Influence of Seed Rate and Fertilizer Levels on Dry Matter Distribution and Dry Matter Yield of Fodder Cowpea (cv. Swad)
M. R. Bhavya, Y. B. Palled, Pushpalatha, M. Y. Ullasa, R. Nagaraj
Abstract
M. R. Bhavya, Y. B. Palled, Pushpalatha, M. Y. Ullasa, R. Nagaraj
Abstract
A field experiment was conducted at the Main Agricultural Research Station, University of Agricultural Sciences, Dharwad in Northern Transition Zone of Karnataka on red sandy loams oil to study the influence ofseed rate and fertilizer levels on dry matter accumulation and dry matter yield of fodder cowpea during kharif 2011. The experiment was laid out in randomized complete block design with 12 treatment combinations consisting of four seed rates (30, 40, 50 and 60 kg ha−1) and three levels of fertilizer (15: 30, 25:50, 35: 70 kg N: P2O5 ha−1). A seed rate of 30 kg ha−1 recorded significantly higher dry weight of leaves plant−1, stem and total dry weight of plant at 20, 40 DAS and at harvest. Even though, per plant yield was significantly higher in lower seed rate (S1) due to lower plant population ha−1 significantly less dry matter yield (5.21 t ha−1) was recorded compared to S3 (5.34 t ha−1). A fertilizer level of 25 kg N and 50 kg P2O5 ha−1 recorded significantly higher dry weight of leaves plant−1, stem and total dry weight of plant at 40 DAS and at harvest, and also significantly higher dry matter yield ha−1 (5.35 t ha−1) was observed. A treatment combination of 25 kgN and 50 kg P2O5 ha−1 with a seed rate of 50 kg ha−1 recorded numericaly higher dry matter yield (5.52 t ha−1) compared to other treatment combinations.
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A field experiment was conducted at the Main Agricultural Research Station, University of Agricultural Sciences, Dharwad in Northern Transition Zone of Karnataka on red sandy loams oil to study the influence ofseed rate and fertilizer levels on dry matter accumulation and dry matter yield of fodder cowpea during kharif 2011. The experiment was laid out in randomized complete block design with 12 treatment combinations consisting of four seed rates (30, 40, 50 and 60 kg ha−1) and three levels of fertilizer (15: 30, 25:50, 35: 70 kg N: P2O5 ha−1). A seed rate of 30 kg ha−1 recorded significantly higher dry weight of leaves plant−1, stem and total dry weight of plant at 20, 40 DAS and at harvest. Even though, per plant yield was significantly higher in lower seed rate (S1) due to lower plant population ha−1 significantly less dry matter yield (5.21 t ha−1) was recorded compared to S3 (5.34 t ha−1). A fertilizer level of 25 kg N and 50 kg P2O5 ha−1 recorded significantly higher dry weight of leaves plant−1, stem and total dry weight of plant at 40 DAS and at harvest, and also significantly higher dry matter yield ha−1 (5.35 t ha−1) was observed. A treatment combination of 25 kgN and 50 kg P2O5 ha−1 with a seed rate of 50 kg ha−1 recorded numericaly higher dry matter yield (5.52 t ha−1) compared to other treatment combinations.
Key concepts: Dry matter, Kharif crop, Fodder, Fertilizer, Randomized block design, Loam, Dry weight, Agronomy