Predicting species dominance shifts across elevation gradients in mountain forests in Greece under a warmer and drier climate
暂无分享,去创建一个
Christos Giannakopoulos | Anastasia Christopoulou | M. Arianoutsou | C. Giannakopoulos | P. Dimitrakopoulos | N. Fyllas | M. Gloor | Panayiotis G. Dimitrakopoulos | Nikolaos M. Fyllas | A. Christopoulou | Margarita Arianoutsou | Chrysanthi Michelaki | Alexandros Galanidis | Manuel Gloor | Alexandros Galanidis | Chrysanthi Z. Michelaki
[1] Kalliopi Radoglou,et al. Forests of the Mediterranean region : gaps in knowledge and research needs , 2000 .
[2] J. Peñuelas,et al. Rapid climate change‐related growth decline at the southern range edge of Fagus sylvatica , 2006 .
[3] Stephen Sitch,et al. Analysing Amazonian forest productivity using a new individual and trait-based model (TFS v.1) , 2014 .
[4] Josep Peñuelas,et al. A global change‐induced biome shift in the Montseny mountains (NE Spain) , 2003 .
[5] P. Quézel,et al. Changes and disturbances of forest ecosystems caused by human activities in the western part of the mediterranean basin , 1990, Vegetatio.
[6] H. Bugmann. A Review of Forest Gap Models , 2001 .
[7] T. Keenan,et al. Predicting the future of forests in the Mediterranean under climate change, with niche‐ and process‐based models: CO2 matters! , 2011 .
[8] C. Piedallu,et al. Soil water balance performs better than climatic water variables in tree species distribution modelling , 2013 .
[9] H. Shugart. A Theory of Forest Dynamics , 1984 .
[10] N. McDowell,et al. A global overview of drought and heat-induced tree mortality reveals emerging climate change risks for forests , 2010 .
[11] Lars Markesteijn,et al. Seedling Traits Determine Drought Tolerance of Tropical Tree Species , 2008 .
[12] D. Botkin,et al. Restoration and management of callitris forest ecosystems in Eastern Australia: Simulation of attributes of growth dynamics, growth increment and biomass accumulation , 2013 .
[13] L. Poorter,et al. Functional traits predict drought performance and distribution of Mediterranean woody species , 2014 .
[14] I. C. Prentice,et al. Evaluation of the terrestrial carbon cycle, future plant geography and climate‐carbon cycle feedbacks using five Dynamic Global Vegetation Models (DGVMs) , 2008 .
[15] Maurizio Mencuccini,et al. Interspecific variation in functional traits, not climatic differences among species ranges, determines demographic rates across 44 temperate and Mediterranean tree species , 2010 .
[16] Marco Bindi,et al. Potential impact of climate change on fire risk in the Mediterranean area , 2006 .
[17] Simon Scheiter,et al. Next-generation dynamic global vegetation models: learning from community ecology. , 2013, The New phytologist.
[18] Nikos Koutsias,et al. On the relationships between forest fires and weather conditions in Greece from long-term national observations (1894–2010) , 2013 .
[19] M. Flechsig,et al. Integrating parameter uncertainty of a process-based model in assessments of climate change effects on forest productivity , 2016, Climatic Change.
[20] C. Priestley,et al. On the Assessment of Surface Heat Flux and Evaporation Using Large-Scale Parameters , 1972 .
[21] Juli G. Pausas,et al. Mediterranean vegetation dynamics: modelling problems and functional types , 2004, Plant Ecology.
[22] J. Aronson,et al. Biology and Wildlife of the Mediterranean Region , 1999 .
[23] J. Wösten,et al. Development and use of a database of hydraulic properties of European soils , 1999 .
[24] D. Bragg. Potential relative increment (PRI): a new method to empirically derive optimal tree diameter growth , 2001 .
[25] A. Apostolakis,et al. Studies on forest health and vegetation changes in Greece under the effects of climate changes , 2013, Biodiversity and Conservation.
[26] Boris Zeide,et al. Analysis of Growth Equations , 1993 .
[27] A. Taylor,et al. Widespread Increase of Tree Mortality Rates in the Western United States , 2009, Science.
[28] G. Schneiter,et al. Potential shift in tree species composition after interaction of fire and drought in the Central Alps , 2010, European Journal of Forest Research.
[29] J. Sperry,et al. Trends in wood density and structure are linked to prevention of xylem implosion by negative pressure , 2001, Oecologia.
[30] C. Körner,et al. Impact of recent climatic change on growth of low elevation eastern Mediterranean forest trees , 2011 .
[31] B. Muys,et al. Ecological traits of Mediterranean tree species as a basis for modelling forest dynamics in the Taurus mountains, Turkey , 2014 .
