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Pepino dulce (Solanum muricatum Ait.) of the family Solanaceae is native to the tropical and subtropical regions of the Andes. Pepino dulce fruit can be harvested at different stages of ripeness. As the majority of vegetables of the family Solanaceae, the fruit is abundant in potassium. Since there are no fertilizer recommendations for pepino dulce grown under cover, a study was launched to determine the fertilizer requirements of this vegetable. The aim of this study was to evaluate the effect of increasing magnesium rates and fruit ripeness stages on macronutrient content and ratios in the fruit of pepino dulce cv. Konsuelo. A two-factorial experiment in a completely randomized design was conducted in 2005-2007, in a tall, unheated, plastic tunnel at the Experimental Garden of the University of Warmia and Mazury in Olsztyn. Pepino dulce was propagated by cuttings taken from stock plants grown from seeds in 2004. The rooted cuttings were transferred to Kick- Brauchman pots filled with 9 dm3 mineral soil with pH 6.8. Experimental factors were as follows: I – Mg rates: 0.5, 1.0, 1.5 g Mg plant–1, II – fruit ripeness stages: ripe fruit showing a typical fully ripe color (yellowish-purple, yellow, cream), unripe green-colored fruit that has reached a typical form and size. The experiment was performed in four replications, and each replication comprised a pot with a single plant. Every pot was fertilized with 2 g N applied as CO(NH2)2, 3 g K applied as K2SO4 and increasing rates of Mg applied as MgSO4⋅7 H2O. Non-fertilized plants served as a control treatment. The plants were pruned for two stems. Fruit samples for chemical analyses were collected at full ripening (in mid-August). The concentrations of organic N, P, K, Ca and Mg in pepino fruit were determined, and the following weight ratios were calculated: Ca : P, Ca : Mg, K : Mg, K: (Ca + Mg), K : Ca. The results of chemical analyses were processed statistically by an analysis of variance (ANOVA), using Statistica 8.0 software. The highest total nitrogen and potassium levels were noted in the fruit of plants fertilized with the lowest magnesium rate (0.5 g Mg per plant), while the fruit of plants fertilized with the highest magnesium rate (1.5 g Mg per plant) accumulated the highest amounts of calcium and magnesium. The highest phosphorus content was reported in the fruit of non-fertilized plants. Fully ripe fruit contained significantly more nitrogen an magnesium, while unripe fruit had a higher content of phosphorus, potassium and calcium. An adequate Ca:Mg ratio, a narrow Ca:P ratio and wide K:Mg, K:(Ca + Mg) and K:Ca ratios were observed in all treatments.
Field experiments were conducted at the Teaching and Experimental Station in Swadzim near Poznań in the years 2009-2011. They were carried out in the split-split-plot design with three experimental factors in four field replications. Analyses were conducted to investigate four nitrogen fertilization rates and two magnesium fertilization rates on morphological traits of plants and ears in two types of maize cultivars differing in their genetic profiles. The aim of the conducted field tests was the evaluation of the effect of application of magnesium in maize cultivation, which would increase effectiveness of nitrogen fertilization. A visible symptom of that may be a modification of morphological features of the plant. The properties analyzed in this paper (plant height) can have significant effect on shaping plant photosynthetic surface area that determines productivity thereof. It was shown that the number of plants was inversely proportional to the applied nitrogen rate. The stay-green hybrid was characterised by a greater number of plants both after emergence and during harvest. The significantly shortest plants were found for the dose of 0 kg N ha-1 in comparison to three other levels of application of this ingredient, for which the value of this property was significantly at the same level. Regardless of the nitrogen and magnesium dose, the „stay-green” ES Paroli variety was characterized by lower plants, a lower height of ear setting, a shorter length and diameter of the ears and the smaller volume of a ears compared with the ES Palazzo hybrid. Under conditions of this study it was ineffective to apply magnesium, as evidenced by the lack of effect of this macroelement on the analysed traits.
