The defining characteristics of sclerophylly are mechanical (e.g., hardness, toughness, stiffness), but little is known about how they vary in contrasting environments and contribute to the adaptiveness of sclerophylly. Here we investigate how the degree and nature of sclerophylly in terms of leaf mechanics differ between vegetation of two contrasting stressful environments, maquis on nutrient-deficient, moist sites and dry forest on moderate-nutrient, drier sites. We measured toughness, strength, and stiffness at the level of the whole leaf ("structural") and per unit thickness ("material"). Leaves of maquis plants were on average structurally stiffer, stronger, and tougher than those in dry forest. There was little difference in material ...
In tropical dry forests, spatial heterogeneity in soil water availability is thought to determine in...
International audience• The dry and wet seasons in the Neotropics have strong effects on soil water ...
When grown in a common light environment, the leaves of shade-tolerant evergreen trees have a larger...
Studies of leaf traits often focus on tradeoffs between growth and resource conservation, but little...
Leaf mechanical properties strongly influence leaf lifespan, plant-herbivore interactions, litter de...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter de...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter de...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter d...
Background and Aims: Leaf mechanical properties, which are important to protect leaves against physi...
Background and Aims: Leaf mechanical properties, which are important to protect leaves against physi...
The existence of sclerophyllous plants has been considered an adaptive strategy against different en...
Stem mechanical properties are critically linked to foliage deployment and growth strategy, yet vari...
Slow-growing juveniles of shade-tolerant plant species are predicted to have tough leaves because of...
• Across species, leaf lifespan (LL) tends to be correlated with leaf mass per area (LMA). Previousl...
12 páginas, 5 figuras, 1 tablaBACKGROUND AND AIMS: The existence of sclerophyllous plants has been c...
In tropical dry forests, spatial heterogeneity in soil water availability is thought to determine in...
International audience• The dry and wet seasons in the Neotropics have strong effects on soil water ...
When grown in a common light environment, the leaves of shade-tolerant evergreen trees have a larger...
Studies of leaf traits often focus on tradeoffs between growth and resource conservation, but little...
Leaf mechanical properties strongly influence leaf lifespan, plant-herbivore interactions, litter de...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter de...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter de...
Leaf mechanical properties strongly influence leaf lifespan, plant–herbivore interactions, litter d...
Background and Aims: Leaf mechanical properties, which are important to protect leaves against physi...
Background and Aims: Leaf mechanical properties, which are important to protect leaves against physi...
The existence of sclerophyllous plants has been considered an adaptive strategy against different en...
Stem mechanical properties are critically linked to foliage deployment and growth strategy, yet vari...
Slow-growing juveniles of shade-tolerant plant species are predicted to have tough leaves because of...
• Across species, leaf lifespan (LL) tends to be correlated with leaf mass per area (LMA). Previousl...
12 páginas, 5 figuras, 1 tablaBACKGROUND AND AIMS: The existence of sclerophyllous plants has been c...
In tropical dry forests, spatial heterogeneity in soil water availability is thought to determine in...
International audience• The dry and wet seasons in the Neotropics have strong effects on soil water ...
When grown in a common light environment, the leaves of shade-tolerant evergreen trees have a larger...