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C. Fernandez, Y. Monnier, M. Santonja, C. Gallet, L. Weston, B. Prévosto, Amélie Saunier, V. Baldy, A. Bousquet-Mélou (2016)
The Impact of Competition and Allelopathy on the Trade-Off between Plant Defense and Growth in Two Contrasting Tree SpeciesFrontiers in Plant Science, 7
Daniel Montesinos, P. Villar‐Salvador, P. García‐Fayos, M. Verdú (2012)
Genders in Juniperus thurifera have different functional responses to variations in nutrient availability.The New phytologist, 193 3
J. Pittermann, Stephanie Stuart, T. Dawson, A. Moreau (2012)
Cenozoic climate change shaped the evolutionary ecophysiology of the Cupressaceae conifersProceedings of the National Academy of Sciences, 109
G. Arx, H. Dietz (2005)
Automated Image Analysis of Annual Rings in the Roots of Perennial ForbsInternational Journal of Plant Sciences, 166
Katline Charra-Vaskou, É. Badel, R. Burlett, H. Cochard, S. Delzon, S. Mayr (2012)
Hydraulic efficiency and safety of vascular and non-vascular components in Pinus pinaster leaves.Tree physiology, 32 9
Sean Gleason, Sean Gleason, M. Westoby, S. Jansen, B. Choat, T. Brodribb, Hervé Cochard, Hervé Cochard, S. Delzon, U. Hacke, A. Jacobsen, Daniel Johnson, F. Lens, H. Maherali, J. Martínez‐Vilalta, S. Mayr, K. McCulloh, Hugh Morris, A. Nardini, L. Plavcová, L. Plavcová, R. Pratt, Stefan Schreiber, A. Zanne (2016)
On research priorities to advance understanding of the safety-efficiency tradeoff in xylem: A response to Bittencourt et al.'s (2016) comment 'On xylem hydraulic efficiencies, wood space-use and the safety-efficiency tradeoff': in this issue of New Phytologist, pp. 1152-1155.The New phytologist, 211 4
Remi Wortemann, Stéphane Herbette, T. Barigah, B. Fumanal, R. Alía, A. Ducousso, Dusan Gomory, P. Roeckel-Drevet, H. Cochard (2011)
Genotypic variability and phenotypic plasticity of cavitation resistance in Fagus sylvatica L. across Europe.Tree physiology, 31 11
P. Bouche, Maximilien Larter, J. Domec, R. Burlett, P. Gasson, S. Jansen, S. Delzon (2014)
A broad survey of hydraulic and mechanical safety in the xylem of conifersJournal of Experimental Botany, 65
A. Terrab, P. Schönswetter, S. Talavera, E. Véla, T. Stuessy (2008)
Range-wide phylogeography of Juniperus thurifera L., a presumptive keystone species of western Mediterranean vegetation during cold stages of the Pleistocene.Molecular phylogenetics and evolution, 48 1
R. Shine (1989)
Ecological Causes for the Evolution of Sexual Dimorphism: A Review of the EvidenceThe Quarterly Review of Biology, 64
A. Prendin, G. Petit, M. Carrer, P. Fonti, J. Björklund, G. Arx (2017)
New research perspectives from a novel approach to quantify tracheid wall thicknessTree Physiology, 37
J. Sperry, U. Hacke, J. Pittermann (2006)
Size and function in conifer tracheids and angiosperm vessels.American journal of botany, 93 10
B. Choat, S. Jansen, T. Brodribb, H. Cochard, S. Delzon, Radika Bhaskar, S. Bucci, T. Feild, S. Gleason, U. Hacke, A. Jacobsen, F. Lens, H. Maherali, J. Martínez‐Vilalta, S. Mayr, Maurizio Mencuccini, P. Mitchell, A. Nardini, J. Pittermann, R. Pratt, J. Sperry, M. Westoby, I. Wright, A. Zanne (2012)
Global convergence in the vulnerability of forests to droughtNature, 491
J. Sperry, V. Stiller, U. Hacke (2003)
Xylem Hydraulics and the Soil-Plant-Atmosphere Continuum: Opportunities and Unresolved IssuesAgronomy Journal, 95
J. Olano, A. García‐Cervigón, A. Arzac, V. Rozas (2015)
