1000 resultados para feijão-caupi
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Pós-graduação em Agronomia (Proteção de Plantas) - FCA
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Pós-graduação em Agronomia (Produção Vegetal) - FCAV
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O objetivo deste trabalho foi avaliar o desempenho agronômico de cultivares de feijão‑caupi e de milho, em monocultivo e em cultivo consorciado em faixas, na safrinha. Foram realizados experimentos, em Dourados, MS (2009 e 2010), e em Botucatu, SP (2010). Utilizou-se o delineamento experimental de blocos ao acaso, com parcelas subdivididas e quatro repetições. As parcelas com feijão‑caupi foram constituídas por três sistemas de cultivo (em faixas com variedade ou híbrido de milho, além do cultivo solteiro) e as subparcelas, por três cultivares de feijão‑caupi (BRS Guariba, BRS Novaera e BRS Xiquexique). As parcelas com milho foram constituídas por duas cultivares de milho (variedade BR 473 e híbrido BRS 1030 ou BRS 1010), e as subparcelas, por quatro sistemas de cultivo (em faixas com as três cultivares de feijão‑caupi e solteiro). O sistema de consórcio em faixas consistiu de quatro fileiras de feijão‑caupi com quatro fileiras de milho. O consórcio proporcionou um uso mais eficiente da terra. As cultivares de feijão‑caupi apresentaram desempenho produtivo semelhante entre si, quando cultivadas em faixas com o milho. O híbrido de milho é mais produtivo que a variedade, tanto no cultivo solteiro quanto no consorciado.
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Pós-graduação em Agronomia (Produção Vegetal) - FCAV
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Pós-graduação em Agronomia (Agricultura) - FCA
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Pós-graduação em Agronomia (Produção Vegetal) - FCAV
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Pós-graduação em Agronomia (Agricultura) - FCA
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Pós-graduação em Agronomia (Agricultura) - FCA
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The new development strategies should operate mainly in the areas of energy efficiency and sustainable agriculture. Thus, the substitution of fossil fuels with biofuels, such as biodiesel, is increasingly on the agenda. The cultivation of oilseed plants for biodiesel production must take place in integrated systems that enable best environmental benefits and are more economically significant. The objectives of this study were to assess the morphological, anatomic, and physiological characteristics of safflower (Carthamus tinctorius L., promising oilseed for biodiesel production) grown in monoculture and intercropping with cowpea bean (Vigna unguiculata L. Walp.); and identify socioeconomic family farmers and verify their acceptance about safflower as an energy crop. The methodology used for the analysis of safflower growth in monoculture and intercropped with beans, were morphoanatomical and histochemical analyzes, made with samples of plants grown in the field in two cropping systems throughout the range of the life cycle of these plants. There were no changes in growth and anatomy of plants, even in the consortium, which is satisfactory to indicate the intercropping system for those crops and can be a good alternative for the family farmer, who may have safflower as a source of income without giving up planting their livelihood. To check the acceptance of safflower by farmers, interviews were made to family farmers by Canudos agrovila in Ceará-Mirim/RN. It was noticed that many of them accept the introduction of safflower as oil crop, although unaware of the species, and that, being more resistant to drought, safflower help in the stability of families who depend on the weather conditions for success their current crops. In general, it is concluded that safflower has features that allows it to be grown in consortium for biodiesel production combined with the production of food, such as cowpea, and can be used enabling better development for family farmers.
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The cowpea (Vigna unguiculata L. Walp) is a major food crops in northeastern Brazil. In Rio Grande do Norte, the cowpea, vigna beans or cowpea, as it is known, has great socioeconomic importance as a source of nutrients in food, with great emphasis among agricultural products. To improve productivity and resistance to pests, two cultivars were developed exclusively by EMPARN (Agricultural Research Corporation of Rio Grande do Norte), for breeding. The samples were provided by EMPARN, two improved (Potiguar and Laugh year) and two landraces (Rib of beef and Canapu). The seeds were ground and made into flour samples and the determination of moisture and ash by graviméticos methods, lipids by Soxhlet extraction, fibers with determiner fiber, carbohydrates by difference and minerals by ICP-OES were performed except the match analyzed by UVvis. The results showed a high fiber content (55.55% and 55.32% and 50.04% improved samples and 50.32% creole samples) and protein (25.52% and 25.27% improved and 27 samples, 23% and 24.99% creole samples). Comparing the results of the mineral content, the improved cultivars stood out in relation to Ca, Co, P, Mg, Mo and Na. Creole cultivars showed better results for Cu, Cr (low), Fe, Mn, Ni, K and Zn. The results will be important in future nutritional research and to build a table of Brazilian chemical composition of foods.
