Leaves of terrestrial plants vary tremendously in size, shape, and stiffness. Hard leaves with high mass per unit area (LMA) occur more frequently in water- and nutrient-limited habitats, where stress-tolerance is key to survival. Coordination between leaf mechanical properties and drought tolerance can arise because some (but not all) of the anatomical modifications leading to high LMA are mechanistically correlated to physiological traits conferring tolerance to dehydration. Thick cell walls are frequently coupled with low turgor loss point values, and also prevent cell shrinkage and collapse after turgor loss has occurred. This also protects the leaf against shrinking-induced loss of water transport capacity in the extra-vascular pathway...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter de...
Plant Physiol. ISI Document Delivery No.: AE9QJ Times Cited: 1 Cited Reference Count: 75 Scoffoni, C...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter d...
There has been increasing worldwide recognition of the importance of hydraulic physiology--the trans...
Background and Aims The structural properties of leaf venation and xylem anatomy strongly influence ...
The leaf hydraulic system in plants is charged with supplying water to the sites of evaporation in o...
Leaf hydraulic conductance (Kleaf) and vulnerability constrain plant productivity, but no clear trad...
© 2021 The Authors.Increased drought is predicted to have a major impact on plant performance under ...
Leaf mechanical properties strongly influence leaf lifespan, plant-herbivore interactions, litter de...
• Background and Aims More intense droughts under climate change threaten species resilience. Hydrau...
International audienceIncreasing temperature and drought can result in leaf dehydration and defoliat...
Summary: Hydraulic dysfunction in leaves determines key aspects of whole-plant responses to water st...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter de...
L'article original est publié par The American Society of Plant BiologistsAcross plant species, leav...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter de...
Plant Physiol. ISI Document Delivery No.: AE9QJ Times Cited: 1 Cited Reference Count: 75 Scoffoni, C...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter d...
There has been increasing worldwide recognition of the importance of hydraulic physiology--the trans...
Background and Aims The structural properties of leaf venation and xylem anatomy strongly influence ...
The leaf hydraulic system in plants is charged with supplying water to the sites of evaporation in o...
Leaf hydraulic conductance (Kleaf) and vulnerability constrain plant productivity, but no clear trad...
© 2021 The Authors.Increased drought is predicted to have a major impact on plant performance under ...
Leaf mechanical properties strongly influence leaf lifespan, plant-herbivore interactions, litter de...
• Background and Aims More intense droughts under climate change threaten species resilience. Hydrau...
International audienceIncreasing temperature and drought can result in leaf dehydration and defoliat...
Summary: Hydraulic dysfunction in leaves determines key aspects of whole-plant responses to water st...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter de...
L'article original est publié par The American Society of Plant BiologistsAcross plant species, leav...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter de...
Plant Physiol. ISI Document Delivery No.: AE9QJ Times Cited: 1 Cited Reference Count: 75 Scoffoni, C...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter d...