153 resultados para Brachiaria. Cenchrus. Flow Tissues. Forage. Panicum. Semiarid
Resumo:
Em sistema de integração lavoura-pecuária, os diversos cultivos em sistema plantio direto alteram os atributos físicos do solo, refletindo sobre a produtividade e a composição vegetal. O objetivo deste trabalho foi indicar atributos do solo com melhor correlação com a produtividade e teor de proteína da Brachiaria brizantha. Foram analisadas as correlações lineares e espaciais entre a produtividade de matéria seca (MS) e o teor de proteína bruta (PB) de Brachiaria brizantha (cv. Marandu) e de alguns atributos físicos de um Latossolo Vermelho distroférrico (Oxisol), em três profundidades (zero-0,10; 0,10-0,20; e 0,20-0,30 m). Para isso, foi instalada a malha geoestatística (entre 20 º 18 ' 05 '' S e 20 º 18 ' 28 '' S, e entre 52 º 39 ' 02 '' W e 52 º 40 ' 28 '' W) para a coleta dos dados, contendo 124 pontos amostrais, numa área de 4.000 m². A produtividade e o teor de proteína bruta de Brachiaria brizantha não variaram aleatoriamente e seguiram padrões espaciais bem definidos, com semivariogramas do tipo esférico, com alcances da dependência espacial, aproximadamente, entre 40 e 50 m. O aumento da resistência mecânica à penetração e da umidade do solo na camada superficial, no cultivo de Brachiaria brizantha, promove a redução do teor de proteína bruta e da matéria seca. A porosidade total na camada de 0,20-0,30 m, é um importante indicador da qualidade física do solo e apresenta confiabilidade para estimativa da produtividade de matéria seca de Brachiaria brizantha.
Resumo:
Rainfall in the semiarid region of Pernambuco is characterized by irregular distribution in time and space, which significantly hinders the rainfed agriculture in the region. This work aims to evaluate the temporal profile of soil moisture in the semiarid region of the Pernambuco State (Brazil) and the effect of different soil surface conditions on soil water content variation and the yield of rainfed beans. To monitor soil water content, five plots 4.5 m wide by 11 m long were installed in a Yellow Argisol (Ultisol). The following treatments were adopted in the experimental plots: natural vegetation, bean intercropped with cactus, beans planted down the slope, beans planted along contour lines with mulch and rock barriers, and bare soil. In each plot, eight PVC access tubes were installed for monitoring the soil water content profile at depths of 0.20 and 0.40 m using a neutron probe device. The surface condition significantly influenced the soil water content variation, both in the dry and rainy seasons. The use of mulch, associated with rock barriers, provided higher soil water content levels than the other treatments and increased the rainfed beans production.
Resumo:
Nickel, although essential to plants, may be toxic to plants and animals. It is mainly assimilated by food ingestion. However, information about the average levels of elements (including Ni) in edible vegetables from different regions is still scarce in Brazil. The objectives of this study were to: (a) evaluate and optimize a method for preparation of vegetable tissue samples for Ni determination; (b) optimize the analytical procedures for determination by Flame Atomic Absorption Spectrometry (FAAS) and by Electrothermal Atomic Absorption (ETAAS) in vegetable samples and (c) determine the Ni concentration in vegetables consumed in the cities of Lorena and Taubaté in the Vale do Paraíba, State of São Paulo, Brazil. By means of the analytical technique for determination by ETAAS or FAAS, the results were validated by the test of analyte addition and recovery. The most viable method tested for quantification of this element was HClO4-HNO3 wet digestion. All samples but carrot tissue collected in Lorena contained Ni levels above the permitted by the Brazilian Ministry of Health. The most disturbing results, requiring more detailed studies, were the Ni concentrations measured in carrot samples from Taubaté, where levels were five times higher than permitted by Brazilian regulations.
