| dc.description.abstract |
Capsicum chinense Jacq. is an important vegetable crop cultivated widely in tropical and subtropical regions. The
present study evaluated the effects of fertilizer schedules and growing-medium compositions on the growth and
yield of C. chinense under protected conditions in the Low Country Wet Zone of Sri Lanka. Three fertilizer
schedules (F1: existing fertilizer schedule), F2: fertilizer schedule 2, and F3: fertilizer schedule 3) and three
growing-medium (M1: 50% coir dust + 30% partially burnt paddy husk + 20% coco chips (existing medium),
M2: 70% coir dust + 30% partially burnt paddy husk, and M3: 70% coir dust + 30% coco chips) were evaluated
in a two-factor factorial Completely Randomized Design with four replicates. The existing fertilizer schedule and
growing medium served as the control treatment. The recorded parameters included the number of branches per
plant and stem girth as growth parameters, and time to first flowering as a developmental (phenological)
parameter. Pod circumference, number of pods per plant, fresh weight per pod, and pod weight per plant were
recorded as yield-related parameters. Pod yield was graded according to market standards as a yield-quality
parameter. In addition, the cost of production for each treatment was calculated. The interaction between
fertilizer schedule and growing-medium composition did not significantly affect any measured parameters.
However, fertilizer schedule significantly influenced the number of branches per plant, time to first flowering, pod
circumference and pod weight per plant, pod grading, and benefit-to-cost ratio. Growing-medium composition
significantly influenced stem girth. The results showed that 99% of the harvested pod yield met marketable
standards for weight and colour. Based on the results, the existing fertilizer schedule can be recommended as the
best fertilizer schedule among the tested schedules, and any of the three growing-medium compositions can be
used to achieve satisfactory growth and yield of C. chinense under a warm, humid tropical environment. |
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