in pressPlant growth and development depend on both organogenesis and photosynthesis. Organogenesis sets in place various organs (leaves, internodes, fruits, roots) that have their own sinks. The sum of these sinks corresponds to the plant demand. Photosynthesis of the leaves provides the biomass supply (source) that is to be shared among the organs according to their sink strength. Here we present a mathematical model – GreenLab – that describes dynamically plant architecture in a resource-dependent way. The source and sink functions of the various organs control the biomass acquisition and partitioning during plant development and growth, giving the sizes and weights of organs according to their position in the plant architecture. Non-lin...
<div><p>Plants are highly plastic in their potential to adapt to changing environmental conditions. ...
International audienceIn this paper are presented new mathematical developments in plant growth mode...
Plants are highly plastic in their potential to adapt to changing environmental conditions. For exam...
in pressPlant growth and development depend on both organogenesis and photosynthesis. Organogenesis ...
Plant growth and development depend on both organogenesis and photosynthesis. Organogenesis sets in ...
- Background and Aims Physiological and architectural plant models have originally been developed fo...
International audienceBACKGROUND AND AIMS: The strong influence of environment and functioning on pl...
The strong influence of environment and functioning on plant organogenesis has been well documented ...
A mathematical sunflower growth model is presented that simulates interactions between plant structu...
Biomass partitioning among organs depends on their sink strengths, i.e. their capacity to attract as...
International audienceBiomass partitioning among organs depends on their sink strengths, i.e. their ...
International audienceModelling plant growth enables us to predict crop yield, forest harvest and in...
There is a new interest in plant morphogenesis and architecture because molecular genetics is provid...
Plants are highly plastic in their potential to adapt to changing environmental conditions. For exam...
<div><p>Plants are highly plastic in their potential to adapt to changing environmental conditions. ...
International audienceIn this paper are presented new mathematical developments in plant growth mode...
Plants are highly plastic in their potential to adapt to changing environmental conditions. For exam...
in pressPlant growth and development depend on both organogenesis and photosynthesis. Organogenesis ...
Plant growth and development depend on both organogenesis and photosynthesis. Organogenesis sets in ...
- Background and Aims Physiological and architectural plant models have originally been developed fo...
International audienceBACKGROUND AND AIMS: The strong influence of environment and functioning on pl...
The strong influence of environment and functioning on plant organogenesis has been well documented ...
A mathematical sunflower growth model is presented that simulates interactions between plant structu...
Biomass partitioning among organs depends on their sink strengths, i.e. their capacity to attract as...
International audienceBiomass partitioning among organs depends on their sink strengths, i.e. their ...
International audienceModelling plant growth enables us to predict crop yield, forest harvest and in...
There is a new interest in plant morphogenesis and architecture because molecular genetics is provid...
Plants are highly plastic in their potential to adapt to changing environmental conditions. For exam...
<div><p>Plants are highly plastic in their potential to adapt to changing environmental conditions. ...
International audienceIn this paper are presented new mathematical developments in plant growth mode...
Plants are highly plastic in their potential to adapt to changing environmental conditions. For exam...