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Global Ecology and Biogeography · 2024 · Vol. 33 · Issue 10 · Wiley
Iris Hordijk; Lalasia Bialic‐Murphy; Thomas Lauber; Devin Routh; Lourens Poorter; Malin C. Rivers; Hans ter Steege; Jingjing Liang; Peter B. Reich; Sergio de‐Miguel; Gert‐Jan Nabuurs; Javier G. P. Gamarra; Han Y. H. Chen; Mo Zhou; Susan K. Wiser; Hans Pretzsch; Alain Paquette; Nicolas Picard; Bruno Hérault; Jean‐Francois Bastin; Giorgio Alberti; Meinrad Abegg; Yves C. Adou Yao; Angelica M. Almeyda Zambrano; Braulio V. Alvarado; Esteban Alvarez‐Davila; Patricia Alvarez‐Loayza; Luciana F. Alves; Christian Ammer; Clara Antón‐Fernández; Alejandro Araujo‐Murakami; Luzmila Arroyo; Valerio Avitabile; Gerardo A. Aymard Corredor; Timothy Baker; Olaf Banki; Jorcely Barroso; Meredith L. Bastian; Luca Birigazzi; Philippe Birnbaum; Robert Bitariho; Pascal Boeckx; Frans Bongers; Olivier Bouriaud; Pedro H. S. Brancalion; Susanne Brandl; Roel Brienen; Eben N. Broadbent; Helge Bruelheide; Filippo Bussotti; Roberto Cazzolla Gatti; Ricardo G. Cesar; Goran Cesljar; Robin Chazdon; Chelsea Chisholm; Emil Cienciala; Connie J. Clark; David B. Clar; Gabriel Colletta; David Coomes; Fernando Cornejo Valverde; Jose J. Corral‐Rivas; Philip Crim; Jonathan Cumming; Selvadurai Dayanandan; André L. de Gasper; Mathieu Decuyper; Géraldine Derroire; Ben DeVries; Ilija Djordjevic; Amaral Iêda; Aurélie Dourdain; Jiri Dolezal; Nestor Laurier Engone Obiang; Brian Enquist; Teresa Eyre; Adandé Belarmain Fandohan; Tom M. Fayle; Leandro V. Ferreira; Ted R. Feldpausch; Leena Finér; Markus Fischer; Christine Fletcher; Lorenzo Frizzera; Damiano Gianelle; Henry B. Glick; David Harris; Andrew Hector; Andreas Hemp; Geerten Hengeveld; John Herbohn; Annika Hillers; Eurídice N. Honorio Coronado; Cang Hui; Hyunkook Cho; Thomas Ibanez; Ilbin Jung; Nobuo Imai; Andrzej M. Jagodzinski; Bogdan Jaroszewicz; Vivian Johannsen; Carlos A. Joly; Tommaso Jucker; Viktor Karminov; Kuswata Kartawinata; Elizabeth Kearsley; David Kenfack; Deborah Kennard; Sebastian Kepfer‐Rojas; Gunnar Keppel; Mohammed Latif Khan; Timothy Killeen; Hyun Seok Kim; Kanehiro Kitayama; Michael Köhl; Henn Korjus; Florian Kraxner; Diana Laarmann; Mait Lang; Simon Lewis; Huicui Lu; Natalia Lukina; Brian Maitner; Yadvinder Malhi; Eric Marcon; Beatriz Schwantes Marimon; Ben Hur Marimon‐Junior; Andrew Robert Marshall; Emanuel Martin; Olga Martynenko; Jorge A. Meave; Omar Melo‐Cruz; Casimiro Mendoza; Cory Merow; Stanislaw Miscicki; Abel Monteagudo Mendoza; Vanessa Moreno; Sharif A. Mukul; Philip Mundhenk; Maria G. Nava‐Miranda; David Neill; Victor Neldner; Radovan Nevenic; Michael Ngugi; Pascal A. Niklaus; Jacek Oleksyn; Petr Ontikov; Edgar Ortiz‐Malavasi; Yude Pan; Alexander Parada‐Gutierrez; Elena Parfenova; Minjee Park; Marc Parren; Narayanaswamy Parthasarathy; Pablo L. Peri; Sebastian Pfautsch; Oliver L. Phillips; Maria Teresa Piedade; Daniel Piotto; Nigel C. A. Pitman; Irina Polo; Axel Dalberg Poulsen; John R. Poulsen; Freddy Ramirez Arevalo; Zorayda Restrepo‐Correa; Mirco Rodeghiero; Samir