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Evolutionary Diversity Peaks at Mid-Elevations Along an Amazon-to-Andes Elevation Gradient
ArticleAbstract: Elevation gradients present enigmatic diversity patterns, with trends often dependent on the dimensiPalabras claves:Diversity gradient, environmental crossroads, lineage age, lineage diversity, TILD, tropical montane forestAutores:Cabrera K.G., Dexter K.G., Farfan-Rios W., Griffiths A.R., Kenneth James Feeley, Meir P., Salinas Revilla N., Segovia R.A., Silman M.R.Fuentes:scopusBranch xylem density variations across the Amazon Basin
ArticleAbstract: Xylem density is a physical property of wood that varies between individuals, species and environmenPalabras claves:Autores:Aguilar A., Alvarez-Dávila E., Arroyo L.P., Baker T.R., Baraloto C., Bonal D., Chave J., Czimczik C.I., da Costa L., E. M. Jiménez, Gallo J., Herrera R., Higuchi N., Horna V., Hoyos E.J., Killeen T.J., Leal E., Lloyd J.J., Luizao F.J., Malhi Y., María Cristina Peñuela Mora, Meir P., Mercado L.M., Monteagudo A., Neil D., Paiva R., Palomino W., Panfil S.N., Patiño S., Peacock J., Pena-Cruz A., Phillips O.L., Pitman N.C.A., Priante Filho N., Prieto A., Quesada C.A., Rudas A., Salomao R.P., Santos A.J.B., Sarmiento C., Schmerler J., Schwarz M., Silva N., Silveira M., Soares DeAlmeida S., Sota A., Torres-Lezama A., Turriago J.D., Vargas P.N., Vasquez-Martínez R., Vieira I.C.G., Villanueva B., Vitzthum P.Fuentes:scopusAn international network to monitor the structure, composition and dynamics of Amazonian forests (RAINFOR)
ArticleAbstract: The Amazon basin is likely to be increasingly affected by environmental changes: higher temperaturesPalabras claves:AMAZON, basal area, carbon, Climate, Long-term monitoring, Permanent plot, soil, Tropical ForestAutores:Arroyo L.P., Baker T.R., David A. Neill, de Almeida S.S., Frederiksen T., Grace J., Higuchi N., Killeen T.J., Laurance W.F., Leaño C., Lewis S.L., Lloyd J.J., Malhi Y., Meir P., Monteagudo A., Panfil S.N., Patino S., Phillips O.L., Pitman N.C.A., Quesada C.A., Renato Valencia, Rudas-Ll. A., Saleska S.R., Salomao R.P., Silva N., Silveira M., Sombroek W.G., Vargas P.N., Vasquez-Martínez R., Vieira I.C.G., Vinceti B., Wright J.Fuentes:scopusAuthor Correction: Tree mode of death and mortality risk factors across Amazon forests (Nature Communications, (2020), 11, 1, (5515), 10.1038/s41467-020-18996-3)
OtherAbstract: The original version of this Article contained an error in Table 2, where the number of individualsPalabras claves:Autores:Almeida E.C., 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., Baisie M., Baker T.R., Baraloto C., Barroso J.G., Bayona L.R., Blanc L., Bonal D., Bongers F., Boot R.G.A., Brienen R.J.W., Brown I.F., Burban B., Camacho N.P., Camargo J.L.C., Chao K.J., Chave J., Comiskey J.A., Correa Z.R., da Costa A.L., da Silva W.C., David A. Neill, Dávila E.