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204 peer-reviewed articles • 21,007 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Unravelling the phenotypic plasticity of functional traits in relay-cropping: the case of soybean with winter barley
Plant and Soil, 2025, 513, 1141-1158
3.34Citations (PDF)
2Allometric Relationships of Branch Water‐Storage Capacity and Capacitance in Four European Trees Species
Plant, Cell and Environment, 2025, 48, 4011-4025
6.56Citations (PDF)
3Minimum leaf conductance during drought: unravelling its variability and impact on plant survival
New Phytologist, 2025, 246, 1001-1014
8.121Citations (PDF)
4Shade tolerance controls the spectrum of crown sizes and its response to local competition across European and North American tree species. Implications for light interception strategies
Oikos, 2025, 2025,
2.66Citations (PDF)
5The reduced canopy area in esca-symptomatic grapevine plants leads to lower canopy transpiration and mitigates water stress
Plant Physiology, 2025, 199,
5.54Citations (PDF)
6Keep in touch: the soil–root hydraulic continuum and its role in drought resistance in crops5.133Citations (PDF)
7Fluctuating selection and rapid evolution of oaks during recent climatic transitions
Plants People Planet, 2024, 6, 221-237
2.87Citations (PDF)
8Mechanisms of grapevine resilience to a vascular disease: investigating stem radial growth, xylem development and physiological acclimation
Annals of Botany, 2024, 133, 321-336
3.114Citations (PDF)
9Plant hydraulics at the heart of plant, crops and ecosystem functions in the face of climate change
New Phytologist, 2024, 241, 984-999
8.1101Citations (PDF)
10Unpacking the point of no return under drought in poplar: insight from stem diameter variation
New Phytologist, 2024, 242, 466-478
8.119Citations (PDF)
11Trade-offs and Trait Integration in Tree Phenotypes: Consequences for the Sustainable Use of Genetic Resources
Current Forestry Reports, 2024, 10, 196-222
5.930Citations (PDF)
12Exploring the role of plant hydraulics in canopy fuel moisture content: insights from an experimental drought study on Pinus halepensis Mill. and Quercus ilex L.2.14Citations (PDF)
13The rates of starch depletion and hydraulic failure both play a role in drought-induced seedling mortality2.18Citations (PDF)
14Tree drought–mortality risk depends more on intrinsic species resistance than on stand species diversity11.128Citations (PDF)
15Reconciling Pollen Limitation Theories: Insights From Temperate Oak Masting
Ecology Letters, 2024, 27,
7.57Citations (PDF)
16On the path from xylem hydraulic failure to downstream cell death
New Phytologist, 2023, 237, 793-806
8.157Citations (PDF)
17A safe breeding ground: genetically improved maritime pine for growth and stem form has more efficient but not more vulnerable xylem
Tree Physiology, 2023, 43, 366-378
3.58Citations (PDF)
18Plant hydraulic modelling of leaf and canopy fuel moisture content reveals increasing vulnerability of a Mediterranean forest to wildfires under extreme drought
New Phytologist, 2023, 237, 1256-1269
8.141Citations (PDF)
19Drought response in Arabidopsis displays synergistic coordination between stems and leaves
Journal of Experimental Botany, 2023, 74, 1004-1021
5.124Citations (PDF)
20Esca grapevine disease involves leaf hydraulic failure and represents a unique premature senescence process
Tree Physiology, 2023, 43, 441-451
3.518Citations (PDF)
21Hydraulic traits are not robust predictors of tree species stem growth during a severe drought in a wet tropical forest
Functional Ecology, 2023, 37, 447-460
4.121Citations (PDF)
22Effects of wildfire on growth, transpiration and hydraulic properties of Pinus pinaster Aiton forest
Dendrochronologia, 2023, 79, 126086
2.124Citations (PDF)
23Acclimation limits for embolism resistance and osmotic adjustment accompany the geographical dry edge of Mediterranean species
Functional Ecology, 2023, 37, 1421-1435
4.116Citations (PDF)
24Antagonistic Effects of Assortative Mating on the Evolution of Phenotypic Plasticity along Environmental Gradients
American Naturalist, 2023, 202, 18-39
2.59Citations (PDF)
25Quantifying the grapevine xylem embolism resistance spectrum to identify varieties and regions at risk in a future dry climate
Scientific Reports, 2023, 13,
3.435Citations (PDF)
26Drought survival in conifer species is related to the time required to cross the stomatal safety margin
Journal of Experimental Botany, 2023, 74, 6847-6859
5.152Citations (PDF)
27Plasticity of wood and leaf traits related to hydraulic efficiency and safety is linked to evaporative demand and not soil moisture in rubber (Hevea brasiliensis)
Tree Physiology, 2023, 43, 2131-2149
3.57Citations (PDF)