Rolim; Anand Roopsind; Francesco Rovero; Ervan Rutishauser; Purabi Saikia; Christian Salas‐Eljatib; Peter Schall; Dmitry Schepaschenko; Michael Scherer‐Lorenzen; Bernhard Schmid; Jochen Schöngart; Eric B. Searle; Vladimír Seben; Josep M. Serra‐Diaz; Douglas Sheil; Anatoly Shvidenko; Javier Silva‐Espejo; Marcos Silveira; James Singh; Plinio Sist; Ferry Slik; Bonaventure Sonké; Alexandre F. Souza; Krzysztof Stereńczak; Jens‐Christian Svenning; Miroslav Svoboda; Ben Swanepoel; Natalia Targhetta; Nadja Tchebakova; Raquel Thomas; Elena Tikhonova; Peter Umunay; Vladimir Usoltsev; Renato Valencia; Fernando Valladares; Fons van der Plas; Tran Van Do; Michael E. Van Nuland; Rodolfo Vasquez Martinez; Hans Verbeeck; Helder Viana; Alexander C. Vibrans; Simone Vieira; Klaus von Gadow; Hua‐Feng Wang; James Watson; Gijsbert D. A. Werner; Florian Wittmann; Verginia Wortel; Roderick Zagt; Tomasz Zawila‐Niedzwiecki; Chunyu Zhang; Xiuhai Zhao; Zhi‐Xin Zhu; Irie Casimir Zo‐Bi; Daniel S. Maynard; Thomas W. Crowther
Aim Ecological and anthropogenic factors shift the abundances of dominant and rare tree species within local forest communities, thus affecting species composition and ecosystem functioning. To inform forest and conservation management it is important to understand the drivers of dominance and rarity in local tree communities. We answer the following research questions: (1) What are the patterns of dominance and rarity in tree...
Global Ecology and Biogeography · 2024 · Vol. 33 · Issue 2 · Wiley
Elise Bouchard; Eric B. Searle; Pierre Drapeau; Jingjing Liang; Javier G. P. Gamarra; Meinrad Abegg; Giorgio Alberti; Angelica Almeyda Zambrano; Esteban Alvarez‐Davila; Luciana F. Alves; Valerio Avitabile; Gerardo Aymard; Jean‐François Bastin; Philippe Birnbaum; Frans Bongers; Olivier Bouriaud; Pedro Brancalion; Eben Broadbent; Filippo Bussotti; Roberto Cazzolla Gatti; Goran Češljar; Chelsea Chisholm; Emil Cienciala; Connie J. Clark; José Javier Corral‐Rivas; Thomas W. Crowther; Selvadurai Dayanandan; Mathieu Decuyper; André L. de Gasper; Sergio de‐Miguel; Géraldine Derroire; Ben DeVries; Ilija Djordjević; Tran Van Do; Jiri Dolezal; Tom M. Fayle; Jonas Fridman; Lorenzo Frizzera; Damiano Gianelle; Andreas Hemp; Bruno Hérault; Martin Herold; Nobuo Imai; Andrzej M. Jagodziński; Bogdan Jaroszewicz; Tommaso Jucker; Sebastian Kepfer‐Rojas; Gunnar Keppel; Mohammed Latif Khan; Hyun Seok Kim; Henn Korjus; Florian Kraxner; Diana Laarmann; Simon Lewis; Huicui Lu; Brian S. Maitner; Eric Marcon; Andrew R. Marshall; Sharif A. Mukul; Gert‐Jan Nabuurs; María Guadalupe Nava‐Miranda; Elena I. Parfenova; Minjee Park; Pablo L. Peri; Sebastian Pfautsch; Oliver L. Phillips; Maria Teresa F. Piedade; Daniel Piotto; John R. Poulsen; Axel Dalberg Poulsen; Hans Pretzsch; Peter B. Reich; Mirco Rodeghiero; Samir Rolim; Francesco Rovero; Purabi Saikia; Christian Salas‐Eljatib; Peter Schall; Dmitry Schepaschenko; Jochen Schöngart; Vladimír Šebeň; Plinio Sist; Ferry Slik; Alexandre F. Souza; Krzysztof Stereńczak; Miroslav Svoboda; Nadezhda M. Tchebakova; Hans ter Steege; Elena V. Tikhonova; Vladimir A. Usoltsev; Fernando Valladares; Helder Viana; Alexander C. Vibrans; Hua‐Feng Wang; Bertil Westerlund; Susan K. Wiser; Florian Wittmann; Verginia Wortel; Tomasz Zawiła‐Niedźwiecki; Mo Zhou; Zhi‐Xin Zhu; Irié C. Zo‐Bi; Alain Paquette
