398 resultados para Vigna-angularis


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We report the detection of insulin-like antigens in a large range of species utilizing a modified ELISA plate assay and Western blotting. We tested the leaves or aerial parts of species of Rhodophyta (red alga), Bryophyta (mosses), Psilophyta (whisk ferns), Lycopodophyta (club mosses), Sphenopsida (horsetails), gymnosperms, and angiosperms, including monocots and dicots. We also studied species of fungi and a cyanobacterium, Spirulina maxima. The wide distribution of insulin-like antigens, which in some cases present the same electrophoretic mobility as bovine insulin, together with results recently published by us on the amino acid sequence of an insulin isolated from the seed coat of jack bean (Canavalia ensiformis) and from the developing fruits of cowpea (Vigna unguiculata), suggests that pathways depending on this hormone have been conserved through evolution.

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There is increasing interest in the immune response induced by plant viruses since these could be used as antigen-expressing systems in vaccination procedures. Cowpea severe mosaic virus (CPSMV), as a purified preparation (300 g of leaves, 2 weeks post-inoculation), or crude extract from cowpea (Vigna unguiculata) leaves infected with CPSMV both administered by gavage to Swiss mice induced a humoral immune response. Groups of 10 Swiss mice (2-month-old females) were immunized orally with 10 daily doses of either 50 µg viral capsid protein (boosters of 50 µg at days 21 and 35 after immunization) or 0.6 mg protein of the crude extract (boosters of 0.6 mg at days 21 and 35 after immunization). Anti-CPSMV antibodies were quantified by ELISA in pooled sera diluted at least 1:400 at days 7, 14, 21, 28, 35 and 42 after the 10th dose. IgG and IgA against CPSMV were produced systemically, but IgE was not detected. No synthesis of specific antibodies against the proteins of leaf extracts from V. unguiculata, infected or not with CPSMV, was detected. The use of CPSMV, a plant-infecting virus that apparently does not induce a pathogenic response in animals, induced a humoral and persistent (at least 6 months) immune response through the administration of low antigen doses by gavage. These results raise the possibility of using CPSMV either as a vector for the production of vaccines against animal pathogens or in quick and easy methods to produce specific antisera for viral diagnosis.

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O presente trabalho objetivou caracterizar quimica e fisicamente o amido de feijão caupi nos estádios de maturação em que o grão é consumido. Grãos verdes e maduros de feijão caupi (Vigna unguiculata L. Walp) foram submetidos à determinação da composição centesimal: proteína por Kjeldahl, lipídio por Soxleth, umidade a 105º, cinzas a 550ºC, fibra alimentar por método gravimétrico-enzimático, carboidratos totais por diferença, amido total, glicídios redutores e não redutores, por óxido-redução em solução de Fehling. O amido isolado das distintas amostras foi analisado quanto ao amido resistente (baseado no uso de enzimas amilolíticas), amilose e amilopectina (por espectrofotometria) e tipificação (difração de raio-X). Os dados paramétricos foram avaliados pelo teste t de Student. Os resultados obtidos demonstraram que as frações de carboidratos diferiram em função do estádio de maturação dos grãos. O amido de feijão verde apresentou maior teor de amido resistente (AR) tipo 2 em relação ao amido total e baixo conteúdo de amilose. A maturação influenciou nos padrões de cristalinidade, sendo encontrado padrão tipo C para o feijão verde e o A para o maduro. O estádio de maturação exerceu influência sobre aspectos qualitativos e quantitativos dos constituintes dos feijões. O aspecto morfológico dos grânulos de amido não sofreu influência do estádio de maturação dos grãos. O feijão verde apresenta um percentual da fibra alimentar solúvel compatível com a recomendação do FDA.

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This work aimed to evoluate physiological response of cowpea (Vigna unguiculata L. Walp) seeds submitted to salt stress. Seeds of cultivars 'Epace-10'; 'Canapu' and 'Pitiúba' of cowpea, were submitted to germination test in germinator at 25(0)C, in "germitest" papers imbibed in distilled water or in 0, 10, 50, 100 and 200mol m-3 NaCl solutions. At the first and second counting of the germination test, normal seedlings were accounted, weighted and dried, obtaining data for vigor, total germination, fresh matter weight and dry matter weight. The seedlings hypocotyls, root and total length were measured total proteins content in cotyledons were obtained from germinating seeds. The presence of salt at concentrations higher than 50mol m-3 NaCl affect the germination, seedlings growth and cotyledons total protein synthesis of all cowpea cultivars. The seeds of cultivar pitiúba were is more tolerant to salinity, than the cultivars Canapu and Epace-10.

