Nitrogen, Phosphorus, and Potassium Requirements for Optimizing Growth and Flowering of the Nobile Dendrobium as a Potted Orchid

Потребности в азоте, фосфоре и калии для оптимизации роста и цветения нобиле Dendrobium в горшечной культуре
Rebecca G. Bichsel, Terri W. Starman, Yin‐Tung Wang
2008-04-01

Dendrobium nobilefertilizer termination timenitrogen rate (mg·L−1)phosphorus rate (mg·L−1)potassium rate (mg·L−1)
Experiments were conducted to determine how nitrogen (N), phosphorus (P), and potassium (K) rate and fertilizer termination time affect the growth and flowering of a Dendrobium nobile Lindl. hybrid, Dendrobium cv Red Emperor ‘Prince’. Nitrogen, P, and K were tested in separate experiments as a factorial combination of five rates and three termination dates (1 Sept., 1 Oct., and 1 Nov. 2005). Nitrogen and K rates were 0, 50, 100, 200, and 400 mg·L −1 . Phosphorus rates were 0, 25, 50, 100, and 200 mg·L −1 . Levels of the nutrients not being tested were held constant. For all nutrients, ending fertilization on 1 Sept. resulted in greater or similar pseudobulb thickness compared with ending fertilization on 1 Oct. or 1 Nov. Pseudobulbs grew taller as the N rate increased, peaking at 100 and 200 mg·L −1 . There were interactions between the N rate and fertilizer termination time on all reproductive characteristics. For all fertilizer termination times, flower number increased once N was applied. When ended on 1 Nov., 200 and 400 mg·L −1 N caused a delay to reach anthesis. All P rates resulted in taller plants with equally more nodes when compared with 0 mg·L −1 . As the K rate increased from 0 to 100 mg·L −1 , plant height increased, with no further increase at higher rates. The number of leaves remaining increased as N and K rates increased up to 200 mg·L −1 . Total flower number and flowering node number increased as the K rate increased to 100 mg·L −1 (terminated on 1 Sept.) or 50 mg·L −1 (terminated on 1 Oct. or 1 Nov.). In the fourth experiment, only N was ended at four termination times, whereas all other nutrients continued to be supplied until flowering. Control plants received all fertilizer elements until flowering. The duration of N application did not affect vegetative or flowering characteristics. No aerial shoots were observed as a result of prolonged application of N at all rates. In summary, 100 mg·L −1 N, 25 mg·L −1 P, and 100 mg·L −1 K are recommended for optimal vegetative growth and reproductive development of Dendrobium cv Red Emperor ‘Prince’.
1
All phosphorus rates (25–200 mg·L−1) produced taller plants with more nodes than 0 mg·L−1 P.
2
Duration of nitrogen application (when other nutrients continued) did not affect vegetative or flowering characteristics, and prolonged N did not induce aerial shoots.
3
Ending fertilization on September 1 produced greater or similar pseudobulb thickness than ending on October 1 or November 1 for N, P, and K.
4
Flower number increased with any applied nitrogen, but 200–400 mg·L−1 N with termination on November 1 delayed anthesis.
5
Number of leaves remaining increased with N and K rates up to 200 mg·L−1.
6
Plant height and flowering improved with potassium up to 100 mg·L−1 (no further height increase above 100 mg·L−1); flowering benefits peaked at 100 mg·L−1 K when terminated Sept 1 and at 50 mg·L−1 K when terminated Oct 1 or Nov 1.
7
Pseudobulb height increased with nitrogen rate, peaking at 100–200 mg·L−1 N.
8
Recommended nutrient rates for optimal vegetative growth and flowering: 100 mg·L−1 N, 25 mg·L−1 P, and 100 mg·L−1 K.

Potted Dendrobium nobile hybrid (Dendrobium cv Red Emperor 'Prince') plants

Effects of nitrogen, phosphorus, and potassium application rates and fertilizer termination timing on vegetative growth and flowering (pseudobulb thickness/height, plant height, node and flower number, flowering timing) to determine optimal N-P-K rates for growth and reproductive development

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2008-04-01
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Rebecca G. Bichsel
Terri W. Starman
Yin‐Tung Wang
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