Resultats globals: 10 registres trobats en 0.04 segons.
Articles, 10 registres trobats
Articles 10 registres trobats  
1.
Global forest carbon uptake due to nitrogen and phosphorus deposition from 1850 to 2100 / Wang, Rong (Laboratoire des Sciences du Climat et de l'Environment) ; Goll, Daniel (Laboratoire des Sciences du Climat et de l'Environment) ; Balkanski, Yves (Laboratoire des Sciences du Climat et de l'Environment) ; Hauglustaine, Didier (Laboratoire des Sciences du Climat et de l'Environment) ; Boucher, Olivier (Université de Paris VII. Laboratoire de Météorologie Dynamique) ; Ciais, Philippe (Laboratoire des Sciences du Climat et de l'Environment) ; Janssens, Ivan A. (Universiteit Antwerpen. Departement Biologie) ; Peñuelas, Josep (Universitat Autònoma de Barcelona. Departament de Biologia Animal, de Biologia Vegetal i d'Ecologia) ; Guenet, Bertrand (Laboratoire des Sciences du Climat et de l'Environment) ; Sardans i Galobart, Jordi (Centre de Recerca Ecològica i Aplicacions Forestals) ; Bopp, Laurent (Laboratoire des Sciences du Climat et de l'Environment) ; Vuichard, Nicolas (Laboratoire des Sciences du Climat et de l'Environment) ; Zhou, Feng (Beijing da xue. College of Urban and Environmental Sciences) ; Li, Bengang (Beijing da xue. College of Urban and Environmental Sciences) ; Piao, Shilong (Beijing da xue. College of Urban and Environmental Sciences) ; Peng,Shushi (Beijing da xue. College of Urban and Environmental Sciences) ; Huang, Ye (Laboratoire des Sciences du Climat et de l'Environment) ; Tao, Shu (Beijing da xue. College of Urban and Environmental Sciences)
Spatial patterns and temporal trends of nitrogen (N) and phosphorus (P) deposition are important for quantifying their impact on forest carbon (C) uptake. In a first step, we modeled historical and future change in the global distributions of the atmospheric deposition of N and P from the dry and wet deposition of aerosols and gases containing N and P. [...]
2017 - 10.1111/gcb.13766
Global change biology, Version of record online June 2017  
2.
27 p, 832.5 KB Plausible rice yield losses under future climate warming / Zhao, Chuang (Sino-French Institute for Earth System Science) ; Piao, Shilong (Sino-French Institute for Earth System Science) ; Wang, Xuhui (Sino-French Institute for Earth System Science) ; Huang, Yao (Zhongguo ke xue yuan. State Key Laboratory of Vegetation and Environmental Change) ; Ciais, Philippe (Laboratoire des Sciences du Climat et de L'Environnement) ; Elliott, Joshua (University of Chicago Computation Institute) ; Huang, Mengtian (Sino-French Institute for Earth System Science) ; Janssens, Ivan A. (Universiteit Antwerpen. Departement Biologie) ; Li, Tao (International Rice Research Institute) ; Lian, Xu (Sino-French Institute for Earth System Science) ; Liu, Yongwen (Sino-French Institute for Earth System Science) ; Müller, Christoph (Potsdam-Institut für Klimafolgenforschung) ; Peng, Shushi (Sino-French Institute for Earth System Science) ; Wang, Tao (Institute of Tibetan Plateau Research) ; Zhenzhong Zeng (Sino-French Institute for Earth System Science) ; Peñuelas, Josep (Centre de Recerca Ecològica i Aplicacions Forestals)
Rice is the staple food for more than 50% of the world’s population1-3. Reliable prediction of changes in rice yield is thus central for maintaining global food security. Here, we compare the sensitivity of rice yield to temperature increase derived from field warming experiments and three modelling approaches: statistical models, local crop models and global gridded crop models. [...]
2017 - 10.1038/nplants.2016.202
Nature plants, Vol. 3 (Des. 2016) , art. 16202  
3.