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A avaliação do vigor de sementes tem sido fundamental dentro de programas de controle de qualidade. O teste de envelhecimento acelerado (EA) é uma das opções disponíveis, mas não há informações suficientes sobre sua eficiência para sementes de feijão caupi (Vigna unguiculata (L.) Walp.). O trabalho foi conduzido com o objetivo de estudar procedimentos para condução do teste de EA para avaliar o vigor de sementes dessa espécie. Utilizaram-se sementes das cultivares Setentão e Epace 10, cada uma representada por dois lotes, das safras 1998 e 2001 (Setentão), 2002 e 2003 (Epace-10). Durante o período experimental, as sementes foram mantidas em sacos plásticos e armazenadas em câmara fria e seca (10ºC e 50% UR). O envelhecimento acelerado foi conduzido a 40, 42 e 45ºC durante 24, 48, 72 e 96 horas; as sementes foram distribuídas em camada única sobre tela, em caixas plásticas com 40mL de água destilada, no interior de câmara BOD. O teor de água e a germinação das sementes foram determinados antes e após o EA. Os resultados revelaram que a menor taxa de deterioração (redução menos drástica da germinação) foi verificada quando as sementes de feijão caupi foram expostas aos períodos de 24 e 48 horas, nas três temperaturas. A combinação 42ºC/48 horas foi a mais adequada para avaliação do potencial fisiológico de sementes dessa espécie.

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O presente trabalho foi realizado com o objetivo de avaliar a qualidade fisiológica das sementes de feijão caupi, colhidas em quatro regiões do Estado do Ceará. Foram utilizadas sementes das cultivares Sempre verde, Setentão, Patativa, Pingo de ouro, Aparecido e Epace-10. Essas sementes foram produzidas nos municípios cearenses de Quixadá, Pentecoste, Limoeiro do Norte e Morada Nova, durante o ano de 2004. Foram realizados os teste de germinação, primeira contagem de germinação, emergência de plântulas, índice de velocidade de emergência e de condutividade elétrica. Para a maioria das cultivares testadas, as sementes produzidas em Pentecoste e Limoeiro do Norte apresentaram qualidade fisiológica superior quando comparada com aquelas produzidas em Quixadá e Morada Nova; As sementes das cultivares Sempre Verde, Setentão, Pingo de Ouro e Aparecido obtiveram desempenho superior, as da cultivar Epace-10 desempenho intermediário e as da Patativa, desempenho inferior.

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O objetivo deste trabalho foi avaliar os efeitos da mesa gravitacional na qualidade fisiológica e sanitária de lotes de sementes de feijão-miúdo (Vigna unguiculata (L.) Walp). Após a limpeza, sementes de quatro genótipos (Amendoim, Baio, Mosqueado e Preto) foram beneficiadas em mesa de gravidade com descarga dividida em três frações: superior, intemediária e inferior. Admitiu-se como extremidade inferior, a situada no ponto mais baixo da descarga quando considerada a inclinação lateral da mesa e, como superior, a oposta. Avaliou-se a qualidade fisiológica das sementes através dos testes de germinação e vigor (envelhecimento acelerado, condutividade elétrica e teste de frio). Para avaliação da qualidade sanitária utilizou-se o método do papel filtro em gerbox (Blotter-test). Observou-se que a separação das sementes através da mesa gravitacional proporciona alterações positivas na qualidade fisiológica e sanitária dos lotes de sementes de feijão-miúdo para todos os genótipos avaliados, justificando-se assim, sua utilização no beneficiamento de sementes de feijão-miúdo.

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A utilização de sementes de boa qualidade é fundamental para o estabelecimento adequado de uma lavoura. Para uma análise mais precisa da qualidade de sementes, faz-se necessário complementar as informações fornecidas pelo teste de germinação com testes de vigor, possibilitando, assim, selecionar os melhores lotes para comercialização e semeadura. Dentre esses testes, destaca-se o de condutividade elétrica. Objetivou-se neste trabalho estabelecer uma metodologia adequada para o teste de condutividade elétrica em sementes de feijão-mungo-verde, considerando períodos de embebição e número de sementes. Foram utilizados seis lotes de sementes e o teste de condutividade elétrica foi realizado com as seguintes variações: 100, 75 e 50 sementes embebidas em 75 mL de água destilada a 25 °C, com leituras realizadas após 3, 6, 9, 12, e 15 horas de embebição. O teste de condutividade elétrica conduzido com quatro sub-amostras de 50 sementes embebidas em 75 mL de água destilada permite a separação dos lotes a partir de 3 horas de embebição, mostrando-se promissor na avaliação da qualidade das sementes de feijão-mungo-verde.

