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Compositional response of Amazon forests to climate change

Most of the planet's diversity is concentrated in the tropics, which includes many regions undergoing rapid climate change. Yet, while climate‐induced biodiversity changes are widely documented elsewhere, few studies have addressed this issue for lowland tropical ecosystems. Here we investigate...

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Autores principales: Esquivel‐Muelbert, Adriane, Baker, Timothy R., Dexter, Kyle G., Lewis, Simon L., Brienen, Roel J. W., Feldpausch, Ted R., Lloyd, Jon, Monteagudo‐Mendoza, Abel, Arroyo, Luzmila, Álvarez-Dávila, Esteban, Higuchi, Niro, Marimon, Beatriz S., Marimon-Junior, Ben Hur, Silveira, Marcos, Vilanova, Emilio, Gloor, Emanuel, Malhi, Yadvinder, Chave, Jerôme, Barlow, Jos, Bonal, Damien, Davila Cardozo, Nallaret, Erwin, Terry, Fauset, Sophie, Hérault, Bruno, Laurance, Susan, Poorter, Lourens, Qie, Lan, Stahl, Clement, Sullivan, Martin J. P., ter Steege, Hans, Vos, Vincent Antoine, Zuidema, Pieter A., Almeida, Everton, Almeida de Oliveira, Edmar, Andrade, Ana, Vieira, Simone Aparecida, Aragão, Luiz, Araujo‐Murakami, Alejandro, Arets, Eric, Aymard C, Gerardo A., Baraloto, Christopher, Camargo, Plínio Barbosa, Barroso, Jorcely G., Bongers, Frans, Boot, Rene, Camargo, José Luís, Castro, Wendeson, Chama Moscoso, Victor, Comiskey, James, Cornejo Valverde, Fernando, Lola da Costa, Antonio Carlos, del Aguila Pasquel, Jhon, Di Fiore, Anthony, Fernanda Duque, Luisa, Elias, Fernando, Engel, Julien, Flores Llampazo, Gerardo, Galbraith, David, Herrera Fernández, Rafael, Honorio Coronado, Eurídice, Hubau, Wannes, Jimenez‐Rojas, Eliana, Lima, Adriano José Nogueira, Umetsu, Ricardo Keichi, Laurance, William, Lopez‐Gonzalez, Gabriela, Lovejoy, Thomas, Aurelio Melo Cruz, Omar, Morandi, Paulo S., Neill, David, Núñez Vargas, Percy, Pallqui Camacho, Nadir C., Parada Gutierrez, Alexander, Pardo, Guido, Peacock, Julie, Peña‐Claros, Marielos, Peñuela‐Mora, Maria Cristina, Petronelli, Pascal, Pickavance, Georgia C., Pitman, Nigel, Prieto, Adriana, Quesada, Carlos, Ramírez‐Angulo, Hirma, Réjou‐Méchain, Maxime, Restrepo Correa, Zorayda, Roopsind, Anand, Rudas, Agustín, Salomão, Rafael, Silva, Natalino, Silva Espejo, Javier, Singh, James, Stropp, Juliana, Terborgh, John, Thomas, Raquel, Toledo, Marisol, Torres‐Lezama, Armando, Valenzuela Gamarra, Luis, van de Meer, Peter J., van der Heijden, Geertje, van der Hout, Peter, Vasquez Martinez, Rodolfo, Vela, Cesar, Vieira, Ima Célia Guimarães, Phillips, Oliver L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6334637/
https://www.ncbi.nlm.nih.gov/pubmed/30406962
http://dx.doi.org/10.1111/gcb.14413
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author Esquivel‐Muelbert, Adriane
Baker, Timothy R.
Dexter, Kyle G.
Lewis, Simon L.
Brienen, Roel J. W.
Feldpausch, Ted R.
Lloyd, Jon
Monteagudo‐Mendoza, Abel
Arroyo, Luzmila
Álvarez-Dávila, Esteban
Higuchi, Niro
Marimon, Beatriz S.
