Publications des scientifiques de l'IRD

Mathieu A., Cournede P. H., Letort V., Barthélémy Daniel, de Reffye P. (2009). A dynamic model of plant growth with interactions between development and functional mechanisms to study plant structural plasticity related to trophic competition. Annals of Botany, 103 (8), p. 1173-1186. ISSN 0305-7364.

Titre du document
A dynamic model of plant growth with interactions between development and functional mechanisms to study plant structural plasticity related to trophic competition
Année de publication
2009
Type de document
Article référencé dans le Web of Science WOS:000266343300002
Auteurs
Mathieu A., Cournede P. H., Letort V., Barthélémy Daniel, de Reffye P.
Source
Annals of Botany, 2009, 103 (8), p. 1173-1186 ISSN 0305-7364
The strong influence of environment and functioning on plant organogenesis has been well documented by botanists but is poorly reproduced in most functional-structural models. In this context, a model of interactions is proposed between plant organogenesis and plant functional mechanisms. The GreenLab model derived from AMAP models was used. Organogenetic rules give the plant architecture, which defines an interconnected network of organs. The plant is considered as a collection of interacting 'sinks' that compete for the allocation of photosynthates coming from 'sources'. A single variable characteristic of the balance between sources and sinks during plant growth controls different events in plant development, such as the number of branches or the fruit load. Variations in the environmental parameters related to light and density induce changes in plant morphogenesis. Architecture appears as the dynamic result of this balance, and plant plasticity expresses itself very simply at different levels: appearance of branches and reiteration, number of organs, fructification and adaptation of ecophysiological characteristics. The modelling framework serves as a tool for theoretical botany to explore the emergence of specific morphological and architectural patterns and can help to understand plant phenotypic plasticity and its strategy in response to environmental changes.
Plan de classement
Sciences du monde végétal [076]
Localisation
Fonds IRD [F B010062081]
Identifiant IRD
fdi:010062081
Contact