Aim To determine the relationships between the functional trait composition of forest communities and environmental gradients across scales and biomes and the role of species relative abundances in these relationships. Location Global. Time period Recent. Major taxa studied Trees. Methods We integrated species abundance records from worldwide forest inventories and associated functional traits (wood density, specific leaf area...
Global Ecology and Biogeography · 2022 · Vol. 31 · Issue 8 · Wiley
Thaiane R. Sousa; Juliana Schietti; Igor O. Ribeiro; Thaise Emílio; Rafael Herrera Fernández; Hans ter Steege; Carolina V. Castilho; Adriane Esquivel‐Muelbert; Timothy Baker; Aline Pontes‐Lopes; Camila V. J. Silva; Juliana M. Silveira; Géraldine Derroire; Wendeson Castro; Abel Monteagudo Mendoza; Ademir Ruschel; Adriana Prieto; Adriano José Nogueira Lima; Agustín Rudas; Alejandro Araujo‐Murakami; Alexander Parada Gutierrez; Ana Andrade; Anand Roopsind; Angelo Gilberto Manzatto; Anthony Di Fiore; Armando Torres‐Lezama; Aurélie Dourdain; Beatriz Marimon; Ben Hur Marimon; Benoit Burban; Bert van Ulft; Bruno Herault; Carlos Quesada; Casimiro Mendoza; Clement Stahl; Damien Bonal; David Galbraith; David Neill; Edmar A. de Oliveira; Eduardo Hase; Eliana Jimenez‐Rojas; Emilio Vilanova; Eric Arets; Erika Berenguer; Esteban Alvarez‐Davila; Eurídice N. Honorio Coronado; Everton Almeida; Fernanda Coelho; Fernando Cornejo Valverde; Fernando Elias; Foster Brown; Frans Bongers; Freddy Ramirez Arevalo; Gabriela Lopez‐Gonzalez; Geertje van der Heijden; Gerardo A. Aymard C.; Gerardo Flores Llampazo; Guido Pardo; Hirma Ramírez‐Angulo; Iêda Leão do Amaral; Ima Célia Guimarães Vieira; Isau Huamantupa‐Chuquimaco; James A. Comiskey; James Singh; Javier Silva Espejo; Jhon del Aguila‐Pasquel; Joeri Alexander Zwerts; Joey Talbot; John Terborgh; Joice Ferreira; Jorcely G. Barroso; Jos Barlow; José Luís Camargo; Juliana Stropp; Julie Peacock; Julio Serrano; Karina Melgaço; Leandro V. Ferreira; Lilian Blanc; Lourens Poorter; Luis Valenzuela Gamarra; Luiz Aragão; Luzmila Arroyo; Marcos Silveira; Maria Cristina Peñuela‐Mora; Mario Percy Núñez Vargas; Marisol Toledo; Mat Disney; Maxime Réjou‐Méchain; Michel Baisie; Michelle Kalamandeen; Nadir Pallqui Camacho; Nállarett Dávila Cardozo; Natalino Silva; Nigel Pitman; Niro Higuchi; Olaf Banki; Patricia Alvarez Loayza; Paulo M. L. A. Graça; Paulo S. Morandi; Peter J. van der Meer; Peter van der Hout; Pétrus Naisso; Plínio Barbosa Camargo; Rafael Salomão; Raquel Thomas; Rene Boot; Ricardo Keichi Umetsu; Richarlly da Costa Silva; Robyn Burnham; Roderick Zagt; Rodolfo Vasquez Martinez; Roel Brienen; Sabina Cerruto Ribeiro; Simon L. Lewis; Simone Aparecida Vieira; Simone Matias de Almeida Reis; Sophie Fauset; Susan Laurance; Ted Feldpausch; Terry Erwin; Timothy Killeen; Verginia Wortel; Victor Chama Moscoso; Vincent Vos; Walter Huaraca Huasco; William Laurance; Yadvinder Malhi; William E. Magnusson; Oliver L. Phillips; Flávia R. C. Costa
