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Riparian plant litter quality increases with latitude

Plant litter represents a major basal resource in streams, where its decomposition is partly regulated by litter traits. Litter-trait variation may determine the latitudinal gradient in decomposition in streams, which is mainly microbial in the tropics and detritivore-mediated at high latitudes. How...

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Autores principales: Boyero, Luz, Graça, Manuel A. S., Tonin, Alan M., Pérez, Javier, J. Swafford, Andrew, Ferreira, Verónica, Landeira-Dabarca, Andrea, A. Alexandrou, Markos, Gessner, Mark O., McKie, Brendan G., Albariño, Ricardo J., Barmuta, Leon A., Callisto, Marcos, Chará, Julián, Chauvet, Eric, Colón-Gaud, Checo, Dudgeon, David, Encalada, Andrea C., Figueroa, Ricardo, Flecker, Alexander S., Fleituch, Tadeusz, Frainer, André, Gonçalves Jr., José F., Helson, Julie E., Iwata, Tomoya, Mathooko, Jude, M’Erimba, Charles, Pringle, Catherine M., Ramírez, Alonso, Swan, Christopher M., Yule, Catherine M., Pearson, Richard G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5585321/
https://www.ncbi.nlm.nih.gov/pubmed/28874830
http://dx.doi.org/10.1038/s41598-017-10640-3
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author Boyero, Luz
Graça, Manuel A. S.
Tonin, Alan M.
Pérez, Javier
J. Swafford, Andrew
Ferreira, Verónica
Landeira-Dabarca, Andrea
A. Alexandrou, Markos
Gessner, Mark O.
McKie, Brendan G.
Albariño, Ricardo J.
Barmuta, Leon A.
Callisto, Marcos
Chará, Julián
Chauvet, Eric
Colón-Gaud, Checo
Dudgeon, David
Encalada, Andrea C.
Figueroa, Ricardo
Flecker, Alexander S.
Fleituch, Tadeusz
Frainer, André
Gonçalves Jr., José F.
Helson, Julie E.
Iwata, Tomoya
Mathooko, Jude
M’Erimba, Charles
Pringle, Catherine M.
Ramírez, Alonso
Swan, Christopher M.
Yule, Catherine M.
Pearson, Richard G.
author_facet Boyero, Luz
Graça, Manuel A. S.
Tonin, Alan M.
Pérez, Javier
J. Swafford, Andrew
Ferreira, Verónica
Landeira-Dabarca, Andrea
A. Alexandrou, Markos
Gessner, Mark O.
McKie, Brendan G.
Albariño, Ricardo J.
Barmuta, Leon A.
Callisto, Marcos
Chará, Julián
Chauvet, Eric
Colón-Gaud, Checo
Dudgeon, David
Encalada, Andrea C.
Figueroa, Ricardo
Flecker, Alexander S.
Fleituch, Tadeusz
Frainer, André
Gonçalves Jr., José F.
Helson, Julie E.
Iwata, Tomoya
Mathooko, Jude
M’Erimba, Charles
Pringle, Catherine M.
Ramírez, Alonso
Swan, Christopher M.
Yule, Catherine M.
Pearson, Richard G.
author_sort Boyero, Luz
collection PubMed
description Plant litter represents a major basal resource in streams, where its decomposition is partly regulated by litter traits. Litter-trait variation may determine the latitudinal gradient in decomposition in streams, which is mainly microbial in the tropics and detritivore-mediated at high latitudes. However, this hypothesis remains untested, as we lack information on large-scale trait variation for riparian litter. Variation cannot easily be inferred from existing leaf-trait databases, since nutrient resorption can cause traits of litter and green leaves to diverge. Here we present the first global-scale assessment of riparian litter quality by determining latitudinal variation (spanning 107°) in litter traits (nutrient concentrations; physical and chemical defences) of 151 species from 24 regions and their relationships with environmental factors and phylogeny. We hypothesized that litter quality would increase with latitude (despite variation within regions) and traits would be correlated to produce ‘syndromes’ resulting from phylogeny and environmental variation. We found lower litter quality and higher nitrogen:phosphorus ratios in the tropics. Traits were linked but showed no phylogenetic signal, suggesting that syndromes were environmentally determined. Poorer litter quality and greater phosphorus limitation towards the equator may restrict detritivore-mediated decomposition, contributing to the predominance of microbial decomposers in tropical streams.
