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Arsenic has been considered the most poisonous inorganic soil pollutant to living creatures. For this reason, the interest in phytoremediation species has been increasing in the last years. Particularly for the State of Minas Gerais, where areas of former mining activities are prone to the occurrence of acid drainage, the demand is great for suitable species to be used in the revegetation and "cleaning" of As-polluted areas. This study was carried out to evaluate the potential of seedlings of Eucalyptus grandis (Hill) Maiden and E. cloeziana F. Muell, for phytoremediation of As-polluted soils. Soil samples were incubated for a period of 15 days with different As (Na2HAsO4) doses (0, 50, 100, 200, and 400 mg dm-3). After 30 days of exposure the basal leaves of E. cloeziana plants exhibited purple spots with interveinal chlorosis, followed by necrosis and death of the apical bud at the 400 mg dm-3 dose. Increasing As doses in the soil reduced root and shoot dry matter, plant height and diameter in both species, although the reduction was more pronounced in E. cloeziana plants. In both species, As concentrations were highest in the root system; the highest root concentration was found in E. cloeziana plants (305.7 mg kg-1) resulting from a dose of 400 mg dm-3. The highest As accumulation was observed in E. grandis plants, which was confirmed as a species with potential for As phytoextraction, tending to accumulate As in the root system and stem.

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O N influencia os processos de morfogênese e perfilhamento nas espécies da família Poaceae. Contudo, seu efeito sobre o perfilhamento do milho é pouco conhecido. Este trabalho foi realizado com o objetivo de avaliar se a dose de N e a época de aplicação da cobertura nitrogenada interferem na emissão, sobrevivência e contribuição dos perfilhos ao rendimento de grãos de híbridos de milho. O experimento foi instalado no município de Lages (SC), nos anos agrícolas de 2006/07 e 2008/09. O delineamento experimental empregado foi o de blocos casualizados dispostos em parcelas subdivididas. No primeiro ano, as parcelas foram constituídas de dois híbridos de milho (AS 1560 e P30F53); as subparcelas, por três doses de N (0, 100 e 200 kg ha-1 de N); e as sub-subparcelas, por três épocas de aplicação do N (V4, V4+V8 e V8). No segundo ano, avaliaram-se quatro doses de N nas parcelas (0, 50, 100 e 200 kg ha-1 de N) e as mesmas épocas de aplicação usadas no primeiro ano, nas subparcelas. Determinaram-se a percentagem de plantas perfilhadas, o número de perfilhos por planta, o rendimento de grãos e os componentes do rendimento. O híbrido P30F53 teve maior capacidade de perfilhamento e maior rendimento de grãos do que o AS 1560. A aplicação de N em cobertura reduziu a mortalidade dos perfilhos na colheita no primeiro ano, e até a floração, na segunda safra. A realização da cobertura nitrogenada em V4 estimulou o perfilhamento e permitiu maior sobrevivência dos perfilhos na colheita em 2008/09. A aplicação de N em cobertura aumentou o rendimento de grãos nos dois anos de ensaio e incrementou a contribuição direta dos perfilhos à produtividade em 2006/07. A época de aplicação do N em cobertura não interferiu no rendimento de grãos. A capacidade de perfilhamento no milho difere entre híbridos. Os perfilhos contribuem diretamente para o rendimento de grãos do milho em condições de boa disponibilidade de N.

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Research data have demonstrated that the P demand of coffee (Coffea arabica L.) is similar to that of short-cycle crops. In this context, the objective of this study was to evaluate the influence of annual P fertilization on the soil P status by the quantification of labile, moderately labile, low-labile, and total P fractions, associating them to coffee yield. The experiment was installed in a typical dystrophic Red Latosol (Oxisol) cultivated with irrigated coffee annually fertilized with triple superphosphate at rates of 0, 50, 100, 200, and 400 kg ha-1 P2O5. Phosphorus fractions were determined in two soil layers: 0-10 and 10-20 cm. The P leaf contents and coffee yield in 2008 were also evaluated. The irrigated coffee responded to phosphate fertilization in the production phase with gains of up to 138 % in coffee yield by the application of 400 kg ha-1 P2O5. Coffee leaf P contents increased with P applications and stabilized around 1.98 g kg-1, at rates of 270 kg ha-1 P2O5 and higher. Soil P application caused, in general, an increase in bioavailable P fractions, which constitute the main soil P reservoir.

