Influence of drought on tree rings and tracheid features of Pinus nigra and Pinus sylvestris in a mesic Mediterranean forest
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[1] E. Assmann,et al. The Principles of Forest Yield Study: Studies in the Organic Production, Structure, Increment and Yield of Forest Stands , 2013 .
[2] B. Helliker,et al. A re-evaluation of carbon storage in trees lends greater support for carbon limitation to growth. , 2012, The New phytologist.
[3] I. Cañellas,et al. Xylem hydraulic adjustment and growth response of Quercus canariensis Willd. to climatic variability. , 2012, Tree physiology.
[4] I. Cañellas,et al. Tree-rings reflect the impact of climate change on Quercus ilex L. along a temperature gradient in Spain over the last 100 years , 2011 .
[5] S. Goetz,et al. Varying boreal forest response to Arctic environmental change at the Firth River, Alaska , 2011 .
[6] T. Green,et al. Seasonal shift in the climate responses of Pinus sibirica, Pinus sylvestris, and Larix sibirica trees from semi-arid, north-central Mongolia , 2011 .
[7] E. Cook,et al. A multispecies tree ring reconstruction of Potomac River streamflow (950–2001) , 2011 .
[8] I. Cañellas,et al. Black pine (Pinus nigra Arn.) growth divergence along a latitudinal gradient in Western Mediterranean mountains , 2010, Annals of Forest Science.
[9] Edward R. Cook,et al. Uncertainty, Emergence, and Statistics in Dendrochronology , 2011 .
[10] Edward R. Cook,et al. Asian Monsoon Failure and Megadrought During the Last Millennium , 2010, Science.
[11] S. Vicente‐Serrano,et al. A Multiscalar Drought Index Sensitive to Global Warming: The Standardized Precipitation Evapotranspiration Index , 2009 .
[12] Stefan Strobl,et al. Impact of drought on the temporal dynamics of wood formation in Pinus sylvestris. , 2010, Tree physiology.
[13] E. Gutiérrez,et al. Vessel features of Quercus ilex L. growing under Mediterranean climate have a better climatic signal than tree-ring width , 2010, Trees.
[14] Holger Gärtner,et al. Studying global change through investigation of the plastic responses of xylem anatomy in tree rings. , 2010, The New phytologist.
[15] A. Rigling,et al. Drought-induced adaptation of the xylem in Scots pine and pubescent oak. , 2009, Tree physiology.
[16] A. Deslauriers,et al. Critical temperatures for xylogenesis in conifers of cold climates , 2008 .
[17] Andrew G. Bunn,et al. A dendrochronology program library in R (dplR) , 2008 .
[18] F. Biondi,et al. Drought‐driven growth reduction in old beech (Fagus sylvatica L.) forests of the central Apennines, Italy , 2008 .
[19] C. Krause,et al. Latitudinal variation in tree-ring and wood cell characteristics of Picea mariana across the continuous boreal forest in Quebec , 2008 .
[20] J. Guiot,et al. Mediterranean drought fluctuation during the last 500 years based on tree-ring data , 2008 .
[21] V. Cimino. Drought-driven growth reduction in old beech ( Fagus sylvatica L . ) forests of the central Apennines , Italy , 2008 .
[22] H. Beeckman,et al. Successive cambia development in Avicennia marina (Forssk.) Vierh. is not climatically driven in the seasonal climate at Gazi Bay, Kenya , 2007 .
[23] R. Cerrillo,et al. Cartografía de defoliación en los pinares de pino silvestre (Pinus sylvestris L.) y pino salgareño (Pinus nigra Arnold.) en la Sierra de los Filabres , 2007 .
[24] Walter Oberhuber,et al. Radial growth response of coniferous forest trees in an inner Alpine environment to heat-wave in 2003 , 2007 .
[25] J. Camarero,et al. Climate increases regional tree‐growth variability in Iberian pine forests , 2007 .
[26] Martial Bernoux,et al. Soils, a sink for N2O? A review , 2007 .
[27] R. Tognetti,et al. Variations of Wood Anatomy and δ13C Within-Tree Rings of Coastal Pinus Pinaster Showing Intra-Annual Density Fluctuations , 2007 .
[28] P. Legendre,et al. vegan : Community Ecology Package. R package version 1.8-5 , 2007 .
[29] J. Teevan,et al. 2.1 Introduction , 2020, Curating Contemporary Music Festivals.
[30] J. Tardif,et al. Influence of climate on tree rings and vessel features in red oak and white oak growing near their northern distribution limit, southwestern Quebec, Canada , 2006 .
[31] J. Sperry,et al. Mechanical reinforcement of tracheids compromises the hydraulic efficiency of conifer xylem. , 2006, Plant, cell & environment.
[32] G. Koch,et al. Effect of local heating and cooling on cambial activity and cell differentiation in the stem of Norway spruce (Picea abies). , 2006, Annals of botany.
[33] Tommaso Anfodillo,et al. Conifers in cold environments synchronize maximum growth rate of tree-ring formation with day length. , 2006, The New phytologist.
[34] G. Jacoby,et al. On the long‐term context for late twentieth century warming , 2006 .
[35] Malcolm K. Hughes,et al. Growth Dynamics of Conifer Tree Rings: Images of Past and Future Environments , 2006 .
[36] A. Deslauriers,et al. Intra-annual tracheid production in balsam fir stems and the effect of meteorological variables , 2005, Trees.
[37] E. Cook,et al. Extra-tropical Northern Hemisphere land temperature variability over the past 1000 years , 2004 .