Intra-annual wood density fluctuations and tree-ring width patterns are sex- and site-dependent in the dioecious conifer Juniperus thurifera L.Trees, 29
W. Anderegg (2015)
Spatial and temporal variation in plant hydraulic traits and their relevance for climate change impacts on vegetation.The New phytologist, 205 3
U. Hacke, J. Sperry, W. Pockman, S. Davis, K. McCulloh (2001)
Trends in wood density and structure are linked to prevention of xylem implosion by negative pressureOecologia, 126
G. Arx, A. Arzac, J. Olano, P. Fonti (2015)
Assessing Conifer Ray Parenchyma for Ecological Studies: Pitfalls and GuidelinesFrontiers in Plant Science, 6
J. Lamy, S. Delzon, P. Bouche, R. Alía, G. Vendramin, H. Cochard, C. Plomion (2014)
Limited genetic variability and phenotypic plasticity detected for cavitation resistance in a Mediterranean pine.The New phytologist, 201 3
J. Lamy, L. Bouffier, R. Burlett, C. Plomion, H. Cochard, S. Delzon (2011)
Uniform Selection as a Primary Force Reducing Population Genetic Differentiation of Cavitation Resistance across a Species RangePLoS ONE, 6
C. Sáenz-Romero, Maximilien Larter, N. González-Muñoz, C. Wehenkel, A. Blanco‐García, D. Castellanos‐Acuña, R. Burlett, S. Delzon (2017)
Mexican conifers differ in their capacity to face climate change, 4
M. Lazzarin, A. Crivellaro, C. Williams, T. Dawson, G. Mozzi, T. Anfodillo (2016)
TRACHEID AND PIT ANATOMY VARY IN TANDEM IN A TALL SEQUOIADENDRON GIGANTEUM TREEIawa Journal, 37
G. Arx, Alan Crivellaro, A. Prendin, K. Čufar, M. Carrer (2016)
Quantitative Wood Anatomy—Practical GuidelinesFrontiers in Plant Science, 7
V. Krischik, R. Denno (1990)
Patterns of growth, reproduction, defense, and herbivory in the dioecious shrub Baccharis halimifolia (Compositae)Oecologia, 83
U. Hacke, J. Sperry (2015)
Functional and Ecological Xylem AnatomyPerspectives in Plant Ecology Evolution and Systematics, 4
E. Granda, J. Camarero, T. Gimeno, J. Martínez-Fernández, F. Valladares (2013)
Intensity and timing of warming and drought differentially affect growth patterns of co-occurring Mediterranean tree speciesEuropean Journal of Forest Research, 132
K. Mitrakos (1980)
A theory for Mediterranean plant life [evergreen sclerophyllous shrubs, climatic stresses, Mediterranean climate]
D. Freeman, L. Klikoff, K. Harper (1976)
Differential Resource Utilization by the Sexes of Dioecious PlantsScience, 193
J. Martínez‐Vilalta, H. Cochard, Maurizio Mencuccini, F. Sterck, A. Herrero, J. Korhonen, P. Llorens, E. Nikinmaa, A. Nolè, R. Poyatos, F. Ripullone, U. Sass-Klaassen, R. Zweifel (2009)
Hydraulic adjustment of Scots pine across Europe.The New phytologist, 184 2
C. Allen, D. Breshears (1998)
Drought-induced shift of a forest-woodland ecotone: rapid landscape response to climate variation.Proceedings of the National Academy of Sciences of the United States of America, 95 25
K. Hultine, S. Bush, A. West, K. Burtch, D. Pataki, J. Ehleringer (2008)
Gender-specific patterns of aboveground allocation, canopy conductance and water use in a dominant riparian tree species: Acer negundo.Tree physiology, 28 9
J. Pittermann, J. Sperry, U. Hacke, James Wheeler, E. Sikkema (2005)
Torus-Margo Pits Help Conifers Compete with AngiospermsScience, 310
José Costa-Saura, J. Martínez‐Vilalta, A. Trabucco, D. Spanò, S. Mereu (2016)
Specific leaf area and hydraulic traits explain niche segregation along an aridity gradient in Mediterranean woody speciesPerspectives in Plant Ecology Evolution and Systematics, 21
