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Compositional response of Amazon forests to climate change
ArticleAbstract: Most of the planet's diversity is concentrated in the tropics, which includes many regions undergoinPalabras claves:Bioclimatic niches, Climate Change, compositional shifts, Functional traits, Temporal trends, Tropical forestsAutores:Almeida de Oliveira E., Almeida E.C., Alvarez-Dávila E., Andrade A.S., Anthony Di Fiore, Aragao L.E.O.C., Araujo-Murakami A., Arets E.J.M.M., Arroyo L.P., Aurelio Melo Cruz O., Aymard C. G.A., Baker T.R., Baraloto C., Barlow J., Barroso J.G., Bonal D., Bongers F., Boot R.G.A., Brienen R.J.W., Camargo J.L.C., Chave J., Comiskey J.A., Cornejo Valverde F., da Silva W.C., David A. Neill, Dávila N., de Camargo P.B., del Aguila-Pasquel J., Dexter K.G., Elias F., Engel J., Erwin T.L., Fauset S., Feldpausch T.R., Fernanda Duque L., Galbraith D.R., Gloor M., Hérault B., Herrera Fernández R., Higuchi N., Honorio E.N., Hubau W., Jimenez-Rojas E., Laurance S.G.W., Laurance W.F., Lewis S.L., Lima A.J.N., Llampazo G.F., Lloyd J.J., Lola da Costa A.C., López-González G., Lovejoy T.E., Malhi Y., María Cristina Peñuela Mora, Marimon B.S., Marimon-Junior B.H., Monteagudo-Mendoza A., Morandi P.S., Moscoso V.C., Muelbert A.E., Pallqui Camacho N.C., Parada-Gutierrez A., Pardo G., Peacock J., Penã-Claros M., Pétronelli P., Pickavance G.C., Pitman N.C.A., Poorter L., Prieto A., Qie L., Quesada C.A., Ramirez-Angulo H., Réjou-Méchain M., Restrepo Correa Z., Roopsind A., Rudas A., Salomao R.P., Silva N., Silva-Espejo J.E., Silveira M., Singh J., Stahl C., Stropp J., Sullivan M.J.P., Ter Steege H., Terborgh J.W., Thomas R.S., Toledo M., Torres-Lezama A., Umetsu R.K., Valenzuela Gamarra L., van de Meer P.J., Van Der Heijden G.M.F., van der Hout P., Vargas P.N., Vieira S.A., Vilanova-Torre E., Vincent A. Vos, Zuidema P.A.Fuentes:scopusCarbon uptake by mature Amazon forests has mitigated Amazon nations' carbon emissions
ArticleAbstract: Background: Several independent lines of evidence suggest that Amazon forests have provided a signifPalabras claves:amazonía, carbon balance, Carbon sink, Climate Change, Ecosystem service, land use change, Sequestration, Tropical forestsAutores:Alarcón A., Alexiaides M., Alvarez-Dávila E., Alvarez-Loayza P., Andrade A.S., Anthony Di Fiore, Aragao L.E.O.C., Araujo-Murakami A., Arets E.J.M.M., Arroyo L.P., Aymard G.A.C., Baker T.R., Bánki O.S., Baraloto C., Barroso J.G., Blanc L., Bonal D., Boot R.G.A., Brienen R.J.W., Brown I.F., Burban B., Camargo J.L.C., Castilho C.V., Chao K.J., Chave J., Comiskey J.A., Da Costa L., David A. Neill, Dávila N., de Camargo P.B., de Freitas M.A., de Oliveira E.A., Do Amaral I.L., E. M. Jiménez, Engel J., Erwin T.L., Fauset S., Forsthofer M., Galbraith D.R., Gloor M., Grahame E.S., Groot N., Hérault B., Higuchi N., Honorio E.N., Keeling H.C., Killeen T.J., Laurance S.G.W., Laurance W.F., Lewis S.L., Licona J.C., Lloyd J.J., López-González G., Magnusson W.E., Malhi Y., María Cristina Peñuela Mora, Marimon B.S., Marimon-Junior B.H., Mendoza C., Monteagudo-Mendoza A., Moscoso V.C., Nogueira E.M., Núñez P.V., Pallqui Camacho N.C., Parada A., Pardo-Molina G., Peacock J., Penã-Claros M., Phillips O.L., Pickavance G.C., Pitman N.C.A., Poorter L., Prieto A., Quesada C.A., Ramírez F., Ramirez-Angulo H., Restrepo Z., Roopsind A., Rudas A., Salomao R.P., Schwarz M., Silva N., Silva-Espejo J.E., Silveira M., Stropp J., Talbot J., Ter Steege H., Teran-Aguilar J., Terborgh J.W., Thomas-Caesar R., Toledo M., Torello-Raventos M., Umetsu K., Valverde F.C., Van Der Heijden G.M.F., van der Hout P., Vasquez-Martínez R., Vieira I.C.G., Vieira S.A., Vilanova-Torre E., Vincent A. Vos, Zagt R.J.Fuentes:scopusAbove- and below-ground net primary productivity across ten Amazonian forests on contrasting soils
