Finding thresholds at which loss of plant functionality occurs during drought is critical for predicting future crop productivity and survival. Xylem resistance to embolism has been suggested as a key trait associated with water-stress tolerance. Although a substantial literature exists describing the vulnerability of woody stems to embolism, leaves and roots of herbaceous species remain under-represented. Also, little is known about vulnerability to embolism at a whole-plant scale or propagation of embolism within plants.New techniques to view the process of embolism formation provide opportunities to resolve long-standing questions. Here, we used multiple visual techniques, including X-ray micro-computed tomography and the optical vulnera...
International audienceDrought represents a major abiotic constraint to plant growth and survival. On...
New techniques now make it possible to precisely and accurately determine the failure threshold of t...
Plant mortality under extreme drought events has recently been associated with plant vulnerability t...
Finding thresholds at which loss of plant functionality occurs during drought is critical for predic...
Plants have evolved a water transport system that relies on water sustaining a tensile force. Counte...
Xylem cavitation resulting in air embolism is a major cause of plant death during drought, yet the s...
Long-distance water transport through plant xylem is vulnerable to hydraulic dysfunction during peri...
Although recent findings suggest that xylem embolism represents a significant, drought-induced damag...
According to the hydraulic vulnerability segmentation hypothesis, leaves are more vulnerable to decl...
Plants can be highly segmented organisms with an independently redundant design of organs. In the co...
The vulnerability of vascular plants to xylem embolism is closely related to their stable long-dista...
Hydraulic failure resulting from drought-induced embolism in the xylem of plants is a key determinan...
According to the hydraulic vulnerability segmentation hypothesis, leaves are more vulnerable to decl...
Ecosystems worldwide are facing increasingly severe and prolonged droughts during which hydraulic fa...
Ecosystems worldwide are facing increasingly severe and prolonged droughts during which hydraulic fa...
International audienceDrought represents a major abiotic constraint to plant growth and survival. On...
New techniques now make it possible to precisely and accurately determine the failure threshold of t...
Plant mortality under extreme drought events has recently been associated with plant vulnerability t...
Finding thresholds at which loss of plant functionality occurs during drought is critical for predic...
Plants have evolved a water transport system that relies on water sustaining a tensile force. Counte...
Xylem cavitation resulting in air embolism is a major cause of plant death during drought, yet the s...
Long-distance water transport through plant xylem is vulnerable to hydraulic dysfunction during peri...
Although recent findings suggest that xylem embolism represents a significant, drought-induced damag...
According to the hydraulic vulnerability segmentation hypothesis, leaves are more vulnerable to decl...
Plants can be highly segmented organisms with an independently redundant design of organs. In the co...
The vulnerability of vascular plants to xylem embolism is closely related to their stable long-dista...
Hydraulic failure resulting from drought-induced embolism in the xylem of plants is a key determinan...
According to the hydraulic vulnerability segmentation hypothesis, leaves are more vulnerable to decl...
Ecosystems worldwide are facing increasingly severe and prolonged droughts during which hydraulic fa...
Ecosystems worldwide are facing increasingly severe and prolonged droughts during which hydraulic fa...
International audienceDrought represents a major abiotic constraint to plant growth and survival. On...
New techniques now make it possible to precisely and accurately determine the failure threshold of t...
Plant mortality under extreme drought events has recently been associated with plant vulnerability t...