[38] G. Meehl,et al. More Intense, More Frequent, and Longer Lasting Heat Waves in the 21st Century , 2004, Science.
[39] P. Fonti,et al. Suitability of chestnut earlywood vessel chronologies for ecological studies. , 2004, The New phytologist.
[40] D. Eckstein. Change in past environments - secrets of the tree hydrosystem. , 2004, The New phytologist.
[41] R. Grote,et al. The timing of bud burst and its effect on tree growth , 2004, International journal of biometeorology.
[42] Martin A. R. Munro,et al. Summer temperature in northeastern Siberia since 1642 reconstructed from tracheid dimensions and cell numbers of Larix cajanderi , 2003 .
[43] D. McCarroll,et al. Multiproxy dendroclimatology: a pilot study in northern Finland , 2003 .
[44] Andreas Richter,et al. Non‐structural carbon compounds in temperate forest trees , 2003 .
[45] R. Tognetti,et al. Identification, measurement and interpretation of tree rings in woody species from mediterranean climates , 2003, Biological reviews of the Cambridge Philosophical Society.
[46] C. Körner. Carbon limitation in trees , 2003 .
[47] J. Piñol,et al. Drought-induced mortality and hydraulic architecture in pine populations of the NE Iberian Peninsula , 2002 .
[48] Edward R. Cook,et al. Low-Frequency Signals in Long Tree-Ring Chronologies for Reconstructing Past Temperature Variability , 2002, Science.
[49] S. Payette,et al. Relationships between anatomical and densitometric characteristics of black spruce and summer temperature at tree line in northern Quebec , 2002 .
[50] L. Donaldson. ABNORMAL LIGNIN DISTRIBUTION IN WOOD FROM SEVERELY DROUGHT STRESSED PINUS RADIATA TREES , 2002 .
[51] F. Magnani,et al. Response of a mature Pinus laricio plantation to a three-year restriction of water supply: structural and functional acclimation to drought. , 2002, Tree physiology.
[52] M. Hughes,et al. The importance of early summer temperature and date of snow melt for tree growth in the Siberian Subarctic , 2002, Trees.
[53] M. Hughes. Dendrochronology in climatology – the state of the art , 2002 .
[54] B. Sundberg,et al. Function and dynamics of auxin and carbohydrates during earlywood/latewood transition in scots pine. , 2001, Plant physiology.
[55] R. Wimmer,et al. The influence of temperature on latewood lignin content in treeline Norway spruce compared with maximum density and ring width , 2000, Trees.
[56] E. DeLucia,et al. Xylem conductivity and vulnerability to cavitation of ponderosa pine growing in contrasting climates. , 2000, Tree physiology.
[57] R. Funada,et al. The effects of tracheid dimensions on variations in maximum density of Picea glehnii and relationships to climatic factors , 2000, Trees.
[58] R. Wimmer,et al. A COMPARISON OF TREE-RING FEATURES IN PICEA ABIES AS CORRELATED WITH CLIMATE , 2000 .
[59] R. Hill,et al. The importance of xylem constraints in the distribution of conifer species , 1999 .
[60] R. Trigo,et al. Objective climatology of cyclones in the Mediterranean region: a consensus view among methods with different system identification and tracking criteria , 2016 .
[61] E. Cook,et al. Drought Reconstructions for the Continental United States , 1999 .
[62] J. Grace,et al. The response of Pinus sylvestris to drought: stomatal control of transpiration and hydraulic conductance. , 1998, Tree physiology.
[63] H. Jones. Stomatal control of photosynthesis and transpiration , 1998 .
[64] J. Camarero,et al. Tree-ring Growth and Structure of Pinus uncinata and Pinus sylvestris in the Central Spanish Pyrenees , 1998 .
[65] David M. Richardson,et al. Pines of the Mediterranean Basin , 1998 .
[66] L. Cournoyer,et al. Wood structure of biotically and climatically induced light rings in eastern larch (Larix laricina) , 1997 .
[67] M. J. Esteban‐Parra,et al. Spatial and temporal patterns of precipitation in Spain for the period 1880–1992 , 1998 .
[68] M. Stokes,et al. An Introduction to Tree-Ring Dating , 1996 .
[69] L. Cournoyer,et al. Variation in wood structure of eastern larch defoliated by the larch sawfly in subarctic Quebec, Canada , 1995 .
[70] Malcolm K. Hughes,et al. A Preliminary Reconstruction of Rainfall in North-Central China since A.D. 1600 from Tree-Ring Density and Width , 1994, Quaternary Research.
[71] C.J.F. ter Braak,et al. Canonical community ordination. Part I: Basic theory and linear methods , 1994 .
[72] Hans Beeckman,et al. Redundancy analysis and the evolutionary learning algorithm as complementary processing tools for dendrochronological data , 1993 .
[73] Herman H. Shugart,et al. A Systems Analysis of the Global Boreal Forest , 1993 .
[74] N. Nikolov,et al. A Systems Analysis of the Global Boreal Forest: Silvics of the circumpolar boreal forest tree species , 1992 .
[75] M. Galli,et al. The relationship between climatic variables and wood structure in Pinus halepensis Mill. , 1990 .
[76] E. Vaganov,et al. Components of the Variability of Radial Cell Size in Tree Rings of Conifers , 1989 .
[77] M. Zimmermann. Xylem Structure and the Ascent of Sap , 1983, Springer Series in Wood Science.
[78] R. Holmes. Computer-Assisted Quality Control in Tree-Ring Dating and Measurement , 1983 .
[79] H. Akaike. A new look at the statistical model identification , 1974 .
[80] E. Schmerling. Low Frequency Signals , 1965 .