ArticleAbstract: The net primary productivity (NPP) of tropical forests is one of the most important and least quantiPalabras claves:Autores:Alvarez-Dávila E., Anderson L.O., Arag̃o L.E.O.C., Baker T.R., da Costa L., de Almeida S.S., E. M. Jiménez, Goncalvez P.H., Huamán-Ovalle J., Malhi Y., Mamani-Solórzano M., María Cristina Peñuela Mora, Meir P., Metcalfe D.J., Monteagudo A., Navarrete D., Patĩo S., Phillips O.L., Prieto A., Quesada C.A., Rozas-Dávila A., Rudas A., Salinas Revilla N., Silva J.A., Silva-Espejo J.E., Vasquez R.V.Fuentes:scopusAmazon forest response to repeated droughts
ArticleAbstract: The Amazon Basin has experienced more variable climate over the last decade, with a severe and widesPalabras claves:carbon, Forest productivity, precipitation, Tree mortality, vegetation dynamics, Water deficitAutores:Alarcón A., Alvarez-Dávila E., Alvarez-Loayza P., Andrade A.S., Aragao L.E.O.C., Arroyo L.P., Aymard C. G.A., Baker T.R., Baraloto C., Barroso J.G., Bonal D., Brienen R.J.W., Chave J., da Silva W.C., David A. Neill, Domingues T.F., Fauset S., Feldpausch T.R., Gloor M., Groot N., Honorio E.N., Laurance S.G.W., Laurance W.F., Lewis S.L., Licona J.C., Lloyd J.J., López-González G., Malhi Y., Marimon B.S., Marimon-Junior B.H., Mendoza Bautista C., Monteagudo-Mendoza A., Moscoso V.C., Oliveira dos Santos C., Oliveira E.A., Pallqui Camacho N.C., Pardo-Molina G., Phillips O.L., Prieto A., Quesada C.A., Ramírez F., Ramirez-Angulo H., Réjou-Méchain M., Rudas A., Saiz G., Salomao R.P., Silva-Espejo J.E., Silveira M., Stropp J., Ter Steege H., Terborgh J.W., Thomas-Caesar R., Van Der Heijden G.M.F., Vasquez-Martínez R., Vilanova-Torre E., Vincent A. VosFuentes:scopusGlobal trait–environment relationships of plant communities
ArticleAbstract: Plant functional traits directly affect ecosystem functions. At the species level, trait combinationPalabras claves:Autores:Altman J., Alvarez-Dávila E., Arfin Khan M.A.S., Attorre F., Aubin I., Baraloto C., Barroso J.G., Bauters M., Bergmeier E., Biurrun I., Bjorkman A.D., Blonder B., Botta-Dukát Z., Bruelheide H., Čarni A., Cayuela L., Černý T., Chytrý M., Cornelissen J.H.C., Craven D., Dainese M., David A. Neill, De Sanctis M., Dengler J., Derroire G., Díaz S., Dolezal J., Farfan-Rios W., Feldpausch T.R., Fenton N.J., Field R., Garnier E., Guerin G.R., Gutiérrez A.G., Haider S., Hattab T., Hennekens S.M., Henry G.H.R., Hérault B., Higuchi P., Hölzel N., Homeier J., Jansen F., Jentsch A., Jiménez-Alfaro B., Jürgens N., Kącki Z., Karger D.N., Kattge J., Kessler M., Kleyer M., Knollová I., Korolyuk A.Y., Kühn I., Laughlin D.C., Lenoir J., Lens F., Loos J., Louault F., Lyubenova M.I., Mahecha M.D., Malhi Y., Marcenò C., Mencuccini M., Müller J.V., Munzinger J., Myers-Smith I.H., Orwin K.H., Ozinga W.A., Pärtel M., Peet R.K., Pérez-Haase A., Petřík P., Pẽuelas J., Phillips O.L., Pillar V.D., Purschke O., Reich P.B., Rodrigues A.V., Römermann C., Sabatini F.M., Sandel B., Sardans J., Schmidt M., Schrodt F., Seidler G., Silva-Espejo J.E., Silveira M., Smyth A., Sporbert M., Svenning J.C., Tang Z., Thomas R.S., Tsiripidis I., Ülo N., Van Bodegom P.M., Vassilev K., Violle C., Virtanen R., Weiher E.Fuentes:scopusNet primary productivity allocation and cycling of carbon along a tropical forest elevational transect in the Peruvian Andes
