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Simulating rewetting events in intermittent rivers and ephemeral streams: A global analysis of leached nutrients and organic matter
O. Shumilova, D. Zak, T. Datry, D. von Schiller, R. Corti, A. Foulquier, B. Obrador, K. Tockner, DC. Allan, F. Altermatt, MI. Arce, S. Arnon, D. Banas, A. Banegas-Medina, E. Beller, ML. Blanchette, JF. Blanco-Libreros, J. Blessing, IG. Boëchat,...
Jazyk angličtina Země Anglie, Velká Británie
Typ dokumentu časopisecké články, práce podpořená grantem
Grantová podpora
748625
Marie Curie - United Kingdom
PP00P3_179089
Swiss National Science Foundation - Switzerland
PP00P3_150698
Swiss National Science Foundation - Switzerland
PubMed
30628191
DOI
10.1111/gcb.14537
Knihovny.cz E-zdroje
- MeSH
- biofilmy růst a vývoj MeSH
- biologická dostupnost MeSH
- dusičnany analýza MeSH
- geologické sedimenty chemie MeSH
- klimatické změny MeSH
- listy rostlin chemie MeSH
- organické látky analýza MeSH
- podnebí MeSH
- řeky chemie MeSH
- živiny analýza MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
Climate change and human pressures are changing the global distribution and the extent of intermittent rivers and ephemeral streams (IRES), which comprise half of the global river network area. IRES are characterized by periods of flow cessation, during which channel substrates accumulate and undergo physico-chemical changes (preconditioning), and periods of flow resumption, when these substrates are rewetted and release pulses of dissolved nutrients and organic matter (OM). However, there are no estimates of the amounts and quality of leached substances, nor is there information on the underlying environmental constraints operating at the global scale. We experimentally simulated, under standard laboratory conditions, rewetting of leaves, riverbed sediments, and epilithic biofilms collected during the dry phase across 205 IRES from five major climate zones. We determined the amounts and qualitative characteristics of the leached nutrients and OM, and estimated their areal fluxes from riverbeds. In addition, we evaluated the variance in leachate characteristics in relation to selected environmental variables and substrate characteristics. We found that sediments, due to their large quantities within riverbeds, contribute most to the overall flux of dissolved substances during rewetting events (56%-98%), and that flux rates distinctly differ among climate zones. Dissolved organic carbon, phenolics, and nitrate contributed most to the areal fluxes. The largest amounts of leached substances were found in the continental climate zone, coinciding with the lowest potential bioavailability of the leached OM. The opposite pattern was found in the arid zone. Environmental variables expected to be modified under climate change (i.e. potential evapotranspiration, aridity, dry period duration, land use) were correlated with the amount of leached substances, with the strongest relationship found for sediments. These results show that the role of IRES should be accounted for in global biogeochemical cycles, especially because prevalence of IRES will increase due to increasing severity of drying events.
Australian Rivers Institute Griffith University Nathan Qld Australia
Center for Applied Geosciences Eberhard Karls Universität Tübingen Tübingen Germany
Centre for Freshwater Ecosystems La Trobe University Wodonga Vic Australia
Centro de Ciências Agrárias e Biológicas Universidade Estadual Vale do Acaraú Sobral Brazil
Departamento de Ecología y Biología Animal Universidad de Vigo Vigo Spain
Department of Biology and Ecology Faculty of Sciences and Mathematics University of Niš Niš Serbia
Department of Biology Faculty of Science University of Zagreb Zagreb Croatia
Department of Biology University of Montenegro Podgorica Montenegro
Department of Biology University of Oklahoma Norman Oklahoma
Department of Biology University of San Diego San Diego California
Department of Botany and Zoology Faculty of Science Masaryk University Brno Czech Republic
Department of Ecology and Environmental Science Umeå University Umeå Sweden
Department of Environment and Science Queensland Government Brisbane Qld Australia
Department of Evolutionary Biology and Environmental Studies University of Zurich Zürich Switzerland
Department of Geography University of California Berkeley California
Department of Geosciences Federal University of São João del Rei São João del Rei Brazil
Department of Limnology Institute for Evolution and Biodiversity University of Münster Germany
Department of Zoology University of Granada Granada Spain
Ezemvelo KZN Wildlife Pietermaritzburg South Africa
Faculty of Environmental Science and EULA Chile Center Universidad de Concepción Concepción Chile
Grup de Recerca Freshwater Ecology Hydrology and Management Universitat de Barcelona Barcelona Spain
INRA UAR 1275 DEPT EFPA Centre de recherche de Nancy Champenoux France
Institute for Applied Ecology University of Canberra Bruce Canberra ACT Australia
Instituto de Biología Universidad de Antioquia Medellín Colombia
IRSTEA UR RIVERLY Centre de Lyon Villeurbanne Villeurbanne Cedex France
Laboratoire d'Écologie Alpine UMR CNRS UGA USMB 5553 Université Grenoble Alpes Grenoble France
Laboratoire d'Écologie et Gestion des Ecosystèmes Naturels University of Tlemcen Tlemcen Algeria
Leibniz Institute of Freshwater Ecology and Inland Fisheries Berlin Germany
Leibniz Institute of Freshwater Ecology and Inland Fisheries Murcia Spain
Leibniz Institute of Freshwater Ecology and Inland Fisheries Vienna Austria
LIEC Université de Lorraine Metz France
Mine Water and Environment Research Centre School of Science Edith Cowan University Perth Australia
Missouri University of Science and Technology Rolla Missouri
School of Biological Sciences University of Canterbury Christchurch New Zealand
School of Environmental and Rural Science University of New England Armidale NSW Australia
School of Natural Resources and the Environment University of Arizona Tucson Arizona
School of Science and Technology Nottingham Trent University Nottingham UK
Terra Cypria The Cyprus Conservation Foundation Limassol Cyprus
TropWATER College of Science and Engineering James Cook University Townsville Qld Australia
Université de Lorraine UR AFPA Vandoeuvre Les Nancy France
Citace poskytuje Crossref.org
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- $a Shumilova, Oleksandra $u Leibniz-Institute of Freshwater Ecology and Inland Fisheries (IGB), Berlin, Germany. Institute of Biology, Freie Universität Berlin (FU), Berlin, Germany. Department of Civil, Environmental and Mechanical Engineering, Trento University, Trento, Italy.
