دورية أكاديمية

Unraveling Amazon tree community assembly using Maximum Information Entropy: a quantitative analysis of tropical forest ecology.

التفاصيل البيبلوغرافية
العنوان: Unraveling Amazon tree community assembly using Maximum Information Entropy: a quantitative analysis of tropical forest ecology.
المؤلفون: Petronelli, Pascal, Lopes, Maria Aparecida, Umaña, Maria Natalia, Alexiades, Miguel N., Rocha, Maira, Dallmeier, Francisco, Arroyo, Luzmila, Barlow, Jos, Malhi, Yadvinder, Garcia-Cabrera, Karina, Duque, Alvaro, Bánki, Olaf S., Silva, Natalino, Correa, Diego F., Zent, Stanford, Giraldo, Ligia Estela Urrego, Mostacedo, Bonifacio, Cintra, Bruno Barçante Ladvocat, van der Heijden, Geertje, Laurance, Susan G. W., Aymard, Gerardo A. C., Piedade, Maria Teresa Fernandez, Albuquerque, Bianca Weiss, Quaresma, Adriano, Ramos, José Ferreira, Guillaumet, Jean-Louis, Villarroel, Daniel, Engel, Julien, Reis, Neidiane Farias Costa, Schöngart, Jochen, Laurance, William F., Hilário, Renato Richard, Torre, Emilio Vilanova, Noronha, Janaína Costa, Linares-Palomino, Reynaldo, Ferreira, Leandro Valle, Revilla, Juan David Cardenas, Carvalho, Fernanda Antunes, Feitosa, Yuri Oliveira, Phillips, Juan Fernando, Emilio, Thaise, Guevara, Juan Ernesto, Kraft, Nathan, Baider, Cláudia, Pinto, Linder Felipe Mozombite, Magnusson, William E., Vela, César I. A., Young, Kenneth R., Vos, Vincent Antoine, do Amaral, Dário Dantas, Barbosa, Flávia Rodrigues, Gomes, Vitor H. F., Torres-Lezama, Armando, de Almeida Matos, Francisca Dionízia, Dexter, Kyle G., Barbosa, Luciane Ferreira, Souza, Priscila, Costa, Janaina Barbosa Pedrosa, Paredes, Marcos Ríos, Flores, Bernardo Monteiro, Gonzales, George Pepe Gallardo, López, Dairon Cárdenas, Zegarra, Boris Eduardo Villa, Boenisch, Gerhard, Manzatto, Angelo Gilberto, Di Fiore, Anthony, de Leão Novo, Evlyn Márcia Moraes, Feeley, Kenneth J., Hoffman, Bruce, Salomão, Rafael P., Martins, Maria Pires, Melgaço, Karina, Dávila, Nállarett, Chave, Jerome, Camargo, José Luís, Fonty, Émile, Terborgh, John, Comiskey, James A., García-Villacorta, Roosevelt, Silveira, Marcos, Levesley, Aurora, Stevenson, Pablo R., Guedes, Marcelino Carneiro, Mendoza, Abel Monteagudo, Duivenvoorden, Joost F., Reategui, Manuel Augusto Ahuite, de Souza Coelho, Luiz, Mendoza, Casimiro, Baker, Tim R., de Toledo, José Julio, Sierra, Rodrigo, Daly, Doug, Tello, J. Sebastián, Pansonato, Marcelo Petratti, Montero, Juan Carlos, Hawes, Joseph E., Arevalo, Freddy Ramirez, Assis, Rafael L., Irume, Mariana Victória, Schietti, Juliana, Pena, José Luis Marcelo, Cuenca, Walter Palacios, Huamantupa-Chuquimaco, Isau, Amaral, Iêda Leão, Nascimento, Marcelo Trindade, Balslev, Henrik, Damasco, Gabriel, Peres, Carlos A., de Andrade Miranda, Ires Paula, Andrade, Ana, Ramirez-Angulo, Hirma, Oliveira, Alexandre A., Rudas, Agustín, von Hildebrand, Patricio, de Queiroz, Helder Lima, Casas, Luisa Fernanda, Almeida, Everton José, Ferreira, Cid, Cano, Angela, Householder, John Ethan, Draper, Freddie, Vasquez, Rodolfo, Mesones, Italo, de Medeiros, Marcelo Brilhante, Cerón, Carlos, Tirado, Milton, de Sousa Farias, Emanuelle, Phillips, Oliver L., Poorter, Lourens, Luize, Bruno Garcia, Hernandez, Lionel, Casula, Katia Regina, Brienen, Roel, Coronado, Euridice N. Honorio, Doza, Hilda Paulette Dávila, Costa, Flávia R. C., Baraloto, Chris, Gonzales, Therany, Jimenez, Eliana M., Vieira, Ima Célia Guimarães, Kattge, Jens, Lopes, Aline, de