M.
Aymard C, Gerardo A.
Baraloto, Christopher
Barroso, Jorcely G.
Bonal, Damien
Boot, Rene G. A.
Camargo, José L. C.
Comiskey, James A.
Valverde, Fernando Cornejo
de Camargo, Plínio B.
Di Fiore, Anthony
Elias, Fernando
Erwin, Terry L.
Feldpausch, Ted R.
Ferreira, Leandro
Fyllas, Nikolaos M.
Gloor, Emanuel
Herault, Bruno
Herrera, Rafael
Higuchi, Niro
Honorio Coronado, Eurídice N.
Killeen, Timothy J.
Laurance, William F.
Laurance, Susan
Lloyd, Jon
Lovejoy, Thomas E.
Malhi, Yadvinder
Maracahipes, Leandro
Marimon, Beatriz S.
Marimon-Junior, Ben H.
Mendoza, Casimiro
Morandi, Paulo
Neill, David A.
Vargas, Percy Núñez
Oliveira, Edmar A.
Lenza, Eddie
Palacios, Walter A.
Peñuela-Mora, Maria C.
Pipoly, John J.
Pitman, Nigel C. A.
Prieto, Adriana
Quesada, Carlos A.
Ramirez-Angulo, Hirma
Rudas, Agustin
Ruokolainen, Kalle
Salomão, Rafael P.
Silveira, Marcos
Stropp, Juliana
ter Steege, Hans
Thomas-Caesar, Raquel
van der Hout, Peter
van der Heijden, Geertje M. F.
van der Meer, Peter J.
Vasquez, Rodolfo V.
Vieira, Simone A.
Vilanova, Emilio
Vos, Vincent A.
Wang, Ophelia
Young, Kenneth R.
Zagt, Roderick J.
Baker, Timothy R.
Evolutionary heritage influences Amazon tree ecology
title Evolutionary heritage influences Amazon tree ecology
title_full Evolutionary heritage influences Amazon tree ecology
title_fullStr Evolutionary heritage influences Amazon tree ecology
title_full_unstemmed Evolutionary heritage influences Amazon tree ecology
title_short Evolutionary heritage influences Amazon tree ecology
title_sort evolutionary heritage influences amazon tree ecology
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5204144/
https://www.ncbi.nlm.nih.gov/pubmed/27974517
http://dx.doi.org/10.1098/rspb.2016.1587
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