L. Esteban, J. Martín, P. Palacios, F. Fernández (2012)
Influence of region of provenance and climate factors on wood anatomical traits of Pinus nigra Arn. subsp. salzmanniiEuropean Journal of Forest Research, 131
L. Corcuera, H. Cochard, E. Gil-Pelegrín, E. Notivol (2011)
Phenotypic plasticity in mesic populations of Pinus pinaster improves resistance to xylem embolism (P50) under severe droughtTrees, 25
G. Arx, M. Carrer (2014)
ROXAS – A new tool to build centuries-long tracheid-lumen chronologies in conifersDendrochronologia, 32
K. Hultine, K. Grady, Troy Wood, S. Shuster, J. Stella, T. Whitham (2014)
Climate change perils for dioecious plant speciesNature Plants, 2
E. Gustafson, B. Sturtevant (2012)
Modeling Forest Mortality Caused by Drought Stress: Implications for Climate ChangeEcosystems, 16
Aaron Christ (2009)
Mixed Effects Models and Extensions in Ecology with RJournal of Statistical Software, 32
N. McDowell (2011)
Mechanisms Linking Drought, Hydraulics, Carbon Metabolism, and Vegetation Mortality1[W]Plant Physiology, 155
S. Vasiliauskas, L. Aarssen (1992)
Sex Ratio and Neighbor Effects in Monospecific Stands of Juniperus VirginianaEcology, 73
P.R.L. Bittencourt, L. Pereira, R. Oliveira (2016)
On xylem hydraulic efficiencies, wood space-use and the safety-efficiency tradeoff: Comment on Gleason et al. (2016) 'Weak tradeoff between xylem safety and xylem-specific hydraulic efficiency across the world's woody plant species'.The New phytologist, 211 4
V. Rozas, L. DeSoto, J. Olano (2009)
Sex-specific, age-dependent sensitivity of tree-ring growth to climate in the dioecious tree Juniperus thurifera.The New phytologist, 182 3
Team (2016) nlme: Linear and Nonlinear Mixed Effects Models
L. DeSoto, J. Olano, V. Rozas (2016)
Secondary Growth and Carbohydrate Storage Patterns Differ between Sexes in Juniperus thuriferaFrontiers in Plant Science, 7
H. Cochard (2002)
A technique for measuring xylem hydraulic conductance under high negative pressuresPlant Cell and Environment, 25
Helena Teixeira, S. Rodríguez‐Echeverría, C. Nabais (2014)
Genetic Diversity and Differentiation of Juniperus thurifera in Spain and Morocco as Determined by SSRPLoS ONE, 9
M. Denne (1989)
Definition of Latewood According to Mork (1928)Iawa Journal, 10
(2008)
Rangewide phylogeography of Juniperus thurifera L., a presumptive keystone
A. García‐Cervigón, J. Linares, P. Aibar, J. Olano (2015)
Facilitation promotes changes in leaf economics traits of a perennial forbOecologia, 179
S. Delzon, C. Douthe, A. Sala, H. Cochard (2010)
Mechanism of water-stress induced cavitation in conifers: bordered pit structure and function support the hypothesis of seal capillary-seedingPlant, Cell & Environment, 33
U. Hacke, B. Lachenbruch, J. Pittermann, S. Mayr, J. Domec, P. Schulte (2015)
The Hydraulic Architecture of ConifersSpringer International Publishing, 2015
P. Fonti, G. Arx, I. García‐González, B. Eilmann, U. Sass-Klaassen, H. Gärtner, D. Eckstein (2010)
Studying global change through investigation of the plastic responses of xylem anatomy in tree rings.The New phytologist, 185 1
R. David‐Schwartz, Indira Paudel, Ma'ayan Mizrachi, S. Delzon, H. Cochard, V. Lukyanov, É. Badel, G. Capdeville, Galina Shklar, S. Cohen (2016)
Indirect Evidence for Genetic Differentiation in Vulnerability to Embolism in Pinus halepensisFrontiers in Plant Science, 7
J. Olano, J. Linares, A. García‐Cervigón, A. Arzac, A. Delgado, V. Rozas (2014)
