Drought-induced tree mortality is expected to increase in future climates with the potential for significant consequences to global carbon, water, and energy cycles. Xylem embolism can accumulate to lethal levels during drought, but species that can refill embolized xylem and recover hydraulic function may be able to avoid mortality. Yet the potential controls of embolism recovery, including cross-biome patterns and plant traits such as nonstructural carbohydrates (NSCs), hydraulic traits, and nocturnal stomatal conductance, are unknown. We exposed eight plant species, originating from mesic (tropical and temperate) and semi-arid environments, to drought under ambient and elevated CO 2 levels, and assessed recovery from embolism following r...
Widespread tree mortality associated with drought has been observed on all forested continents and g...
In woody plants, photosynthetic capacity is closely linked to rates at which the plant hydraulic sys...
Hydraulic failure is one of the main causes of tree mortality in conditions of severe drought. Resis...
Abstract Drought-induced tree mortality is expected to increase in future climates with the potenti...
© 2019 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. Drought-induced tree m...
Recent reports on tree mortality associated with anomalous drought and heat have raised interest int...
The ability to resist hydraulic dysfunction in leaves, stems, and roots strongly influences whether ...
Understanding which species are able to recover from drought, under what conditions, and the mechani...
Water is transported from roots to foliage through the xylem under negative pressure (= tension). Un...
International audienceBackground - Several traits, mostly related to stomatal and xylem functioning,...
Efficient conduction of water inside leaves is essential for leaf function, yet the hydraulic-mediat...
In woody plants, photosynthetic capacity is closely linked to rates at which the plant hydraulic sys...
Drought negatively impacts plant growth and survival. The ability to maintain hydraulic functionalit...
Stomata play a significant role in the Earth’s water and carbon cycles, by regulating gaseousexchang...
Widespread tree mortality associated with drought has been observed on all forested continents and g...
In woody plants, photosynthetic capacity is closely linked to rates at which the plant hydraulic sys...
Hydraulic failure is one of the main causes of tree mortality in conditions of severe drought. Resis...
Abstract Drought-induced tree mortality is expected to increase in future climates with the potenti...
© 2019 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. Drought-induced tree m...
Recent reports on tree mortality associated with anomalous drought and heat have raised interest int...
The ability to resist hydraulic dysfunction in leaves, stems, and roots strongly influences whether ...
Understanding which species are able to recover from drought, under what conditions, and the mechani...
Water is transported from roots to foliage through the xylem under negative pressure (= tension). Un...
International audienceBackground - Several traits, mostly related to stomatal and xylem functioning,...
Efficient conduction of water inside leaves is essential for leaf function, yet the hydraulic-mediat...
In woody plants, photosynthetic capacity is closely linked to rates at which the plant hydraulic sys...
Drought negatively impacts plant growth and survival. The ability to maintain hydraulic functionalit...
Stomata play a significant role in the Earth’s water and carbon cycles, by regulating gaseousexchang...
Widespread tree mortality associated with drought has been observed on all forested continents and g...
In woody plants, photosynthetic capacity is closely linked to rates at which the plant hydraulic sys...
Hydraulic failure is one of the main causes of tree mortality in conditions of severe drought. Resis...