Drought-induced forest dieback has been widely reported over the last decades, and the evidence for a direct causal link between survival and hydraulic failure (xylem cavitation) is now well known. Because vulnerability to cavitation is intimately linked to the anatomy of the xylem, the main objective of this study was to better understand the xylem anatomical properties associated with cavitation resistance. An extensive data set of cavitation resistance traits and xylem anatomical properties was developed for 115 conifer species, with special attention given to the micro-morphology of bordered pits. The ratio of torus to pit aperture diameter, so-called torus overlap, increased with increasing cavitation resistance, while the flexibility ...
Hydraulic properties of xylem in seven species of conifer were studied during late winter and early ...
Xylem vulnerability to cavitation is a key parameter in understanding drought resistance of trees. W...
Drought-induced cavitation resistance varies considerably between tree species and forest ecosystems...
Drought-induced forest dieback has been widely reported over the last decades, and the evidence for ...
Resistance to water-stress induced cavitation is an important indicator of drought tolerance in wood...
Cavitation resistance is a key parameter to understand tree drought tolerance but little is known ab...
Water transport in conifers occurs through single-celled tracheids that are connected to one another...
Water transport in conifers occurs through single-celled tracheids that are connected to one another...
Conifers face increased drought mortality risks because of drought-induced embolism in their vascula...
Vulnerability of stem xylem to cavitation was measured in 10 species of conifers using high pressure...
Climate change can strongly impact the forest ecosystems and droughts can lead to dieback events. Th...
International audienceEstablishing drying-limits for mortality of different tree species and underst...
The pit membrane in bordered pits of conifer tracheids is characterized by a porous margo and centra...
Hydraulic properties of xylem in seven species of conifer were studied during late winter and early ...
Xylem vulnerability to cavitation is a key parameter in understanding drought resistance of trees. W...
Drought-induced cavitation resistance varies considerably between tree species and forest ecosystems...
Drought-induced forest dieback has been widely reported over the last decades, and the evidence for ...
Resistance to water-stress induced cavitation is an important indicator of drought tolerance in wood...
Cavitation resistance is a key parameter to understand tree drought tolerance but little is known ab...
Water transport in conifers occurs through single-celled tracheids that are connected to one another...
Water transport in conifers occurs through single-celled tracheids that are connected to one another...
Conifers face increased drought mortality risks because of drought-induced embolism in their vascula...
Vulnerability of stem xylem to cavitation was measured in 10 species of conifers using high pressure...
Climate change can strongly impact the forest ecosystems and droughts can lead to dieback events. Th...
International audienceEstablishing drying-limits for mortality of different tree species and underst...
The pit membrane in bordered pits of conifer tracheids is characterized by a porous margo and centra...
Hydraulic properties of xylem in seven species of conifer were studied during late winter and early ...
Xylem vulnerability to cavitation is a key parameter in understanding drought resistance of trees. W...
Drought-induced cavitation resistance varies considerably between tree species and forest ecosystems...