In 2007–2009, a pot experiment was carried out in a greenhouse at the University of Warmia and Mazury in Olsztyn on cv. Promyk pot marigold (Calendula officinalis L.). The aim of the study was to assess the impact of nitrogen and magnesium in plant growth and development and yield of marigold. The experiment included two factors: nitrogen fertilization (g.pot-1): A–0 (control), B–0.3, C–0.6 (0.6+0), D–0.9 (0.6+0.3), E–1.2 (0.6+0.6) and magnesium fertilization (g.pot-1): a–0 (control), b–0.5. The experimental part of the research was designed according to the independent series method and set up in 4 replicates, 4 pots in one replicate, in modified Kick-Brauckmann pots. The experiment demonstrated a significant effect of nitrogen fertilization on the plants hight, number of pot marigold inflorescences, fresh inflorescences weight, fresh and airdry ligulate weight. Magnesium fertilization had a positive effect on all the analyzed traits. No statistical correlation was proven between the nitrogen and magnesium fertilization.
The paper presents results of multivariate analyses assessing variation in quantitative traits after the application of nitrogen and magnesium rates in cultivation of two types of maize (Zea mays L.) cultivars, i.e. ES Palazzo and the stay-green ES Paroli. The purpose of this study was to assess the multivariate phenotypic variation of 16 objects which are a combination of four nitrogen doses, two doses of magnesium and two varieties characterized by varying the rate of aging. Observations were conducted for eight traits: plant height, ear height, ear length, ear diameter, ear volume, the number of plants after emergence, the number of plants before harvest, plant loss rates in the vegetation period, observed in the course of three years (2009-2011). Statistical analysis of results was performed using the multivariate methods. Analysis of canonical variables proved to be a reliable tool providing a comprehensive assessment of variation in the effect of urea and magnesium fertilisation combinations on many traits simultaneously. The most variable treatments were A2B2C2 (50 kg N ha-1, 25 kg MgO ha-1 for ES Paroli SG) and A4B2C1 (150 kg N ha-1, 25 kg MgO ha-1 for ES Palazzo). The most similar treatments (in terms of eight traits treated jointly) included A2B2C2 (50 kg N ha-1, 25 kg MgO ha-1 for ES Paroli SG) and A3B2C2 (100 kg N ha-1, 25 kg MgO ha-1 for ES Paroli SG). Mahalanobis distances between individual treatments in individual years of observations were positive and correlated statistically significantly.
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Effect of magnesium on beneficial organisms

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The paper presents the results of research on magnesium effect on beneficial enthomopathogenic fungi and nematodes as well as some predatory arthropods. Magnesium fertilization of soil contaminated with heavy metals does not significantly affect numbers of the majority of epigeal invertebrates, but it may influence numbers of single species, favouring the occurrence of some (Bembidion sp.) while restricting the presence of others (Harpalus rufipes De Geer). Magnesium synergism with heavy metal ions has been found to increase infectiveness and pathogenicity of enthomopathogenic fungi. Magnesium, in a dose of 160 mg⋅dm-3 present in the medium, significantly enhances pathogenicity of fungi, such as Beauveria bassiana, Paecilomyces farinosus, Paecilomyces fumoso-roseus or Metarhizium ansopliae. Increased pathogenicity of Steinernema carpocapsae and Heterorhabditis bacteriophora towards test insects has also been observed when magnesium ions were added to a solution in which these nematodes were kept. An effective magnesium dose differed depending whether the nematodes were used separately for test insects (450 mg⋅dm-3) or jointly with enthomopathogenic fungi (320 mg⋅dm-3). This protective effect of magnesium ions on beneficial microorganisms has also been observed in soil contaminated with heavy metals. An addition of magnesium to a solution in which enthomopathogenic nematodes were kept (160 mg⋅dm-3) and to a medium on which fungi were cultured (320 mg⋅dm-3) increased pathogenic abilities of these organisms in contaminated soil to a very high degree (10- to 300- fold higher than the natural heavy metal content in soil).
A field experiment was established at the Experimental and Didactic Station in Swadzim near Poznań over 2004-2007 (52°26’ N; 16°45’ E). The experiment was carried out in a ‘split-plot’ design with 3 research factors in 4 field replications. 2 types of maize hybrids, 6 doses of nitrogen and magnesium doses (including methods of their applications) were examined. The effect of these research factors on the proportion of nutrients and raw material energy value of two types of maize hybrids grown for ear silage were assessed. The hybrid of stay-green type contained less crude fibre but more crude fat in dry matter of ears as compared with the traditional hybrid. The largest amounts of net energy concentration, net energy yield, digestible protein yield and total protein yield were obtained by applying a nitrogen dose of 120 kg N·ha⁻¹. Fertilizing maize with N + Mg (in rows and by broadcasting), an increase in total protein yield was obtained in relation to the treatments with N fertilization only.
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