Results overview: Found 2 records in 0.02 seconds.
Articles, 1 records found
Research literature, 1 records found
Articles 1 records found  
1.
12 p, 1.1 MB Global photosynthetic capacity is optimized to the environment / Smith, Nicholas G. (Texas Tech University. Department of Biological Sciences, Texas Tech University) ; Keenan, Trevor F. (Lawrence Berkeley National Laboratory. Climate and Ecosystem Sciences Division) ; Prentice, Iain Colin (Imperial College London. Department of Life Sciences) ; Wang, Han (Tsinghua University. Department of Earth System Science) ; Wright, Ian J. (Macquarie University. Department of Biological Sciences) ; Niinemets, Ülo (Estonian University of Life Science. Department of Plant Physiology) ; Crous, Kristine Y. (Western Sydney University. Hawkesbury Institute for the Environment) ; Domingues, Tomas F. (University of São Paulo. Departamento de Biologia) ; Guerrieri, Rossella (Centre de Recerca Ecològica i d'Aplicacions Forestals) ; Ishida, F. Yoko (James Cook University. Centre for Tropical Environmental and Sustainability Science) ; Kattge, Jens (Max Planck Institute for Biogeochemistry) ; Kruger, Eric L. (University of Wisconsin. Department of Forest and Wildlife Ecology) ; Maire, Vincent (Université du Québec à Trois. Département des sciences de l'environnement) ; Rogers, Alistair (Brookhaven National Laboratory) ; Serbin, Shawn P. (Brookhaven National Laboratory. Environmental and Climate Sciences Department) ; Tarvainen, Lasse (University of Gothenburg. Department of Biological and Environmental Sciences) ; Togashi, Henrique F. (Macquarie University. Department of Biological Sciences) ; Townsend, Philip A. (University of Wisconsin. Department of Forest and Wildlife Ecology) ; Wang, Meng (Northwest A&F University (Yangling, Xina). College of Forestry) ; Weerasinghe, Lasantha K. (The Australian National University. Research School of Biology) ; Zhou, Shuang-Xi (Macquarie University. Department of Biological Sciences)
Earth system models (ESMs) use photosynthetic capacity, indexed by the maximum Rubisco carboxylation rate (Vcmax), to simulate carbon assimilation and typically rely on empirical estimates, including an assumed dependence on leaf nitrogen determined from soil fertility. [...]
2019 - 10.1111/ele.13210
Ecology letters, Vol. 22, issue 3 (March 2019) , p. 506-517  

Research literature 1 records found  
1.
58 p, 4.1 MB Intercomparison of global foliar trait maps reveals fundamental differences and limitations of upscaling approaches / Dechant, Benjamin (German Centre for Integrative Biodiversity Research (Halle-Jena-Leipzig, Alemanya)) ; Kattge, Jens (Max Planck Institute for Biogeochemistry) ; Pavlick, Ryan (California Institute of Technology. Jet Propulsion Laboratory) ; Schneider, Fabian D. (California Institute of Technology. Jet Propulsion Laboratory) ; Sabatini, Francesco Maria (Alma Mater Studiorum Università di Bologna. Dipartimento di Scienze biologiche, geologiche e ambientali) ; Moreno-Martinez, Alvaro (Universitat de València. Laboratori de Processament d'Imatges) ; Butler, Ethan E. (University of Minnesota. Department of Forest Resources) ; van Bodegom, Peter M. (Leiden University. Institute of Environmental Sciences) ; Vallicrosa Pou, Helena (Centre de Recerca Ecològica i d'Aplicacions Forestals) ; Kattenborn, Teja (University of Freiburg. Department for Sensor-based Geoinformatics) ; Boonman, Coline C.F. (Aarhus University. Department of Biology) ; Madani, Nima (University of California. Joint Institute for Regional Earth System Science and Engineering) ; Wright, Ian J. (Western Sydney University. Hawkesbury Institute for the Environment) ; Dong, Ning (Macquarie University. Department of Biological Sciences) ; Feilhauer, Hannes (Helmholtz Centre for Environmental Research) ; Peñuelas, Josep (Centre de Recerca Ecològica i d'Aplicacions Forestals) ; Sardans i Galobart, Jordi (Centre de Recerca Ecològica i d'Aplicacions Forestals) ; Aguirre-Gutierrez, Jesus (University of Oxford. Environmental Change Institute) ; Reich, Peter B. (University of Michigan. Institute for Global Change Biology) ; Leitão, Pedro J. (Helmholtz Centre for Environmental Research) ; Cavender-Bares, Jeannine (University of Minnesota. Department of Ecology, Evolution and Behavior) ; Myers-Smith, Isla H. (University of Edinburgh. School of GeoSciences) ; Duran, Sandra M. (Colorado State University. Department of Forest and Rangeland Stewardship) ; Croft, Holly (University of Sheffield. School of Biosciences) ; Prentice, I. Colin (Imperial College London. Georgina Mace Centre for the Living Planet) ; Huth, Andreas (Helmholtz Centre for Environmental Research) ; Rebe, Karin (Utrecht University. Copernicus Institute of Sustainable Development) ; Zaehle, Sönke (Max Planck Institute for Biogeochemistry) ; Simova, Irena (Charles University. Center for Theoretical Study) ; Diaz, Sandra (Universidad Nacional de Córdoba (Argentina). Facultad de Ciencias Exactas, Físicas y Naturales) ; Reichstein, Markus (Max Planck Institute for Biogeochemistry) ; Schiller, Christopher (Free University Berlin. Institute of Geographical Sciences) ; Bruelheide, Helge (Martin Luther University Halle-Wittenberg. Institute of Biology, Geobotany and Botanical Garden) ; Mahecha, Miguel (Helmholtz Centre for Environmental Research) ; Wirth, Christian (Leipzig University. Institute of Systematic Botany and Functional Biodiversity) ; Malhi, Yadvinder (University of Oxford. Environmental Change Institute) ; Townsend, Philip A. (University of Wisconsin)
Foliar traits such as specific leaf area (SLA), leaf nitrogen (N) and phosphorus (P) concentrations play an important role in plant economic strategies and ecosystem functioning. Various global maps of these foliar traits have been generated using statistical upscaling approaches based on in-situ trait observations. [...]
2023 - 10.31223/X58S97  

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