28A prognostic vegetation phenology model to predict seasonal maximum and time series of global leaf area index using climate variables5.414Citations (PDF)
29Photosynthesis, leaf hydraulic conductance and embolism dynamics in the resurrection plant Barbacenia purpurea3.614Citations (PDF)
30Cross-validation of the high-capacity tensiometer and thermocouple psychrometer for continuous monitoring of xylem water potential in saplings5.115Citations (PDF)
31Pit and tracheid anatomy explain hydraulic safety but not hydraulic efficiency of 28 conifer species
Journal of Experimental Botany, 2022, 73, 1033-1048
5.162Citations (PDF)
32Post-drought conditions and hydraulic dysfunction determine tree resilience and mortality across Mediterranean Aleppo pine (Pinus halepensis) populations after an extreme drought event
Tree Physiology, 2022, 42, 1364-1376
3.529Citations (PDF)
33The 2018 European heatwave led to stem dehydration but not to consistent growth reductions in forests13.7162Citations (PDF)
34The impact of drought-induced root and root hair shrinkage on root–soil contact
Plant Physiology, 2022, 189, 1232-1236
5.573Citations (PDF)
35Measuring xylem hydraulic vulnerability for long-vessel species: an improved methodology with the flow centrifugation technique2.115Citations (PDF)
36Temperature rather than individual growing period length determines radial growth of sessile oak in the Pyrenees5.418Citations (PDF)
37Hydraulic traits are coupled with plant anatomical traits under drought–rewatering cycles in Ginkgo biloba L.
Tree Physiology, 2022, 42, 1216-1227
3.511Citations (PDF)
38High variation in hydraulic efficiency but not xylem safety between roots and branches in four temperate broad‐leaved tree species
Functional Ecology, 2022, 36, 699-712
4.136Citations (PDF)
39Globally, tree fecundity exceeds productivity gradients
Ecology Letters, 2022, 25, 1471-1482
7.524Citations (PDF)
40Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery13.754Citations (PDF)
41Hurricanes increase tropical forest vulnerability to drought
New Phytologist, 2022, 235, 1005-1017
8.135Citations (PDF)
42Model-assisted ideotyping reveals trait syndromes to adapt viticulture to a drier climate
Plant Physiology, 2022, 190, 1673-1686
5.533Citations (PDF)
43Functional xylem characteristics associated with drought‐induced embolism in angiosperms
New Phytologist, 2022, 236, 2019-2036
8.1178Citations (PDF)
44Linking drought‐induced xylem embolism resistance to wood anatomical traits in Neotropical trees
New Phytologist, 2021, 229, 1453-1466
8.199Citations (PDF)
45Maternal effects shape the seed mycobiome in Quercus petraea
New Phytologist, 2021, 230, 1594-1608
8.179Citations (PDF)
46Nighttime transpiration represents a negligible part of water loss and does not increase the risk of water stress in grapevine
Plant, Cell and Environment, 2021, 44, 387-398
6.549Citations (PDF)
47Seasonal and long-term consequences of esca grapevine disease on stem xylem integrity
Journal of Experimental Botany, 2021, 72, 3914-3928
5.138Citations (PDF)
48Evolutionary relationships between drought-related traits and climate shape large hydraulic safety margins in western North American oaks7.589Citations (PDF)
49Counter‐gradient variation of reproductive effort in a widely distributed temperate oak
Functional Ecology, 2021, 35, 1745-1755
4.113Citations (PDF)
50Towards a statistically robust determination of minimum water potential and hydraulic risk in plants
New Phytologist, 2021, 232, 404-417
8.131Citations (PDF)
51Is there tree senescence? The fecundity evidence7.574Citations (PDF)
52Intervessel pit membrane thickness best explains variation in embolism resistance amongst stems of Arabidopsis thaliana accessions
Annals of Botany, 2021, 128, 171-182
3.148Citations (PDF)
53Potential ability of tobacco (Nicotiana tabacum L.) to phytomanage an urban brownfield soil4.33Citations (PDF)
54Adaptive introgression as a driver of local adaptation to climate in European white oaks
New Phytologist, 2020, 226, 1171-1182
8.1217Citations (PDF)
55Flower phenology as a disruptor of the fruiting dynamics in temperate oak species
New Phytologist, 2020, 225, 1181-1192
8.148Citations (PDF)
56Over‐accumulation of abscisic acid in transgenic tomato plants increases the risk of hydraulic failure
Plant, Cell and Environment, 2020, 43, 548-562
6.536Citations (PDF)
57Xylem embolism in leaves does not occur with open stomata: evidence from direct observations using the optical visualization technique
Journal of Experimental Botany, 2020, 71, 1151-1159
5.1100Citations (PDF)
58What do you mean “functional” in ecology? Patterns versus processes
Ecology and Evolution, 2020, 10, 11875-11885
2.055Citations (PDF)
59How does contemporary selection shape oak phenotypes?