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- $a Simulating rewetting events in intermittent rivers and ephemeral streams: A global analysis of leached nutrients and organic matter / $c O. Shumilova, D. Zak, T. Datry, D. von Schiller, R. Corti, A. Foulquier, B. Obrador, K. Tockner, DC. Allan, F. Altermatt, MI. Arce, S. Arnon, D. Banas, A. Banegas-Medina, E. Beller, ML. Blanchette, JF. Blanco-Libreros, J. Blessing, IG. Boëchat, K. Boersma, MT. Bogan, N. Bonada, NR. Bond, K. Brintrup, A. Bruder, R. Burrows, T. Cancellario, SM. Carlson, S. Cauvy-Fraunié, N. Cid, M. Danger, B. de Freitas Terra, AM. Girolamo, R. Del Campo, F. Dyer, A. Elosegi, E. Faye, C. Febria, R. Figueroa, B. Four, MO. Gessner, P. Gnohossou, RG. Cerezo, L. Gomez-Gener, MAS. Graça, S. Guareschi, B. Gücker, JL. Hwan, S. Kubheka, SD. Langhans, C. Leigh, CJ. Little, S. Lorenz, J. Marshall, A. McIntosh, C. Mendoza-Lera, EI. Meyer, M. Miliša, MC. Mlambo, M. Moleón, P. Negus, D. Niyogi, A. Papatheodoulou, I. Pardo, P. Paril, V. Pešić, P. Rodriguez-Lozano, RJ. Rolls, MM. Sanchez-Montoya, A. Savić, A. Steward, R. Stubbington, A. Taleb, RV. Vorste, N. Waltham, A. Zoppini, C. Zarfl,
- 520 9_
- $a Climate change and human pressures are changing the global distribution and the extent of intermittent rivers and ephemeral streams (IRES), which comprise half of the global river network area. IRES are characterized by periods of flow cessation, during which channel substrates accumulate and undergo physico-chemical changes (preconditioning), and periods of flow resumption, when these substrates are rewetted and release pulses of dissolved nutrients and organic matter (OM). However, there are no estimates of the amounts and quality of leached substances, nor is there information on the underlying environmental constraints operating at the global scale. We experimentally simulated, under standard laboratory conditions, rewetting of leaves, riverbed sediments, and epilithic biofilms collected during the dry phase across 205 IRES from five major climate zones. We determined the amounts and qualitative characteristics of the leached nutrients and OM, and estimated their areal fluxes from riverbeds. In addition, we evaluated the variance in leachate characteristics in relation to selected environmental variables and substrate characteristics. We found that sediments, due to their large quantities within riverbeds, contribute most to the overall flux of dissolved substances during rewetting events (56%-98%), and that flux rates distinctly differ among climate zones. Dissolved organic carbon, phenolics, and nitrate contributed most to the areal fluxes. The largest amounts of leached substances were found in the continental climate zone, coinciding with the lowest potential bioavailability of the leached OM. The opposite pattern was found in the arid zone. Environmental variables expected to be modified under climate change (i.e. potential evapotranspiration, aridity, dry period duration, land use) were correlated with the amount of leached substances, with the strongest relationship found for sediments. These results show that the role of IRES should be accounted for in global biogeochemical cycles, especially because prevalence of IRES will increase due to increasing severity of drying events.
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- $a Zak, Dominik $u Institute of Biology, Freie Universität Berlin (FU), Berlin, Germany. Institute of Landscape Ecology and Site Evaluation, University of Rostock, Rostock, Germany. Department of Bioscience, Aarhus University, Silkeborg, Denmark.
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
- $a Beller, Erin $u Department of Geography, University of California, Berkeley, California.
- 700 1_
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- 700 1_
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- 700 1_
- $a Blessing, Joanna $u Department of Environment and Science, Queensland Government, Brisbane, Qld, Australia.
- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
- $a Langhans, Simone Daniela $u Department of Zoology, University of Otago, Dunedin, New Zealand. BC3-Basque Centre for Climate Change, Leioa, Spain.
- 700 1_
- $a Leigh, Catherine $u Australian Rivers Institute, Griffith University, Nathan, Qld, Australia. ARC Centre of Excellence for Mathematical & Statistical Frontiers (ACEMS) and Institute for Future Environments, School of Mathematical Sciences, Queensland University of Technology, Brisbane, Qld, Australia.
- 700 1_
- $a Little, Chelsea J $u Department of Evolutionary Biology and Environmental Studies, University of Zurich, Zürich, Switzerland. Department of Aquatic Ecology, Eawag, The Swiss Federal Institute of Aquatic Science and Technology, Dübendorf, Switzerland.
- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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- 700 1_
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