Resultats globals: 5 registres trobats en 0.03 segons.
Articles, 5 registres trobats
Articles 5 registres trobats  
1.
Predicting habitat affinities of plant species using commonly measured functional traits / Shipley, Bill (Université de Sherbrooke. Département de Biologie) ; Belluau, Michael (Université de Sherbrooke. Département de Biologie) ; Kühn, Ingolf (UFZ-Helmholtz Centre for Environmental Research. Department of Community Ecology) ; Soudzilovskaia, Nadejda A. (Universiteit Leiden. Centrum voor Milieuwetenschappen) ; Bahn, Michael (Universität Innsbruck. Institut für Ökologie) ; Penuelas, Josep (Centre de Recerca Ecològica i Aplicacions Forestals) ; Kattge, Jens (Max Planck Institute for Biogeochemistry) ; Sack, Lawren (University of California. Department of Ecology and Evolutionary Biology) ; Cavender-Bares, Jeannine (University of Minnesota. Department of Ecology, Evolution and Behavior) ; Ozinga, Wim A. (Wageningen University. Team Vegetation, Forest and Landscape Ecology) ; Blonder, Benjamin (University of Oxford. Environmental Change Institute) ; Van Bodegom, Peter M. (Universiteit Leiden. Centrum voor Milieuwetenschappen) ; Manning, Peter (Senckenberg Biodiversität und Klima Forschungszentrum (SBIK-F)) ; Hickler, Thomas (Senckenberg Biodiversität und Klima Forschungszentrum (SBIK-F)) ; Sosinski, Enio (Embrapa Clima Temperado) ; De Patta Pillar, Valerio (Universidade Federal do Rio Grande do Sul. Departmento de Ecologia) ; Onipchenko, Vladimir (Universität Regensburg) ; Poschlod, Peter (Universität Regensburg)
Questions: Heinz Ellenberg classically defined “indicator” scores for species representing their typical positions along gradients of key environmental variables, and these have proven very useful for designating ecological distributions. [...]
2017 - 10.1111/jvs.12554
Journal of vegetation science, Vol. 28, issue 5 (Sep. 2017) , p. 1082-1095
2 documents
2.
26 p, 4.4 MB Improved representation of plant functional types and physiology in the Joint UK Land Environment Simulator (JULES v4.2) using plant trait information / Harper, Anna B. (University of Exeter. College of Engineering, Mathematics, and Physical Science) ; Cox, Peter M. (University of Exeter. College of Engineering, Mathematics, and Physical Science) ; Friedlingstein, Pierre (University of Exeter. College of Engineering, Mathematics and Physical Sciences) ; Wiltshire (Great Britain. Meteorological Office) ; Jones, Chris D. (Great Britain. Meteorological Office) ; Sitch, Stephen (University of Exeter. College of Life and Environmental Sciences) ; Mercado, Lina M. (University of Exeter. College of Life and Environmental Sciences) ; Groenendijk, Margriet (University of Exeter. College of Life and Environmental Sciences) ; Robertson, Eddy (Great Britain. Meteorological Office) ; Kattge, Jens (Max Planck Institute for Biogeochemistry) ; Bönisch, G. (Max-Planck-Institut für Biogeochemie) ; Atkin, Owen K. (Australian National University. Research School of Biology) ; Bahn, Michael (Universität Innsbruck. Institut für Ökologie) ; Cornelissen, Johannes (Vrije Universiteit Amsterdam. Deptartment of Ecological Science) ; Niinemets, Ülo (Eesti Teaduste Akadeemia) ; Onipchenko, Vladimir (Moskovskiĭ gosudarstvennyĭ universitet im. M.V. Lomonosova) ; Peñuelas, Josep (Universitat Autònoma de Barcelona. Departament de Biologia Animal, de Biologia Vegetal i d'Ecologia) ; Poorter, Lourens (Wageningen University. Forest Ecology and Forest Management Group) ; Reich, Peter B. (University of Minnesota. Department of Forest Resources) ; Soudzilovskaia, Nadjeda A. (Rijksuniversiteit te Leiden. Centrum voor Milieuwetenschappen) ; Van Bodegom, Peter (Rijksuniversiteit te Leiden. Centrum voor Milieuwetenschappen)
Dynamic global vegetation models are used to predict the response of vegetation to climate change. They are essential for planning ecosystem management, understanding carbon cycle–climate feedbacks, and evaluating the potential impacts of climate change on global ecosystems. [...]
2016 - 10.5194/gmd-9-2415-201
Geoscientific model development, Vol. 9 (2016) , p. 2415-2440  
3.