Evolutionary Applications, 2020, 13, 2772-2790
3.125Citations (PDF)
60Drought‐induced lacuna formation in the stem causes hydraulic conductance to decline before xylem embolism in Selaginella
New Phytologist, 2020, 227, 1804-1817
8.122Citations (PDF)
61Distribution of endemic bark beetle attacks and their physiological consequences on Pinus halepensis3.611Citations (PDF)
62A comparison of five methods to assess embolism resistance in trees3.666Citations (PDF)
63Vulnerability and hydraulic segmentations at the stem–leaf transition: coordination across Neotropical trees
New Phytologist, 2020, 228, 512-524
8.173Citations (PDF)
64Visual and hydraulic techniques produce similar estimates of cavitation resistance in woody species
New Phytologist, 2020, 228, 884-897
8.159Citations (PDF)
65Advanced vascular function discovered in a widespread moss
Nature Plants, 2020, 6, 273-279
11.475Citations (PDF)
66In situ estimation of genetic variation of functional and ecological traits in Quercus petraea and Q. robur1.311Citations (PDF)
67Climatic limits of temperate rainforest tree species are explained by xylem embolism resistance among angiosperms but not among conifers
New Phytologist, 2020, 226, 727-740
8.153Citations (PDF)
68Neither xylem collapse, cavitation, or changing leaf conductance drive stomatal closure in wheat
Plant, Cell and Environment, 2020, 43, 854-865
6.5103Citations (PDF)
69Where is the optimum? Predicting the variation of selection along climatic gradients and the adaptive value of plasticity. A case study on tree phenology
Evolution Letters, 2020, 4, 109-123
2.953Citations (PDF)
70Lack of vulnerability segmentation in four angiosperm tree species: evidence from direct X-ray microtomography observation2.140Citations (PDF)
71The sequence and thresholds of leaf hydraulic traits underlying grapevine varietal differences in drought tolerance
Journal of Experimental Botany, 2020, 71, 4333-4344
5.1103Citations (PDF)
72How does increasing mast seeding frequency affect population dynamics of seed consumers? Wild boar as a case study3.864Citations (PDF)
73Higher needle anatomic plasticity is related to better water-use efficiency and higher resistance to embolism in fast-growing Pinus pinaster families under water scarcity1.716Citations (PDF)
74The paradox of defoliation: Declining tree water status with increasing soil water content5.437Citations (PDF)
75No role for xylem embolism or carbohydrate shortage in temperate trees during the severe 2015 drought
Journal of Ecology, 2019, 107, 334-349
4.562Citations (PDF)
76Exploring the Hydraulic Failure Hypothesis of Esca Leaf Symptom Formation
Plant Physiology, 2019, 181, 1163-1174
5.555Citations (PDF)
77Genetic differentiation in functional traits among European sessile oak populations
Tree Physiology, 2019, 39, 1736-1749
3.561Citations (PDF)
78Embolism resistance in stems of herbaceous Brassicaceae and Asteraceae is linked to differences in woodiness and precipitation
Annals of Botany, 2019, 124, 1-14
3.151Citations (PDF)
79Embolism resistance in petioles and leaflets of palms
Annals of Botany, 2019, 124, 1173-1183
3.121Citations (PDF)
