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

Title: Unraveling Amazon tree community assembly using Maximum Information Entropy: a quantitative analysis of tropical forest ecology
Authors: E Pos; L de Souza Coelho; D de Andrade Lima Filho; RP Salomão; IL Amaral; FD de Almeida Matos; CV Castilho; OL Phillips; JE Guevara; M de Jesus Veiga Carim; DC López; WE Magnusson; F Wittmann; MV Irume; MP Martins; D Sabatier; JR da Silva Guimarães; J-F Molino; OS Bánki; MTF Piedade; NCA Pitman; AM Mendoza; JF Ramos; JE Hawes; EJ Almeida; LF Barbosa; L Cavalheiro; MCV Dos Santos; BG Luize; EMM de Leão Novo; PN Vargas; TSF Silva; EM Venticinque; AG Manzatto; NFC Reis; J Terborgh; KR Casula; ENH Coronado; JC Montero; BS Marimon; BH Marimon-Junior; TR Feldpausch; A Duque; C Baraloto; NC Arboleda; J Engel; P Petronelli; CE Zartman; TJ Killeen; R Vasquez; B Mostacedo; RL Assis; J Schöngart; H Castellanos; MB de Medeiros; MF Simon; A Andrade; JL Camargo; LO Demarchi; WF Laurance; SGW Laurance; E de Sousa Farias; MA Lopes; JLL Magalhães; HEM Nascimento; HL de Queiroz; GAC Aymard; R Brienen; JDC Revilla; FRC Costa; A Quaresma; ICG Vieira; BBL Cintra; PR Stevenson; YO Feitosa; JF Duivenvoorden; HF Mogollón; LV Ferreira; JA Comiskey; F Draper; JJ de Toledo; G Damasco; N Dávila; R García-Villacorta; A Lopes; A Vicentini; JC Noronha; FR Barbosa; R de Sá Carpanedo; T Emilio; C Levis; D de Jesus Rodrigues; J Schietti; P Souza; A Alonso; F Dallmeier; VHF Gomes; J Lloyd; D Neill; DPP de Aguiar; A Araujo-Murakami; L Arroyo; FA Carvalho; FC de Souza; DD do Amaral; KJ Feeley; R Gribel; MP Pansonato; J Barlow; E Berenguer; J Ferreira; PVA Fine; MC Guedes; EM Jimenez; JC Licona; MCP Mora; CA Peres; BEV Zegarra; C Cerón; TW Henkel; P Maas; M Silveira; J Stropp; R Thomas-Caesar; TR Baker; D Daly; KG Dexter; JE Householder; I Huamantupa-Chuquimaco; T Pennington; MR Paredes; A Fuentes; JLM Pena; MR Silman; JS Tello; J Chave; FC Valverde; A Di Fiore; RR Hilário; JF Phillips; G Rivas-Torres; TR van Andel; P von Hildebrand; EM Barbosa; LC de Matos Bonates; HPD Doza; É Fonty; RZ Gómez; T Gonzales; GPG Gonzales; J-L Guillaumet; B Hoffman; AB Junqueira; Y Malhi; IP de Andrade Miranda; LFM Pinto; A Prieto; A Rudas; AR Ruschel; N Silva; CIA Vela; VA Vos; EL Zent; S Zent; BW Albuquerque; A Cano; DF Correa; JBP Costa; BM Flores; M Holmgren; MT Nascimento; AA Oliveira; H Ramirez-Angulo; M Rocha; VV Scudeller; R Sierra; M Tirado; MN Umaña; G van der Heijden; EV Torre; C Vriesendorp; O Wang; KR Young; MAA Reategui; C Baider; H Balslev; S Cárdenas; LF Casas; W Farfan-Rios; C Ferreira; R Linares-Palomino; C Mendoza; I Mesones; A Torres-Lezama; LEU Giraldo; D Villarroel; R Zagt; MN Alexiades; K Garcia-Cabrera; L Hernandez; W Milliken; WP Cuenca; S Pansini; D Pauletto; FR Arevalo; AF Sampaio; EHV Sandoval; LV Gamarra; G Boenisch; J Kattge; N Kraft; A Levesley; K Melgaço; G Pickavance; L Poorter; H Ter Steege
Publication Year: 2023
Collection: Erasmus University Rotterdam (EUR): Figshare
Subject Terms: No keyword
Description: 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.
Document Type: article in journal/newspaper
Language: unknown
Relation: 10871/133032; https://figshare.com/articles/journal_contribution/Unraveling_Amazon_tree_community_assembly_using_Maximum_Information_Entropy_a_quantitative_analysis_of_tropical_forest_ecology/29795366
Availability: https://figshare.com/articles/journal_contribution/Unraveling_Amazon_tree_community_assembly_using_Maximum_Information_Entropy_a_quantitative_analysis_of_tropical_forest_ecology/29795366
Rights: CC BY
Accession Number: edsbas.F30D8074
Database: BASE