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O presente trabalho teve por objetivo avaliar o efeito de diferentes concentrações salinas na germinação, produção inicial de biomassa e estresse oxidativo de quatro genótipos de feijão-miúdo de uso comum na região de São José do Norte-RS. As sementes dos genótipos Amendoim, Mosqueado, Baio e Preto foram semeadas em rolos de papel "germitest" embebido em solução de cloreto de sódio nas concentrações de zero, 50, 100, 150 e 200 mM e colocados para germinar a temperatura constante de 25 ºC. Os parâmetros avaliados foram: germinação, primeira contagem de germinação, comprimento e massa seca da parte aérea e de raízes das plântulas, peroxidação de lipídios e atividade específica das enzimas antioxidantes superóxido dismutase, ascorbato peroxidase e catalase. O aumento da concentração de sal causou efeito negativo à germinação e primeira contagem das sementes dos quatro genótipos de feijão-miúdo a partir do tratamento com 100 mM de sal. Quanto aos parâmetros de crescimento, a análise conjunta das curvas de regressão, mostrou haver igual tendência para os quatro genótipos, com redução expressiva no crescimento concomitante ao aumento do estresse salino. Os efeitos desse estresse também foram evidenciados pelo aumento na peroxidação de lipídios no tratamento com 200 mM de sal, seguido pela menor capacidade antioxidante das enzimas, uma vez que, nas concentrações intermediárias de sal, as enzimas antioxidantes atuaram de forma eficiente na eliminação das espécies reativas de oxigênio (EROs), evitando o estresse oxidativo. Estes resultados permitem concluir que, nas doses intermediárias de sal, houve um bom desenvolvimento inicial para os quatro genótipos de feijão-miúdo, sendo a melhor resposta obtida no genótipo Amendoim.

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A field experiment with millet (Pennisetum glaucum L.), sorghum [Sorghum bicolor (L.) Moench], cowpea (Vigna unguiculata L.) and groundnut (Arachnis hypogeae L.) was conducted on severely P-deficient acid sandy soils of Niger, Mali and Burkina Faso to measure changes in pH and nutrient availability as affected by distance from the root surface and by mineral fertiliser application. Treatments included three rates of phosphorus (P) and four levels of nitrogen (N) application. Bulk, rhizosphere and rhizoplane soils were sampled at 35, 45 and 75 DAS in 1997 and at 55 and 65 DAS in 1998. Regardless of the cropping system and level of mineral fertiliser applied, soil pH consistently increased between 0.7 and two units from the bulk soil to the rhizoplane of millet. Similar pH gradients were observed in cowpea, but pH changes were much smaller in sorghum with a difference of only 0.3 units. Shifts in pH led to large increases in nutrient availability close to the roots. Compared with the bulk soil, available P in the rhizoplane was between 190 and 270% higher for P-Bray and between 360 and 600% higher for P-water. Exchangeable calcium (Ca) and magnesium (Mg) levels were also higher in the millet rhizoplane than in the bulk soil, whereas exchangeable aluminium (Al) levels decreased with increasing pH close to the root surface. The results suggest an important role of root-induced pH increases for crops to cope with acidity-induced nutrient deficiency and Al stress of soils in the Sudano-Sahelian zone of West Africa.

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Low phosphorus (P) in acid sandy soils of the West African Sudano-Sahelian zone is a major limitation to crop growth. To compare treatment effects on total dry matter (TDM) of crops and plant available P (P-Bray and isotopically exchangeable P), field experiments were carried out for 2 years at four sites where annual rainfall ranged from 560 to 850 mm and topsoil pH varied between 4.2 and 5.6. Main treatments were: (i) crop residue (CR) mulch at 500 and 2000 kg ha^-1, (ii) eight different rates and sources of P and (iii) cereal/legume rotations including millet (Pennisetum glaucum L.), sorhum [Sorghum bicolor (L.) Moench], cowpea (Vigna unguiculata Walp.) and groundnut (Arachis hypogaea L.). For the two Sahelian sites with large CR-induced differences in TDM, mulching did not modify significantly the soils' buffering capacity for phosphate ions but led to large increases in the intensity factor (C_p) and quantity of directly available soil P (E_1min). In the wetter Sudanian zone lacking effects of CR mulching on TDM mirrored a decline of E_1min with CR. Broadcast application of soluble single superphosphate (SSP) at 13 kg P ha^-1 led to large increases in C_p and quantity of E_1min at all sites which translated in respective TDM increases. The high agronomic efficiency of SSP placement (4 kg P ha^-1) across sites could be explained by consistent increases in the quantity factor which confirms the power of the isotopic exchange method in explaining management effects on crop growth across the region.