80Responses of plant leaf economic and hydraulic traits mediate the effects of early- and late-season drought on grassland productivity
AoB PLANTS, 2019, 11,
2.226Citations (PDF)
81Drought response strategies and hydraulic traits contribute to mechanistic understanding of plant dry-down to hydraulic failure
Tree Physiology, 2019, 39, 910-924
3.5157Citations (PDF)
82Similar hydraulic efficiency and safety across vesselless angiosperms and vessel-bearing species with scalariform perforation plates
Journal of Experimental Botany, 2019, 70, 3227-3240
5.137Citations (PDF)
83Large hydraulic safety margins protect Neotropical canopy rainforest tree species against hydraulic failure during drought2.155Citations (PDF)
84A paleobiogeographical scenario for the Taxaceae based on a revised fossil wood record and embolism resistance1.410Citations (PDF)
85Pollen limitation as a main driver of fruiting dynamics in oak populations
Ecology Letters, 2019, 22, 98-107
7.561Citations (PDF)
86The within-population variability of leaf spring and autumn phenology is influenced by temperature in temperate deciduous trees2.330Citations (PDF)
87Tree differences in primary and secondary growth drive convergent scaling in leaf area to sapwood area across Europe
New Phytologist, 2018, 218, 1383-1392
8.123Citations (PDF)
88Drought will not leave your glass empty: Low risk of hydraulic failure revealed by long-term drought observations in world’s top wine regions
Science Advances, 2018, 4,
10.9143Citations (PDF)
89The legacy of water deficit on populations having experienced negative hydraulic safety margin5.548Citations (PDF)
90Variation in xylem vulnerability to embolism in European beech from geographically marginal populations
Tree Physiology, 2018, 38, 173-185
3.5121Citations (PDF)
91Insular woody daisies (Argyranthemum,Asteraceae) are more resistant to drought‐induced hydraulic failure than their herbaceous relatives
Functional Ecology, 2018, 32, 1467-1478
4.161Citations (PDF)
92Testing the plant pneumatic method to estimate xylem embolism resistance in stems of temperate trees
Tree Physiology, 2018, 38, 1016-1025
3.556Citations (PDF)
93Assessing inter- and intraspecific variability of xylem vulnerability to embolism in oaks3.6119Citations (PDF)
94Intraspecific variation in embolism resistance and stem anatomy across four sunflower (Helianthus annuus L.) accessions
Physiologia Plantarum, 2018, 163, 59-72
3.626Citations (PDF)
95Quantifying in situ phenotypic variability in the hydraulic properties of four tree species across their distribution range in Europe
PLoS ONE, 2018, 13, e0196075
2.338Citations (PDF)
96Isotopic evidence for oligotrophication of terrestrial ecosystems
Nature Ecology and Evolution, 2018, 2, 1735-1744
9.6198Citations (PDF)
97An inconvenient truth about xylem resistance to embolism in the model species for refilling Laurus nobilis L.2.163Citations (PDF)
98Is xylem of angiosperm leaves less resistant to embolism than branches? Insights from microCT, hydraulics, and anatomy5.154Citations (PDF)
99The ground plot counting method: A valid and reliable assessment tool for quantifying seed production in temperate oak forests?