Marimon-Junior, Ben Hur
Silveira, Marcos
Vilanova, Emilio
Gloor, Emanuel
Malhi, Yadvinder
Chave, Jerôme
Barlow, Jos
Bonal, Damien
Davila Cardozo, Nallaret
Erwin, Terry
Fauset, Sophie
Hérault, Bruno
Laurance, Susan
Poorter, Lourens
Qie, Lan
Stahl, Clement
Sullivan, Martin J. P.
ter Steege, Hans
Vos, Vincent Antoine
Zuidema, Pieter A.
Almeida, Everton
Almeida de Oliveira, Edmar
Andrade, Ana
Vieira, Simone Aparecida
Aragão, Luiz
Araujo‐Murakami, Alejandro
Arets, Eric
Aymard C, Gerardo A.
Baraloto, Christopher
Camargo, Plínio Barbosa
Barroso, Jorcely G.
Bongers, Frans
Boot, Rene
Camargo, José Luís
Castro, Wendeson
Chama Moscoso, Victor
Comiskey, James
Cornejo Valverde, Fernando
Lola da Costa, Antonio Carlos
del Aguila Pasquel, Jhon
Di Fiore, Anthony
Fernanda Duque, Luisa
Elias, Fernando
Engel, Julien
Flores Llampazo, Gerardo
Galbraith, David
Herrera Fernández, Rafael
Honorio Coronado, Eurídice
Hubau, Wannes
Jimenez‐Rojas, Eliana
Lima, Adriano José Nogueira
Umetsu, Ricardo Keichi
Laurance, William
Lopez‐Gonzalez, Gabriela
Lovejoy, Thomas
Aurelio Melo Cruz, Omar
Morandi, Paulo S.
Neill, David
Núñez Vargas, Percy
Pallqui Camacho, Nadir C.
Parada Gutierrez, Alexander
Pardo, Guido
Peacock, Julie
Peña‐Claros, Marielos
Peñuela‐Mora, Maria Cristina
Petronelli, Pascal
Pickavance, Georgia C.
Pitman, Nigel
Prieto, Adriana
Quesada, Carlos
Ramírez‐Angulo, Hirma
Réjou‐Méchain, Maxime
Restrepo Correa, Zorayda
Roopsind, Anand
Rudas, Agustín
Salomão, Rafael
Silva, Natalino
Silva Espejo, Javier
Singh, James
Stropp, Juliana
Terborgh, John
Thomas, Raquel
Toledo, Marisol
Torres‐Lezama, Armando
Valenzuela Gamarra, Luis
van de Meer, Peter J.
van der Heijden, Geertje
van der Hout, Peter
Vasquez Martinez, Rodolfo
Vela, Cesar
Vieira, Ima Célia Guimarães
Phillips, Oliver L.
author_facet Esquivel‐Muelbert, Adriane
Baker, Timothy R.
Dexter, Kyle G.
Lewis, Simon L.
Brienen, Roel J. W.
Feldpausch, Ted R.
Lloyd, Jon
Monteagudo‐Mendoza, Abel
Arroyo, Luzmila
Álvarez-Dávila, Esteban
Higuchi, Niro
Marimon, Beatriz S.
Marimon-Junior, Ben Hur
Silveira, Marcos
Vilanova, Emilio
Gloor, Emanuel
Malhi, Yadvinder
Chave, Jerôme
Barlow, Jos
Bonal, Damien
Davila Cardozo, Nallaret
Erwin, Terry
Fauset, Sophie
Hérault, Bruno
Laurance, Susan
Poorter, Lourens
Qie, Lan
Stahl, Clement
Sullivan, Martin J. P.
ter Steege, Hans
Vos, Vincent Antoine
Zuidema, Pieter A.
Almeida, Everton
Almeida de Oliveira, Edmar
Andrade, Ana
Vieira, Simone Aparecida
Aragão, Luiz
Araujo‐Murakami, Alejandro
Arets, Eric
Aymard C, Gerardo A.
