Literature DB >> 35941205

Co-limitation towards lower latitudes shapes global forest diversity gradients.

Jingjing Liang1, Javier G P Gamarra2, Nicolas Picard3, Mo Zhou4, Bryan Pijanowski5, Douglass F Jacobs5, Peter B Reich6,7,8, Thomas W Crowther9, Gert-Jan Nabuurs10,11, Sergio de-Miguel12,13, Jingyun Fang14, Christopher W Woodall15, Jens-Christian Svenning16,17, Tommaso Jucker18, Jean-Francois Bastin19, Susan K Wiser20, Ferry Slik21, Bruno Hérault22,23, Giorgio Alberti24,25,26, Gunnar Keppel27, Geerten M Hengeveld28,29, Pierre L Ibisch30, Carlos A Silva31, Hans Ter Steege32, Pablo L Peri33, David A Coomes34, Eric B Searle35, Klaus von Gadow36,37,38, Bogdan Jaroszewicz39, Akane O Abbasi4, Meinrad Abegg40, Yves C Adou Yao41, Jesús Aguirre-Gutiérrez42,43, Angelica M Almeyda Zambrano44, Jan Altman45,46, Esteban Alvarez-Dávila47, Juan Gabriel Álvarez-González48, Luciana F Alves49, Bienvenu H K Amani50, Christian A Amani51, Christian Ammer52, Bhely Angoboy Ilondea53, Clara Antón-Fernández54, Valerio Avitabile55, Gerardo A Aymard56, Akomian F Azihou57, Johan A Baard58, Timothy R Baker59, Radomir Balazy60, Meredith L Bastian61,62, Rodrigue Batumike63, Marijn Bauters64,65, Hans Beeckman66, Nithanel Mikael Hendrik Benu67, Robert Bitariho68, Pascal Boeckx65, Jan Bogaert69, Frans Bongers11, Olivier Bouriaud70, Pedro H S Brancalion71, Susanne Brandl72, Francis Q Brearley73, Jaime Briseno-Reyes74, Eben N Broadbent31, Helge Bruelheide75,76, Erwin Bulte77, Ann Christine Catlin78, Roberto Cazzolla Gatti79, Ricardo G César71, Han Y H Chen35, Chelsea Chisholm80, Emil Cienciala81,82, Gabriel D Colletta83, José Javier Corral-Rivas74, Anibal Cuchietti84, Aida Cuni-Sanchez85,86, Javid A Dar87,88,89, Selvadurai Dayanandan90, Thales de Haulleville66,69, Mathieu Decuyper11, Sylvain Delabye91,92, Géraldine Derroire93, Ben DeVries94, John Diisi95, Tran Van Do96, Jiri Dolezal45,97, Aurélie Dourdain93, Graham P Durrheim58, Nestor Laurier Engone Obiang98, Corneille E N Ewango99, Teresa J Eyre100, Tom M Fayle92,101, Lethicia Flavine N Feunang102, Leena Finér103, Markus Fischer104, Jonas Fridman105, Lorenzo Frizzera106, André L de Gasper107, Damiano Gianelle106, Henry B Glick108, Maria Socorro Gonzalez-Elizondo109, Lev Gorenstein78, Richard Habonayo110, Olivier J Hardy111, David J Harris112, Andrew Hector113, Andreas Hemp114, Martin Herold115, Annika Hillers116,117, Wannes Hubau66,118, Thomas Ibanez119, Nobuo Imai120, Gerard Imani121, Andrzej M Jagodzinski122,123, Stepan Janecek91, Vivian Kvist Johannsen124, Carlos A Joly125, Blaise Jumbam126,127, Banoho L P R Kabelong102, Goytom Abraha Kahsay128, Viktor Karminov129, Kuswata Kartawinata130, Justin N Kassi131, Elizabeth Kearsley132, Deborah K Kennard133, Sebastian Kepfer-Rojas124, Mohammed Latif Khan134, John N Kigomo135, Hyun Seok Kim136,137,138,139, Carine Klauberg31, Yannick Klomberg91, Henn Korjus140, Subashree Kothandaraman88,89, Florian Kraxner141, Amit Kumar142, Relawan Kuswandi67, Mait Lang140,143, Michael J Lawes144, Rodrigo V Leite145, Geoffrey Lentner78, Simon L Lewis59,146, Moses B Libalah102,147, Janvier Lisingo148, Pablito Marcelo López-Serrano149, Huicui Lu150, Natalia V Lukina151, Anne Mette Lykke152, Vincent Maicher91,92,153, Brian S Maitner154, Eric Marcon93,155, Andrew R Marshall156,157,158, Emanuel H Martin159, Olga Martynenko129, Faustin M Mbayu99, Musingo T E Mbuvi160, Jorge A Meave161, Cory Merow162, Stanislaw Miscicki163, Vanessa S Moreno71, Albert Morera13, Sharif A Mukul164, Jörg C Müller165,166, Agustinus Murdjoko167, Maria Guadalupe Nava-Miranda149, Litonga Elias Ndive168, Victor J Neldner100, Radovan V Nevenic169, Louis N Nforbelie102, Michael L Ngoh170,171, Anny E N'Guessan41, Michael R Ngugi100, Alain S K Ngute164,172, Emile Narcisse N Njila102, Melanie C Nyako102, Thomas O Ochuodho173, Jacek Oleksyn122, Alain Paquette174, Elena I Parfenova175, Minjee Park5, Marc Parren11, Narayanaswamy Parthasarathy89, Sebastian Pfautsch176, Oliver L Phillips59, Maria T F Piedade177, Daniel Piotto178, Martina Pollastrini179, Lourens Poorter11, John R Poulsen153, Axel Dalberg Poulsen112, Hans Pretzsch180, Mirco Rodeghiero106,181, Samir G Rolim178, Francesco Rovero182,183, Ervan Rutishauser184, Khosro Sagheb-Talebi185, Purabi Saikia186, Moses Nsanyi Sainge170,187, Christian Salas-Eljatib188,189,190, Antonello Salis2, Peter Schall52, Dmitry Schepaschenko141,175,191, Michael Scherer-Lorenzen192, Bernhard Schmid193, Jochen Schöngart177, Vladimír Šebeň194, Giacomo Sellan73,195, Federico Selvi179, Josep M Serra-Diaz196, Douglas Sheil11,197, Anatoly Z Shvidenko141, Plinio Sist198, Alexandre F Souza199, Krzysztof J Stereńczak60, Martin J P Sullivan73, Somaiah Sundarapandian89, Miroslav Svoboda46, Mike D Swaine200, Natalia Targhetta177, Nadja Tchebakova175, Liam A Trethowan201, Robert Tropek91,92, John Tshibamba Mukendi202, Peter Mbanda Umunay203, Vladimir A Usoltsev204, Gaia Vaglio Laurin205, Riccardo Valentini205, Fernando Valladares206, Fons van der Plas207, Daniel José Vega-Nieva74, Hans Verbeeck132, Helder Viana208,209, Alexander C Vibrans210, Simone A Vieira211, Jason Vleminckx212, Catherine E Waite213, Hua-Feng Wang214, Eric Katembo Wasingya99, Chemuku Wekesa215, Bertil Westerlund105, Florian Wittmann216, Verginia Wortel217, Tomasz Zawiła-Niedźwiecki218, Chunyu Zhang219, Xiuhai Zhao219, Jun Zhu220, Xiao Zhu78, Zhi-Xin Zhu214, Irie C Zo-Bi221, Cang Hui222,223.   