Forest Ecology and Management, 2018, 430, 143-149
3.614Citations (PDF)
100Heritability and genetic architecture of reproduction-related traits in a temperate oak species1.362Citations (PDF)
101Birds girdling activity on exotic tree species as a form of adaptive behavior?0.40Citations (PDF)
102Xylem resistance to embolism: presenting a simple diagnostic test for the open vessel artefact
New Phytologist, 2017, 215, 489-499
8.171Citations (PDF)
103Integrating interactive effects of chilling and photoperiod in phenological process-based models. A case study with two European tree species: Fagus sylvatica and Quercus petraea5.441Citations (PDF)
104Aridity drove the evolution of extreme embolism resistance and the radiation of conifer genusCallitris
New Phytologist, 2017, 215, 97-112
8.1187Citations (PDF)
105Are forest disturbances amplifying or canceling out climate change-induced productivity changes in European forests?4.9187Citations (PDF)
106Evolutionary dynamics of the leaf phenological cycle in an oak metapopulation along an elevation gradient
Journal of Evolutionary Biology, 2017, 30, 2116-2131
1.958Citations (PDF)
107Plant resistance to drought depends on timely stomatal closure
Ecology Letters, 2017, 20, 1437-1447
7.5748Citations (PDF)
108Increasing spring temperatures favor oak seed production in temperate areas3.496Citations (PDF)
109Optical Measurement of Stem Xylem Vulnerability
Plant Physiology, 2017, 174, 2054-2061
5.5122Citations (PDF)
110Vulnerability to xylem embolism as a major correlate of the environmental distribution of rain forest species on a tropical island
Plant, Cell and Environment, 2017, 40, 277-289
6.592Citations (PDF)
111Adaptive and plastic responses ofQuercus petraeapopulations to climate across Europe
Global Change Biology, 2017, 23, 2831-2847
11.1130Citations (PDF)
112Sex determines xylem anatomy in a dioecious conifer: hydraulic consequences in a drier world
Tree Physiology, 2017, 37, 1493-1502
3.550Citations (PDF)
113A framework for modeling adaptive forest management and decision making under climate change2.294Citations (PDF)
114A synthesis of radial growth patterns preceding tree mortality
Global Change Biology, 2017, 23, 1675-1690
11.1534Citations (PDF)
115Monitoring Xylem Hydraulic Pressure in Woody Plants
Bio-protocol, 2017, 7,
0.43Citations (PDF)
116Drought avoidance and vulnerability in the Australian Araucariaceae
Tree Physiology, 2016, , tpv111
3.511Citations (PDF)
117Osmolality and Non-Structural Carbohydrate Composition in the Secondary Phloem of Trees across a Latitudinal Gradient in Europe4.080Citations (PDF)
118Desiccation and Mortality Dynamics in Seedlings of Different European Beech (Fagus sylvatica L.) Populations under Extreme Drought Conditions4.096Citations (PDF)
119Indirect Evidence for Genetic Differentiation in Vulnerability to Embolism in Pinus halepensis4.052Citations (PDF)
120Intraspecific Variation in Wood Anatomical, Hydraulic, and Foliar Traits in Ten European Beech Provenances Differing in Growth Yield4.0112Citations (PDF)
121Are needles of Pinus pinaster more vulnerable to xylem embolism than branches? New insights from X‐ray computed tomography
Plant, Cell and Environment, 2016, 39, 860-870
6.587Citations (PDF)
122Tomography and imaging at the PSICHE beam line of the SOLEIL synchrotron1.575Citations (PDF)
123Weak tradeoff between xylem safety and xylem‐specific hydraulic efficiency across the world's woody plant species
New Phytologist, 2016, 209, 123-136
8.1645Citations (PDF)
124Host range expansion is density dependent
Oecologia, 2016, 182, 779-788
1.716Citations (PDF)
125On research priorities to advance understanding of the safety–efficiency tradeoff in xylem
New Phytologist, 2016, 211, 1156-1158
8.123Citations (PDF)
126Scalariform-to-simple transition in vessel perforation plates triggered by differences in climate during the evolution of Adoxaceae
Annals of Botany, 2016, 118, 1043-1056
3.140Citations (PDF)
127Evidence for Hydraulic Vulnerability Segmentation and Lack of Xylem Refilling under Tension
Plant Physiology, 2016, 172, 1657-1668
5.5159Citations (PDF)
128Fruiting Strategies of Perennial Plants: A Resource Budget Model to Couple Mast Seeding to Pollination Efficiency and Resource Allocation Strategies
American Naturalist, 2016, 188, 66-75
2.534Citations (PDF)
129Direct observation and modelling of embolism spread between xylem conduits: a case study in Scots pine
Plant, Cell and Environment, 2016, 39, 2774-2785
6.535Citations (PDF)
130Killing it Softly: Girdling as an Efficient Eco-friendly Method to Locally Remove InvasiveAcer negundo
Ecological Restoration, 2016, 34, 297-305
0.318Citations (PDF)
131Testing the ‘microbubble effect’ using the Cavitron technique to measure xylem water extraction curves
AoB PLANTS, 2016, 8,
2.224Citations (PDF)
132How adaptable is the hydraulic system of European beech in the face of climate change‐related precipitation reduction?
