Quality aspects of cut chrysanthemum, such as weight of the plant and number and size of flowers, have been widely studied. However, these are seldom integrated in a single model. A functional-structural model, GreenLab, was used to simulate the geometrical features of chrysanthemum with underlying rules on biomass production and allocation. In this paper, model calibration was conducted based on data from a climate room experiment. Chrysanthemum ‘Reagan Improved' was grown at 16°C and 380 μmol m-2 s-1 PAR, with 14 days long day (LD) period (19 h of light), followed by short day (SD) period (11 h of light) until harvest. Detailed measurements included weight and size of leaves and internodes in the main stem, and diameter of flowers, weight...
Throughout the year, cut chrysanthemum growers aim at a constant product quality by varying plant de...
<strong><em><font size="3"><p>Key words</strong></em> : chrysant...
The present work was aimed at understanding and quantifying the effect of sink-source relationships ...
Quality aspects of cut chrysanthemum, such as weight of the plant and number and size of flowers, ha...
Quality aspects of cut chrysanthemum, such as weight of the plant and number and size of flowers, ha...
Quality aspects of cut chrysanthemum, such as weight of the plant and number and size of flowers, ha...
Quality aspects of cut chrysanthemum, such as weight of the plant and number and size of flowers, ha...
Quality aspects of cut chrysanthemum, such as weight of the plant and number and size of flowers, ha...
Plants respond to environmental change through alterations in organ size, number and biomass. Howeve...
Plants respond to environmental change through alterations in organ size, number and biomass. Howeve...
•Plants respond to environmental change through alterations in organ size, number and biomass. Howev...
•Plants respond to environmental change through alterations in organ size, number and biomass. Howev...
An integration of structural and physiological models is used to simulate 3D plant growth and visual...
The recently developed virtual plant modelling approach has strongly increased the potential of mode...
<strong><font size="3">Key words</strong> : chrysanthemum, crop growth, development, explanatory mod...
Throughout the year, cut chrysanthemum growers aim at a constant product quality by varying plant de...
<strong><em><font size="3"><p>Key words</strong></em> : chrysant...
The present work was aimed at understanding and quantifying the effect of sink-source relationships ...
Quality aspects of cut chrysanthemum, such as weight of the plant and number and size of flowers, ha...
Quality aspects of cut chrysanthemum, such as weight of the plant and number and size of flowers, ha...
Quality aspects of cut chrysanthemum, such as weight of the plant and number and size of flowers, ha...
Quality aspects of cut chrysanthemum, such as weight of the plant and number and size of flowers, ha...
Quality aspects of cut chrysanthemum, such as weight of the plant and number and size of flowers, ha...
Plants respond to environmental change through alterations in organ size, number and biomass. Howeve...
Plants respond to environmental change through alterations in organ size, number and biomass. Howeve...
•Plants respond to environmental change through alterations in organ size, number and biomass. Howev...
•Plants respond to environmental change through alterations in organ size, number and biomass. Howev...
An integration of structural and physiological models is used to simulate 3D plant growth and visual...
The recently developed virtual plant modelling approach has strongly increased the potential of mode...
<strong><font size="3">Key words</strong> : chrysanthemum, crop growth, development, explanatory mod...
Throughout the year, cut chrysanthemum growers aim at a constant product quality by varying plant de...
<strong><em><font size="3"><p>Key words</strong></em> : chrysant...
The present work was aimed at understanding and quantifying the effect of sink-source relationships ...