Intervessel pits are considered to function as valves that avoid embolism spreading and optimize efficient transport of xylem sap across neighbouring vessels. Hydraulic transport between vessels would therefore follow a safety-efficiency trade-off, which is directly related to the total intervessel pit area (Ap), inversely related to the pit membrane thickness (TPM), and driven by a pressure difference. To test this hypothesis, we modelled the relative transport rate of gas (ka) and water (Q) at the intervessel pit level for 23 angiosperm species, and correlated these parameters with the water potential at which 50% of embolism occurs (Ψ50). We also measured ka for 10 species using pneumatic measurements. The pressure difference across adja...
Journal ArticleA model of xylem conduit function was applied to gymnosperm tracheids with torus-marg...
Interconduit pit membranes represent porous media for water transport between neighbouring conduits....
Shaping global water and carbon cycles, plants lift water from roots to leaves through xylem conduit...
The evolution of xylem vessels from tracheids is put forward as a key innovation that boosted hydrau...
Pit membranes in bordered pits between neighbouring vessels play a major role inthe entry of air-wat...
Bordered pits are cavities in the lignified cell walls of xylem conduits (vessels and tracheids) tha...
• The hydraulic conductance of angiosperm xylem has been suggested to vary with changes in sap solut...
The evolution of lignified xylem allowed for the efficient transport of water under tension,but als...
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...
The article discusses water transport in angiosperms and conifers, focusing on structural factors th...
Journal ArticleA model of xylem conduit function was applied to gymnosperm tracheids with torus-marg...
Interconduit pit membranes represent porous media for water transport between neighbouring conduits....
Shaping global water and carbon cycles, plants lift water from roots to leaves through xylem conduit...
The evolution of xylem vessels from tracheids is put forward as a key innovation that boosted hydrau...
Pit membranes in bordered pits between neighbouring vessels play a major role inthe entry of air-wat...
Bordered pits are cavities in the lignified cell walls of xylem conduits (vessels and tracheids) tha...
• The hydraulic conductance of angiosperm xylem has been suggested to vary with changes in sap solut...
The evolution of lignified xylem allowed for the efficient transport of water under tension,but als...
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...
The article discusses water transport in angiosperms and conifers, focusing on structural factors th...
Journal ArticleA model of xylem conduit function was applied to gymnosperm tracheids with torus-marg...
Interconduit pit membranes represent porous media for water transport between neighbouring conduits....
Shaping global water and carbon cycles, plants lift water from roots to leaves through xylem conduit...