998 resultados para Brachiaria. Cenchrus. Flow Tissues. Forage. Panicum. Semiarid


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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Para avaliar substituição da gramínea Mombaça (Panicum maximum) com níveis crescentes (0%, 10%, 20%, 40% e 60%) de torta de cupuaçu (Theobroma grandiflorum), subproduto da agroindústria cosmética, efetuou-se o consumo voluntário, digestibilidade aparente dos nutrientes e balanço de nitrogênio. Realizouse ensaio metabólico, com 20 carneiros, na Embrapa Amazônia Oriental, Belém, Pará (1º28′ S 48º27′ W), durante 26 dias, dos quais 21 de adaptação e ajustes e cinco de coleta de dados de alimentos fornecidos, sobras de alimentos, fezes e urina. O experimento foi conduzido em delineamento inteiramente casualizado, em cinco tratamentos e quatros repetições: Tratamento A (Controle) = 100% de volumoso (Panicum maximum); Tratamento B = 90% P. maximum + 10% de torta de cupuaçu (TC); Tratamento C = 80% P. maximum + 20% TC; Tratamento D = 60% P. maximum + 40% TC; e Tratamento E = 40% P. maximum + 60% TC. Foram avaliados consumo e coeficientes de digestibilidade aparente da matéria seca (MS), matéria orgânica (MO), proteína bruta (PB), fibra em detergente neutro (FDN), fibra em detergente ácido (FDA), extrato etéreo (EE), celulose (CEL), hemicelulose (HEM) e balanço de nitrogênio (BN) das dietas. A substituição de gramínea Mombaça por torta de cupuaçu não influenciou significativamente os consumos (P>0,05) de MS, MO, CEL, HEM, FDA, FDA, LIG e MM, todavia os teores de EE e PB apresentaram diferenças significativas. Os coeficientes de digestibilidade aparente da MS, MO, PB, FDN e FDA foram significativamente diferentes, porém não apresentaram diferenças significativas para EE, CEL e HEM. Não houve diferença significativa no BN (P>0,05). A torta de cupuaçu constitui alternativa para suplementação alimentar de ruminantes, como boa fonte protéica e energética.

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Resumo: A cultura do milho sofre grande instabilidade de cultivo em regiões semiáridas, ocasionada principalmente pela insuficiência de cultivares adaptadas somado a escassez pluviométrica. O presente trabalho tem por finalidade verificar o potencial de genótipos de híbridos de milho, comerciais e experimentais, quanto à produtividade de grãos e forragem nas condições semiárida Cearense. Na presente pesquisa, foram avaliados 36 genótipos de milho, sendo todos híbridos simples, desses, 32 são genótipos experimentais e quatro são comerciais. O delineamento utilizado foi o de blocos ao acaso com duas repetições. As parcelas foram constituídas de duas linhas de quatro metros com densidade de aproximadamente 66.667 mil plantas ha-1 . Observou-se que o ciclo fenológico da cultivar não influencia na produtividade de grão e de forragem. O índice de seleção de níveis independentes é uma opção eficiente para identificar cultivares com aptidão para produção de forragem. [Simple hybrid performance of maize for grain and forage yield in semiarid region]. Abstract: The maize crop suffers great instability cultivation of in semi-arid regions, mainly occasioned by insufficient adapted cultivars. The present study aims to verify the potential of genotypes of maize hybrids, commercial and experimental, as the grain yield and forage in semiarid conditions in the Northeast. In the present survey were evaluated 36 genotypes of maize, all of simple hybrids of these, 32 are experimental genotypes and four are commercial. The design utilized was a randomized block design with two replications. The plots consisted of two lines of four meters with a density of approximately 66,667 plant ha-1 . It was observed that the phenological cycle of the cultivar does not influence the grain and forage yield. The independent levels selection index is an efficient option to identify cultivars with the suitability for forage production.

