999 resultados para Arachis hypogaea (L.)


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A variabilidade genética foi avaliada dentro e entre amostras de diferentes cultivares de amendoim, Arachis hypogaea L., conhecidos como Roxo, Tatu Branco, Tatu Vermelho, Tatuí Vermelho e Tatuí (sementes com pelcula branca), fornecidos por fazendas situadas nas regiões dos municípios de Marília, Presidente Prudente e São Manuel. Para tal análise, foi utilizada a técnica de eletroforese horizontal em gel de poliacrilamida, para os sistemas da leucil-aminopeptidase (LAP), aspartato aminotransferase (ATT) e peroxidase (PER). No sistema da leucil-aminopeptidase, foram observadas três bandas enzimáticas, denominadas LAP-A, LAP-B e LAP-C. Os padrões de bandas obtidos para o sistema da aspartato-aminotransferase mostraram a existência de três bandas anódicas, AAT-A, AAT-B e AAT-C. No sistema da peroxidase (PER), foram observadas quinze bandas, sendo oito anódicas (PER-A a PER-H) e sete catódicas (PER-I a PER-P). Os sistemas enzimáticos da peroxidase e leucil-aminopeptidase não foram discriminativos para as amostras analisadas dos diferentes cultivares obtidos nas diversas regiões. O sistema da aspartato-aminotransferase apresentou um padrão composto pelas bandas AAT-B e AAT-C, que se mostrou característico e discriminativo para as amostras do cultivar Tatu Branco, procedente de Presidente Prudente, e do 'Tatuí Vermelho', proveniente de Presidente Prudente e São Manuel.

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Procurando conhecer a variabilidade dos estômatos ocorrentes nos fololos do amendoim (Arachis hypogaea L.), cultivares Tatu e SO-909, estudaram-se os tipos de estômatos, o índice estomático e dimensões, com os germoplasmas SO-53 ('Tatu') e SO-909 (PI-259747), obtidos do Banco Ativo de Germoplasma do Instituto Agronômico (IAC). Nas seções paradérmicas dos fololos, observaram-se quatro tipos básicos de estômatos: anomocítico, anisocítico, diacítico e laterocíclico, alm de estômatos geminados. Os laterocíclicos apresentaram-se com maior freqüência. Os diacíticos não são citados na literatura consultada sobre o gênero Arachis. A largura dos estômatos e o índice estomático mostraram diferenças entre os genótipos.

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Este trabalho teve por finalidade a análise histoquímica foliar de dois genótipos de amendoim (Arachis hypogaea L.), do tipo botânico Valncia: SO-53 ('Tatu') e SO-909 (PI-259747), cuja literatura demonstra apresentarem respostas diferentes de resistência às principais molstias fúngicas foliares do Brasil. Seções transversais das seguintes estruturas - pulvino, haste peciolar, raque, pulvínulo e fololo - e seções paradérmicas de fololos coletados em dois anos agrícolas consecutivos, foram analisadas quanto à presença de alcalides, amido, calose, celulose pura, celulose com pectina, cera, cristais, cutina, lignina, mucilagem, óleo, resina, tanino e ureídeos (micrograma) por fololo (grama). As diferenças qualitativas histoquímicas observadas nos diversos tecidos, como a freqüência de tanino, alcalide, pectina e óleo, supostamente, podem ser responsáveis pela resistência ou suscetibilidade dos genótipos às molstias fúngicas foliares. Para fins de caracterização, mostrou-se eficiente a avaliação de pureza de celulose.

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Estudos morfolgicos foliares foram efetuados em dois genótipos de amendoim (Arachis hypogaea L.), do grupo Valncia, completando informações contidas em trabalhos anteriores. O amendoim, importante cultura mundial, possui o Brasil como centro de origem e dispersão de suas espécies. Nenhuma pesquisa havia sido realizada em organografia nem em anatomia foliar, com genótipos em cultivo no País. O genótipo SO-53 ('Tatu') é suscetível às mais relevantes molstias fúngicas foliares, ocupando a maior área do amendoim cultivado no Brasil. O SO-909 (PI-259747) tem sido freqüentemente citado como fonte de resistência às molstias fúngicas foliares, em trabalhos de fitopatologia. Medições macroscópicas, com o uso de paquímetro, bem como observações microscópicas, através de fotomicroscópio, foram efetuadas. Um estudo organográfico foi executado com as folhas de plantas de campo, bem como o estudo anatômico, com o uso de lminas semipermanentes, mediante desenhos esquemáticos e fotomicroscópio. Os idioblastos encontrados nos fololos foram divididos em três tipos, de acordo com a presença de tanino, mucilagem ou cristal. Os mucilaginosos foram separados em dois tipos, aparecendo os longos somente na superfície adaxial do limbo foliolar, e os curtos, similares às células epidérmicas, em seção paradérmica em ambas as faces do limbo foliolar. Os pêlos foram separados em três tipos, de acordo com o tamanho: os longos, os curtos e os muito curtos. Todos têm de uma a quatro células basais e uma longa apical. As cerdas², presentes nos dois genótipos, foram classificadas em dois tipos, também conforme o tamanho: as grandes, observadas visualmente, presentes sobretudo na bainha, e as curtas, ao longo da margem foliolar, ambas multicelulares. Algumas características morfolgicas, como a presença e freqüência de pêlos; a forma da terminação do sulco na inserção adaxial do pecíolo-raque; a freqüência de cerdas e a espessura da lmina foliolar, podem ser utilizadas na caracterização dos genótipos de amendoim. A menor espessura dos fololos e a presença de espaços aeríferos na epiderme da face abaxial do limbo foliolar podem ser correlacionadas à suscetibilidade a determinadas molstias fúngicas foliares do 'Tatu'.

