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This work consisted in an experiment installed at Unesp, Campus of Jaboticabal, from January to May 2006 and the objective was to evaluate dry matter accumulated and nutrients by cauliflower, hybrid Verona, during the cycle. The experimental design was randomized blocks, in plots subdivided on the time, with three replications. The plants were sampled at 30, 45, 60, 75, 90, 105 and 120 days after sowing (DAS), and were evaluated: number of leaves, stem length, stem and curd diameter, leaf area, stem, leaves and curd dry matter and accumulate of nutrients. The cauliflower growth had four different phases. In the first one, from 0 to 30 DAS, was correspondent of the period from sowing to transplant. In the second phase, from 30 to 75 DAS, the dry matter accumulated in leaves and stem were small in comparison with the total. The third growth phase, from 75 to 97 DAS, was characterized with great dry matter accumulated, increase in the number of leaves and leaf area. This phase ended with visualization of the curd, and was the beginning to the fourth phase, from 97 to 120 DAS. In the culture estimated in 25,000 plants/ha and productivity of 25.2 t ha(-1) the accumulated quantities with of N, P, K, Ca, Mg and S were, corresponding to, 224.5; 54; 156; 136; 21.75; 63.5 kg ha(-1) and 714.8; 270; 236.7 and 33.3 g ha(-1), corresponding to Fe, Mn, Zn and Cu.

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The experiment aimed to evaluate the effect of different levels of chemical and organic fertilization on watermelon (Crimson Sweet variety) yield. The experimental design was in randomized blocks, factorial scheme 5 x 4 (5 doses of chemical fertilizer 4-30-16 and 4 levels of organic fertilizer: cattle manure). Four replicates and 10 plants per plot were used. The levels of chemical fertilization tested were: 0, 150, 300, 450 and 600 g per hole. In relation to the organic fertilization 0, 3, 6 and 9 L of cattle manure per hole were used. There was a positive linear correlation among all variables evaluated. Only length and diameter of fruit in the doses 0, 3 and 6 L per hole shows interaction between chemical and organic fertilizers. The highest yield (22.989 kg(-1)) was reached with 450 g per hole of 4-30-16. The watermelon yield increase was limited by nitrogen and phosphorus application when cultivated only with chemical fertilizer and cattle manure, respectively.

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Aiming to evaluate the curve of growth and dry matter accumulation in cauliflower cv. Verona in commercial substrate for vegetables Plantmax (R), an experiment was conducted in a greenhouse at UNESP, Jaboticabal, SP. The experimental design was randomized blocks with six treatments, five replicates, each plot had a plan. The treatments consisted of sampling times (20, 30, 40, 50, 60 and 70 days after transplantation). Evaluations of plant height, leaf number, stem diameter, leaf area, dry matter of shoot, root and whole plant, and fresh weight of the inflorescence. Furthermore, calculated the relative growth rate (RGR) of leaves, stems, roots, flowers and whole plant, presented in g day(-1) plant(-1). The hybrid of cauliflower 'Verona' shows initial slow growth, stepping up from 30 days after transplantation. The maximum accumulation of dry matter per plant was 87g at 70 DAT, with the participation of sheets of 53.8%, stem 9.9%, 30.7% of inflorescence and root 6.5%. The cultivation cauliflower Verona in substrate showed high accumulation of dry Inflorescence.

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The objective was to evaluate the influence of the manganese nutritional status, growth and dry matter production of Tanzania grass. For this, we used plants of Panicum maximum Jacq. cv. Tanzania grown in pots filled with Oxisol (Mn = 0.6 mg dm(-3)). The experimental design was completely randomized, with five doses of manganese (0, 15, 30, 60 and 120 mg dm(-3)) and four replications. The plant shoot were harvested twice, the first 42 days after sowing and the second, 30 days after the first cut. In the two sections were evaluated the number of tillers and leaves, steam diameter, plant height, shoot dry matter and in shoot-Mn concentration and root dry matter after the second cut. The application of manganese in the soil increased the levels of this nutrient in the soil and their uptake by grass, which was more than four times fold higher in the second cut compared to the first cut. The use of high rates of Mn did not affect the growth of Panicum maximum, and decreased dry matter production only for the sum of two cuts, indicating high tolerance of forage of Mn toxicity. The toxicity of Mn in forage was associated with leaf content in the first and second cut of 1,238 and 1,418 mg kg(-1), respectively.

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The cultivation of the soil causes changes in physical attributes, depending on the intensity of preparation and management. The objective of this work was to evaluate the degree of modification of some physical properties of soil mid the S index, comparing areas of Pasture of grass Tanzania (Panicum maximum) and native forest with an area under maize (Zea mays L.) irrigated bay, a central pivot. The study was conducted in three areas within the Agency of Technology Agribusiness Paulista (APTA) Regional High Mogiana, located in Colina, SP. The experimental design was split plot in a factorial 3 x 3, with 4 replications, where the plots were installed in areas of Cultivation of corn, pasture and forest in the depths 0-0.1 m, 0.1-0.2 m 0.2-0.3 m. The physical attributes of soil were: resistance to penetration (RP), bulk density (Ds), microporosity (Micro), macroporosity (Macro), total volume of pores (VTP) and water retention in soil. The native forest had the best physical condition of soil in all parameters examined. The use of land and pasture with corn altered the physical structure of it, evidenced by the increase in penetration resistance and soil density and, reduction in macroporosity. The level of degradation of the managed soil was considered low, index S (<0035). The replacement of pasture by the corn crop in the soil tillage system provided a conventional mild improvement in soil physical characteristics.