Á., Dávila N., de Almeida Reis S.M., de Camargo P.B., de Oliveira E.A., del Aguila-Pasquel J., Dourdain A.K., Erwin T.L., Espejo J.S., Fauset S., Feldpausch T.R., Gloor M., Herrera R., Higuchi N., Honorio E.N., Houwing-Duistermaat J., Huamantupa-Chuquimaco I., Jimenez-Rojas E., Killeen T.J., Ladvocat K.L.L.M., Laurance S.G.W., Laurance W.F., Levesley A., Lewis S.L., Liu H., Llampazo G.F., Lloyd J.J., Loayza P.A., López-González G., Lovejoy T.E., Malhi Y., María Cristina Peñuela Mora, Marimon B.S., Marimon-Junior B.H., Meir P., Mendoza C., Monteagudo-Mendoza A., Morandi P.S., Moscoso V.C., Muelbert A.E., Nogueira Lima A.J., Pardo G., Peacock J., Penã-Claros M., Phillips O.L., Pickavance G.C., Pipoly J.J., Pitman N.C.A., Poorter L., Prieto A., Pugh T.A.M., Quesada C.A., Ramirez-Angulo H., Rejou-Machain M., Rudas A., Salomao R.P., Serrano J., Silva N., Silveira M., Singh J., Stahl C., Stropp J., Sullivan M.J.P., Swamy V., Talbot J., Ter Steege H., Terborgh J.W., Torre E.V., Valverde F.C., Vargas P.N., Vieira I.C.G., Vincent A. VosFuentes: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:scopusDrought sensitivity of the amazon rainforest
ArticleAbstract: Amazon forests are a key but poorly understood component of the global carbon cycle. If, as anticipaPalabras claves:Autores:Andelman S.J., Andrade A.S., Anthony Di Fiore, Aragao L.E.O.C., Arroyo L.P., Aymard G.A.C., Baker T.R., Bánki O.S., Blanc L., Bonal D., Brando P., Chao K.J., Chave J., Cruz A.P., Czimczik C.I., David A. Neill, Dávila E.Á., Dávila N., de Almeida S.S., De Oliveira A.C.A., Do Amaral I.L., E. M. Jiménez, Erwin T.L., Feldpausch T.R., Fisher J.B., Freitas M.A., Gloor M., Higuchi N., Honorio E.N., Keeling H.C., Killeen T.J., Laurance W.F., Lewis S.L., Lloyd G., Lloyd J.J., López-González G., Malhi Y., María Cristina Peñuela Mora, Meir P., Mendoza C., Monteagudo A., Morel A., Nepstad D.C., Patiño S., Peacock J., Phillips O.L., Pitman N.C.A., Prieto A., Quesada C.A., Ramírez F., Ramirez-Angulo H., Rudas A., Salamão R., Schwarz M., Silva J.N.N., Silva N., Silveira M., Stropp J., Ter Steege H., Terborgh J.W., Thomas A.S., Torres-Lezama A., Van Der Heijden G.M.F., Vargas P.N., Vasquez R.V., Zelazowski P.Fuentes:scopusDrought-mortality relationships for tropical forests
ArticleAbstract: The rich ecology of tropical forests is intimately tied to their moisture status. Multi-site synthesPalabras claves:AMAZON, Borneo, drought, Lags, Mortality , RAINFOR, trees, tropicsAutores:Andelman S.J., Andrade A.S., Aragao L.E.O.C., Arroyo L.P., Aymard G.A.C., Baker T.R., Blanc L., Bonal D., Chao K.J., Cruz A.P., da Costa L., Dávila E.Á., Dávila N., de Almeida S.S., De Oliveira A.C.A., Do Amaral I.L., E. M. Jiménez, Feldpausch T.R., Fisher J.B., Freitas M.A., Fyllas N.M., Galbraith D.R., Gloor M., Higuchi N., Honorio E.N., Keeling H.C., Killeen T.J., Lewis S.L., Lloyd J.J., López-González G., Lovett J.C., Malhi Y., Meir P., Mendoza C., Monteagudo A., Morel A., Patiño S., Peh K.S.H., Phillips O.L., Prieto A., Quesada C.A., Ramírez F., Ramirez-Angulo H., Rudas A., Salamão R., Schwarz M., Silva J.N.N., Silveira M., Slik J.W.F., Sonke B., Stropp J., Taplin J.R.D., Thomas A.S., Van Der Heijden G.M.F., Vargas P.N., Vasquez R.V., Vilanova-Torre E.Fuentes:scopusGlobal transpiration data from sap flow measurements: The SAPFLUXNET database
