International audienceThe number of organs produced by a plant varies among the individuals of a population. Taking these variations into account is an important step in understanding phenotypic variability. The aim of this study was to simulate stochastic development and growth in response to environmental change using GreenLab, an organ level functional-structural model. An annual herbaceous species, Spilanthes acmella L., was grown in pots in two climatic conditions corresponding to a wet and a dry season. Detailed records of plant development, plant architecture and organ growth were kept throughout the growing period. The concept of simple and compound organic series was introduced to target data for fitting. The model was calibrated u...
The Guayule (Parthenium argentatum, Asteraceae), is a small ramified tree native to the northern Mex...
International audienceThe dynamic model of plant growth GreenLab describes plant architecture and fu...
Functional-structural plant models (FSPMs) generally simulate plant development and growth at the le...
International audienceThe number of organs produced by a plant varies among the individuals of a pop...
International audienceA stochastic Functional-Structural model simulating plant development and grow...
A stochastic functional-structural model simulating plant development and growth is presented. The n...
Introduction The Guayule (Parthenium argentatum, Asteraceae), is a small ramified tree native to the...
International audienceFunctional-structural plant models (FSPM) simulate plant development and growt...
Functional-structural plant models (FSPM) simulate plant development and growth, usually accompanied...
International audienceFunctional-structural plant models (FSPMs) generally simulate plant developmen...
Process-Based Models (PBMs) can successfully predict the impact of environmental factors (temperatur...
Functional-structural plant models (FSPMs) generally simulate plant development and growth at the le...
- Background and Aims Physiological and architectural plant models have originally been developed fo...
In rhythmic growth tree species, the activity of shoot apical meristem shows an active period of phy...
The Guayule (Parthenium argentatum, Asteraceae), is a small ramified tree native to the northern Mex...
International audienceThe dynamic model of plant growth GreenLab describes plant architecture and fu...
Functional-structural plant models (FSPMs) generally simulate plant development and growth at the le...
International audienceThe number of organs produced by a plant varies among the individuals of a pop...
International audienceA stochastic Functional-Structural model simulating plant development and grow...
A stochastic functional-structural model simulating plant development and growth is presented. The n...
Introduction The Guayule (Parthenium argentatum, Asteraceae), is a small ramified tree native to the...
International audienceFunctional-structural plant models (FSPM) simulate plant development and growt...
Functional-structural plant models (FSPM) simulate plant development and growth, usually accompanied...
International audienceFunctional-structural plant models (FSPMs) generally simulate plant developmen...
Process-Based Models (PBMs) can successfully predict the impact of environmental factors (temperatur...
Functional-structural plant models (FSPMs) generally simulate plant development and growth at the le...
- Background and Aims Physiological and architectural plant models have originally been developed fo...
In rhythmic growth tree species, the activity of shoot apical meristem shows an active period of phy...
The Guayule (Parthenium argentatum, Asteraceae), is a small ramified tree native to the northern Mex...
International audienceThe dynamic model of plant growth GreenLab describes plant architecture and fu...
Functional-structural plant models (FSPMs) generally simulate plant development and growth at the le...