Predictors of elevational biodiversity gradients change from single taxa to the multi-taxa community level

Explaining species richness patterns is a key question in ecology. Peterset al. sample diverse plant and animal groups across elevation on Mt. Kilimanjaro to show that, while disparate factors drive distributions of individual taxa, diversity overall decreases with elevation, mostly driven by effect...

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Autores principales: Marcell K. Peters, Andreas Hemp, Tim Appelhans, Christina Behler, Alice Classen, Florian Detsch, Andreas Ensslin, Stefan W. Ferger, Sara B. Frederiksen, Friederike Gebert, Michael Haas, Maria Helbig-Bonitz, Claudia Hemp, William J. Kindeketa, Ephraim Mwangomo, Christine Ngereza, Insa Otte, Juliane Röder, Gemma Rutten, David Schellenberger Costa, Joseph Tardanico, Giulia Zancolli, Jürgen Deckert, Connal D. Eardley, Ralph S. Peters, Mark-Oliver Rödel, Matthias Schleuning, Axel Ssymank, Victor Kakengi, Jie Zhang, Katrin Böhning-Gaese, Roland Brandl, Elisabeth K.V. Kalko, Michael Kleyer, Thomas Nauss, Marco Tschapka, Markus Fischer, Ingolf Steffan-Dewenter
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Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/92009e0055b646629b7d9b65ec386aa9
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spelling oai:doaj.org-article:92009e0055b646629b7d9b65ec386aa92021-12-02T14:38:54ZPredictors of elevational biodiversity gradients change from single taxa to the multi-taxa community level10.1038/ncomms137362041-1723https://doaj.org/article/92009e0055b646629b7d9b65ec386aa92016-12-01T00:00:00Zhttps://doi.org/10.1038/ncomms13736https://doaj.org/toc/2041-1723Explaining species richness patterns is a key question in ecology. Peterset al. sample diverse plant and animal groups across elevation on Mt. Kilimanjaro to show that, while disparate factors drive distributions of individual taxa, diversity overall decreases with elevation, mostly driven by effects of temperature.Marcell K. PetersAndreas HempTim AppelhansChristina BehlerAlice ClassenFlorian DetschAndreas EnsslinStefan W. FergerSara B. FrederiksenFriederike GebertMichael HaasMaria Helbig-BonitzClaudia HempWilliam J. KindeketaEphraim MwangomoChristine NgerezaInsa OtteJuliane RöderGemma RuttenDavid Schellenberger CostaJoseph TardanicoGiulia ZancolliJürgen DeckertConnal D. EardleyRalph S. PetersMark-Oliver RödelMatthias SchleuningAxel SsymankVictor KakengiJie ZhangKatrin Böhning-GaeseRoland BrandlElisabeth K.V. KalkoMichael KleyerThomas NaussMarco TschapkaMarkus FischerIngolf Steffan-DewenterNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-11 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Marcell K. Peters
Andreas Hemp
Tim Appelhans
Christina Behler
Alice Classen
Florian Detsch
Andreas Ensslin
Stefan W. Ferger
Sara B. Frederiksen
Friederike Gebert
Michael Haas
Maria Helbig-Bonitz
Claudia Hemp
William J. Kindeketa
Ephraim Mwangomo
Christine Ngereza
Insa Otte
Juliane Röder
Gemma Rutten
David Schellenberger Costa
Joseph Tardanico
Giulia Zancolli
Jürgen Deckert
Connal D. Eardley
Ralph S. Peters
Mark-Oliver Rödel
Matthias Schleuning
Axel Ssymank
Victor Kakengi
Jie Zhang
Katrin Böhning-Gaese
Roland Brandl
Elisabeth K.V. Kalko
Michael Kleyer
Thomas Nauss
Marco Tschapka
Markus Fischer
Ingolf Steffan-Dewenter
Predictors of elevational biodiversity gradients change from single taxa to the multi-taxa community level
description Explaining species richness patterns is a key question in ecology. Peterset al. sample diverse plant and animal groups across elevation on Mt. Kilimanjaro to show that, while disparate factors drive distributions of individual taxa, diversity overall decreases with elevation, mostly driven by effects of temperature.
format article
author Marcell K. Peters
Andreas Hemp
Tim Appelhans
Christina Behler
Alice Classen
Florian Detsch
Andreas Ensslin
Stefan W. Ferger
Sara B. Frederiksen
Friederike Gebert
Michael Haas
Maria Helbig-Bonitz
Claudia Hemp
William J. Kindeketa
Ephraim Mwangomo
Christine Ngereza
Insa Otte
Juliane Röder
Gemma Rutten
David Schellenberger Costa
Joseph Tardanico
Giulia Zancolli
Jürgen Deckert
Connal D. Eardley
Ralph S. Peters
Mark-Oliver Rödel
Matthias Schleuning
Axel Ssymank
Victor Kakengi
Jie Zhang
Katrin Böhning-Gaese
Roland Brandl
Elisabeth K.V. Kalko
Michael Kleyer
Thomas Nauss
Marco Tschapka
Markus Fischer
Ingolf Steffan-Dewenter
author_facet Marcell K. Peters
Andreas Hemp
Tim Appelhans
Christina Behler
Alice Classen
Florian Detsch
Andreas Ensslin
Stefan W. Ferger
Sara B. Frederiksen
Friederike Gebert
Michael Haas
Maria Helbig-Bonitz
Claudia Hemp
William J. Kindeketa
Ephraim Mwangomo
Christine Ngereza
Insa Otte
Juliane Röder
Gemma Rutten
David Schellenberger Costa
Joseph Tardanico
Giulia Zancolli
Jürgen Deckert
Connal D. Eardley
Ralph S. Peters
Mark-Oliver Rödel
Matthias Schleuning
Axel Ssymank
Victor Kakengi
Jie Zhang
Katrin Böhning-Gaese
Roland Brandl
Elisabeth K.V. Kalko
Michael Kleyer
Thomas Nauss
Marco Tschapka
Markus Fischer
Ingolf Steffan-Dewenter
author_sort Marcell K. Peters
title Predictors of elevational biodiversity gradients change from single taxa to the multi-taxa community level
title_short Predictors of elevational biodiversity gradients change from single taxa to the multi-taxa community level
title_full Predictors of elevational biodiversity gradients change from single taxa to the multi-taxa community level
title_fullStr Predictors of elevational biodiversity gradients change from single taxa to the multi-taxa community level
title_full_unstemmed Predictors of elevational biodiversity gradients change from single taxa to the multi-taxa community level
title_sort predictors of elevational biodiversity gradients change from single taxa to the multi-taxa community level
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/92009e0055b646629b7d9b65ec386aa9
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