Resumo:
Nitrogen usually determines the productive potential of forage crops, although it is highly unstable in the environment. Studies on recovery rates and use efficiency are important for more reliable fertilizer recommendations to reduce costs and avoid environmental pollution. The purpose of this study was to evaluate N use efficiency and recovery rate of Alexandergrass pasture (Brachiaria - Syn. Urochloa plantaginea) as well as N-NO3- and N-NH4+ soil concentrations using different levels of N fertilization under two grazing intensities. The experiment was arranged in a randomized block design in a factorial scheme with three replications. Treatments consisted of three N rates (0, 200 and 400 kg ha-1 N) and two grazing intensities termed low mass (LM; forage mass of 2,000 kg ha-1 of DM) and high mass (HM; forage mass of 3,600 kg ha-1 of DM) under continuous stocking and variable stocking rates. Results of N fertilization with 200 kg ha-1 were better than with 400 kg ha-1 N. There was a significant effect of N rates on soil N-NO3-concentration with higher levels in the first layer of the soil profile in the treatment with 400 kg ha-1 N. Grazing intensity also affected soil N-NO3- concentration, by increasing the levels under the higher stocking rate (lower forage mass).
Resumo:
The greatest limitation to the sustainability of no-till systems in Cerrado environments is the low quantity and rapid decomposition of straw left on the soil surface between fall and spring, due to water deficit and high temperatures. In the 2008/2009 growing season, in an area under center pivot irrigation in Selvíria, State of Mato Grosso do Sul, Brazil, this study evaluated the lignin/total N ratio of grass dry matter , and N, P and K deposition on the soil surface and decomposition of straw of Panicum maximum cv. Tanzânia, P. maximum cv. Mombaça, Brachiaria. brizantha cv. Marandu and B. ruziziensis, and the influence of N fertilization in winter/spring grown intercropped with maize, on a dystroferric Red Latosol (Oxisol). The experiment was arranged in a randomized block design in split-plots; the plots were represented by eight maize intercropping systems with grasses (sown together with maize or at the time of N side dressing). Subplots consisted of N rates (0, 200, 400 and 800 kg ha-1 year-1) sidedressed as urea (rates split in four applications at harvests in winter/spring), as well as evaluation of the straw decomposition time by the litter bag method (15, 30, 60, 90, 120, and 180 days after straw chopping). Nitrogen fertilization in winter/spring of P. maximum cv. Tanzânia, P. maximum cv. Mombaça, B. brizantha cv. Marandu and B. ruziziensis after intercropping with irrigated maize in an integrated crop-livestock system under no-tillage proved to be a technically feasible alternative to increase the input of straw and N, P and K left on the soil surface, required for the sustainability of the system, since the low lignin/N ratio of straw combined with high temperatures accelerated straw decomposition, reaching approximately 30 % of the initial amount, 90 days after straw chopping.
Resumo:
The rate of carbon dioxide production is commonly used as a measure of microbial activity in the soil. The traditional method of CO2 determination involves trapping CO2 in an alkali solution and then determining CO2 concentration indirectly by titration of the remaining alkali in the solution. This method is still commonly employed in laboratories throughout the world due to its relative simplicity and the fact that it does not require expensive, specific equipment. However, there are several drawbacks: the method is time-consuming, requires large amounts of chemicals and the consistency of results depends on the operator's skills. With this in mind, an improved method was developed to analyze CO2 captured in alkali traps, which is cheap and relatively simple, with a substantially shorter sample handling time and reproducibility equivalent to the traditional titration method. A comparison of the concentration values determined by gas phase flow injection analysis (GPFIA) and titration showed no significant difference (p > 0.05), but GPFIA has the advantage that only a tenth of the sample volume of the titration method is required. The GPFIA system does not require the purchase of new, costly equipment but the device was constructed from items commonly found in laboratories, with suggestions for alternative configurations for other detection units. Furthermore, GPFIA for CO2 analysis can be equally applied to samples obtained from either the headspace of microcosms or from a sampling chamber that allows CO2 to be released from alkali trapping solutions. The optimised GPFIA method was applied to analyse CO2 released from degrading hydrocarbons from a site contaminated by diesel spillage.