Drought-induced increase in water-use efficiency reduces secondary tree growth and tracheid wall thickness in a Mediterranean coniferOecologia, 176
K. Hultine, K. Burtch, J. Ehleringer (2013)
Gender specific patterns of carbon uptake and water use in a dominant riparian tree species exposed to a warming climateGlobal Change Biology, 19
P. Ortiz, M. Arista, S. Talavera (2002)
Sex ratio and reproductive effort in the dioecious Juniperus communis subsp. alpina (Suter) Celak. (Cupressaceae) along an altitudinal gradient.Annals of botany, 89 2
R. Retuerto, B. Lema, S. Roiloa, J. Obeso (2000)
Gender, light and water effects in carbon isotope discrimination, and growth rates in the dioecious tree Ilex aquifoliumFunctional Ecology, 14
Xiao Xu, Fan Yang, Xiang Xiao, S. Zhang, H. Korpelainen, Chunyang Li (2008)
Sex-specific responses of Populus cathayana to drought and elevated temperatures.Plant, cell & environment, 31 6
H. Cochard, Gaëlle Damour, C. Bodet, Ibrahim Tharwat, M. Poirier, T. Améglio (2005)
Evaluation of a new centrifuge technique for rapid generation of xylem vulnerability curvesPhysiologia Plantarum, 124
M. Zimmermann (1983)
Xylem Structure and the Ascent of Sap
Daniel Montesinos, P. García‐Fayos, M. Verdú (2012)
Masting uncoupling: mast seeding does not follow all mast flowering episodes in a dioecious juniper treeOikos, 121
R. Tognetti (2012)
Adaptation to climate change of dioecious plants: does gender balance matter?Tree physiology, 32 11
Daniel Montesinos, M. Luis, M. Verdú, J. Raventós, P. García‐Fayos (2006)
When, how and how much: Gender-specific resource-use strategies in the dioecious tree Juniperus thurifera.Annals of botany, 98 4
T. Nonweiler (1975)
Flow of biological fluids through non-ideal capillaries
R. Borchert, W. Pockman (2005)
Water storage capacitance and xylem tension in isolated branches of temperate and tropical trees.Tree physiology, 25 4
(2014)
Climate change 2014 synthesis report, contribution of Working Groups I, II and III to the fifth assessment report of the Intergovernmental Panel on Climate Change
T. Anfodillo, G. Petit, A. Crivellaro (2013)
AXIAL CONDUIT WIDENING IN WOODY SPECIES: A STILL NEGLECTED ANATOMICAL PATTERNIawa Journal, 34
R. Team (2014)
R: A language and environment for statistical computing.MSOR connections, 1
J. Olano, A. Arzac, A. García‐Cervigón, G. Arx, V. Rozas (2013)
New star on the stage: amount of ray parenchyma in tree rings shows a link to climate.The New phytologist, 198 2
G. Iszkuło, A. Boratyński (2011)
Initial period of sexual maturity determines the greater growth rate of male over female in the dioecious tree Juniperus communis subsp. communisActa Oecologica-international Journal of Ecology, 37
L. DeSoto, J. Camarero, J. Olano, V. Rozas (2012)
Geographically structured and temporally unstable growth responses of Juniperus thurifera to recent climate variability in the Iberian PeninsulaEuropean Journal of Forest Research, 131
M. Benito-Garzón, P. Ruiz‐Benito, M. Zavala (2013)
Interspecific differences in tree growth and mortality responses to environmental drivers determine potential species distributional limits in Iberian forestsGlobal Ecology and Biogeography, 22
Norman Pammenter, C. Willigen (1998)
A mathematical and statistical analysis of the curves illustrating vulnerability of xylem to cavitation.Tree physiology, 18 8_9
L. Anderegg, J. HilleRisLambers (2016)
Drought stress limits the geographic ranges of two tree species via different physiological mechanismsGlobal Change Biology, 22