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Balanced fertilization is important for plant growth. There is little information on physic nut (Jatropha curcas L.) and tests with the fertilization of the species are very recent. This study evaluated the initial growth of physic nut seedlings in response to NPK rates to Quartzarenic Neossol in a greenhouse and estimated P and K critical soil levels and N, P and K in shoot dry matter after 120 days of evaluation. The treatments were arranged in a randomized, fractional factorial design (4 x 4 x 4)½, totalizing 32 treatments with three replicates, 96 experimental plots and N rates (0, 75, 150 and 300 mg dm-3) as urea; P rates (0, 45, 90 and 180 mg dm-3) as triple superphosphate and K rates (0, 50, 100 and 200 mg dm-3) as potassium chloride. After 120 days, the plants were harvested and some variables evaluated: plant height, stem diameter, shoot and root dry weight, macro and micronutrient levels in plant shoots, and soil chemical properties. The physic nut seedlings responded to NPK fertilizer in the initial growth phase; the response to N was negative. The recommended P and K rates were 25 and 67 mg dm-3, respectively. The critical levels, corresponding to the recommended P rate were 13 and 74 mg dm-3 for K in soil (Mehlich-1). The N, P and K levels in the shoot dry matter of physic nut were 37.4, 2.1 and 35.7 g kg-1, respectively.

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Devido à importância dos estudos de deslocamento de solutos em colunas de solo, para avaliar os riscos de poluição do solo e das águas subterrâneas, e à falta de padronização no comprimento da coluna de solo utilizada (L) e na velocidade de escoamento da solução aplicada (), realizou-se este trabalho com o objetivo de avaliar a relação de L e de com o coeficiente de dispersão-difusão (D), a dispersividade (λ) e o fator de retardamento (R) do K+ em um Latossolo Vermelho distrófico (LVd) e num Neossolo Quartzarênico órtico (RQo). Foram testados cinco comprimentos de colunas (0,10, 0,20, 0,30, 0,40 e 0,50 m) e quatro velocidades, sendo 0,62, 0,69, 0,75 e 0,81 m h-1 para o LVd e 0,37, 0,40, 0,44 e 0,48 m h-1 para o RQo. Aplicou-se uma solução deslocadora de 130 mg L-1 de K+ nas colunas montadas com o solo desestruturado e saturadas com uma solução de CaCl2 5 mmol L-1. Os parâmetros de transporte R e D foram obtidos utilizando-se o programa computacional Disp; a λ foi obtida pela equação D = Do + λ, sendo Do igual a 7,13 10-6 m² h-1 para o KCl. Houve relação do comprimento da coluna e da velocidade de escoamento da solução com os parâmetros de transporte do K+ tanto no LVd quanto no RQo. No LVd, o fator de retardamento aumentou com o aumento na velocidade de escoamento da solução. Em ambos os solos, o fator de retardamento diminuiu com o aumento no comprimento da coluna; o coeficiente de dispersão-difusão aumentou com o aumento na velocidade de escoamento da solução e com o aumento no comprimento da coluna de solo; e a dispersividade também aumentou com o aumento no comprimento da coluna.

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Especially under no-tillage, subsuface soil acidity has been a problem, because it depends on base leaching, which has been associated with the presence of low molecular weigth organic acids and companion anions. The objective of this study was to evaluate exchangeable base cation leaching as affected by surface liming along with annual urea side-dressing of maize and upland rice. Treatments consisted of four lime rates (0, 1500, 3000, and 6000 kg ha-1) combined with four nitrogen rates (0, 50, 100, and 150 kg ha-1) applied to maize (Zea mays) and upland rice (Oryza sativa), in two consecutive years. Maize was planted in December, three months after liming. In September of the following year, pearl millet (Pennisetum glaucum) was planted without fertilization and desiccated 86 days after plant emergence. Afterwards, upland rice was grown. Immediately after upland rice harvest, 18 months after surface liming, pH and N-NO3-, N-NH4+, K, Ca, and Mg levels were evaluated in soil samples taken from the layers 0-5, 5-10, 10-20 and 20-40 cm. Higher maize yields were obtained at higher N rates and 3000 kg ha-1 lime. Better results for upland rice and pearl millet yields were also obtained with this lime rate, irrespective of N levels. The vertical mobility of K, Ca and Mg was higher in the soil profiles with N fertilization. Surface liming increased pH in the upper soil layers causing intense nitrate production, which was leached along with the base cations.