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The plants are often exposed to variations in environmental conditions that may trigger metabolic disturbances leading to a consequent loss in productivity of crops. These stressful conditions usually induce an accumulation of reactive oxygen species (ROS) in the cell, a condition known how oxidative stress. Among these species, hydrogen peroxide (H2O2) is an important molecule involved in numerous signaling mechanisms. The present study aimed to understand the relationship between the different enzymatic mechanisms of elimination of H2O2 by catalase (CAT) and ascorbate peroxidase (APX) in leaf tissues of seedlings of the species Vigna unguiculata L. Walp, under conditions of oxidative stress induced by application of CAT inhibitor, 3-amino-1,2,4-triazole (3-AT), and H2O2 itself on the roots. Three experiments were conducted. The first experiment was performed applying the compound 3-AT (5 mM) during the time (hours). In the second experiment, seedlings were exposed to different concentrations of H2O2 (2.5, 5.0, 7.5, 10 mM) for 48 h. The third strategy included the pre-treatment with H2O2 (2.5 mM) for 24 h, followed by subsequent treatment with the inhibitor 3-AT and recovery control condition. Treatment with 3-AT causes a strong inhibition of CAT activity in leaf tissues accompanied by an increase of activity of APX. However a decrease in oxidative damage to lipids is not observed as indicated by TBARS. It was observed that activity of APX is directly linked to the content of peroxide. Inductions in the activities of CAT and APX were observed mainly in the seedlings treated with 2.5 mM H2O2. This can be associated with a decrease in oxidative damage to lipids. In contrast, one same tendency was not observed in treatments with higher concentrations of this ROS. These results suggest that the concentration of 2.5 mM H2O2 can induce responses antioxidants later in seedling cowpea. This concentration when applied as pre-treatment for 24 h promoted an induction systems removers CAT and APX, both in activity and in terms of gene expression. However this increment was not observed in the recovered plants and the plants subsequently subjected to 3-AT. Additionally, the pretreatment was not sufficient to attenuate the inhibition of CAT activity and oxidative damage to lipids caused by the subsequent application of this inhibitor. The results showed that the application of 3-AT and H2O2 in the root systems of seedlings of cowpea promote changes in the parameters analyzed in leaf tissues that indicate a direct response to the presence of these factors or systemic signaling mecanisms. H2O2 appears to activate the responses of two antioxidant systems in this study thar does not promote greater protection in case of additional treatment with 3-AT. This demonstrates the importance of the CAT system. In this work, complete results indicate that there is a difference between the signaling and the effects caused by exposure to H2O2 and by treatment with 3-AT
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2016
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O feijão-caupi (Vigna unguiculata L Walp.), conhecido também como feijão-de-corda ou feijão-macassar, é uma cultura originária da África que chegou ao Brasil pelas mãos dos portugueses, no século XVI. Começou a ser produzido na Bahia, disseminando-se por todo o Nordeste e depois para as demais regiões do País. A produção de feijão-caupi concentra-se nas regiões Norte, Nordeste e Centro-Oeste, mas o consumo do produto é maior nas duas primeiras, onde, junto com o arroz, forma a base da alimentação da população. Esse produto é de grande importância tanto como alimento quanto como gerador de emprego e renda. Rico em proteína, minerais e fibras constitui-se num componente básico para alimentação das populações rurais e urbanas das regiões Norte e Nordeste, onde sua produção é feita por empresários e agricultores familiares que ainda utilizam práticas tradicionais. Na região Centro-Oeste, onde passou a ser cultivado em larga escala a partir de 2006, a produção provém principalmente de médios e grandes empresários que cultivam de maneira tecnificada. A expansão da cultura é resultado do desenvolvimento de variedades em sistema de cultivo totalmente mecanizado, a exemplo das cultivares com arquitetura de planta moderna, de porte semiereto e ereto, com ramos e pedúnculos curtos; variedades de ciclo de maturação mais precoce e uniforme, além da melhoria genética da qualidade de grão (cor, forma e tamanho). Tudo isso possibilitou a adaptação do produto para alcançar mercados com interesse nos mais diversos tipos de feijão-caupi, cooperando para sua expansão no Brasil e também no exterior. Nos cerrados, o feijão-caupi tem sido utilizado como opção para a segunda safra (safrinha), após o cultivo da soja e do arroz e em alguns locais, como cultura principal. A oferta de um produto com baixo custo, padronizado, de alta qualidade, alto valor nutritivo, em maior quantidade e com regularidade de produção vem despertando o interesse de agroindustriais de outras regiões, contribuindo para a abertura de novos mercados, fortalecendo a exportação.
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2014