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Warm-season grasses are economically important for cattle production in tropical regions and tools to aid in management and research on these forages would be highly beneficial both in research and the industry. This research was conducted to adapt the CROPGRO-Perennial Forage model to simulate growth of the tropical species guineagrass (Panicum maximum Jacq. cv. 'Tanzania') and to describe model adaptation for this species. To develop the CROPGRO parameters for this species, we began with values and relationships reported in the literature. Some parameters and relationships were calibrated by comparison with observed growth, development, dry matter accumulation, and partitioning during a 17-mo experiment with Tanzania guineagrass in Piracicaba, SP, Brazil. Compared with starting parameters for palisadegrass [Brachiaria brizantha (A. Rich.) Stapf. cv. 'Xaraes'], dormancy effects of the perennial forage model had to be minimized, partitioning to storage tissue or root decreased, and partitioning to leaf and stem increased to provide for more leaf and stem growth and less root. Parameters affecting specific leaf area and senescence of plant tissues were improved. After these changes were made to the model, biomass accumulation was better simulated, mean predicted herbage yield was 6576 kg ha(-1), averaged across 11 regrowth cycles of 35 (summer) or 63 d (winter), with a RMSE of 494 kg ha(-1) (Willmott's index of agreement d = 0.985, simulated/observed ratio = 1.014). The model also gave good predictions against an independent data set, with similar RMSE, ratio, and d. The results of the adaptation suggest that the CROPGRO model is an efficient tool to integrate physiological aspects of guineagrass and can be used to simulate growth.

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Warm-season grasses are economically important for cattle production in tropical regions, and tools to aid in management and research of these forages would be highly beneficial. Crop simulation models synthesize numerous physiological processes and are important research tools for evaluating production of warm-season grasses. This research was conducted to adapt the perennial CROPGRO Forage model to simulate growth of the tropical species palisadegrass [Brachiaria brizantha (A. Rich.) Stapf. cv. Xaraes] and to describe model adaptation for this species. In order to develop the CROPGRO parameters for this species, we began with values and relationships reported in the literature. Some parameters and relationships were calibrated by comparison with observed growth, development, dry matter accumulation and partitioning during a 2-year experiment with Xaraes palisadegrass in Piracicaba, SP, Brazil. Starting with parameters for the bahiagrass (Paspalum notatum Flugge) perennial forage model, dormancy effects had to be minimized, and partitioning to storage tissue/root decreased, and partitioning to leaf and stem increased to provide for more leaf and stem growth and less root. Parameters affecting specific leaf area (SLA) and senescence of plant tissues were improved. After these changes were made to the model, biomass accumulation was better simulated, mean predicted herbage yield per cycle was 3573 kg ha(-1), with a RMSE of 538 kg DM ha(-1) (D-Stat = 0.838, simulated/observed ratio = 1.028). The results of the adaptation suggest that the CROPGRO model is an efficient tool to integrate physiological aspects of palisadegrass and can be used to simulate growth. (C) 2010 Elsevier B.V. All rights reserved.

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A diversidade morfológica da superfície foliar existente entre as espécies de plantas e a presença de estruturas foliares, como tricomas, estômatos, cutícula e ceras, podem exercer grande influência na aderência e deposição das gotas de pulverização, assim como na absorção do herbicida. Dessa forma, o objetivo do presente trabalho foi estudar, em plantas daninhas aquáticas emersas (Brachiaria mutica, Brachiaria subquadripara e Panicum repens), o pH foliar, bem como a área de molhamento de gotas de pulverização na superfície foliar adaxial e abaxial. O experimento foi conduzido no Núcleo de Pesquisas Avançadas em Matologia - NUPAM, pertencente à Faculdade de Ciências Agronômicas de Botucatu/SP - UNESP. As plantas foram cultivadas em caixas d'água no campo, quando elas atingiram seu pleno desenvolvimento (antes do florescimento), foram feitas as avaliações de pH foliar e da área de molhamento de gotas de pulverização. As tensões superficiais das gotas depositadas (0,5 µL), apresentadas pelas soluções de glyphosate aplicado isoladamente (5,0% v v-1, Rodeo 480g L-1 e.a. - produto comercial), glyphosate + Aterbane BR (5,0% + 0,5% v v-1), glyphosate + Silwet L-77 (5,0% + 0,05% v v-1), além das soluções com os adjuvantes isolados, Aterbane BR (0,5% v v-1) e Silwet L-77 (0,05% v v-1), foram respectivamente de 72,1; 28,7; 23,3; 37,3; e 22,1 mN m-1. As médias obtidas de pH foliar variaram entre 5,71 e 6,03, destacando-se a espécie B. mutica, com valores de 5,72 e 6,03 para as faces adaxial e abaxial, respectivamente. Contudo, mais estudos devem ser realizados para verificar a influência do pH foliar na absorção de herbicidas por espécies daninhas aquáticas. Das plantas daninhas aquáticas avaliadas, B. subquadripara foi a espécie que obteve as maiores médias de área de molhamento nas faces adaxial e abaxial da folha, proporcionadas pelas soluções de glyphosate + Aterbane BR, glyphosate + Silwet L-77 e Silwet L-77, com valores de 6,44 - 4,36; 7,77 - 10,59; e 10,94 - 10,28 mm², respectivamente.