Jesus Veiga Carim, Marcelo, Arboleda, Nicolás Castaño, Mora, Maria Cristina Peñuela, Neill, David, Sabatier, Daniel, Feldpausch, Ted R., Licona, Juan Carlos, Lloyd, Jon, de Jesus Rodrigues, Domingos, Cárdenas, Sasha, de Souza, Fernanda Coelho, Pansini, Susamar, Junqueira, André Braga, dos Santos, Márcia Cléia Vilela, Pickavance, Georgia, Pitman, Nigel C. A., de Matos Bonates, Luiz Carlos, Berenguer, Erika, Mogollón, Hugo F., Pos, Edwin, Milliken, William, Ruschel, Ademir R., de Sá Carpanedo, Rainiellen, van Andel, Tinde R., Fuentes, Alfredo, Cavalheiro, Larissa, Simon, Marcelo Fragomeni, Zent, Egleé L., Killeen, Timothy J., Silman, Miles R., Vriesendorp, Corine, Alonso, Alfonso, Vicentini, Alberto, Henkel, Terry W., de Andrade Lima Filho, Diogenes, Zartman, Charles Eugene, Ferreira, Joice, Sandoval, Elvis H. Valderrama, Thomas-Caesar, Raquel, Silva, Thiago Sanna Freire, Levis, Carolina, Magalhães, José Leonardo Lima, Demarchi, Layon O., Venticinque, Eduardo Martins, Nascimento, Henrique Eduardo Mendonça, Araujo-Murakami, Alejandro, Prieto, Adriana, Rivas-Torres, Gonzalo, Farfan-Rios, William, de Aguiar, Daniel Praia Portela, Gómez, Ricardo Zárate, Maas, Paul, Pauletto, Daniela, Holmgren, Milena, Vargas, Percy Núñez, Valverde, Fernando Cornejo, Wang, Ophelia, Marimon, Beatriz S., Sampaio, Adeilza Felipe, da Silva Guimarães, José Renan, Barbosa, Edelcilio Marques, Scudeller, Veridiana Vizoni, Stropp, Juliana, Gamarra, Luis Valenzuela, ter Steege, Hans, Zagt, Roderick, Castilho, Carolina V., Gribel, Rogerio, Castellanos, Hernán, Molino, Jean-François, Wittmann, Florian, Marimon-Junior, Ben Hur, Fine, Paul V. A., Pennington, Toby
المساهمون: {"funder_name":"PVE - MEC/MCTI/CAPES/CNPq/FAPs","funder_position":"0","funder_award":"Grant 407232/2013-3"}
بيانات النشر: Springer Science and Business Media LLC
سنة النشر: 2023
مصطلحات موضوعية: Trees, Tree inventories, Plant communities, Ecological dynamics, Tropical forest ecology, Maximum Information Entropy, Quantitative analysis, Relative abundancies, Amazon
الوصف: In a time of rapid global change, the question of what determines patterns in species abundance distribution remains a priority for understanding the complex dynamics of ecosystems. The constrained maximization of information entropy provides a framework for the understanding of such complex systems dynamics by a quantitative analysis of important constraints via predictions using least biased probability distributions. We apply it to over two thousand hectares of Amazonian tree inventories across seven forest types and thirteen functional traits, representing major global axes of plant strategies. Results show that constraints formed by regional relative abundances of genera explain eight times more of local relative abundances than constraints based on directional selection for specific functional traits, although the latter does show clear signals of environmental dependency. These results provide a quantitative insight by inference from large-scale data using cross-disciplinary methods, furthering our understanding of ecological dynamics.
نوع الوثيقة: article in journal/newspaper
اللغة: English
العلاقة: Scientific Reports; https://doi.org/10.1038/s41598-023-28132-yTest
DOI: 10.1038/s41598-023-28132-y
الإتاحة: https://doi.org/10.1038/s41598-023-28132-yTest
حقوق: https://creativecommons.org/licenses/by/4.0Test/
رقم الانضمام: edsbas.32C2E28B
قاعدة البيانات: BASE