Related Experiment Video
Updated: Oct 9, 2025

Relating Stomatal Conductance to Leaf Functional Traits
Published on: October 12, 2015
The Evolution of Leaf Function during Development Is Reflected in Profound Changes in the Metabolic Composition of
Alice Destailleur1, Théo Poucet1, Cécile Cabasson1,2
1UMR Biologie du Fruit et Pathologie, Université de Bordeaux, INRAE, F-33140 Villenave d'Ornon, France.
Abstract:
During its development, the leaf undergoes profound metabolic changes to ensure, among other things, its growth. The subcellular metabolome of tomato leaves was studied at four stages of leaf development, with a particular emphasis on the composition of the vacuole, a major actor of cell growth. For this, leaves were collected at different positions of the plant, corresponding to different developmental stages. Coupling cytology approaches to non-aqueous cell fractionation allowed to estimate the subcellular concentrations of major compounds in the leaves. The results showed major changes in the composition of the vacuole across leaf development. Thus, sucrose underwent a strong allocation, being mostly located in the vacuole at the beginning of development and in the cytosol at maturity. Furthermore, these analyses revealed that the vacuole, rather rich in secondary metabolites and sugars in the growth phases, accumulated organic acids thereafter. This result suggests that the maintenance of the osmolarity of the vacuole of mature leaves would largely involve inorganic molecules.
More Related Videos
10:14Author Spotlight: Leaf Trait Analysis for Climate and Ecology Reconstruction in Modern and Ancient Plant Communities
Published on: October 25, 2024
06:11Author Spotlight: Improved Methods for Preparing Transverse Sections and Unrolled Whole Mounts of Maize Leaf Primordia for Fluorescence and Confocal Imaging
Published on: September 22, 2023
Related Concept Videos
The Anatomy of Chloroplasts
Structure of...
Adaptations that Reduce Water Loss
Light Acquisition
Regulation of Transpiration by Stomata
Short-distance Transport of Resources
Non-vascular Seedless Plants