New Phytologist, 2016, 210, 443-458
8.1246Citations (PDF)
133Herbaceous angiosperms are not more vulnerable to drought-induced embolism than angiosperm trees
Plant Physiology, 2016, , pp.00829.2016
5.581Citations (PDF)
134Low intra-tree variability in resistance to embolism in four Pinaceae species
Annals of Forest Science, 2016, 73, 681-689
2.125Citations (PDF)
135Stem xylem resistance to cavitation is related to xylem structure but not to growth and water-use efficiency at the within-population level inPopulus nigraL.
Journal of Experimental Botany, 2015, 66, 4643-4652
5.157Citations (PDF)
136Extreme Aridity Pushes Trees to Their Physical Limits
Plant Physiology, 2015, 168, 804-807
5.560Citations (PDF)
137Escape of spring frost and disease through phenological variations in oak populations along elevation gradients
Journal of Ecology, 2015, 103, 1044-1056
4.566Citations (PDF)
138How do drought and warming influence survival and wood traits of Picea mariana saplings?5.168Citations (PDF)
139X‐ray microtomography (micro‐CT): a reference technology for high‐resolution quantification of xylem embolism in trees
Plant, Cell and Environment, 2015, 38, 201-206
6.5179Citations (PDF)
140Noninvasive Measurement of Vulnerability to Drought-Induced Embolism by X-Ray Microtomography
Plant Physiology, 2015, 170, 273-282
5.5154Citations (PDF)
141Recent advances in tree hydraulics highlight the ecological significance of the hydraulic safety margin
New Phytologist, 2014, 203, 355-358
8.1211Citations (PDF)
142Limited genetic variability and phenotypic plasticity detected for cavitation resistance in a Mediterranean pine
New Phytologist, 2014, 201, 874-886
8.1206Citations (PDF)
143A broad survey of hydraulic and mechanical safety in the xylem of conifers
Journal of Experimental Botany, 2014, 65, 4419-4431
5.1179Citations (PDF)
144Inferring shifts in tree species distribution using asymmetric distribution curves: a case study in the Iberian mountains2.150Citations (PDF)
145Genetic divergence in forest trees: understanding the consequences of climate change
Functional Ecology, 2014, 28, 22-36
4.1128Citations (PDF)
146Chilling and heat requirements for leaf unfolding in European beech and sessile oak populations at the southern limit of their distribution range2.382Citations (PDF)
147How reliable are methods to assess xylem vulnerability to cavitation? The issue of 'open vessel' artifact in oaks
Tree Physiology, 2014, 34, 894-905
3.594Citations (PDF)
148Climate change and European forests: What do we know, what are the uncertainties, and what are the implications for forest management?8.2587Citations (PDF)
149Trade-offs between xylem hydraulic properties, wood anatomy and yield in Populus
Tree Physiology, 2014, 34, 744-756
3.593Citations (PDF)
150The enigma of the rise of angiosperms: can we untie the knot?
Ecology Letters, 2014, 17, 1326-1338
7.584Citations (PDF)
151Direct X-Ray Microtomography Observation Confirms the Induction of Embolism upon Xylem Cutting under Tension
Plant Physiology, 2014, 167, 40-43
5.5186Citations (PDF)
152Genetic differentiation and phenotypic plasticity in life-history traits between native and introduced populations of invasive maple trees
Biological Invasions, 2014, 17, 1109-1122
2.046Citations (PDF)
153The high vulnerability of Quercus robur to drought at its southern margin paves the way for Quercus ilex
Plant Ecology, 2014, 216, 177-187
1.267Citations (PDF)
154Change in water loss regulation after canopy clearcut of a dominant shrub in Sahelian agrosystems, Guiera senegalensis J. F. Gmel
Trees - Structure and Function, 2013, 27, 1011-1022
1.77Citations (PDF)
155Methods for measuring plant vulnerability to cavitation: a critical review
Journal of Experimental Botany, 2013, 64, 4779-4791
5.1380Citations (PDF)
156Genetic variation of drought-induced cavitation resistance among Pinus hartwegii populations from an altitudinal gradient
Acta Physiologiae Plantarum, 2013, 35, 2905-2913
1.834Citations (PDF)
157Xylem embolism threshold for catastrophic hydraulic failure in angiosperm trees
Tree Physiology, 2013, 33, 672-683
3.5499Citations (PDF)
158Field Evidence of Colonisation by Holm Oak, at the Northern Margin of Its Distribution Range, during the Anthropocene Period
PLoS ONE, 2013, 8, e80443
2.348Citations (PDF)
159A Test for Pre-Adapted Phenotypic Plasticity in the Invasive Tree Acer negundo L.
