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Eggplant fruits are abundant in potassium, the amount of which ranges from 200 to 600 mg K⋅100 g-1 FM, depending on a variety. They are also a rich source of phosphorus, magnesium, calcium, and iron. As there are no fertilization recommendations for eggplant cultivation under cover, this study been undertaken to evaluate the vegetable’s requirements. The aim was to test how the type and dose of potassium fertilizer influences nitrogen, phosphorus, calcium, and magnesium levels in eggplant fruits. The experiment on cv. Epic F1 eggplant was carried out in unheated polyethylene tunnel in 2004-2005. The eggplant was cultivated on peat subsoil in 10 dm3 capacity cylinders made of rigid plastic. The experiment was set up in a two-factor, completely randomized design. The influence of two factors was examined: I – type of potassium fertilizer (KCl, K2SO4, KNO3), and II – potassium rate (8, 16, 24 g K⋅plant-1). Fruit samples for laboratory determinations were collected in mid-August, in the middle of fruiting stage. Fruits were harvested at the stage of technological maturity and the following were determined: Ntot, P, K, Ca, Mg. The results were processed by variance analysis. Significantly higher total nitrogen and potassium concentrations in fruits of plants fertilized with potassium nitrate as compared to the other two fertilizer types were recorded. Increasing potassium doses, regardless the fertilizer type, considerably increased the element content in eggplant fruits and widened the K:Ca ratio value. The diversification of potassium fertilization did not have significant influence on phosphorus and magnesium concentrations in eggplant fruits. No significant changes in calcium content in fruits were observed when applying potassium sulfate or nitrate, while higher potassium chloride rates significantly decreased the concentration of this element in fruits.
Sweet basil (Ocimum basilicum L.) is an annual plant belonging to the plant family Lamiaceae. There are many varieties of basil, with leaves of colour from green to purple and with small white or pink flower. In field experiment conducted in the years 2007–2008 there was investigated the effect of nitrogen fertilization in the doses of 50, 150 and 250 kg N·ha-1and irrigation on yielding and nutritional status of basil of ‘Red Rubin’ cultivar grown from transplants. Basil positively responded to irrigation and the increase in its yield under the influence of irrigation amounted from 97.37% to 25.36% in subsequent years of cultivation. Also the dose of nitrogen did advantageously affect basil herb yield. The highest yields were recorded at the dose of 150–250 kg N·ha-1. The highest amount of nitrates ranged from 697.00 to 938.00 mg·kg-1 f.m. was determined in plants fertilized with nitrogen dose of 250 kg N·ha-1. The level of macroelements depended both on irrigation and on nitrogen doses. Irrigation caused decreased amounts of phosphorus, potassium and calcium, while content of magnesium increased. The highest quantities of phosphorus and magnesium were obtained at nitrogen dose of 150 kg N·ha-1, while for the highest values of potassium and calcium nitrogen dose was 250 kg N·ha-1.
In pot experiment on very acid soil the effect of form and dose of potassium fertiliser on the cadmium absorption by oats (Avena sativa L.) and maize (Zea mays L.) under conditions of elevated Cd content in soil was investigated. Potassium was applied in two doses as sulphate or chloride against the background of basic NPK treatment. It was found that cadmium uptake and its content in plant tissues was confined or intensified by potassium salts, what dependent on plant species and also K form and dose, probably due to influence on its soluble compounds content in the soil. K2S04intensified Cd accumulation in roots of both species and confined its translocation to aerial parts of maize (Fig 1). effect was greater after higher K dose application. Smaller or opposite effect was observed in case of oats, which showed similar Cd content in shoots when lower K dose in both form was applied, and lower Cd level after higher K dose application in sulphate form (Fig. 2). of Cd absorption from contaminated soil by sulphate may improve fodder quality of plant products.
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