Baraloto, Christopher
Camargo, Plínio Barbosa
Barroso, Jorcely G.
Bongers, Frans
Boot, Rene
Camargo, José Luís
Castro, Wendeson
Chama Moscoso, Victor
Comiskey, James
Cornejo Valverde, Fernando
Lola da Costa, Antonio Carlos
del Aguila Pasquel, Jhon
Di Fiore, Anthony
Fernanda Duque, Luisa
Elias, Fernando
Engel, Julien
Flores Llampazo, Gerardo
Galbraith, David
Herrera Fernández, Rafael
Honorio Coronado, Eurídice
Hubau, Wannes
Jimenez‐Rojas, Eliana
Lima, Adriano José Nogueira
Umetsu, Ricardo Keichi
Laurance, William
Lopez‐Gonzalez, Gabriela
Lovejoy, Thomas
Aurelio Melo Cruz, Omar
Morandi, Paulo S.
Neill, David
Núñez Vargas, Percy
Pallqui Camacho, Nadir C.
Parada Gutierrez, Alexander
Pardo, Guido
Peacock, Julie
Peña‐Claros, Marielos
Peñuela‐Mora, Maria Cristina
Petronelli, Pascal
Pickavance, Georgia C.
Pitman, Nigel
Prieto, Adriana
Quesada, Carlos
Ramírez‐Angulo, Hirma
Réjou‐Méchain, Maxime
Restrepo Correa, Zorayda
Roopsind, Anand
Rudas, Agustín
Salomão, Rafael
Silva, Natalino
Silva Espejo, Javier
Singh, James
Stropp, Juliana
Terborgh, John
Thomas, Raquel
Toledo, Marisol
Torres‐Lezama, Armando
Valenzuela Gamarra, Luis
van de Meer, Peter J.
van der Heijden, Geertje
van der Hout, Peter
Vasquez Martinez, Rodolfo
Vela, Cesar
Vieira, Ima Célia Guimarães
Phillips, Oliver L.
author_sort Esquivel‐Muelbert, Adriane
collection PubMed
description Most of the planet's diversity is concentrated in the tropics, which includes many regions undergoing rapid climate change. Yet, while climate‐induced biodiversity changes are widely documented elsewhere, few studies have addressed this issue for lowland tropical ecosystems. Here we investigate whether the floristic and functional composition of intact lowland Amazonian forests have been changing by evaluating records from 106 long‐term inventory plots spanning 30 years. We analyse three traits that have been hypothesized to respond to different environmental drivers (increase in moisture stress and atmospheric CO (2) concentrations): maximum tree size, biogeographic water‐deficit affiliation and wood density. Tree communities have become increasingly dominated by large‐statured taxa, but to date there has been no detectable change in mean wood density or water deficit affiliation at the community level, despite most forest plots having experienced an intensification of the dry season. However, among newly recruited trees, dry‐affiliated genera have become more abundant, while the mortality of wet‐affiliated genera has increased in those plots where the dry season has intensified most. Thus, a slow shift to a more dry‐affiliated Amazonia is underway, with changes in compositional dynamics (recruits and mortality) consistent with climate‐change drivers, but yet to significantly impact whole‐community composition. The Amazon observational record suggests that the increase in atmospheric CO (2) is driving a shift within tree communities to large‐statured species and that climate changes to date will impact forest composition, but long generation times of tropical trees mean that biodiversity change is lagging behind climate change.