H. Gärtner, S. Lucchinetti, F. Schweingruber (2015)
A new sledge microtome to combine wood anatomy and tree-ring ecologyIawa Journal, 36
Z. Fan, Shi-Bao Zhang, Guang‐You Hao, J. Slik, K. Cao (2012)
Hydraulic conductivity traits predict growth rates and adult stature of 40 Asian tropical tree species better than wood densityJournal of Ecology, 100
H. Maherali, W. Pockman, R. Jackson (2004)
ADAPTIVE VARIATION IN THE VULNERABILITY OF WOODY PLANTS TO XYLEM CAVITATIONEcology, 85
J. Pittermann, B. Choat, S. Jansen, Stephanie Stuart, L. Lynn, T. Dawson (2010)
The Relationships between Xylem Safety and Hydraulic Efficiency in the Cupressaceae: The Evolution of Pit Membrane Form and Function1[W][OA]Plant Physiology, 153
E. Pasho, J. Camarero, M. Luis, S. Vicente‐Serrano (2011)
Impacts of drought at different time scales on forest growth across a wide climatic gradient in north-eastern SpainAgricultural and Forest Meteorology, 151
R. López, F. Cano, B. Choat, H. Cochard, L. Gil (2016)
Plasticity in Vulnerability to Cavitation of Pinus canariensis Occurs Only at the Driest End of an Aridity GradientFrontiers in Plant Science, 7
(2017)
Downloaded from https://academic.oup.com/treephys/article-abstract/37/11/1493/3859997 by WSL user on
J. Olano, M. Eugenio, A. García‐Cervigón, Maika Folch, V. Rozas (2012)
Quantitative Tracheid Anatomy Reveals a Complex Environmental Control of Wood Structure in Continental Mediterranean ClimateInternational Journal of Plant Sciences, 173
AbstractIncreased drought frequency and severity may reshape tree species distribution in arid environments. Dioecious tree species may be more sensitive to climate warming if sex-related vulnerability to drought occurs, since lower performance of one sex may drive differential stress tolerance, sex-related mortality rates and biased sex ratios. We explored the effect of sex and environment on branch hydraulic (hydraulic conductivity and vulnerability to embolism) and trunk anatomical traits in both sexes of the dioecious conifer Juniperus thurifera L. at two sites with contrasting water availability. Additionally, we tested for a trade-off between hydraulic safety (vulnerability to embolism) and efficiency (hydraulic conductivity). Vulnerability to embolism and hydraulic conductivity were unaffected by sex or site at branch level. In contrast, sex played a significant role in xylem anatomy. We found a trade-off between hydraulic safety and efficiency, with larger conductivities related to higher vulnerabilities to embolism. At the anatomical level, females’ trunk showed xylem anatomical traits related to greater hydraulic efficiency (higher theoretical hydraulic conductivity) over safety (thinner tracheid walls, lower Mork's Index), whereas males’ trunk anatomy followed a more conservative strategy, especially in the drier site. Reconciling the discrepancy between branch hydraulic function and trunk xylem anatomy would require a thorough and integrated understanding of the tree structure–function relationship at the whole-plant level. Nevertheless, lower construction costs and higher efficiency in females’ xylem anatomy at trunk level might explain the previously observed higher growth rates in mesic habitats. However, prioritizing efficiency over safety in trunk construction might make females more sensitive to drought, endangering the species’ persistence in a drier world.
Tree Physiology – Oxford University Press
Published: Nov 1, 2017
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