OtherAbstract: Plant transpiration links physiological responses of vegetation to water supply and demand with hydrPalabras claves:Autores:Adams M.A., Adorján B., Aguadé D., Aidar M.P.M., Allen S., Altaf Arain M., Alvarado-Barrientos M.S., Anderson-Teixeira K.J., Aparecido L.M., Aranda I., Asbjornsen H., Baxter R., Beamesderfer E., Berry Z.C., Berveiller D., Blakely B., Boggs J., Bohrer G., Bolstad P.V., Bonal D., Bracho R., Brito P., Brodeur J., Casanoves F., César Cisneros Vaca, Chave J., Chen H., Clark K., Cremonese E., Dang H., David J.S., David T.S., Delpierre N., Desai A.R., Do F.C., Dohnal M., Domec J.C., Dzikiti S., Edgar C., Eichstaedt R., El-Madany T.S., Elbers J., Eller C.B., Euskirchen E.S., Ewers B.E., Flo V., Fonti P., Forner A., Forrester D.I., Freitas H.C., Galvagno M., Garcia-Tejera O., Ghimire C.P., Gimeno T.E., Grace J., Granda V., Granier A., Griebel A., Guangyu Y., Gush M.B., Hanson P.J., Hasselquist N.J., Heinrich I., Hernandez-Santana V., Herrmann V., Hölttä T., Holwerda F., Irvine J., Jarvis P.G., Jochheim H., Joly C.A., Kaplick J., Kim H.S., Klemedtsson L., Kropp H., Lagergren F., Lane P., Lang P., Lapenas A., Lechuga V., Lee M., Leuschner C., Limousin J.M., Linares J.C., Linderson M.L., Lindroth A., Llorens P., López-Bernal Á., Loranty M.M., Lüttschwager D., MacInnis-Ng C., Maréchaux I., Martin T.A., Matheny A., McDowell N.G., Mcmahon S.M., Meir P., Mészáros I., Na Ayutthaya S.I., Poyatos R.Fuentes:googlescopusThe regional variation of aboveground live biomass in old-growth Amazonian forests
ArticleAbstract: The biomass of tropical forests plays an important role in the global carbon cycle, both as a dynamiPalabras claves:amazonía, BIOMASS, carbon, soil fertility, Tropical forests, Wood densityAutores:Arroyo L.P., Baker T.R., Chave J., Cochrane T., David A. Neill, de Almeida S.S., Higuchi N., Killeen T.J., Laurance S.G.W., Laurance W.F., Lewis S.L., Lezama A.T., Malhi Y., Martinez R.V., Meir P., Monteagudo A., Phillips O.L., Pitman N.C.A., Quesada C.A., Salomao R.P., Silva J.N.N., Terborgh J.W., Vargas P.N., Vinceti B., Wood D., Wright J.Fuentes:scopusSeasonality of above-ground net primary productivity along an Andean altitudinal transect in Peru
ArticleAbstract: Solar irradiance and precipitation are the most likely drivers of the seasonal variation of net primPalabras claves:Carbon dynamics, Ecophysiology, Litterfall, Net primary productivity, seasonality, soil water content, solar irradiance, TEMPERATURE, tropical montane cloud forestAutores:Aragao L.E.O.C., Doughty C.E., Farfan-Rios W., García-Cabrera K., Girardin C.A.J., Huaraca Huasco W., Kenneth James Feeley, Malhi Y., Mamani M., Meir P., Metcalfe D.J., Rapp J.M., Salinas Revilla N., Silman M.R., Silva-Espejo J.E.Fuentes:scopus