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Comparable data are lacking from the range of environments found in sub-Saharan West Africa to draw more general conclusions about the relative merits of locally available rockphosphate (RockP) in alleviating phosphorus (P) constraints to crop growth. To fill this gap, a multi-factorial field experiment was conducted over 4 years at eight locations in Niger, Burkina Faso and Togo. These ranged in annual rainfall from 510 to 1300 mm. Crops grown were pearl millet (Pennisetum glaucum L.), sorghum (Sorghum bicolor (L.) Moench) and maize (Zea mays L.) either continuously or in rotation with cowpea (Vigna unguiculata Walp.) and groundnut (Arachis hypogaea L.). Crops were subjected to six P fertiliser treatments comprising RockP and soluble P at different rates and combined with 0 and 60 kg N ha^-1. For legumes, time trend analyses showed P-induced total dry matter (TDM) increases between 28 and 72% only with groundnut. Similarly, rotation-induced raises in cereal TDM compared to cereal monoculture were only observed with groundnut. For cereals, at the same rate of application, RockP was comparable to single superphosphate (SSP) only at two millet sites with topsoil pH-KCl <4.2 and annual average rainfall >600 mm. Across the eight sites NPK placement at 0.4 g P per hill raised average cereal yields between 26 and 220%. This was confirmed in 119 on-farm trials revealing P placement as a promising strategy to overcome P deficiency as the regionally most growth limiting nutrient constraint to cereals.

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On-farm experiments and pot trials were conducted on eight West African soils to explore the mechanisms governing the often reported legume rotation-induced cereal growth increases in this region. Crops comprised pearl millet (Pennisetum glaucum L.), sorghum (Sorghum bicolor Moench), maize (Zea mays L.), cowpea (Vigna unguiculata Walp.) and groundnut (Arachis hypogaea L.). In groundnut trials the observed 26 to 85% increases in total dry matter (TDM) of rotation cereals (RC) compared with continuous cereals (CC) in the 4th year appeared to be triggered by site- and crop-specific early season differences in nematode infestation (up to 6-fold lower in RC than in CC), enhanced Nmin and a 7% increase in mycorrhizal (AM) infection. In cowpea trials yield effects on millet and differences in nematode numbers, Nmin and AM were much smaller. Rhizosphere studies indicated effects on pH and acid phosphatase activity as secondary causes for the observed growth differences between RC and CC. In the study region legume-rotation effects on cereals seemed to depend on the capability of the legume to suppress nematodes and to enhance early N and P availability for the subsequent cereal.

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The increased use of cereal/legume crop rotation has been advocated as a strategy to increase cereal yields of subsistence farmers in West Africa, and is believed to promote changes in the rhizosphere that enhance early plant growth. In this study we investigated the microbial diversity of the rhizoplane from seedlings grown in two soils previously planted to cereal or legume from experimental plots in Gaya, Niger, and Kaboli, Togo. Soils from these legume rotation and continuous cereal plots were placed into containers and sown in a growth chamber with maize (Zea mays L.), millet (Pennisetum glaucum L.), sorghum (Sorghum bicolor L. Moench.), cowpea (Vigna unguiculata L.) or groundnut (Arachis hypogaea L.). At 7 and 14 days after sowing, 16S rDNA profiles of the eubacterial and ammoniaoxidizing communities from the rhizoplane and bulk soil were generated using denaturing gradient gel electrophoresis (DGGE). Community profiles were subjected to peak fitting analyses to quantify the DNA band position and intensities, after which these data were compared using correspondence and principal components analysis. The data showed that cropping system had a highly significant effect on community structure (p <0.005), irrespective of plant species or sampling time. Continuous cereal-soil grown plants had highly similar rhizoplane communities across crop species and sites, whereas communities from the rotation soil showed greater variability and clustered with respect to plant species. Analyses of the ammonia-oxidizing communities provided no evidence of any effects of plant species or management history on ammonia oxidizers in soil from Kaboli, but there were large shifts with respect to this group of bacteria in soils from Gaya. The results of these analyses show that crop rotation can cause significant shifts in rhizosphere bacterial communities.

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Increasing levels of CO2 and H+ proton in the rhizosphere from some legumes may play an important role in calcite dissolution of calcareous salt affected soils. Soils planted with white and brown varieties of cowpea (Vigna unguiculata L.) and hyacinth bean (Dolichos lablab L.) relying on either fertilizer N (KNO3) or N-fixation were compared against soils to which gypsum was applied and a control without plants and gypsum application to study the possibility of Ca2+ release from calcite and Na+ leaching. As compared to plants relying on inorganic N, leachates from all pore volumes (0·5, 1·0, 1·5, 2·0 pore volume) in lysimeters planted with N-fixing hyacinth bean contained significantly higher concentrations of HCO with lower concentrations from lysimeters planted with white cowpea relying on N-fixation. However, the lowest concentrations of HCO were recorded in the gypsum and control treatments. In initial leaching, lysimeters planted with N-fixing plants maintained similar leachate Ca2+ and Na+ concentrations compared to gypsum amended soils. However, gypsum amended soils were found to have a prolonged positive effect on Na+ removal. It might be concluded that some legumes that are known to fix N in calcareous salt affected soils may be an alternative ameliorant to the extremely expensive gypsum through calcite solubilization and a consequent release of Ca2+.