[32] J. Linares,et al. Climate change impacts and vulnerability of the southern populations of Pinus nigra subsp. salzmannii. , 2010, Tree physiology.
[33] A. Troumbis,et al. Regeneration dynamics of a mixed Mediterranean pine forest in the absence of fire , 2008 .
[34] Henri D. Grissino-Mayer,et al. Evaluating Crossdating Accuracy: A Manual and Tutorial for the Computer Program COFECHA , 2001 .
[35] O. Phillips,et al. Development and parameterization of a general forest gap dynamics simulator for the North-eastern Mediterranean Basin (GREek FOrest Species) , 2007 .
[36] Juli G. Pausas. Changes in Fire and Climate in the Eastern Iberian Peninsula (Mediterranean Basin) , 2004 .
[37] Andrea Vannini,et al. Interactive effects of drought and pathogens in forest trees , 2006 .
[38] Anja Rammig,et al. Leaf and stem economics spectra drive diversity of functional plant traits in a dynamic global vegetation model , 2015, Global change biology.
[39] P. V. van Bodegom,et al. A fully traits-based approach to modeling global vegetation distribution , 2014, Proceedings of the National Academy of Sciences.
[40] M. Ninyerola,et al. Twentieth century increase of Scots pine radial growth in NE Spain shows strong climate interactions , 2008 .
[41] S. Gualdi,et al. THE CIRCE SIMULATIONS Regional Climate Change Projections with Realistic Representation of the Mediterranean Sea , 2013 .
[42] D. Yamaguchi. A simple method for cross-dating increment cores from living trees , 1991 .
[43] R. Marchin,et al. Hydraulic failure and tree dieback are associated with high wood density in a temperate forest under extreme drought , 2011 .
[44] C. Quesada,et al. Deriving Plant Functional Types for Amazonian forests for use in vegetation dynamics models , 2012 .
[45] P. Jones,et al. A European daily high-resolution gridded data set of surface temperature and precipitation for 1950-2006 , 2008 .
[46] Andrew D. Moore. On the maximum growth equation used in forest gap simulation models , 1989 .
[47] H. Shugart. A Theory of Forest Dynamics , 1984 .
[48] Birgit Müller,et al. A standard protocol for describing individual-based and agent-based models , 2006 .
[49] F. Valladares,et al. Performance of seedlings of Mediterranean woody species under experimental gradients of irradiance and water availability: trade-offs and evidence for niche differentiation. , 2006, The New phytologist.
[50] G. Bonan. Forests and Climate Change: Forcings, Feedbacks, and the Climate Benefits of Forests , 2008, Science.
[51] Thomas Giesecke,et al. Projecting the future distribution of European potential natural vegetation zones with a generalized, tree species-based dynamic vegetation model , 2012 .
[52] M. Arianoutsou,et al. Simulating regeneration and vegetation dynamics in Mediterranean coniferous forests , 2010 .
[53] A. Granier,et al. A lumped water balance model to evaluate duration and intensity of drought constraints in forest stands , 1999 .
[54] J. Peñuelas,et al. Plant-soil interactions in Mediterranean forest and shrublands: impacts of climatic change , 2013, Plant and Soil.
[55] A. Troumbis,et al. Simulating vegetation shifts in north- eastern Mediterranean mountain forests under climatic change scenarios , 2009 .
[56] P. Reich. The world‐wide ‘fast–slow’ plant economics spectrum: a traits manifesto , 2014 .
[57] Benjamin Smith,et al. Changes in European ecosystem productivity and carbon balance driven by regional climate model output , 2007 .
[58] W. Cornwell,et al. Wood density and vessel traits as distinct correlates of ecological strategy in 51 California coast range angiosperms. , 2006, The New phytologist.
[59] C. Allen,et al. Drought-induced shift of a forest-woodland ecotone: rapid landscape response to climate variation. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[60] Juli G. Pausas,et al. Fire regime changes in the Western Mediterranean Basin: from fuel-limited to drought-driven fire regime , 2011, Climatic Change.
[61] Jan Dick,et al. Recent Plant Diversity Changes on Europe’s Mountain Summits , 2012, Science.
[62] O. W. Archibold. Ecology of World Vegetation , 1994, Springer Netherlands.
[63] F. Giorgi,et al. Climate change projections for the Mediterranean region , 2008 .
[64] M. Arianoutsou,et al. Dendrochronology-based fire history of Pinus nigra forests in Mount Taygetos, Southern Greece , 2013 .
[65] Fire History In European Black Pine (Pinus nigra Arn.) Forests of the Valia Kalda, Pindus Mountains, Greece , 2012 .
[66] H. Bugmann,et al. Simulating structural forest patterns with a forest gap model: a model evaluation , 2005 .