ACCUMULATION AND DISTRIBUTION OF NPK IN ABOVE GROUND PARTS OF GRAIN SORGHUM AND MAIZE IN INTENSIVE PRODUCTION
Vladimir Sikora, J. Berenji, Vera Popović, Milka Brdar‐Jokanović, Livija Maksimović
Abstract
Open-access reader
Vladimir Sikora, J. Berenji, Vera Popović, Milka Brdar‐Jokanović, Livija Maksimović
Abstract
Open-access reader
In intensive production, commercial hybrids of grain sorghum and maize were compared in terms of production and distribution of aboveground parts, NPK content in aboveground parts and efficiency of plant nutrient utilization.Yield of total aboveground biomass was higher in maize than in sorghum, and the highest ratio of yield belonged to grain, both in sorghum and maize.Nitrogen content in all aboveground plants was higher in sorghum than in maize.Phosphorus content was the highest both in sorghum and maize grain, and was nearly identical.In other plant parts P content was higher in sorghum.Potassium content was the highest in stalk, both in sorghum and maize.Maize utilized plant nutrients more efficiently than sorghum, but due to its higher harvest index for NPK, lower amounts of nutrients were returned to soil through harvest residues.
OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In intensive production, commercial hybrids of grain sorghum and maize were compared in terms of production and distribution of aboveground parts, NPK content in aboveground parts and efficiency of plant nutrient utilization.Yield of total aboveground biomass was higher in maize than in sorghum, and the highest ratio of yield belonged to grain, both in sorghum and maize.Nitrogen content in all aboveground plants was higher in sorghum than in maize.Phosphorus content was the highest both in sorghum and maize grain, and was nearly identical.In other plant parts P content was higher in sorghum.Potassium content was the highest in stalk, both in sorghum and maize.Maize utilized plant nutrients more efficiently than sorghum, but due to its higher harvest index for NPK, lower amounts of nutrients were returned to soil through harvest residues.
Key concepts: Sorghum, Agronomy, Distribution (mathematics), Production (economics), Zea mays, Environmental science, Mathematics, Agricultural engineering