28 p, 1.3 MB Few multi-year precipitation-reduction experiments find a shift in the productivity-precipitation relationship / Estiarte Garrofé, Marc (Centre de Recerca Ecològica i Aplicacions Forestals) ; Vicca, Sara (Universiteit Antwerpen. Departement Biologie) ; Peñuelas, Josep (Universitat Autònoma de Barcelona. Departament de Biologia Animal, de Biologia Vegetal i d'Ecologia) ; Bahn, M. (Universität Innsbruck. Institut für Ökologie) ; Beier, Claus (Københavns Universitet. Institut for Geoscience of Natural Resource Management) ; Emmett, Bridge A. (Emmett, Bridget A.) ; Fay, Philip A. (United States. Agricultural Research Service) ; Hanson, Paul H. (Oak Ridge National Laboratory. Climate Change Science Institute,) ; Hasibeder, Roland (Universität Innsbruck. Institut für Ökologie) ; Kigel, Jaime (Universiṭah ha-ʻIvrit bi-Yerushalayim. Institute for Plant Sciences and Genetics,) ; Kröel-Dulay, György (MTA Ökológiai Kutatóközpont) ; Larsen, Klaus Steenberg (Københavns Universitet. Institut for Geoscience of Natural Resource Management) ; Lellei-Kovács (MTA Ökológiai Kutatóközpont) ; Limousin, Jean-Marc (Centre d’Ecologie Fonctionnelle et Evolutive) ; Ogaya Inurrigarro, Romà (Universitat Autònoma de Barcelona. Departament de Biologia Animal, de Biologia Vegetal i d'Ecologia) ; Ourcival, Jean-Marc (Centre d’Ecologie Fonctionnelle et Evolutive) ; Reinsch, Sabine (Norsk institutt for vannforskning. Center for Catchment and Urban Water Research, Section for Water and Society) ; Sala, Osvaldo E. (Arizona State University. School of Life Sciences and School of Sustainability) ; Schmidt, Inger Kappel (Københavns Universitet. Institut for Geoscience of Natural Resource Management) ; Sternberg, Marcelo (Tel-Aviv. University. Department of Molecular Biology & Ecology of Plants) ; Tielborger, Katja (Universität Tübingen. Department of Biology) ; Tietema, Albert (Universiteit van Amsterdam. Institute for Biodiversity and Ecosystem Dynamics) ; Janssens, Ivan A. (Universiteit Antwerpen. Departement Biologie)
Well-defined productivity–precipitation relationships of ecosystems are needed as benchmarks for the validation of land models used for future projections. The productivity–precipitation relationship may be studied in two ways: the spatial approach relates differences in productivity to those in precipitation among sites along a precipitation gradient (the spatial fit, with a steeper slope); the temporal approach relates interannual productivity changes to variation in precipitation within sites (the temporal fits, with flatter slopes). [...]
2016 - 10.1111/gcb.13269
Global change biology, Vol. 22, No. 7 (July 2016) , p. 2570-2581  
4.
11 p, 557.4 KB Soil respiration at mean annual temperature predicts annual total across vegetation types and biomes / Bahn, M. (Universität Innsbruck. Institut für Ökologie) ; Reichstein, M. (Max Planck Institute for Biogeochemistry) ; Davidson, E. A. (Woods Hole Research Center (Woods Hole, Mass.)) ; Grünzweig, J. (Universitah ha-Ivrit bi-Yerushalayim. Robert H. Smith Faculty of Agriculture, Food and Environment) ; Jung, M. (Max Planck Institute for Biogeochemistry) ; Carbone, M. S. (University of California. Department of Geography) ; Epron, D. (Université de Lorraine) ; Misson, L. (Centre national de la recherche scientifique (França)) ; Nouvellon, Y. (Centre de coopération internationale en recherche agronomique pour le développment) ; Roupsard, O. (Centre de coopération internationale en recherche agronomique pour le développment) ; Savage, K. (Woods Hole Research Center (Woods Hole, Mass.)) ; Trumbore, S. E. (Max Planck Institute for Biogeochemistry) ; Gimeno, C. (Centro de Estudios Ambientales del Mediterráneo) ; Curiel Yuste, Jorge (Centre de Recerca Ecològica i Aplicacions Forestals) ; Tang, J. (Marine Biological Laboratory (Woods Hole, Mass.). Ecosystems Center) ; Vargas, R. (University of California, Berkeley. Department of Environmental Science, Policy & Management) ; Janssens, I. A. (Universiteit Antwerpen. Departement Biologie)
Soil respiration (SR) constitutes the largest flux of CO₂ from terrestrial ecosystems to the atmosphere. However, there still exist considerable uncertainties as to its actual magnitude, as well as its spatial and interannual variability. [...]
2010 - 10.5194/bg-7-2147-2010
Biogeosciences, Vol. 7 Issue 7 (July 2010) , p. 2147-2157  
5.