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Conselho Nacional de Desenvolvimento Científico e Tecnolgico (CNPq)

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Para estudar o efeito da densidade de plantas sobre a produção de vagens e seus componentes na cultura do amendoim cv. Tatu, em solos com diferentes fertilidades, foram realizados três experimentos, em condições de campo, no município de Pontal, SP, em um Latossolo Roxo, em anos agrícolas distintos, no cultivo das águas. As densidades estudadas foram 5, 8, 11, 14, 17, 20, 23 e 26 plantas por metro, em espaçamento de 0,60 m entre linhas. O componente de produção responsável pela variação da produção de vagens por planta foi o número de vagens, tendo diminuído com o aumento da densidade de plantas. Nas maiores densidades de plantas, as produções por planta foram menores, todavia devido à maior população de plantas, foram obtidas nestas as maiores produtividades de vagens. Produtividades de vagens, sem perdas significativas em relação às maiores densidades, foram obtidas nas densidades de 14 plantas por metro em solo de alta fertilidade e de 11 plantas por metro em solos de média/baixa fertilidades, que originaram, respectivamente, 12,92, 10,67 e 10,93 plantas por metro à colheita.

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The staining pattern of peanut (Arachis hypogaea L.) seeds with a tetrazolium solution was evaluated to determine the adequate conditions of seed quality evaluations. Three seed lots with different vigour levels and similar moisture content were pre-conditioned using the combination of five periods of time (4, 8, 12, 16 and 20 hours) and four temperatures (20, 25, 30 and 35 degrees C) and then exposed to a 1.0% tetrazolium solution for three hours. The moisture content levels of seeds conditioned for 8 hours at the temperatures of 25, 30 or 35 degrees C, for 12 hours at 20 or 25 degrees C and for 16 hours at 20 degrees C, were above 30%. In this range of moisture level, the staining in tetrazolium was clear and uniform, reflecting an appropriate conditioning of the seeds. However, under a practical point of view, the period of 16 hours at 20 degrees C showed to be the best option, since it allows to start the pre-conditioning an late afternoon of one day and submit the seeds for staining in the following morning.

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In this work, the effects of sowing densities on peanut (Arachis hypogaea L.) crop, cv. Tatu were studied. Three experiments were carried out under field conditions on a soil classified as ''Latosol Roxo'', in the Municipality of Pontal, SP, during the wet seasons of 1987-88, 1988-89, and 1989-90. The densities studied were 7, 10, 13, 16, 19, 22, 25, and 28 seeds in one metter of row, under some row spacing of 0.60 m. The pod number per plant was the yield component responsible for the variation of pod production per plant and these decreased with the increase of sowing density. However. The low pod production per plant in high densities of sowing was compensated by the high populations of plants and these produced high yield. Thus, good pod yields were obtained, without significant losses of yield compared with the higher densities, at density of 13 seeds per meter, in 1987-88, 16 seeds per meter in 1988-89 and 10 seeds per meter in 1989-90, that resulted, respectively, in 11.36, 12.72 and 9.28 plants per meter at harvest time.

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The possibility of reducing the concentration of the working solution used in the tetrazolium test for peanut seeds (Arachis hypogaea L.) with or without seedcoats was studied. Tetrazolium solutions of different concentrations (0.05%, 0.075% and 0.1%) were tested at the temperatures of 35 and 40 degrees C, for determining the time needed for the seeds to reach proper staining. The efficiency of the selected treatments in evaluating the viability potential of the seeds was determined by comparing the results of the tetrazolium tests with those obtained by standard germination (using sand and rolled paper towel as substrata) and seedling emergence in the field tests. Staining the seeds without seedcoat in 0.05% tetrazolium solution for three hours at 40 degrees C yielded efficient results. on the other hand, reduced concentrations can be employed in the staining process of seeds with seedcoat; however, this method requires a higher consumption of tetrazolium salt, longer staining time as well as a higher ability and availability of time for embryo evaluation, since the cross-cutting of seeds is much more difficult in the presence of the seedcoat and the occurrence of damage to the outer surface of the cotyledons cannot be determined.