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spelling pubmed-55853212017-09-06 Riparian plant litter quality increases with latitude Boyero, Luz Graça, Manuel A. S. Tonin, Alan M. Pérez, Javier J. Swafford, Andrew Ferreira, Verónica Landeira-Dabarca, Andrea A. Alexandrou, Markos Gessner, Mark O. McKie, Brendan G. Albariño, Ricardo J. Barmuta, Leon A. Callisto, Marcos Chará, Julián Chauvet, Eric Colón-Gaud, Checo Dudgeon, David Encalada, Andrea C. Figueroa, Ricardo Flecker, Alexander S. Fleituch, Tadeusz Frainer, André Gonçalves Jr., José F. Helson, Julie E. Iwata, Tomoya Mathooko, Jude M’Erimba, Charles Pringle, Catherine M. Ramírez, Alonso Swan, Christopher M. Yule, Catherine M. Pearson, Richard G. Sci Rep Article Plant litter represents a major basal resource in streams, where its decomposition is partly regulated by litter traits. Litter-trait variation may determine the latitudinal gradient in decomposition in streams, which is mainly microbial in the tropics and detritivore-mediated at high latitudes. However, this hypothesis remains untested, as we lack information on large-scale trait variation for riparian litter. Variation cannot easily be inferred from existing leaf-trait databases, since nutrient resorption can cause traits of litter and green leaves to diverge. Here we present the first global-scale assessment of riparian litter quality by determining latitudinal variation (spanning 107°) in litter traits (nutrient concentrations; physical and chemical defences) of 151 species from 24 regions and their relationships with environmental factors and phylogeny. We hypothesized that litter quality would increase with latitude (despite variation within regions) and traits would be correlated to produce ‘syndromes’ resulting from phylogeny and environmental variation. We found lower litter quality and higher nitrogen:phosphorus ratios in the tropics. Traits were linked but showed no phylogenetic signal, suggesting that syndromes were environmentally determined. Poorer litter quality and greater phosphorus limitation towards the equator may restrict detritivore-mediated decomposition, contributing to the predominance of microbial decomposers in tropical streams. Nature Publishing Group UK 2017-09-05 /pmc/articles/PMC5585321/ /pubmed/28874830 http://dx.doi.org/10.1038/s41598-017-10640-3 Text en © The Author(s) 2017 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Boyero, Luz
Graça, Manuel A. S.
Tonin, Alan M.
Pérez, Javier
J. Swafford, Andrew
Ferreira, Verónica
Landeira-Dabarca, Andrea
A. Alexandrou, Markos
Gessner, Mark O.
McKie, Brendan G.
Albariño, Ricardo J.
Barmuta, Leon A.
Callisto, Marcos
Chará, Julián
Chauvet, Eric
Colón-Gaud, Checo
Dudgeon, David
Encalada, Andrea C.
Figueroa, Ricardo
Flecker, Alexander S.
Fleituch, Tadeusz
Frainer, André
Gonçalves Jr., José F.
Helson, Julie E.
Iwata, Tomoya
Mathooko, Jude
M’Erimba, Charles
Pringle, Catherine M.
Ramírez, Alonso
Swan, Christopher M.
Yule, Catherine M.
Pearson, Richard G.
Riparian plant litter quality increases with latitude
title Riparian plant litter quality increases with latitude
title_full Riparian plant litter quality increases with latitude
title_fullStr Riparian plant litter quality increases with latitude
title_full_unstemmed Riparian plant litter quality increases with latitude
title_short Riparian plant litter quality increases with latitude
title_sort riparian plant litter quality increases with latitude
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5585321/
https://www.ncbi.nlm.nih.gov/pubmed/28874830
http://dx.doi.org/10.1038/s41598-017-10640-3
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