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Castor bean is a nutrient-demanding species, but there is still little information on its micronutrient requirements. The objectives of this study were to evaluate the effects of levels of B (2.5, 12.5 and 25.0 µmol L-1), Cu (0.05, 0.25 and 0.50 µmol L-1), Mn (0.2, 1.0 and 2.0 µmol L-1) and Zn (0.2, 1.0 and 2.0 µmol L-1) in a nutrient solution on plant B, Cu, Mn and Zn concentrations and uptake, vegetative growth and fruit yield of castor bean "Iris", grown in greenhouse. The experiment was arranged in a completely randomized block design with three replicates. The first deficiency symptoms were observed for B, followed by Zn, Cu and Mn. The main changes in the cell ultrastructure due to lack of B were thickening of the cell walls and middle lamellae, distorted chloroplasts and tightly stacked thylakoids, besides the absence of starch grains. The Mn, Zn and Cu deficiencies led to disruption of chloroplasts, disintegration of thylakoids and absence of amyloplasts. The concentration and uptake of B, Cu, Mn, and Zn in castor bean plants increased with micronutrient supply in the solution. Fruit yield was drastically reduced by B and Mn deficiencies. On the other hand, the dry matter yield of the shoot and root of castor bean plants was not. In the treatment with full nutrient solution, the leaves accumulated 56 and 48 % of the total B and Mn taken up by the plants, respectively, and the seeds and roots 85 and 61 % of the total Cu and Zn taken up, respectively. This shows the high demand of castor bean Iris for B and Mn for fruit yield.

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Nitrogen is the most important nutrient for rice (Oryza sativa L) yields. This study aimed to evaluate the response of upland rice cultivars to N rate and application times in a randomized block design, in subdivided plots with four replications. The studied factors were five rice cultivars (BRS MG Curinga, BRS Monarca, BRS Pepita, BRS Primavera, and BRS Sertaneja), three application times (100 % at planting, 50 % at planting - 50 % at tillering and 100 % at tillering) and four N rates (0, 50, 100, and 150 kg ha-1). All cultivars responded to increased rates and different times of N application, especially BRS Primavera and BRS Sertaneja, which were the most productive when 50 % N rates were applied at sowing and 50 % at tillering. The response of cultivar BRS Monarca to N fertilization was best when 100 % of the fertilizer was applied at tillering.

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O rendimento e a conservação da cebola são influenciados pela disponibilidade de nitrogênio (N) no solo, o qual é requerido em grande quantidade. O presente trabalho objetivou avaliar o efeito de doses e do número de aplicações de N no estado nutricional das plantas, no rendimento e na conservação pós-colheita de bulbos de cebola. Foram realizados três experimentos, em campo, em Cambissolos catarinenses. Os tratamentos consistiram de uma combinação fatorial (4 x 3) envolvendo quatro doses de N (0, 50, 100 e 200 kg ha-1) e três modos de aplicação (aos 45, aos 45 e 75, e aos 30, 60 e 90 dias após o transplante). De cada dose, 25 % foram adicionados no plantio e o restante aplicado em uma ou dividido em duas ou três aplicações iguais. O transplante das mudas foi sempre realizado na segunda quinzena de julho, e a colheita foi efetuada aproximadamente 115 dias depois. O rendimento de bulbos aumentou de forma quadrática com o aumento da quantidade de N aplicada. A dose de N estimada que proporcionou a máxima produtividade econômica variou de 249 kg ha-1 em 2006/07, onde o solo era arenoso, a 116 e 142 kg ha-1 em 2008/09 e 2009/10, respectivamente, em solo mais argiloso. Os rendimentos máximos obtidos foram de 38, 46 e 30 t ha-1 em 2006/07, 2008/09 e 2009/10, respectivamente, e as doses de N correspondentes à máxima produtividade econômica promoveram incrementos de 42, 10 e 17 %, respectivamente, no tratamento sem N. O aumento do número de aplicações de N em cobertura, de uma para duas ou três, não alterou o rendimento e a conservação pós-colheita em nenhum ano. Em solos arenosos com baixo teor de matéria orgânica, é necessário aplicar maior quantidade de N para obter alto rendimento de cebola do que em solos argilosos com médios teores de matéria orgânica. A adição de N ao solo pode alterar negativamente a conservação dos bulbos em anos chuvosos.