PLoS ONE, 2013, 8, e74239
2.343Citations (PDF)
160Hydraulic efficiency and safety of vascular and non-vascular components in Pinus pinaster leaves
Tree Physiology, 2012, 32, 1161-1170
3.541Citations (PDF)
161Global convergence in the vulnerability of forests to drought
Nature, 2012, 491, 752-755
37.92,555Citations (PDF)
162Masting in whitebark pine ( Pinus albicaulis ) depletes stored nutrients
New Phytologist, 2012, 196, 189-199
8.1140Citations (PDF)
163Micro-evolutionary patterns of juvenile wood density in a pine species
Plant Ecology, 2012, 213, 1781-1792
1.220Citations (PDF)
164Plasmodesmatal pores in the torus of bordered pit membranes affect cavitation resistance of conifer xylem
Plant, Cell and Environment, 2012, 35, 1109-1120
6.575Citations (PDF)
165Drought effects on damage by forest insects and pathogens: a meta‐analysis
Global Change Biology, 2012, 18, 267-276
11.1495Citations (PDF)
166Biogeographical contrasts to assess local and regional patterns of invasion: a case study with two reciprocally introduced exotic maple trees
Ecography, 2012, 35, 803-810
4.717Citations (PDF)
167Assessing the effects of climate change on the phenology of European temperate trees5.4354Citations (PDF)
168Reviewing the Science and Implementation of Climate Change Adaptation Measures in European Forestry
Forests, 2011, 2, 961-982
2.2208Citations (PDF)
169A meta-analysis of the ecological significance of density in tree invasions
Community Ecology, 2011, 12, 171-178
1.514Citations (PDF)
170Adaptive responses for seed and leaf phenology in natural populations of sessile oak along an altitudinal gradient
Journal of Evolutionary Biology, 2011, 24, 1442-1454
1.9131Citations (PDF)
171Tree invasions: a comparative test of the dominant hypotheses and functional traits
Biological Invasions, 2011, 13, 1969-1989
2.0135Citations (PDF)
172Invasive Acer negundo outperforms native species in non-limiting resource environments due to its higher phenotypic plasticity
BMC Ecology, 2011, 11, 28
3.359Citations (PDF)
173Monitoring elevation variations in leaf phenology of deciduous broadleaf forests from SPOT/VEGETATION time-series
Remote Sensing of Environment, 2011, 115, 615-627
11.187Citations (PDF)
174To what extent is altitudinal variation of functional traits driven by genetic adaptation in European oak and beech?
Tree Physiology, 2011, 31, 1164-1174
3.5183Citations (PDF)
175Uniform Selection as a Primary Force Reducing Population Genetic Differentiation of Cavitation Resistance across a Species Range
PLoS ONE, 2011, 6, e23476
2.3146Citations (PDF)
176Xylem function and growth rate interact to determine recovery rates after exposure to extreme water deficit
New Phytologist, 2010, 188, 533-542
8.1329Citations (PDF)
177Mechanism of water‐stress induced cavitation in conifers: bordered pit structure and function support the hypothesis of seal capillary‐seeding
Plant, Cell and Environment, 2010, 33, 2101-2111
6.5258Citations (PDF)
178Quantifying phenological plasticity to temperature in two temperate tree species
Functional Ecology, 2010, 24, 1211-1218
4.1232Citations (PDF)
179Are plant pathogen populations adapted for encounter with their host? A case study of phenological synchrony between oak and an obligate fungal parasite along an altitudinal gradient1.942Citations (PDF)
180Climate change impacts, adaptive capacity, and vulnerability of European forest ecosystems
Forest Ecology and Management, 2010, 259, 698-709
3.62,010Citations (PDF)
181New Insights into the Mechanisms of Water-Stress-Induced Cavitation in Conifers
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