Accès ouvert déclaré
2024
article
Human activities shape global patterns of decomposition rates in rivers
Scott D. Tiegs, Krista A. Capps, David M. Costello, John P. Schmidt, Christopher J. Patrick, Jennifer J. Follstad Shah, Carri J. LeRoy, Vicenç Acuña, Ricardo Albariño, Daniel C. Allen, Cecília Alonso, Patricio Andino, Clay P. Arango, Jukka Aroviita, Marcus Vinícius Moreira Barbosa, Leon A. Barmuta, Colden V. Baxter, Brent J. Bellinger, Luz Boyero, Lyubov Bragina, Lee E. Brown, Andreas Bruder, Denise A. Bruesewitz, Francis J. Burdon, Marcos Callisto, Antonio Camacho, Cristina Canhoto, María M. Castillo, Éric Chauvet, Joanne E. Clapcott, Fanny Colas, J. Checo Colón-Gaud, Julien Cornut, Verónica Crespo‐Pérez, Wyatt F. Cross, Joseph M. Culp, Michaël Danger, Olivier Dangles, Elvira de Eyto, Alison M. Derry, Verónica Díaz Villanueva, Michael M. Douglas, Arturo Elosegi, Andrea C. Encalada, Sally A. Entrekin, Rodrigo Espinosa, Verónica Ferreira, Carmen Ferriol, Kyla M. Flanagan, Alexander S. Flecker, Tadeusz Fleituch, André Frainer, Nikolai Friberg, Paul C. Frost, Erica A. García, Liliana García-Lago, Pavel García, Mark O. Gessner, Sudeep D. Ghate, Darren P. Giling, Alan Gilmer, José Francisco Gonçalves, Rosario Karina Gonzales, Manuel A. S. Graça, Michael Grace, Natalie A. Griffiths, Hans‐Peter Grossart, François Guérold, Vladislav Gulis, Pablo E. Gutiérrez‐Fonseca, Luiz Ubiratan Hepp, Scott N. Higgins, Takuo Hishi, Joseph Huddart, John Hudson, Moss Imberger, Carlos Iñiguez‐Armijos, Mark W. Isken, Tomoya Iwata, David J. Janetski, Andrea E. Kirkwood, Aaron A. Koning, Sarian Kosten, Kevin A. Kuehn, Hjalmar Laudon, Peter R. Leavitt, Aurea Luiza Lemes da Silva, Shawn Leroux, Peter J. Lisi, Richard A. MacKenzie, Amy Marcarelli, Frank O. Masese, Peter B. McIntyre, Brendan G. McKie, Adriana O. Medeiros, Kristian Meissner, Marko Miliša, Shailendra Mishra, Yo Miyake, Ashley H. Moerke, Shorok Mombrikotb, Rob Mooney, Timothy P. Moulton, Timo Muotka, Junjiro N. Negishi, Vinicius Neres‐Lima, Mika Nieminen, Jorge Nimptsch, Jakub Ondruch, Riku Paavola, Isabel Pardo, E.T.H.M. Peeters, Jesús Pozo, Aaron Prussian, Estefania Quenta, Brian Reid, John S. Richardson, Anna Rigosi, José Rincón, Geta Rîşnoveanu, Christopher T. Robinson, Lorena Rodríguez–Gallego, Todd V. Royer, James A. Rusak, Anna C. Santamans, Géza B. Selmeczy, Gelas Simiyu, Agnija Skuja, Jerzy Smykla, Ryan A. Sponseller, Kandikere R. Sridhar, Aaron B. Stoler, Christopher M. Swan, Franco Teixeira de Mello, Jonathan D. Tonkin, Sari Uusheimo, Allison M. Veach, Sirje Vilbaste, Lena B.-M. Vought, Chiao‐Ping Wang, Jackson R. Webster, Paul Wilson, Stefan Woelfl, Guy Woodward, Marguerite A. Xenopoulos, Adam G. Yates, Chihiro Yoshimura, Catherine M. Yule, Yixin Zhang, Jacob A. Zwart
36Citations signalées, ce qui n’est pas une note de qualité
150Institutions déclarées
38Pays d’affiliation déclarés
Rattachement africain : us, es, uy, ec, fi, br, au, ie, gb, ch, fr, nz, pt, mx, ca, pl, no, dk, gt, de, in, bo, jp, nl, se, Kenya, hr, sg, cl, cz, ve, ro, hu, lv, ee, Somalie, tw, cn.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
Rivers and streams contribute to global carbon cycling by decomposing immense quantities of terrestrial plant matter. However, decomposition rates are highly variable and large-scale patterns and drivers of this process remain poorly understood. Using a cellulose-based assay to reflect the primary constituent of plant detritus, we generated a predictive model (81% variance explained) for cellulose decomposition rates across 514 globally distributed streams. A large number of variables were important for predicting decomposition, highlighting the complexity of this process at the global scale. Predicted cellulose decomposition rates, when combined with genus-level litter quality attributes, explain published leaf litter decomposition rates with high accuracy (70% variance explained). Our global map provides estimates of rates across vast understudied areas of Earth and reveals rapid decomposition across continental-scale areas dominated by human activities.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Human activities shape global patterns of decomposition rates in rivers
- Date Crossref
- 14/06/2024
- Éditeur
- American Association for the Advancement of Science (AAAS)
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Freshwater macroinvertebrate diversity and ecologyHydrology and Watershed Management StudiesSoil and Water Nutrient Dynamics