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In places characterized with high temperatures and rain occurrence in great intensity in the summer, but with dry winter, the major limitations for the sustainability of no tillage systems are low production of straw during fall-spring period and the fast decomposition during the rain season. To try to solve the problem, intercropped cultures of grains with forage species has presented reliable results; because offer vegetal covering to the next sowing, giving sustainability to the no tillage system. However, being a recent technology, its needed further studies in different areas involved for this system of production. Thus, this study had the objective 1) to evaluate the production of corn grain at different periods of intercropping with Brachiaria brizantha and Panicum maximum in no tillage system, and 2) aimed to evaluate the performance of forage at different periods of intercropping and the responses to nitrogen fertilization after the harvest of the corn, assessing mass productivity and quality. The experiment was carried out at the Lageado experimental farm, School of Agricultural Sciences, Botucatu campus belonged to São Paulo State University (UNESP) in structuralized Red Nitosol (Afisol). The experimental design was randomized blocks with four replications. The treatments were composed for four systems of no tillage involving corn: 1) single corn; 2) corn with Brachiaria brizantha cv. Marandu intercropped in the sowing; 3) corn with Brachiaria brizantha cv. Marandu intercropped with the fertilization of covering; 4) corn with Panicum maximum cv. Mombaça intercropped in the sowing and 5) corn with Panicum maximum cv. Mombaça intercropped with the fertilization of covering. After the harvest of the corn, it was applied, in equivalent quantities of nitrogen, ammonium nitrate in covering in doses of 0, 30, 60 and 120 kg ha-1, determining the forage mass productivity and quality. The simultaneous tillage of corn with P. maximum cv. Mombaça in the sowing compromises the grain productivity. When sowed in intercropping, B. brizantha presents a fiber concentration reduction and greater TDN concentration during the fall-spring period. Regarding benefits of intercropped cultures seeking to use in systems of production like agriculture-pasture integration, the best intercropping to be utilized is corn sown simultaneously with B. brizantha cv. Marandu.

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A field trial was conducted designed in a completely randomized block in a 4 x 3 factorial arrangement to evaluate the application of nitrogen doses (N) (0, 40, 80 and 160 kg/ha) on the morphogenical characteristics and dry matter partition of three forage grasses (Panicum maximum cvs. Mombasa and Tanzania and Brachiaria sp. Hybrid Mulato). The leaf appearance (LAR, leaf/day) and stretching (LER; mm/day) rates, the number of green leaves per tiller (NLT) and the average weight of tillers (MTW; g) presented s positive linear response to the N dose while the phyllochron (Phil; day/leaves) showed a negative linear response. The highest LER, IAL and final leaf length (FLL; cm) occurred in the Mombaca and Tanzania grasses, while the highest LAR occurred in the Mulato grass. There was a negative quadratic effect of the N dose on the stem elongation rate (SER; mm/day) and LF. The Mombaca and Tanzania grasses presented the highest SER; however, in just two forages. The production of total dry matter (TDM; kg/ha), leaves (LDM; kg/ha) and stems (SDM; kg/ha) increased linearly and quadratically with the N dose, respectively, for the Mombaca and Tanzania grasses. There was a high positive correlation among DM, LDM and SDM and the Mombaca grass MTW. The dry matter production and morphogenic characteristics were influenced by the nitrogen fertilization as a result of the substantial increase in the flow of tissues stimulated by fertilization, proving the importance of N for forage biomass accumulation.

