Understanding how plants acclimate to drought is crucial for predicting future vulnerability, yet seasonal acclimation of traits that improve drought tolerance in trees remains poorly resolved. We hypothesized that dry season acclimation of leaf and stem traits influencing shoot water storage and hydraulic capacitance would mitigate the drought-associated risks of reduced gas exchange and hydraulic failure in the mangrove Sonneratia alba. By late dry season, availability of stored water had shifted within leaves and between leaves and stems. While whole shoot capacitance remained stable, the symplastic fraction of leaf water increased 86%, leaf capacitance increased 104% and stem capacitance declined 80%. Despite declining plant water poten...
The tropics are predicted to become warmer and drier, and understanding the sensitivity of tree spec...
Summary The tropics are predicted to become warmer and drier, and understanding the sensitivity o...
Foliar water uptake (FWU) has been investigated in an increasing number of species from a variety of...
Drought negatively impacts plant growth and survival. The ability to maintain hydraulic functionalit...
Increasing severity and frequency of drought is predicted for large portions of the terrestrial bios...
Coordination of stem and leaf hydraulic traits allows terrestrial plants to maintain safe water stat...
Increasing severity and frequency of drought is predicted for large portions of the terrestrial bios...
Efficient conduction of water inside leaves is essential for leaf function, yet the hydraulic-mediat...
Terrestrial plants face a multitude of physiological and ecological trade-offs, and require a compro...
Evaluating how plants respond to dry conditions is critical to managing and predicting the effects o...
Climate change is predicted to increase the occurrence of extreme droughts, which are associated wit...
Intensified droughts are affecting tropical forests across the globe. However, the underlying mechan...
International audienceAbstract The capacity of trees to tolerate and survive increasing drought cond...
International audienceBackground - Several traits, mostly related to stomatal and xylem functioning,...
The tropics are predicted to become warmer and drier, and understanding the sensitivity of tree spec...
Summary The tropics are predicted to become warmer and drier, and understanding the sensitivity o...
Foliar water uptake (FWU) has been investigated in an increasing number of species from a variety of...
Drought negatively impacts plant growth and survival. The ability to maintain hydraulic functionalit...
Increasing severity and frequency of drought is predicted for large portions of the terrestrial bios...
Coordination of stem and leaf hydraulic traits allows terrestrial plants to maintain safe water stat...
Increasing severity and frequency of drought is predicted for large portions of the terrestrial bios...
Efficient conduction of water inside leaves is essential for leaf function, yet the hydraulic-mediat...
Terrestrial plants face a multitude of physiological and ecological trade-offs, and require a compro...
Evaluating how plants respond to dry conditions is critical to managing and predicting the effects o...
Climate change is predicted to increase the occurrence of extreme droughts, which are associated wit...
Intensified droughts are affecting tropical forests across the globe. However, the underlying mechan...
International audienceAbstract The capacity of trees to tolerate and survive increasing drought cond...
International audienceBackground - Several traits, mostly related to stomatal and xylem functioning,...
The tropics are predicted to become warmer and drier, and understanding the sensitivity of tree spec...
Summary The tropics are predicted to become warmer and drier, and understanding the sensitivity o...
Foliar water uptake (FWU) has been investigated in an increasing number of species from a variety of...