Three times greater weight of daytime than of night-time temperature on leaf unfolding phenology in temperate trees / Fu, Yongshuo H. (Sino-French Institute for Earth System Science) ; Liu, Yongjie (Universiteit Antwerpen. Departement Biologie) ; De Boeck, Hans J. (Universiteit Antwerpen. Departement Biologie) ; Menzel, Annette (Technische Universität München (Munic, Alemanya). Chair of Ecoclimatology) ; Nijs, Ivan (Universiteit Antwerpen. Departement Biologie) ; Peaucelle, M. (Laboratoire des Sciences du Climat et de l'Environment) ; Peñuelas, Josep (Universitat Autònoma de Barcelona. Departament de Biologia Animal, de Biologia Vegetal i d'Ecologia) ; Piao, Shilong (Sino-French Institute for Earth System Science) ; Janssens, Ivan A. (Universiteit Antwerpen. Departement Biologie)
The phenology of spring leaf unfolding plays a key role in the structure and functioning of ecosystems. The classical concept of heat requirement (growing degree days) for leaf unfolding was developed hundreds of years ago, but this model does not include the recently reported greater importance of daytime than night-time temperature. [...]
2016 - 10.1111/nph.14073
New phytologist, Vol. 212, issue 3 (Nov. 2016) , p. 590-597  
4.
34 p, 801.6 KB Age-related modulation of the nitrogen resorption efficiency response to growth requirements and soil nitrogen availability in a temperate pine plantation / Sun, Zhenzhong (Beijing da xue. College of Urban and Environmental Sciences. Department of Ecology) ; Liu, Lingli (Zhongguo ke xue yuan. Institute of Botany) ; Peng, Shushi (Beijing da xue. College of Urban and Environmental Sciences. Department of Ecology) ; Peñuelas, Josep (Universitat Autònoma de Barcelona. Departament de Biologia Animal, de Biologia Vegetal i d'Ecologia) ; Zeng, Hui (Peking University Shenzhen Graduate School) ; Piao, Shilong (Beijing da xue. College of Urban and Environmental Sciences. Department of Ecology)
Nitrogen (N) resorption is a key strategy for conserving N in forests, and is often affected by soil nutrient condition and N sink strength within the plant. However, our understanding of the age-related pattern of N resorption and how increasing N deposition will affect this pattern is limited. [...]
2016 - 10.1007/s10021-016-9962-5
Ecosystems, Vol. 19, Issue 4 (June 2016) , p. 698–709  
5.
25 p, 2.2 MB Greeing of the Earth and its drivers / Zhu, Zaichun (Zhongguo ke xue yuan. Institute of Tibetan Plateau Research) ; Piao, Shilong (Zhongguo ke xue yuan. Institute of Tibetan Plateau Research) ; Myneni, Ranga B. (Boston University. Department of Earth and Environment) ; Huang, Mengtian (Sino-French Institute for Earth System Science) ; Zeng, Zhenzhong ; Canadell, Josep G. ; Ciais, Philippe (Sino-French Institute for Earth System Science) ; Sitch, Stephen ; Friedlingstein, Pierre ; Arneth, Almut ; Cao, Chunxiang ; Cheng, Lei ; Kato, Etsushi ; Koven, Charles ; Li, Yue (Sino-French Institute for Earth System Science) ; Lian, Xu (Sino-French Institute for Earth System Science) ; Liu, Yongwen (Sino-French Institute for Earth System Science) ; Liu, Ronggao ; Mao, Jiafu ; Pan, Yaozhong ; Peng, Shushi (Sino-French Institute for Earth System Science) ; Peñuelas, Josep (Universitat Autònoma de Barcelona. Departament de Biologia Animal, de Biologia Vegetal i d'Ecologia) ; Poulter, Benjamin ; Pugh, Thomas A. M. ; Stocker, Benjamin D. ; Viovy, Nicolas ; Wang, Xuhui (Sino-French Institute for Earth System Science) ; Wang, Yingping ; Xiao, Zhiqiang ; Yang, Hui (Sino-French Institute for Earth System Science) ; Zaehle, Sönke ; Zeng, Ning (Sino-French Institute for Earth System Science)
Global environmental change is rapidly altering the dynamics of terrestrial vegetation, with consequences for the functioning of the Earth system and provision of ecosystem services1, 2. Yet how global vegetation is responding to the changing environment is not well established. [...]