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With the objective of evaluating the effects of phosphorus (0, 50, 100, 150 and 200 kg ha(-1) of P(2)O(5)) and zinc (0, 5, 10, 15 and 20 kg ha(-1) of Zn) fertilization in the maize crop, a field experiment was conducted on a Haplustox soil with 5 mg dm(3) of P and 0.39 mg dm(-3) of Zn (DTPA). From the results, it was observed that the fertilization with P and Zn resulted in significant increments of corn grain yield. The effect of P fertilization was higher than the fertilization with Zn. It was possible to obtain a production of grain up to 6,000 kg ha(-1) with P alone; higher yield than it was achieved only with both P and Zn fertilization. The maximum corn grain yield was associated with P contents in soil about 30 mg dm(-3). Phosphorus did not alter the contents of Zn in the leaves.

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These systems of soil use and management are very important in carbon supply and stability of aggregates, because affect directly culture yields. The aim of this project is to evaluate the carbon supply and stability of Haplustox aggregates under different managements. It was utilized a completely randomized experimental design in split plot scheme, with six replications. Thus, the treatments utilized were three different soil managements ( native forest, pasture with Tanzania grass and corn). The plots were consisted by three layers (0-10; 10-20 and 20-30 cm) and were analyzed to determined the organic matter, organic carbon supply of soil ( layers and equivalent soil mass methods) and weighed average diameter (DMP) and geometrical average diameter (DMG). The results indicated that the evaluated managements systems affected the size of soil aggregates of the ground and in its distribution in the layer of 0-30 cm of depth. The greatest accumulation of carbon were in the surface layers, although, there were not variation between the management systems.

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The objective of this work was to evaluate the soil physics and chemical attributes of Rhodic Ferralsol, in sugarcane systems harvest compared with soil forest. The treatments were consisted by native forest, manual and mechanized sugarcane harvesting. The soil was sampled at 0-0.10; 0.10-0.20 and 0.20-0.30 m soil depths. The soil organic matter, pH and PCZ values, flocculation degree and soil aggregation were evaluated in each soil sample. The statistics analysis was carried in a split-plot completely randomized design with five replications, exception for the soil aggregation,, with six replications The soil under MN, the soil organic matter and aggregates percentage (7.93 mm class) were higher. The higher mean weigh diameter aggregates was observed at 0-0.20 soil depth, in MN.

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Considering the reduced number of works with fertilization of Eugenia uvalha in national literature and being overcome as base the results of the research with fertilization of other fruitful ones, the present work had as objective to study the effect of nitrogen fertilization and phosphorus, in the culture of the Eugenia uvalha. The work was lead in the Department of Agriculture of the Federal University of Lavras, Lavras - MG, in the first semester of 2005. The experiment was adopted the experimental delineation of randomized blocks in factorial project 4 X 4, with four repetitions and 5 plants for parcel, having been 4 doses of phosphorus: 0 kg m(-3); 2,5 kg m(-3); 5,0 kg m(-3); 10,0 kg m(-3); using itself as seasoning source the triple superphosphate. Already for nitrogen, the applications proceeded from 10 in 10 days had been used 4 doses in covering being, had been carried through 4 applications. The applications consisted of a solution with urea, in the doses: 0; 0,8; 1,6 e 3,2 Kg m(-3), in each application had been added to the polyethylene bags, 20 mL of solution contend the N. had been evaluated the following characteristics: height of the dumb one (cm); root length (cm); leaf number; dry substance of the root and the aerial part (g). For the production of changes of Eugenia uvalha of quality, incorporation to the substratum of up to 1,30 kg m(-3) of P(2)O(5) sends regards to it.

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There are few studies that relate the micronutrient manganese nutritional status and production of fodder. The objective was to evaluate the application of manganese in the nutrition and growth of Mombaca grass. The completely randomized design was used with five manganese levels (0, 15, 30, 60, 120 mg dm(-3)) and four replicates. Each experimental unit consisted of a pot filled with 3.5 dm(-3) of soil from Oxisol (Mn = 0.6 mg dm(-3)), containing four plants. Two harvests were set, the first 44 days after sowing and the second 38 days after the first cut. The concentration of manganese in the soils, the manganese content of leaves, number of tillers, plant height, shoot dry mass in each slice and the root system of Mombaca grass were evaluated. The applied rates of manganese resulted in increased accumulation of Mn in the plant, and there was an increase in dry mass of Mombaca grass, with maximum production, obtained from derivation, of 5.9 and 6.3 g plant(-1) for levels of 121 and 71 mg dm(-3) of Mn in the first and second cut respectively. The Mombaca grass has showed high manganese's tolerance, the critical level of toxicity was 841 mg kg(-1) in the second cut.