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Conselho Nacional de Desenvolvimento Científico e Tecnolgico (CNPq)

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A field experiment was carried out to study the effects of liming and time of harvesting on peanut cv. Botutatu (Arachis hypogaea L.) seed yield and yield components in the period of July, 1991 to February, 1992, in São Manuel, State of São Paulo. The soil was a Dark Red Latosol (Hapludult, sandy loam), and the experimental design was a subplot replicated four times in completely randomized blocks. Lime levels (0.0 and 1.75 t/ha) were applied in the plots, and the subplots were nine weekly harvests, starting at 87 days after planting (DAP). There was no effect of lime on hulls or seed yield and on peanut yield components. The germination of seeds in hulls was incresead at each harvest and was lower at lime presence. The highest yield was observed at 129 DAP.

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This study was conducted in Adamantina, region of Alta Paulista, São Paulo State, Brazil, from 1989 to 1993. Yield of Apoatã coffee (Coffea canephora Pierre ex Froehner) was evaluated during four years of intercropping with five plant species: IAC 20 - cotton (Gossypium hirsutum L.); cv. Tatu - peanut (Arachis hypogaea L.); IAC 165 - rice (Oryza sativa L.); cv. Guarani - castor bean (Ricinus communis L.) and IAC 100-B - corn (Zea mays L.). The crops were seeded 50 cm apart from coffee canopy. The treatments were arranged in randomized complete block design with five replications. Yield was significantly decreased when coffee was intercropped with castor bean, corn, cotton and peanut, but height and diameter of orthotropic branches were not affected. Linear correlation analysis showed that coffee yield was inversely correlated with the dry biomass of the intercrops.

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In the experimental area of the Department of Environmental Sciences (21.85° S; 48.43° W; 786 m), in the School of Agronomical Sciences, UNESP, Botucatu, SP, an experiment was carried out using peanut (Arachis hypogaea L), cv. IAC-TATU-ST, to quantify the crop daily water requirements. During the peanut crop cycle, the environmental variables, such as rainfall, air temperature, air relative humidity, soil matric potential, soil heat flux and radiation balance, have been registered continually. These measurements were used to calculate the daily crop evapotranspiration, by the Bowen ratio method. The water replacement required by the peanut crop was done the dripping irrigation system, oriented by a dynamic agrometeorological model that computes the entrance and exit of water in the soil. During the peanut crop cycle, 9.0 mm of water was used from sowing to emergence; 67.0 mm of water, in the growth stage; 166.0 mm, in the flowering stage; 124.0 mm in the final stage and 46.0 mm from physiological maturity to harvest. Oot of 412.0 mm of the total consumption, 246.0 mm of water was supplied by irrigation and 166.0 mm by the rain. The grain yield was 3.15 t ha-1 for 15% of humidity, and the water use efficiency was 0.764 kg m-3.

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The establishment of a peanut crop may be unsatisfactory due to poor seed performance in the field and among the factors attributed to this are a reduction in seed vigor during storage and the presence of pathogens. The objective of this study was to evaluate the efficiency of treating peanut seeds with fungicides and the effect on physiological performance and disease control during storage. In a completely random experimental design, two seed batches of the Runner IAC 886 peanut cultivar were submitted to five fungicide treatments (1 control - untreated; 2 thiram; 3 carbendazim + thiram; 4 fludioxonil + metalaxyl-m; 5 fludioxonil + mefenoxam + thiabendazole) and evaluated after zero, 30 and 60 days of storage. The seeds were stored untreated but treated before the evaluation of physiological performance from germination, vigor (first germination count and accelerated aging), field seedling emergence and seed sanitation tests. The results showed differences in batch performance potential during storage, with batch 1 being superior. The sanitation test showed that all the chemical seed treatments controlled pathogens efficiently (Aspergillus spp. and Penicillium sp.), but only thiram did not affect peanut seed performance in the laboratory evaluations.

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The harvest is a critical time in the production of the peanut (Arachis hypogaea L.), however in this operation losses are inevitable, in some cases o f up to 30% of production. Peanuts are grown for a short period during the reform of the sugarcane fields, providing better usage of the agricultural spaces in Jaboticabal, São Paulo. The objective of this research was to see how early the peanuts could be dug up once they are seen to have matured. The peanuts were dug up at 120, 125, 130, 135 and 140 days after sowing. Results were subjected to variance analysis by the F-test, and when there was significance of the averages, the Tukey test at 5% probability was applied, using a box plot for the following variables: maturation, moisture content of pods and soil, mechanical resistance of soil to penetration, harvest loss and productivity. The box plot proved efficient in the univariate evaluation of the analyzed variables, creating excellent conditions for viewing their behavior. Digging up the peanuts at 120 DAS is recommended.