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Plasticity in hydraulic architecture of Scots pine across Eurasia
R Poyatos
, J Martinez-Vilalta
, J Cermak
, R Ceulemans
, A Granier
, J Irvine
, B Köstner
, F Lagergren
, Linda Meiresonne
, N Nadezhdina
, R Zimmerman
, P Llorens
, M Mencuccini
Research output
:
Contribution to journal
›
A1: Web of Science-article
›
peer-review
2521
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Keyphrases
Absolute Sensitivity
33%
Absolute Value
33%
Across Population
33%
Area Ratio
33%
Balance Condition
33%
Climate Warming
33%
Climatic Variables
33%
Dry Sites
33%
Environmental Variables
33%
Eurasia
100%
Evaporative Demand
66%
Fit Parameters
33%
Geographical Range
33%
Hydraulic Architecture
100%
Leaf Area
33%
Logarithmic Function
33%
Low Water
33%
Meta-analysis
33%
Multiplicative Model
33%
Photosynthetically Active Radiation
33%
Physiological Plasticity
66%
Pine Species
33%
Pinus Sylvestris
33%
Plasticity Mechanisms
33%
Relative Sensitivity
33%
Sap Flow
100%
Sapwood Area
33%
Scots pine
100%
Size Dependence
33%
Soil Moisture Deficit
66%
Stomatal Conductance
33%
Structural Adjustment
33%
Structural Plasticity
33%
Transpiration
33%
Transpiration Rate
33%
Tree Species
33%
Vapor Pressure Deficit
33%
Warm Conditions
33%
Water Balance
33%
Water Use Efficiency
33%
Xylem Pressure
33%
Agricultural and Biological Sciences
Acclimation
50%
Evaporative Demand
50%
Leaf Area
25%
Meta-Analysis
25%
Photosynthetically Active Radiation
25%
Pinus
100%
Pinus sylvestris
25%
Sap Flow
75%
Sapwood
25%
Soil Moisture
50%
Stomatal Conductance
25%
Sweating
50%
Transpiration
50%
Vapor Pressure
25%
Water Balance
25%
Water Use Efficiency
25%
Xylem
25%