Resumo:
O uso intensivo de áreas do Cerrado para produção agropecuária aliado ao manejo inadequado tem causado degradação dos solos. Nesse sentido há necessidade da incorporação de sistemas sustentáveis como plantio direto e a integração lavoura-pecuária. Este trabalho objetivou identificar o efeito da sucessão de milho+forrageiras e soja nos atributos físicos do solo. Para tanto foi realizado, em área experimental da Unesp, campus de Ilha Solteira, um ensaio composto do consórcio de milho com quatro forrageiras (Brachiaria brizantha,B. ruziziensis, Panicum maximum cv. Tanzânia e P. maximum cv. Áries) semeadas em três modalidades (na linha de semeadura do milho misturada ao adubo, a lanço simultânea à semeadura do milho e a lanço no estádio V4 do milho) e o milho sem consorciação (testemunha). A soja de verão foi implantada sobre os restos culturais dos tratamentos anteriores. Foram realizadas coletas para determinar a macro e microporosidade, porosidade total e densidade do solo em duas épocas de amostragem, após as colheitas do milho e da soja. Pelos resultados, pôde-se concluir que, em regiões de cerrados, a sucessão de culturas utilizada promoveu a melhoria da macroporosidade, porosidade total e densidade do solo, independentemente da utilização de forrageiras em consórcio com milho.
Resumo:
As pastagens formam a base da pecuária brasileira; essas sofrem degradação em larga escala por deficiência de nitrogênio (N). O consórcio com leguminosas, além de fixar N, pode apresentar outros efeitos na fertilidade do solo como acidificação ou retirada de nutrientes de camadas mais profundas para as mais superficiais. Este trabalho objetivou avaliar o estoque de serapilheira e a fertilidade do solo em pastagens degradadas de braquiária (Brachiaria decumbens), após implantar leguminosas arbustivas e arbóreas forrageiras. Para isso, uma amostragem foi realizada em março de 2010 em um experimento no campo, introduzindo pastagem degradada de Brachiaria decumbens, em julho de 2008, com sabiá (Mimosa caesalpiniifolia), leucena (Leucaena leucocephala), mororó (Bauhinia cheilantha) e gliricídia (Gliricidia sepium), além de braquiária adubada e não adubada com N. As amostras de solo e serapilheira foram coletadas aos 0-10, 10-20 e 20-40 cm de profundidade, em três transectos, alternando pontos cobertos por gramíneas e leguminosas, totalizando sete amostras compostas por parcela para determinar pH, P, K, Ca, Mg e Al no solo, enquanto SB, t e m foram calculados. A serapilheira foi separada visualmente em leguminosas, gramíneas e materiais não identificados, em que foram utilizados para quantificação de matéria seca, matéria orgânica, N, P, C, fibra detergente ácido e lignina. A introdução das leguminosas aumentou os teores de N total na serapilheira e reduziu as relações C:N, com destaque para gliricídia e sabiá; entretanto, essa última apresentou elevados teores de lignina. Houve efeito significativo da cobertura por leguminosas, sem diferenças entre essas, para pH e K, na profundidade de 0-10 cm, e para Al e m, aos 10-20 cm de profundidade.
Resumo:
O intervalo hídrico ótimo (IHO) destaca-se como um dos melhores indicadores da qualidade física do solo, sob sistemas intensivos de produção. O objetivo deste trabalho foi avaliar a qualidade física de um Latossolo Vermelho distrófico típico por meio do IHO, após três safras agrícolas de lavoura e o primeiro ano de sistema integração lavoura-pecuária, em Xambrê, noroeste do Paraná. O experimento foi implantado em blocos casualizados, com três repetições. Os tratamentos consistiram de quatro alturas de pastejo (0,10; 0,20; 0,30; e 0,40 m) e um tratamento testemunha sem pastejo. A braquiária (BRACHIARIA RUZIZIENSIS) foi semeada em março de 2010 e o pastejo contínuo de bovinos foi realizado durante 110 dias (março-setembro). Em outubro desse ano, coletaram-se 90 amostras de solo com cilindros metálicos (0,05 m de altura e 0,05 m de diâmetro) no centro das camadas de 0-0,10; 0,10-0,20; e 0,20-0,30 m. Essas amostras foram utilizadas para obter a curva de retenção de água, a curva de resistência do solo à penetração e a densidade do solo (Ds); a partir dessas, foi calculado o IHO e obtida a densidade crítica do solo (Dsc). Utilizaram-se os limites críticos de -80 hPa, para a capacidade de campo (θcc); -15.000 hPa, para o ponto de murcha permanente (θpmp); 2,5 MPa, para a resistência do solo à penetração (θrp); e 0,10 m³ m-3, para a porosidade de aeração (θpa). O IHO foi maior a 0-0,10 m e a RP foi o fator de maior limitação do IHO em todas as camadas, especialmente a 0,10-0,20 e 0,20-0,30 m. As Dsc decresceram em profundidade de 1,66; 1,64; e 1,62 Mg m-3, respectivamente, para as camadas de 0-0,10; 0,10-0,20; e 0,20-0,30 m. O manejo desse solo sob sistema integração lavoura-pecuária com altura de pastejo de 0,10 m apresentou a maior frequência de amostras de solo com Ds ≥ Dsc.