23 p, 844.8 KB Can current moisture responses predict soil CO₂ efflux under altered precipitation regimes? A synthesis of manipulation experiments / Vicca, Sara (Universiteit Antwerpen. Departement Biologie) ; Bahn, M. (Universität Innsbruck. Institut für Ökologie) ; Estiarte, Marc (Centre de Recerca Ecològica i Aplicacions Forestals) ; Loon, E. E. van (Universiteit van Amsterdam. Institute for Biodiversity and Ecosystem Dynamics) ; Vargas, R. (University of Delaware. Department of Plant and Soil Sciences) ; Alberti, G. (Università di Udine) ; Ambus, P (Danmarks tekniske universitet. Institut for Kemisk og Biokemisk Teknologi) ; Arain, M. A. (McMaster Centre for Climate Change) ; Beier, Claus (Norsk institutt for vannforskning) ; Bentley, L. P. (Texas Tech University. Department of Biological Sciences) ; Borken, W. (Universität Bayreuth. Lehrstuhl für Bodenökologie) ; Buchmann, N. (Eidgenössischen Technischen Hochschule Zürich. Institut für Umweltsystemwissenschaften) ; Collins, S. L. (University of New Mexico. Biology Department) ; De Dato, G. (Università degli studi della Tuscia di Viterbo. Dipartimento per l'Innovazione nei sistemi Biologici, Agro-alimentari e. Forestali) ; Dukes, Jeffrey S. (Purdue University. Department of Forestry and Natural Resources) ; Escolar, C. (Universidad Rey Juan Carlos. Área de Biodiversidad y Conservación) ; Fay, P (Grassland Soil and Water Research Laboratory (U.S.)) ; Guidolotti, Gabriele (Università degli studi della Tuscia di Viterbo. Dipartimento per l'Innovazione nei sistemi Biologici, Agro-alimentari e. Forestali) ; Hanson, P. J. (Oak Ridge National Laboratory) ; Kahmen, A. (Eidgenössischen Technischen Hochschule Zürich. Institut für Agrarwissenschaften) ; Kröel-Dulay, György (Hungarian Academy of Sciences. Institute of Ecology and Botany) ; Ladreiter-Knauss, T. (Universität Innsbruck. Institut für Ökologie) ; Larsen, K. S. (Danmarks tekniske universitet. Institut for Kemisk og Biokemisk Teknologi) ; Lellei-Kovacs, E. (Hungarian Academy of Sciences. Institute of Ecology and Botany) ; Lebrija-Trejos, E. (Tel Aviv University. Department of Molecular Biology and Ecology of Plants) ; Maestre, F. T. (Universidad Rey Juan Carlos. Área de Biodiversidad y Conservación) ; Marhan, S. (Universität Hohenheim. Institut für Bodenkunde und Standortslehre) ; Marshall, M (Centre for Ecology and Hydrology (Great Britain)) ; Meir, P. (University of Edinburgh. School of GeoSciences) ; Miao, Y. (Henan da xue) ; Muhr, J. (Max-Planck. Institut für Biogeochemie) ; Niklaus, P. A. (Universität Zürich. Institut für Evolutionsbiologie und Umweltwissenschaften) ; Ogaya Inurrigarro, Romà (Universitat Autònoma de Barcelona. Departament de Biologia Animal, de Biologia Vegetal i d'Ecologia) ; Peñuelas, Josep (Universitat Autònoma de Barcelona. Departament de Biologia Animal, de Biologia Vegetal i d'Ecologia) ; Poll, C. (Universität Hohenheim. Institut für Bodenkunde und Standortslehre) ; Rustad, L. E. (United States. Forest Service. Northeastern Research Station) ; Savage, K. (Woods Hole Research Center (Woods Hole, Mass.)) ; Schindlbacher, A. (Bundesforschungs- und Ausbildungszentrum für Wald, Naturgefahren und Landschaft (Austria)) ; Schmidt, I. K. (Køvenhavns universitet. Department of Geosciences and Natural Resource Management) ; Smith, A. R. (Centre for Ecology and Hydrology (Great Britain)) ; Sotta, E. D. (Embrapa Amapá Caixa Postal) ; Suseela, V. (Purdue University. Department of Forestry and Natural Resources) ; Tietema, A. (Universiteit van Amsterdam. Institute for Biodiversity and Ecosystem Dynamics) ; Gestel, N. van (Texas Tech University. Department of Biological Sciences) ; Straaten, O. van (Büsgen-Institut. Ökopedologie der Tropen und Subtropen) ; Wan, S. (Henan da xue) ; Weber, U. (Max-Planck. Institut für Biogeochemie) ; Janssens, I. A. (Universiteit Antwerpen. Departement Biologie)
As a key component of the carbon cycle, soil CO₂ efflux (SCE) is being increasingly studied to improve our mechanistic understanding of this important carbon flux. Predicting ecosystem responses to climate change often depends on extrapolation of current relationships between ecosystem processes and their climatic drivers to conditions not yet experienced by the ecosystem. [...]
2014 - 10.5194/bg-11-2991-2014
Biogeosciences, Vol. 11 Issue 11 (Juny 2014) , p. 2991-3013
2 documents

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