Abstract

The latitudinal diversity gradient (LDG) is one of the most recognized global patterns of species richness exhibited across a wide range of taxa. Numerous hypotheses have been proposed in the past two centuries to explain LDG, but rigorous tests of the drivers of LDGs have been limited by a lack of high-quality global species richness data. Here we produce a high-resolution (0.025° × 0.025°) map of local tree species richness using a global forest inventory database with individual tree information and local biophysical characteristics from ~1.3 million sample plots. We then quantify drivers of local tree species richness patterns across latitudes. Generally, annual mean temperature was a dominant predictor of tree species richness, which is most consistent with the metabolic theory of biodiversity (MTB). However, MTB underestimated LDG in the tropics, where high species richness was also moderated by topographic, soil and anthropogenic factors operating at local scales. Given that local landscape variables operate synergistically with bioclimatic factors in shaping the global LDG pattern, we suggest that MTB be extended to account for co-limitation by subordinate drivers.
© 2022. The Author(s), under exclusive licence to Springer Nature Limited.

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Year:  2022        PMID: 35941205     DOI: 10.1038/s41559-022-01831-x

Source DB:  PubMed          Journal:  Nat Ecol Evol        ISSN: 2397-334X            Impact factor:   19.100


  31 in total

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8.  Why are there so many species in the tropics?

Authors:  James H Brown
Journal:  J Biogeogr       Date:  2014-01       Impact factor: 4.324

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