Related Experiment Video
Updated: Mar 16, 2026

Relating Stomatal Conductance to Leaf Functional Traits
Published on: October 12, 2015
Are inter- and intraspecific variations of sapling crown traits consistent with a strategy promoting light capture in
Marilyne Laurans1, Gregoire Vincent2
1CIRAD, UMR AMAP, TA A-51/PS2, Bd de la Lironde, 34398 Montpellier Cedex 5, France.
Abstract:
Background and Aims Morphological variation in light-foraging strategies potentially plays important roles in efficient light utilization and carbon assimilation in spatially and temporally heterogeneous environments such as tropical moist forest understorey. By considering a suite of morphological traits at various hierarchical scales, we examined the functional significance of crown shape diversity and plasticity in response to canopy openness. Methods We conducted a field comparative study in French Guiana among tree saplings of 14 co-occurring species differing in light-niche optimum and breadth. Each leaf, axis or crown functional trait was characterized by a median value and a degree of plasticity expressed under contrasting light regimes. Key Results We found divergent patterns between shade-tolerant and heliophilic species on the one hand and between shade and sun plants on the other. Across species, multiple regression analysis showed that relative crown depth was positively correlated with leaf lifespan and not correlated with crown vertical growth rate. Within species displaying a reduction in crown depth in the shade, we observed that crown depth was limited by reduced crown vertical growth rate and not by accelerated leaf or branch shedding. In addition, the study provides contrasting examples of morphological multilevel plastic responses, which allow the maintenance of efficient foliage and enable effective whole-plant light capture in shaded conditions under a moderate vertical light gradient. Conclusions This result suggests that plastic adjustment of relative crown depth does not reflect a strategy maximizing light capture efficiency. Integrating and scaling-up leaf-level dynamics to shoot- and crown-level helps to interpret in functional and adaptive terms inter- and intraspecific patterns of crown traits and to better understand the mechanism of shade tolerance.
More Related Videos
Related Concept Videos
Light Acquisition
Photoreceptors and Plant Responses to Light
Adaptations that Reduce Water Loss
Primary and Secondary Growth in Roots and Shoots
Regulation of Transpiration by Stomata
Epiphytes, Parasites, and Carnivores