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spelling pubmed-63346372019-01-23 Compositional response of Amazon forests to climate change Esquivel‐Muelbert, Adriane Baker, Timothy R. Dexter, Kyle G. Lewis, Simon L. Brienen, Roel J. W. Feldpausch, Ted R. Lloyd, Jon Monteagudo‐Mendoza, Abel Arroyo, Luzmila Álvarez-Dávila, Esteban Higuchi, Niro Marimon, Beatriz S. Marimon-Junior, Ben Hur Silveira, Marcos Vilanova, Emilio Gloor, Emanuel Malhi, Yadvinder Chave, Jerôme Barlow, Jos Bonal, Damien Davila Cardozo, Nallaret Erwin, Terry Fauset, Sophie Hérault, Bruno Laurance, Susan Poorter, Lourens Qie, Lan Stahl, Clement Sullivan, Martin J. P. ter Steege, Hans Vos, Vincent Antoine Zuidema, Pieter A. Almeida, Everton Almeida de Oliveira, Edmar Andrade, Ana Vieira, Simone Aparecida Aragão, Luiz Araujo‐Murakami, Alejandro Arets, Eric Aymard C, Gerardo A. Baraloto, Christopher Camargo, Plínio Barbosa Barroso, Jorcely G. Bongers, Frans Boot, Rene Camargo, José Luís Castro, Wendeson Chama Moscoso, Victor Comiskey, James Cornejo Valverde, Fernando Lola da Costa, Antonio Carlos del Aguila Pasquel, Jhon Di Fiore, Anthony Fernanda Duque, Luisa Elias, Fernando Engel, Julien Flores Llampazo, Gerardo Galbraith, David Herrera Fernández, Rafael Honorio Coronado, Eurídice Hubau, Wannes Jimenez‐Rojas, Eliana Lima, Adriano José Nogueira Umetsu, Ricardo Keichi Laurance, William Lopez‐Gonzalez, Gabriela Lovejoy, Thomas Aurelio Melo Cruz, Omar Morandi, Paulo S. Neill, David Núñez Vargas, Percy Pallqui Camacho, Nadir C. Parada Gutierrez, Alexander Pardo, Guido Peacock, Julie Peña‐Claros, Marielos Peñuela‐Mora, Maria Cristina Petronelli, Pascal Pickavance, Georgia C. Pitman, Nigel Prieto, Adriana Quesada, Carlos Ramírez‐Angulo, Hirma Réjou‐Méchain, Maxime Restrepo Correa, Zorayda Roopsind, Anand Rudas, Agustín Salomão, Rafael Silva, Natalino Silva Espejo, Javier Singh, James Stropp, Juliana Terborgh, John Thomas, Raquel Toledo, Marisol Torres‐Lezama, Armando Valenzuela Gamarra, Luis van de Meer, Peter J. van der Heijden, Geertje van der Hout, Peter Vasquez Martinez, Rodolfo Vela, Cesar Vieira, Ima Célia Guimarães Phillips, Oliver L. Glob Chang Biol Primary Research Articles Most of the planet's diversity is concentrated in the tropics, which includes many regions undergoing rapid climate change. Yet, while climate‐induced biodiversity changes are widely documented elsewhere, few studies have addressed this issue for lowland tropical ecosystems. Here we investigate whether the floristic and functional composition of intact lowland Amazonian forests have been changing by evaluating records from 106 long‐term inventory plots spanning 30 years. We analyse three traits that have been hypothesized to respond to different environmental drivers (increase in moisture stress and atmospheric CO (2) concentrations): maximum tree size, biogeographic water‐deficit affiliation and wood density. Tree communities have become increasingly dominated by large‐statured taxa, but to date there has been no detectable change in mean wood density or water deficit affiliation at the community level, despite most forest plots having experienced an intensification of the dry season. However, among newly recruited trees, dry‐affiliated genera have become more abundant, while the mortality of wet‐affiliated genera has increased in those plots where the dry season has intensified most. Thus, a slow shift to a more dry‐affiliated Amazonia is underway, with changes in compositional dynamics (recruits and mortality) consistent with climate‐change drivers, but yet to significantly impact whole‐community composition. The Amazon observational record suggests that the increase in atmospheric CO (2) is driving a shift within tree communities to large‐statured species and that climate changes to date will impact forest composition, but long generation times of tropical trees mean that biodiversity change is lagging behind climate change. John Wiley and Sons Inc. 2018-11-08 2019-01 /pmc/articles/PMC6334637/ /pubmed/30406962 http://dx.doi.org/10.1111/gcb.14413 Text en © 2018 The Authors. Global Change Biology Published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Primary Research Articles
Esquivel‐Muelbert, Adriane
Baker, Timothy R.