ArticleAbstract: The net primary productivity, carbon (C) stocks and turnover rates (i.e. C dynamics) of tropical forPalabras claves:Amazon basin, Andes, carbon, carbon stocks, Ecophysiology, elevational gradient, Net primary productivity, Residence time, soil water content, TEMPERATURE, Tropical montane forestsAutores:Aragao L.E.O.C., Durand L., Girardin C.A.J., Huaraca Huasco W., Kenneth James Feeley, Malhi Y., Mamani M., Rapp J.M., Salinas Revilla N., Silman M.R., Silva-Espejo J.E., Whittaker R.J.Fuentes:scopusLarge trees drive forest aboveground biomass variation in moist lowland forests across the tropics
ArticleAbstract: Aim: Large trees (d.b.h.≥70cm) store large amounts of biomass. Several studies suggest that large trPalabras claves:Climate, Ectomycorrhizal associations, Large tree density, Pan-tropical analysis, Soils, Species traits, Tree size, Tropical forest biomass, Wind dispersal, Wood densityAutores:Araujo-Murakami A., Barroso J.G., Bastian M.L., Blanc L., Bongers F., Boundja P., Clark C.J., Collins M., Dauby G., Ding Y., Do Amaral I.L., Doucet J.L., Eler E.S., Ferreira L.V., Forshed O., Fredriksson G.M., Gillet J.F., Harris D., Laumonier Y., Leal M.E., Malhi Y., Mansor A., Martin E.H., Mcguire K.L., Miyamoto K., Nagamasu H., Navarro-Aguilar G.E., Nilus R., Nurtjahya E., Oliveira A., Onrizal O., Paoli G., Parada-Gutierrez A., Permana A., Poorter L., Poulsen J., Ramirez-Angulo H., Reitsma J.M., Rovero F., Rozak A., Sheil D., Silva-Espejo J.E., Silveira M., Slik J.W.F., Spironelo W., Stévart T., Sunderland T.C.H., Suzuki E., Tang J., Ter Steege H., Theilade I., Van Der Heijden G.M.F., Van Do T., Van Valkenburg J.L.C.H., Vilanova-Torre E., Vincent A. Vos, Wich S.A., Wöll H., Yoneda T., Zang R., Zhang M.G., Zweifel N.Fuentes:scopusPan-tropical pbkp_rediction of forest structure from the largest trees
ArticleAbstract: Aim: Large tropical trees form the interface between ground and airborne observations, offering a unPalabras claves:carbon, Climate Change, forest structure, large trees, pan-tropical, Redd+, tropical forest ecologyAutores:Alvarez-Loyayza P., Andrade A.S., Angbonga-Basia A., Araujo-Murakami A., Arroyo L.P., Ayyappan N., Bánki O.S., Barbier N., Barroso J.G., Bastin J.F., Beeckman H., Bitariho R., Boeckx P., Boehning-Gaese K., Bogaert J., Brandão H., Brearley F.Q., Breuer Ndoundou Hockemba M., Brienen R.J.W., Camargo J.L.C., Campos-Arceiz A., Cassart B., Chave J., Chazdon R.L., Chuyong G.B., Clark C.J., Clark D.B., Condit R.S., David A. Neill, Davidar P., de Azevedo C.P., De Cannière C., de Haulleville T., Descroix L., Do Amaral I.L., Doucet J.L., Dourdain A.K., Droissart V., Duncan T., Farwig N., Fayolle A., Feldpausch T.R., Ferraz A., Fletcher C.D., Gajapersad K., Gillet J.F., Gonmadje C., Grogan J., Harris D.J., Hérault B., Herzog S.K., Homeier J., Honorio E.N., Hubau W., Hubbell S.P., Hufkens K., Hugo Romero-Saltos, Hurtado