Abstract
The main objective of this research was to model the relationships between the environmental variables and stem elongation in chrysanthemum with the end-goal of producing a model appropriate for use in the dynamic control of a greenhouse environment. The plants used were Dendranthema grandiflora cv. ‘Spice’. The model developed uses Richards’ growth equation (Richards, 1969) as its base. Adaptations were made to Richards’ growth equation to explicitly include the effects of day and night temperature, daily PPF (photosynthetic photon flux), end-of-day red to far-red ratio, and position of the internode on the stem on internode elongation. The model fit the observed final length data reasonably well (R2 = 0.89). Sensitivity analyses indicated that increasing day temperature had a positive effect on internode length while increasing night temperature had a negative effect, with night temperature having a considerably larger effect than the effect of day temperature. The analyses suggests that both high and low end-of-day red to far-red ratios will produce increased lengths and that increasing daily PPF will produce decreased lengths. The analyses also suggests that internodes which develop later on the plant will generally have larger lengths as reflected by the measured data.
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