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Silicon (Si) accumulation in organs and cells is one of the most prominent characteristics of plants of the family Poaceae. Many species from this family are used as forage plants for animal feeding. The present study investigates in Brachiaria brizantha (Hochst. ex A. Rich.) Stapf. cv. Marandu: (1) the dry matter production and Si content in shoot due to soil Si fertilizations; (2) the Si distribution among shoot parts; and (3) the silica deposition and localization in leaves. Plants of B. brizantha cv. Marandu were grown under contrasting Si supplies in soil and nutrient solution. Silica deposition and distribution in grass leaf blades were observed using light microscope and scanning electron microscope equipped with an energy dispersive X-ray spectrometer (SEM-EDXS). Silicon concentration in the B. brizantha shoot increased according to the Si supply. Silicon in grass leaves decreased following the order: mature leaf blades > recently expanded leaf blades > non-expanded leaf blades. Silicon accumulates mainly on the upper (adaxial) epidermis of the grass leaf blades and, especially, on the bulliform cells. The Si distribution on adaxial leaf blade surface is non uniform and reflects a silica deposition exclusively on the cell wall of bulliform cells.

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The targeting of topically applied drug molecules into tissues below a site of application requires an understanding of the complex interrelationships between the drug, its formulation, the barrier properties of the skin, and the physiological processes occurring below the skin that are responsible for drug clearance from the site, tissue, and/or systemic distribution and eventual elimination. There is still a certain amount of controversy over the ability of topically applied drugs to penetrate into deeper tissues by diffusion or whether this occurs by redistribution in the systemic circulation. The major focus of our work in this area has been in determining how changes in drug structure and physicochemical properties, such as protein binding and lipophilicity, affect drug clearance into the local dermal microcirculation and lymphatics, as well as subsequent distribution into deeper tissues below an application site. The present study outlines our recent thinking on the drug molecule optimal physical attributes, in terms of plasma and tissue partitioning behaviour, that offer the greatest potential for deep tissue targeting. Drug Dev. Res. 46:309-315, 1999. (C) 1999 Wiley-Liss, Inc.

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O sistema de integração lavoura-pecuária (ILP) é uma alternativa de recuperação e renovação de pastagens degradadas, contudo, é importante mostrar sua viabilidade econômica. O objetivo deste trabalho foi analisar a produtividade de grãos e os resultados econômicos de modalidades do cultivo de milho com forrageiras dos gêneros Panicum e Brachiaria, na ILP, em sistema plantio direto. O experimento foi conduzido no ano agrícola de 2009/2010, em Selvíria-MS, em Latossolo Vermelho distroférrico. O delineamento experimental utilizado foi o de blocos casualizados, com quatro repetições, sendo os tratamentos constituídos por oito modalidades de cultivo do milho consorciado, simultaneamente e por ocasião da adubação nitrogenada de cobertura com as forrageiras Brachiaria brizantha cv. MG-5, Brachiaria ruziziensis, Panicum maximum cv. Tanzânia e cv. Mombaça. A análise dos custos operacionais foi baseada nos preços de insumos e operações e a receita bruta no preço médio de venda do milho no Estado de São Paulo. Os sistemas de cultivo não reduziram a produtividade de grãos em relação ao milho cultivado sem consórcio, e o consórcio mais recomendado é o milho cultivado com B. ruziziensis, principalmente em semeadura simultânea, pois além de ter sido um dos mais produtivos, o preço dessa semente é o mais acessível, vindo alcançar maior Índice de Lucratividade que os demais tratamentos. Em geral, os cultivos simultâneos foram os mais produtivos, vindo a apresentar maior Receita Bruta, Custo Operacional Total (devido à aplicação do herbicida Sanson), menor Lucro Operacional (com exceção do MBS) e maior Índice de Lucratividade.

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A definição dos princípios adequados de manejo do pastejo capazes de possibilitar que as pastagens mantenham-se produtivas e persistentes tem sido uma preocupação constante dos pesquisadores brasileiros. No entanto, foi durante as duas últimas décadas que ocorreram grandes mudanças e um avanço significativo na compreensão dos processos determinantes da correta utilização das plantas forrageiras tropicais em pastagens. Este texto tem por objetivo apresentar e discutir os principais resultados obtidos sobre o manejo do pastejo de alguns cultivares de Panicum maximum e de Brachiaria brizantha, bem como a importância da utilização de metas de pasto como guia de campo para o monitoramento e controle do processo de pastejo para planejar e recomendar práticas de manejo eficientes.