J., Kamdem N.G., Kearsley E., Kellner J.R., Kenfack D., Kessler M., Labrière N., Laumonier Y., Laurance S.G.W., Laurance W.F., Lewis S.L., Libalah M.B., Ligot G., Lloyd J.J., Lovejoy T.E., Malhi Y., Marimon B.S., Marimon-Junior B.H., Marshall A.R., Martin E.H., Matius P., Mendoza Bautista C., Meyer V., Monteagudo-Mendoza A., Mtui A., Parada Gutierrez G.A., Pardo G., Parren M.P.E., Parthasarathy N., Phillips O.L., Pitman N.C.A., Plissier R., Ploton P., Ponette Q., Poulsen J.R., Ramesh B.R., Razafimahaimodison J.C., Réjou-Méchain M., Renato Valencia, Rolim S.G., Rutishauser E., Saatchi S.S., Santiago Espinosa, Silva-Espejo J.E., Slik J.W.F., Vincent A. VosFuentes:scopusIndividual-based modeling of amazon forests suggests that climate controls productivity while traits control demography
ArticleAbstract: Climate, species composition, and soils are thought to control carbon cycling and forest structure iPalabras claves:AMAZON, Carbon cycle, Climate, forest dynamics, Functional traits, leaf economics spectrum, Tropical Forest, Vegetation modelAutores:Alvarez-Dávila E., Anthony Di Fiore, Arroyo L.P., Asner G.P., Baker T.R., Barroso J.G., Brienen R.J.W., Brown I.F., Christoffersen B.O., Cornejo Valverde F., da Silva W.C., David A. Neill, Dávila N., del Aguila-Pasquel J., Doughty C.E., Erwin T.L., Fauset S., Feldpausch T.R., Fyllas N.M., Galbraith D.R., Girardin C.A.J., Gloor M., Goodman R.C., Gutierrez A.P., Honorio E.N., Huamantupa-Chuquimaco I., Malhi Y., Monteagudo A., Pallqui Camacho N.C., Patrick Bentley L., Peacock J., Phillips O.L., Pitman N.C.A., Prieto A., Quesada C.A., Restrepo Z., Rudas A., Salinas Revilla N., Shenkin A., Silva-Espejo J.E., Silveira M., Stropp J., Terborgh J.W., Van Der Heijden G.M.F., Vargas P.N., Vasquez R.V., Vieira S.A.Fuentes:scopusLong-term decline of the Amazon carbon sink
ArticleAbstract: Atmospheric carbon dioxide records indicate that the land surface has acted as a strong global carboPalabras claves:Autores:Alexiaides M., Alvarez-Dávila E., Alvarez-Loayza P., Andrade A.S., Anthony Di Fiore, Aragao L.E.O.C., Araujo-Murakami A., Arets E.J.M.M., Arroyo L.P., Aymard C. G.A., Baker T.R., Bánki O.S., Baraloto C., Barroso J.G., Bonal D., Boot R.G.A., Brienen R.J.W., Camargo J.L.C., Chao K.J., Chave J., Comiskey J.A., Cornejo Valverde F., Da Costa L., David A. Neill, de Oliveira E.A., Erwin T.L., Fauset S., Feldpausch T.R., Forsthofer M., Galbraith D.R., Gloor M., Grahame E.S., Groot N., Hérault B., Higuchi N., Honorio E.N., Keeling H.C., Killeen T.J., Laurance S.G.W., Laurance W.F., Lewis S.L., Licona J.C., Lloyd J.J., López-González G., Magnussen W.E., Malhi Y., Marimon B.S., Marimon-Junior B.H., Mendoza C., Monteagudo-Mendoza A., Moscoso V.C., Nogueira E.M., Núñez P.V., Pallqui Camacho N.C., Parada A., Pardo-Molina G., Peacock J., Penã-Claros M., Phillips O.L., Pickavance G.C., Pitman N.C.A., Poorter L., Prieto A., Quesada C.A., Ramírez F., Ramirez-Angulo H., Restrepo Z., Roopsind A., Rudas A., Salomao R.P., Schwarz M., Silva N., Silva-Espejo J.E., Silveira M., Stropp J., Talbot J., Ter Steege H., Teran-Aguilar J., Terborgh J.W., Thomas-Caesar R., Toledo M., Torello-Raventos M., Umetsu R.K., Van Der Heijden G.M.F., van der Hout P., Vasquez-Martínez R., Vieira I.C.G., Vieira S.A., Vilanova-Torre E., Vincent A. Vos, Volkmer De Castilho C., Zagt R.J.Fuentes:scopus