2016 - 10.1038/nclimate3004
Nature climate change, Vol. 6 (2016) , p. 791–795
2 documents
6.
43 p, 2.3 MB Species interactions slow warming-induced upward shifts of treelines on the Tibetan Plateau / Liang, Eryuan (Zhongguo ke xue yuan. Institute of Tibetan Plateau Research) ; Wang, Yafeng (Zhongguo ke xue yuan. Institute of Tibetan Plateau Research) ; Piao, Shilong (Zhongguo ke xue yuan. Institute of Tibetan Plateau Research) ; Lu, Xiaoming (Zhongguo ke xue yuan. Institute of Tibetan Plateau Research) ; Camarero, Jesús Julio (Consejo Superior de Investigaciones Científicas (España). Instituto Pirenaico de Ecología) ; Zhu, Haifeng (Zhongguo ke xue yuan. Institute of Tibetan Plateau Research) ; Zhu, Liping (Zhongguo ke xue yuan. Institute of Tibetan Plateau Research) ; Ellison, Aaron M. (Harvard Forest) ; Philippe Ciais (Laboratoire des Sciences du Climat et de l’Environnement) ; Peñuelas, Josep (Universitat Autònoma de Barcelona. Departament de Biologia Animal, de Biologia Vegetal i d'Ecologia)
The alpine treeline is commonly regarded as being sensitive to climatic warming because regeneration and growth of trees at treeline generally are limited by low temperature. The alpine treelines of the Tibetan Plateau (TP) occur at the highest elevations (4,900 m above sea level) in the Northern Hemisphere. [...]
2016 - 10.1073/pnas.1520582113
Proceedings of the National Academy of Sciences, Vol. 113, no. 16 (April 2016) , p. 4380–4385  
7.
38 p, 1.3 MB Precipitation impacts on vegetation spring phenology on the Tibetan Plateau / Shen, Miaogen (Chinese Academy of Sciences. Institute of Tibetan Plateau Research) ; Piao, Shilong (Chinese Academy of Sciences. Institute of Tibetan Plateau Research) ; Cong, Nan (Chinese Academy of Sciences. Institute of Tibetan Plateau Research) ; Zhang, Gengxin (Chinese Academy of Sciences. Institute of Tibetan Plateau Research) ; Jassens, Ivan A. (University of Antwerp)
The ongoing changes in vegetation spring phenology in temperate/cold regions are widely attributed to temperature. However, in arid/semiarid ecosystems, the correlation between spring temperature and phenology is much less clear. [...]
2015 - 10.1111/gcb.12961
Global change biology, Vol. 21, Issue 10,(October 2015) , p.3647-3656  
8.
20 p, 1.5 MB Combining livestock production information in a process based vegetation model to reconstruct the history of grassland management / Chang, Jinfeng (Laboratoire des Sciences du Climat et de L’Environnement) ; Ciais, Philippe (Laboratoire des Sciences du Climat et de L’Environnement) ; Herrero, Mario (Commonwealth Scientific and Industrial Research Organization (Australia)) ; Havlik, Petr (International Institute for Applied Systems Analysis) ; Campioli, M. (Universiteit Antwerpen. Departement Biologie) ; Zhang, Xianzhou (Zhongguo ke xue yuan. Di li ke xue yu zi yuan yan jiu suo) ; Bai, Yongfei (Zhongguo di zhi ke xue yuan. State Key Laboratory of Vegetation and Environmental Change) ; Viovy, Nicolas (Laboratoire des Sciences du Climat et de L’Environnement) ; Joiner, Joanna (Goddard Space Flight Center) ; Wang, Xuhu (Institute Pierre Simon Laplace. Laboratoire de Météorologie Dynamique) ; Peng, Shushi (Sino-French Institute for Earth System Science) ; Yue, Chao (Laboratoire des Sciences du Climat et de L’Environnement) ; Piao, Shilong (Sino-French Institute for Earth System Science) ; Wang, Tao (Centre national de la recherche scientifique (França). Laboratoire de Glaciologie et Géophysique de l'Environnement) ; Hauglustaine, Didier (Laboratoire des Sciences du Climat et de L’Environnement) ; Soussana, Jean-Francois (Institut national de la recherche agronomique (França))
2016 - 10.5194/bg-13-3757-2016
Biogeosciences, Vol. 13 (2016) , p. 3757-3776  
9.