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Biological nitrogen fixation by rhizobium-legume symbiosis represents one of the most important nitrogen sources for plants and depends strongly on the symbiotic efficiency of the rhizobium strain. This study evaluated the symbiotic capacity of rhizobial isolates from calopo (CALOPOGONIUM MUCUNOIDES) taken from an agrisoil under BRACHIARIA DECUMBENS pasture, sabiá (MIMOSA CAESALPINIIFOLIA) plantations and Atlantic Forest areas of the Dry Forest Zone of Pernambuco. A total of 1,575 isolates were obtained from 398 groups. A single random isolate of each group was authenticated, in randomized blocks with two replications. Each plant was inoculated with 1 mL of a bacterial broth, containing an estimated population of 10(8) rhizobial cells mL-1. Forty-five days after inoculation, the plants were harvested, separated into shoots, roots and nodules, oven-dried to constant mass, and weighed. Next, the symbiotic capability was tested with 1.5 kg of an autoclaved sand:vermiculite (1:1) mixture in polyethylene bags. The treatments consisted of 122 authenticated isolates, selected based on the shoot dry matter, five uninoculated controls (treated with 0, 50, 100, 150, or 200 kg ha-1 N) and a control inoculated with SEMIA 6152 (=BR1602), a strain of BRADYRHIZOBIUM JAPONICUM The test was performed as described above. The shoot dry matter of the plants inoculated with the most effective isolates did not differ from that of plants treated with 150 kg ha-1 N. Shoot dry matter was positively correlated with all other variables. The proportion of effective isolates was highest among isolates from SABIÁ forests. There was great variation in nodule dry weight, as well as in N contents and total N.

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In unfertilized, highly weathered tropical soils, phosphorus (P) availability to plants is dependent on the mineralization of organic P (Po) compounds. The objective of this study was to estimate the mineralization of total and labile Po in soil size fractions of > 2.0, 2.0-0.25 and < 0.25 mm under leguminous forest tree species, pasture and "capoeira" (secondary forest) in the 0-10 cm layer of a Red-Yellow Latosol after 90 d of incubation. The type of vegetation cover, soil incubation time and soil size fractions had a significant effect on total P and labile P (Pi and Po) fraction contents. The total average Po content decreased in soil macroaggregates by 25 and 15 % in the > 2.0 and 2.0-0.25 mm fractions, respectively. In contrast, there was an average increase of 90 % of total Po in microaggregates of < 0.25 mm. Labile Po was significantly reduced by incubation in the > 2.0 (-50 %) and < 0.25 mm (-76 %) fractions, but labile Po increased by 35 % in the 2.0-0.25 mm fraction. The Po fraction relative to total extracted P and total labile P within the soil size fractions varied with the vegetation cover and incubation time. Therefore, the distribution of P fractions (Pi and Po) in the soil size fraction revealed the distinctive ability of the cover species to recycle soil P. Consequently, the potential of Po mineralization varied with the size fraction and vegetation cover. Because Po accounted for most of the total labile P, the P availability to plants was closely related to the mineralization of this P fraction.

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Acacia mangium and Mimosa caesalpiniaefolia are fast-growing woody fabaceous species that might be suitable for phytoremediation of arsenic (As)-contaminated sites. To date, few studies on their tolerance to As toxicity have been published. Therefore, this study assessed As toxicity symptoms in A. mangium and M. caesalpiniaefolia seedlings under As stress in a greenhouse. Seedlings of Acacia mangium and M. caesalpiniaefolia were grown for 120 d in an Oxisol-sand mixture with 0, 50, 100, 200, and 400 mg kg-1 As, in four replications in four randomized blocks. The plants were assessed for visible toxicity symptoms, dry matter production, shoot/root ratio, root anatomy and As uptake. Analyses of variance and regression showed that the growth of A. mangium and M. caesalpiniaefolia was severely hindered by As, with a reduction in dry matter production of more than 80 % at the highest As rate. The root/shoot ratio increased with increasing As rates. At a rate of 400 mg kg-1 As, whitish chlorosis appeared on Mimosa caesalpiniaefolia seedlings. The root anatomy of both species was altered, resulting in cell collapse, death of root buds and accumulation of phenolic compounds. Arsenic concentration was several times greater in roots than in shoots, with more than 150 and 350 mg kg-1 in M. caesalpiniaefolia and A. mangium roots, respectively. These species could be suitable for phytostabilization of As-contaminated sites, but growth-stimulating measures should be used.