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Given the importance of heart, especially among the high brassica consumption, coupled with the scarcity of studies that report symptoms of nutritional disorders in the culture, the work was carried out to evaluate the effect of the omission of macronutrients in the development and nutritional status of cabbage, and describe visual symptoms of nutritional deficiency. The experiment was conducted under greenhouse conditions in the UNESP, Jaboticabal, SP. The experiment was arranged in completely randomized design with three replications and seven treatments, corresponding to complete nutritive solution (macro and micronutrients) and individual N, P, K, Ca, Mg and S omission. Plant height, number of leaves, leaf area, shoot, root and whole plant dry mass and macronutrient levels were determined and nutritional deficiency symptoms were described. Individual omissions of N, P, K or Ca were limiting for cabbage growth, considerably reducing plant height, number of leaves, and shoot, root and whole plant dry mass. Nutritional deficiency symptoms were observed for each element. Shoot macronutrient levels in control and nutrient omission treatments were, respectively: N = 31.0-11.9; P = 5.3-0.60; K = 63.5-4.8; Ca = 25.9-4.8; Mg = 5.2-0.5; S = 10.3-1.4 g kg(-1).

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The SPAD values of the leaves have correlation with nutrients content and dry matter production and could be used for evaluation of the nutritional state in citrus rootstock. The aim of this work was to evaluate the effect of the rates of nitrogen (N), phosphorus (P) and potassium (K) on the indirect measure of chlorophyll in the lemon tree citrus rootstock of "citrumelo". After 20 days from sowing of the plants, the experiment was installed, in a randomized design factorial project 3x3 + 1, being three rates of N, P e K (920 mg dm(-3) 790 mg dm(-3) and 100 mg dm(-3), respectively), with three replications. The treatments were: D1 = half of the recommend rate; D2 = the recommend rate; e D3 = two times the recommend rate and one control (without fertilization). Four months after the emergency, were determined the SPAD values, dry matter yield and the N, P and K content of the plants. Interaction between N, P and K content with SPAD values the plants were found. SPAD values with N content and with the dry mass yield of the plants the citrus rootstock were encountered, indicating that the indirect measure of chlorophyll is adequate for the evaluation of the nitrogen content of 'citrumelo' plants.

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The soil physical quality is defined as the soil capacity to maintain the sustainable productivity during the years. To assess soil physical quality, attributes were evaluated in the layers of 0.0-0.10, 0.10-0.20, 0.20-0.30, 0.30-0.40 m in acrustox. The experimental design was entirely randomized, with four systems of use ( corn, sugar-cane, pasture and native vegetation), four soil depths and four replications. The parameter evaluated were: texture, degree of clay flocculation, soil bulk density, porosity, water retention and "S" parameter. The usage and management systems caused soil physical degradation, being greater in pasture system with intensive usage, with smaller soil physical quality for plants development. The soil physical quality, evaluated by physical attributes, followed the following order: native vegetation > maize > sugar-cane > pasture. The Oxisol, although shows present excellent physical structure and needs an adequate management to prevent excessive compaction.

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The present research had he objective to evaluate rice response to zinc application forms on the nutrition, growth and dry matter production, in vase conditions. The experiment was carried out in a completely randomized design, with five treatments (leaf Zn, incorporated Zn, located Zn, Zn saw seed and witness - whitout zinc), in four repetitions during two cycles of cultivation with 42 days of duration each. Plastic vase of 7L, were filled with Red Distrofic Latosol (Zn = 0.3 mg dm(-3) in DTPA). The application of Zn saw soil in both culture of the rice improved its level in the soil, being distinguished it from located form. In the first cycle, the application of Zn saw leaf promoted greater absorption of the nutrient for the rice plants, while in the second cycle leaf application was followed by the saw soil incorporated. The biggest dry matter production occurred with application of leaf saw in the first cycle and saw soil (incorporated and located) in the second rice cultivation.

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The cultivation of pastures in Brazil is mostly done with the species Brachiaria spp. However, there is little research on nutrition with manganese for this forage. It was aimed to asses the effects of manganese in the development and nutrition of marandu grass. The experimental design used was fully randomized, consisting of five rates of manganese ( 0, 15, 30, 60 e 120 mg dm(-3)) and four repetitions. The experimental unit was formed in a vase filled with a Red Latosol dystrophic. There were two cuts, the first after 38 days of transplanting seedling and the second 30 days after the first cut. Was evaluated the content of manganese leaf, the dry mass of the shoot, the number of tillers and the leaf area. The levels of manganese increased its accumulation in the plant, second cut compared to the first cut. The marandu grass showed high tolerance to manganese toxicity, reaching a high leaf content in the shoot without affecting plant growth.