9 p, 1.6 MB European land CO₂ sink influenced by NAO and East-Atlantic pattern coupling / Batos, Ana (Laboratoire des Sciences du Climat et de L’Environnement) ; Janssens, Ivan A. (Universiteit Antwerpen. Departement Biologie) ; Gouveia, Célia M. (Universidade de Lisboa. Instituto Dom Luiz) ; Trigo, Ricardo M. (Universidade de Lisboa. Instituto Dom Luiz) ; Ciais, Philippe (Laboratoire des Sciences du Climat et de L’Environnement) ; Chevallier, Frédéric (Laboratoire des Sciences du Climat et de L’Environnement) ; Peñuelas, Josep (Universitat Autònoma de Barcelona. Departament de Biologia Animal, de Biologia Vegetal i d'Ecologia) ; Rödenbeck, Christian (Max-Planck-Institut für Biogeochemie) ; Piao, Shilong (Beijing da xue. Huánjìng kēxué yǔ gōngchéng xuéyuàn) ; Friedlingstein, Pierre (University of Exeter. College of Engineering, Mathematics and Physical Sciences) ; Running, Steven W. (University of Exeter. College of Engineering, Mathematics and Physical Sciences)
Large-scale climate patterns control variability in the global carbon sink. In Europe, the North-Atlantic Oscillation (NAO) influences vegetation activity, however the East-Atlantic (EA) pattern is known to modulate NAO strength and location. [...]
2016 - 10.1038/ncomms10315
Nature communications, Vol. 7, article 10315 (29th Jan. 2016)  
10.
31 p, 2.6 MB Declining global warming effects on the phenology of spring leaf unfolding / Fu, Yongshuo H. (Sino-French Institute for Earth System Science) ; Zhao, Hongfang (Sino-French Institute for Earth System Science) ; Piao, Shilong (Sino-French Institute for Earth System Science) ; Peaucelle, Marc (Laboratoire des Sciences du Climat et de l'Environment) ; Peng, Shushi (Sino-French Institute for Earth System Science) ; Zhou, Guiyun (Dian zi ke ji da xue (Chengdu, China)) ; Ciais, Philippe (Sino-French Institute for Earth System Science) ; Huang, Mengtian (Sino-French Institute for Earth System Science) ; Menzel, Annette (Technische Universität München (Munic, Alemanya). Chair of Ecoclimatology) ; Peñuelas, Josep (Universitat Autònoma de Barcelona. Departament de Biologia Animal, de Biologia Vegetal i d'Ecologia) ; Song, Yang (University of Illinois at Urbana-Champaign. Department of Atmospheric Sciences) ; Vitasse, Yann (Université de Neuchâtel. Institut de Géographie) ; Zeng, Zhenzhong (Sino-French Institute for Earth System Science) ; Janssens, Ivan A (Universiteit Antwerpen. Departement Biologie)
Earlier spring leaf unfolding is a frequently observed response of northern trees to climate warming1,2,3,4. Many deciduous tree species require chilling for dormancy release, and warming-related reductions in chilling may counteract the advance of leaf unfolding in response to warming5,6. [...]
2015 - 10.1038/nature15402
Nature, Vol. 526 (Oct. 2015) , p. 104-107  

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