Temperature is spatially heterogeneous over leaf surfaces, yet the underlying mechanisms are not fully resolved. We hypothesized that the 3D leaf microtopography determines locally the amount of incoming irradiation flux at leaf surface, thereby driving the temperature gradient over the leaf surface. This hypothesis was tested by developing a model of leaf temperature heterogeneity that includes the development of the leaf boundary layer, the microtopography of the leaf surface and the physiological response of the leaf. Temperature distributions under various irradiation loads (1) over apple leaves based on their 3D microtopography, (2) over simulated flat (2D) apple leaves and (3) over 3D leaves with a transpiration rate distributed as in...
© 2016 John Wiley & Sons Ltd Laboratory studies on artificial leaves suggest that leaf thermal dynam...
Plants display a range of striking architectural adaptations when grown at elevated temperatures. In...
Radiation exchange at the surface plays a critical role in the surface energy balance, plant microcl...
Temperature is spatially heterogeneous over leaf surfaces, yet the underlying mechanisms are not ful...
Quantifying heat and mass exchanges processes of plant leaves is crucial for detailed under-standing...
Estimating leaf temperature distributions (LTDs) in canopies is crucial in forest ecology. Leaf temp...
The influence of drought intensity on spatial variability of leaf temperature was explored by the RA...
We investigated the effects of the shape of leaf area profiles and the number of canopy layers on si...
Les performances du végétal et des arthropodes dont il constitue le microhabitat dépendent des tempé...
Leaves of many plant species possess epidermal hairs, or trichomes, whose functions remain largely s...
Numerous physiological processes in fruits depend on temperature, with consequences on fruit quality...
Leaf unfolding in temperate forests is driven by spring temperature, but little is known about the s...
International audiencemmary 1. Significant deviations between macro- and microclimates are quite com...
International audience1. Ectotherms rely heavily on the spatial variance of environmental conditions...
© 2016 John Wiley & Sons Ltd Laboratory studies on artificial leaves suggest that leaf thermal dynam...
Plants display a range of striking architectural adaptations when grown at elevated temperatures. In...
Radiation exchange at the surface plays a critical role in the surface energy balance, plant microcl...
Temperature is spatially heterogeneous over leaf surfaces, yet the underlying mechanisms are not ful...
Quantifying heat and mass exchanges processes of plant leaves is crucial for detailed under-standing...
Estimating leaf temperature distributions (LTDs) in canopies is crucial in forest ecology. Leaf temp...
The influence of drought intensity on spatial variability of leaf temperature was explored by the RA...
We investigated the effects of the shape of leaf area profiles and the number of canopy layers on si...
Les performances du végétal et des arthropodes dont il constitue le microhabitat dépendent des tempé...
Leaves of many plant species possess epidermal hairs, or trichomes, whose functions remain largely s...
Numerous physiological processes in fruits depend on temperature, with consequences on fruit quality...
Leaf unfolding in temperate forests is driven by spring temperature, but little is known about the s...
International audiencemmary 1. Significant deviations between macro- and microclimates are quite com...
International audience1. Ectotherms rely heavily on the spatial variance of environmental conditions...
© 2016 John Wiley & Sons Ltd Laboratory studies on artificial leaves suggest that leaf thermal dynam...
Plants display a range of striking architectural adaptations when grown at elevated temperatures. In...
Radiation exchange at the surface plays a critical role in the surface energy balance, plant microcl...