Resumo:
In the semiarid region of Brazil, inadequate management of cropping systems and low plant biomass production can contribute to reduce soil carbon (C) and nitrogen (N) stocks; therefore, management systems that preserve C and N must be adopted. This study aimed to evaluate the changes in soil C and N stocks that were promoted by agroforestry (agrosilvopastoral and silvopastoral) and traditional agricultural systems (slash-and-burn clearing and cultivation for two and three years) and to compare these systems with the natural Caatinga vegetation after 13 years of cultivation. The experiment was carried out on a typical Ortic Chromic Luvisol in the municipality of Sobral, Ceará, Brazil. Soil samples were collected (layers 0-6, 6-12, 12-20, 20-40 and 40-60 cm) with four replications. The plain, convex and concave landforms in each study situation were analyzed, and the total organic C, total N and densities of the soil samples were assessed. The silvopastoral system promoted the greatest long-term reductions in C and N stocks, while the agrosilvopastoral system promoted the smallest losses and therefore represents a sustainable alternative for soil C and N sequestration in these semiarid conditions. The traditional agricultural system produced reductions of 58.87 and 9.57 Mg ha-1 in the organic C and total N stocks, respectively, which suggests that this system is inadequate for these semiarid conditions. The organic C stocks were largest in the concave landform in the agrosilvopastoral system and in the plain landform in the silvopastoral system, while the total N values were highest in the concave landform in the native, agrosilvopastoral and silvopastoral systems.
Resumo:
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.
Resumo:
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.
Resumo:
Brachiaria species, particularly B. humidicola, can synthesize and release compounds from their roots that inhibit nitrification, which can lead to changes in soil nitrogen (N) dynamics, mainly in N-poor soils. This may be important in crop-livestock integration systems, where brachiarias are grown together with or in rotation with grain crops. The objective of the present study was to determine whether this holds true in N-rich environments and if other Brachiaria species have the same effect. The soil N dynamics were evaluated after the desiccation of the species B. brizantha, B. decumbens, B. humidicola, and B. ruziziensis, which are widely cultivated in Brazil. The plants were grown in pots with a dystroferric Red Latosol in a greenhouse. Sixty days after sowing, the plants were desiccated using glyphosate herbicide. The plants and soil were analyzed on the day of desiccation and 7, 14, 21 and 28 days after desiccation. The rhizosphere soil of the grasses contained higher levels of organic matter, total N and ammonium than the non-rhizosphere soil. The pH was lowest in the rhizosphere of B. humidicola, which may indicate that this species inhibits the nitrification process. However, variations in the soil ammonium and nitrate levels were not sufficient to confirm the suppressive effect of B. humidicola. The same was observed for B. brizantha, B. decumbens and B. ruziziensis, thereby demonstrating that, where N is abundant, none of the brachiarias studied has a significant effect on the nitrification process in soil.