Aim Water availability is the major driver of tropical forest structure and dynamics. Most research has focused on the impacts of climatic water availability, whereas remarkably little is known about the influence of water table depth and excess soil water on forest processes. Nevertheless, given that plants take up water from the soil, the impacts of climatic water supply on plants are likely to be modulated by soil water con...
Global Change Biology · 2019 · Vol. 25 · Issue 11 · Wiley
As countries advance in greenhouse gas (GHG) accounting for climate change mitigation, consistent estimates of aboveground net biomass change (∆AGB) are needed. Countries with limited forest monitoring capabilities in the tropics and subtropics rely on IPCC 2006 default ∆AGB rates, which are values per ecological zone, per continent. Similarly, research into forest biomass change at a large scale also makes use of these rates....
Global Change Biology · 2016 · Vol. 22 · Issue 12 · Wiley
Understanding the processes that determine above‐ground biomass ( AGB ) in Amazonian forests is important for predicting the sensitivity of these ecosystems to environmental change and for designing and evaluating dynamic global vegetation models ( DGVM s). AGB is determined by inputs from woody productivity [woody net primary productivity ( NPP )] and the rate at which carbon is lost through tree mortality. Here, we test whet...
Global Ecology and Biogeography · 2014 · Vol. 23 · Issue 8 · Wiley
Aim The accurate mapping of forest carbon stocks is essential for understanding the global carbon cycle, for assessing emissions from deforestation, and for rational land‐use planning. Remote sensing ( RS ) is currently the key tool for this purpose, but RS does not estimate vegetation biomass directly, and thus may miss significant spatial variations in forest structure. We test the stated accuracy of pantropical carbon maps...
Ecology Letters · 2014 · Vol. 17 · Issue 5 · Wiley
The Amazon rain forest sustains the world's highest tree diversity, but it remains unclear why some clades of trees are hyperdiverse, whereas others are not. Using dated phylogenies, estimates of current species richness and trait and demographic data from a large network of forest plots, we show that fast demographic traits – short turnover times – are associated with high diversification rates across 51 clades of canopy tree...
Global Change Biology · 2004 · Vol. 10 · Issue 5 · Wiley
The net primary production of tropical forests and its partitioning between long‐lived carbon pools (wood) and shorter‐lived pools (leaves, fine roots) are of considerable importance in the global carbon cycle. However, these terms have only been studied at a handful of field sites, and with no consistent calculation methodology. Here we calculate above‐ground coarse wood carbon productivity for 104 forest plots in lowland New...