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The physical properties and fertility of the soil are important factors in the formation and establishment of pasture. Changes in physical properties affect the movement of water, air, nutrients and roots, which, in turn, affect the productivity and longevity of pastures. The objective of this study was to evaluate the physical properties of the soil and the dry matter yield of a pasture with signalgrass cv. Basilisk (Brachiaria decumbens cv. Basilisk), fertilized with increasing nitrogen doses (N), on a dystrophic Red-Yellow Latosol. The experiment was conducted on the Fazenda Rio Manso of the Universidade Federal dos Vales do Jequitinhonha e Mucuri, in Couto de Magalhães de Minas, State of Minas Gerais, Brazil. To evaluate the annual forage yield, a split plot scheme in a randomized block design with four replications was used, with N doses (0, 50, 100, 150, and 200 kg/ha/year) in the plots and growing seasons (first and second) in the subplots. For soil evaluation, a split plot scheme was used with N doses (0, 25, 50, 75 and 100 kg/ha/cut) in the plots and three sampling times (prior to the experiment, at the end of the first growing season and at the end of the second growing season) in the subplots in a randomized block design with four replications. This analysis was performed separately at two soil depths (0-3 and 10-13 cm). Forage samples were analyzed for the annual dry matter yield (DMY), and soil samples were analyzed for pre-consolidation pressure (σp), initial soil bulk density (Bd), total pore volume (TPV) and void index (Vd). Higher nitrogen doses increased the dry matter yield of signalgrass pasture and the pre-consolidation pressure of the soil. The total pore volume and void index decreased, and the initial soil bulk density increased, though without promoting soil compaction.

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A utilização de Si no cultivo de algumas plantas ornamentais cultivadas em vasos em casa de vegetação tem proporcionado aumento na produção e qualidade do produto final. Objetivou-se com este estudo avaliar a produção e absorção de nutrientes de dois cultivares de roseira cultivados em vasos influenciados pela aplicação de doses de Si no substrato. Os tratamentos foram gerados pelo fatorial 2 x 5, composto por dois cultivares de roseira (Yellow Terrazza® e Red White Terrazza®) e cinco doses de Si (0; 0,25; 0,50; 0,75; e 1,00 g kg-1), e dispostos em delineamento de blocos casualizados, com quatro repetições. Foram avaliados altura, ciclo, produção, diâmetro, longevidade floral, teores e conteúdos foliares de Si, macro e micronutrientes da planta. Foi feita a análise de variância dos dados, ajustando-se equações de regressão para o efeito das doses de Si. A aplicação de Si no substrato melhorou a produção e qualidade das rosas produzidas em vasos em casa de vegetação, porém a resposta das plantas variou com as doses de Si. As doses de Si para se obterem 90 % da produção máxima de matéria seca de flores foram de 0,43 e 0,22 g kg-1 para Yellow Terrazza® e Red White Terrazza®, respectivamente. Já os efeitos negativos do elemento foram observados a partir das doses de 0,86 e 0,55 g kg-1 de Si para Yellow Terrazza® e Red White Terrazza®, respectivamente. Os teores foliares de Si aumentaram em função da dose de Si aplicada no substrato.

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PURPOSE Updated results are presented after a median follow-up of 7.3 years from the phase III First-Line Indolent Trial of yttrium-90 ((90)Y) -ibritumomab tiuxetan in advanced-stage follicular lymphoma (FL) in first remission. PATIENTS AND METHODS Patients with CD20(+) stage III or IV FL with complete response (CR), unconfirmed CR (CRu), or partial response (PR) after first-line induction treatment were randomly assigned to (90)Y-ibritumomab consolidation therapy (rituximab 250 mg/m(2) days -7 and 0, then (90)Y-ibritumomab 14.8 MBq/kg day 0; maximum 1,184 MBq) or no further treatment (control). Primary end point was progression-free survival (PFS) from date of random assignment. Results For 409 patients available for analysis ((90)Y-ibritumomab, n = 207; control, n = 202), estimated 8-year overall PFS was 41% with (90)Y-ibritumomab versus 22% for control (hazard ratio [HR], 0.47; P < .001). For patients in CR/CRu after induction, 8-year PFS with (90)Y-ibritumomab was 48% versus 32% for control (HR, 0.61; P = .008), and for PR patients, it was 33% versus 10% (HR, 0.38; P < .001). For (90)Y-ibritumomab consolidation, median PFS was 4.1 years (v 1.1 years for control; P < .001). Median time to next treatment (TTNT) was 8.1 years for (90)Y-ibritumomab versus 3.0 years for control (P < .001) with approximately 80% response rates to second-line therapy in either arm, including autologous stem-cell transplantation. No unexpected toxicities emerged during long-term follow-up. Estimated between-group 8-year overall survival rates were similar. Annualized incidence rate of myelodysplastic syndrome/acute myeloblastic leukemia was 0.50% versus 0.07% in (90)Y-ibritumomab and control groups, respectively (P = .042). CONCLUSION (90)Y-ibritumomab consolidation after achieving PR or CR/CRu to induction confers 3-year benefit in median PFS with durable 19% PFS advantage at 8 years and improves TTNT by 5.1 years for patients with advanced FL.