Resumo:
Um dos principais fatores de produção para as culturas é a disponibilidade de água no solo, de forma que a quantificação das entradas e saídas dessa água, por meio do método do balanço hídrico, pode ser um instrumento valioso para melhorar o manejo dado a ela. Desse modo, este trabalho teve como objetivo analisar os componentes do balanço hídrico (variação do armazenamento de água no solo, drenagem, ascensão capilar e evapotranspiração) e o perfil do sistema radicular em Brachiaria decumbens, em nove meses do ano de 2011 (março a novembro). Também foi avaliada a razão entre evapotranspiração (ET) e evapotranspiração de referência (ETo). Esta pesquisa foi realizada na fazenda Riacho do Papagaio, em São João, na mesorregião do Agreste do Estado de Pernambuco, onde foram instalados sensores automatizados para medição da umidade volumétrica do solo nas profundidades de 0,10; 0,20; 0,30; e 0,40 m. A precipitação pluvial foi monitorada por meio de um pluviógrafo automatizado instalado numa torre no centro da área. Para a determinação da drenagem e da ascensão capilar, foram realizados ensaios de infiltração para obtenção da condutividade hidráulica do solo, além da determinação da curva de retenção, em laboratório. A ET foi obtida como termo residual da equação do balanço hídrico e a ETo, pelo método de Penman-Monteith. O volume de controle utilizado para o balanço hídrico teve como limite superior a superfície do solo e como limite inferior a profundidade de 0,30 m. Também foi analisado o perfil do sistema radicular da braquiária, mensalmente. Observou-se que os períodos com elevadas pluviosidades resultaram num maior armazenamento de água no solo, em maiores valores de drenagem e de evapotranspiração. O fluxo de água no limite inferior (z = 0,30 m) do solo ocorreu somente no sentido descendente, sendo perdidos 103,14 mm de água por drenagem, o que representa 24,12 % de toda a água fornecida à cultura. A evapotranspiração total da Brachiaria decumbens Stapf foi de 324,96 mm, com valor médio de 1,2 mm d-1. A pastagem sofreu estresse hídrico, em quase todo período experimental, tendo em vista os valores da relação ET/ETo serem inferiores a 1. Os baixos valores da razão ET/ETo indicaram a necessidade de se realizar irrigação para se diminuir o déficit hídrico. No entanto, em razão dos elevados valores de drenagem, recomendam-se práticas de manejo que aumentem a retenção de água pelo solo.
Nitrogen fertilization (15NH4NO3) of palisadegrass and residual effect on subsequent no-tillage corn
Resumo:
Nitrogen is required in large amounts by plants and their dinamics in corn and perennial forages intercropped is little known. This study analyzed the efficiency of nitrogen fertilization (15NH4NO3) applied after corn grain harvest to palisadegrass (Brachiaria brizantha cv. Marandu) in intercrops sown at two times, as well as the N residual effect on the subsequent corn crop. The field experiment was performed in Botucatu, São Paulo State, in southeastern Brazil, on a structured Alfisol under no-tillage. The experiment was arranged in a randomized block design in a split plot scheme with four replications. The main plots consisted of two intercropping systems (corn and palisadegrass sown together and palisadegrass sown later, at corn top-dressing fertilization). The subplots consisted of four N rates (0, 30, 60, and 120 kg ha-1 N). The subplots contained microplots, in which enriched ammonium nitrate (15NH4NO3) was applied at the same rates. The time of intercrop sowing affected forage dry matter production, the amount of fertilizer-derived N in and the N use efficiency by the forage plants. Nitrogen applied in autumn to palisadegrass intercropped with corn, planted either at corn sowing or at N top-dressing fertilization, increased the forage yield up to a rate of 60 kg ha-1. The amount of fertilizer-derived N by the forage plants and the fertilizer use efficiency by palisadegrass were highest 160 days after fertilization for both intercrop sowing times, regardless of N rates. Residual N did not affect the N nutrition of corn plants grown in succession to palisadegrass, but increased grain yield at rates of 60 and 120 kg ha-1 N, when corn was grown on palisadegrass straw from the intercrop installed at corn fertilization (top-dressing). Our results indicated that the earlier intercropping allowed higher forage dry matter production. On the other hand, the later intercrop allowed a higher corn grain yield in succession to N-fertilized palisadegrass.