Dexter, Kyle G.
Lewis, Simon L.
Brienen, Roel J. W.
Feldpausch, Ted R.
Lloyd, Jon
Monteagudo‐Mendoza, Abel
Arroyo, Luzmila
Álvarez-Dávila, Esteban
Higuchi, Niro
Marimon, Beatriz S.
Marimon-Junior, Ben Hur
Silveira, Marcos
Vilanova, Emilio
Gloor, Emanuel
Malhi, Yadvinder
Chave, Jerôme
Barlow, Jos
Bonal, Damien
Davila Cardozo, Nallaret
Erwin, Terry
Fauset, Sophie
Hérault, Bruno
Laurance, Susan
Poorter, Lourens
Qie, Lan
Stahl, Clement
Sullivan, Martin J. P.
ter Steege, Hans
Vos, Vincent Antoine
Zuidema, Pieter A.
Almeida, Everton
Almeida de Oliveira, Edmar
Andrade, Ana
Vieira, Simone Aparecida
Aragão, Luiz
Araujo‐Murakami, Alejandro
Arets, Eric
Aymard C, Gerardo A.
Baraloto, Christopher
Camargo, Plínio Barbosa
Barroso, Jorcely G.
Bongers, Frans
Boot, Rene
Camargo, José Luís
Castro, Wendeson
Chama Moscoso, Victor
Comiskey, James
Cornejo Valverde, Fernando
Lola da Costa, Antonio Carlos
del Aguila Pasquel, Jhon
Di Fiore, Anthony
Fernanda Duque, Luisa
Elias, Fernando
Engel, Julien
Flores Llampazo, Gerardo
Galbraith, David
Herrera Fernández, Rafael
Honorio Coronado, Eurídice
Hubau, Wannes
Jimenez‐Rojas, Eliana
Lima, Adriano José Nogueira
Umetsu, Ricardo Keichi
Laurance, William
Lopez‐Gonzalez, Gabriela
Lovejoy, Thomas
Aurelio Melo Cruz, Omar
Morandi, Paulo S.
Neill, David
Núñez Vargas, Percy
Pallqui Camacho, Nadir C.
Parada Gutierrez, Alexander
Pardo, Guido
Peacock, Julie
Peña‐Claros, Marielos
Peñuela‐Mora, Maria Cristina
Petronelli, Pascal
Pickavance, Georgia C.
Pitman, Nigel
Prieto, Adriana
Quesada, Carlos
Ramírez‐Angulo, Hirma
Réjou‐Méchain, Maxime
Restrepo Correa, Zorayda
Roopsind, Anand
Rudas, Agustín
Salomão, Rafael
Silva, Natalino
Silva Espejo, Javier
Singh, James
Stropp, Juliana
Terborgh, John
Thomas, Raquel
Toledo, Marisol
Torres‐Lezama, Armando
Valenzuela Gamarra, Luis
van de Meer, Peter J.
van der Heijden, Geertje
van der Hout, Peter
Vasquez Martinez, Rodolfo
Vela, Cesar
Vieira, Ima Célia Guimarães
Phillips, Oliver L.
Compositional response of Amazon forests to climate change
title Compositional response of Amazon forests to climate change
title_full Compositional response of Amazon forests to climate change
title_fullStr Compositional response of Amazon forests to climate change
title_full_unstemmed Compositional response of Amazon forests to climate change
title_short Compositional response of Amazon forests to climate change
title_sort compositional response of amazon forests to climate change
topic Primary Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6334637/
https://www.ncbi.nlm.nih.gov/pubmed/30406962
http://dx.doi.org/10.1111/gcb.14413
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