334 resultados para Rododhendron simsii and Phaseolus vulgaris L.


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Foram realizados experimentos em casa de vegetação, na Escola Superior de Agricultura "Luiz de Queiroz" - USP, em Piracicaba, SP, com amostras de terra do horizonte A e B2 de um Oxisol (LR) e um Alfisol (PVp), sem e com calagem e adubação mineral, para verificar a influência da variação da porosidade de aeração (5,1 a 28,7%) sobre o comportamento do feijoeiro Aroana 80. O conteúdo de água dos 2,5 litros de terra por vaso foi mantido entre 100 e 70% da capacidade de campo. Foi constatado que a porosidade de aeração afeta a produção de grãos (1,5 a 20,8/planta), alm da matéria seca radicular, da parte aérea, da matéria seca total e a relação parte aérea/raízes (3,1 a 12,7). Não influenciou o peso de mil grãos (135 a 254 g), o índice de colheita (0,18 a 0,50), a eficiência no uso de água (428 a 911 ml/g m.s. e 854 a 419 ml/g grãos) e o ciclo da cultura (86 a 101 dias). O nível de fertilidade afetou praticamente todos os dados considerados.

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Neste estudo foram determinados os efeitos de reguladores vegetais na altura, na formação foliar, nos teores de nutrientes acumulados (N total, protéico e amínico; P, K e Ca, na anatomia e na produtividade do feijoeiro 'Carioca', sob condições de casa de vegetação. A semeadura foi realizada em 22/07/88, sendo que em 22/08/88 foi efetuada a pulverização das plantas com giberelina 50ppm, ácido naftalenacético 50ppm, chlormequat 1000ppm, daminozide 3000ppm, chlorflurenol 100ppm e Figaron 50ppm, tendo-se mantido um controle. Foram portanto realizados 7 tratamentos, tendo-se estabelecido 7 repetições, num delineamento inteiramente casualizado. A altura das plantas e a formação foliar foram determinadas 7, 14, e 21 dias após a aplicação, sendo que na colheita procedeu-se à coleta de amostras para a análise das diferentes formas de N, do P, K e Ca nas plantas, anatomia foliar, alm do estabelecimento da produtividade do feijoeiro 'Carioca'. Os resultados obtidos, revelaram que as plantas tratadas com giberelina, mostraram maior crescimento e aumento no número de folhas desenvolvidas, sendo que chlorflurenol causou a maior redução nesses parâmetros. Daminozide e chlormequat tenderam a apresentar maiores teores de N total, sendo que daminozide através de aumento em N protéico e chlormequat incrementando N amínico. Chlorflurenol aumentou os níveis de K e Ca, reduzindo o teor de P, Figaron aumentou o conteúdo de Ca, sendo que daminozide aumentou o nível de K. Análises histolgicas das alterações, induzidas por chlorflurenol, revelaram um acúmulo atípico de grãos de amido, nas células do parênquima medular dos pecíolos dos feijoeiros tratados. Ácido naftalenacético, chlormequat e daminozide reduziram o peso das vagens e das sementes, sendo que chlorflurenol inibiu a produção.

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Lutzomyia (Nyssomyia) intermedia (Lutz & Neiva) is redescribed, a neotype is designated, and a very similar species, L. (N.) neivai (Pinto, 1926), is resurrected; the male and the female are redescribed. The two species can be differentiated by differences in the spermathecae, common ducts and number of cibarial horizontal teeth of the females and in the size and proportions of several structures of both sexes. The known geographical distribution of both species is given.

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In the present study, an extensive in vitro antimicrobial profiling was performed for three medicinal plants grown in Cuba, namely Simarouba glauca, Melaleuca leucadendron and Artemisia absinthium. Ethanol extracts were tested for their antiprotozoal potential against Trypanosoma b. brucei, Trypanosoma cruzi, Leishmania infantum and Plasmodium falciparum. Antifungal activities were evaluated against Microsporum canis and Candida albicans whereas Escherichia coli and Staphylococcus aureus were used as test organisms for antibacterial activity. Cytotoxicity was assessed against human MRC-5 cells. Only M. leucadendron extract showed selective activity against microorganisms tested. Although S. glauca exhibited strong activity against all protozoa, it must be considered non-specific. The value of integrated evaluation of extracts with particular reference to selectivity is discussed.

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Responses of leaf senescence to P supply could constitute adaptive mechanisms for plant growth under P-limiting conditions. The aim of this study was to evaluate the effects of soil P supply on leaf senescence of common bean (Phaseolus vulgaris L.). Eight P levels, ranging from 5 to 640 mg kg-1 P, were applied to pots containing four bean plants of cultivar Carioca in 10 kg of an Oxic Haplustult soil. Attached leaves were counted weekly, abscised leaves were collected every other day, and seeds were harvested at maturity. The number of live leaves increased until 48 days after emergence (DAE) and decreased afterwards, irrespective of applied P levels. At lower applied P levels, the initial increase and the final decrease of leaf number was weak, whereas at higher applied P levels the leaf number increased intensively at the beginning of the growth cycle and decreased strongly after 48 DAE. Dry matter and P accumulated in senesced leaves increased as soil P levels increased until 61 DAE, but differences between P treatments narrowed thereafter. The greatest amounts of dry mass and P deposited by senesced leaves were observed at 48-54 DAE for high P levels, at 62-68 DAE for intermediate P levels and at 69-76 DAE for low P levels. These results indicate that soil P supply did not affect the stage of maximal leaf number and the beginning of leaf senescence of common bean plants, but the stage of greatest deposition of senesced leaves occurred earlier in the growth cycle as the soil P supply was raised.

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Em leguminosas tropicais, a cuidadosa seleção de estirpes de rizóbio, entre outros fatores, é fundamental para a eficiência da fixação biolgica de N2 (FBN). Essa seleção deve ser feita para as leguminosas de interesse social e econômico, entre elas o feijão-fava (Phaseolus lunatus L.). O objetivo deste trabalho foi avaliar a eficiência simbiótica de rizóbios nativos de duas regiões do Piauí produtoras de feijão-fava. Foram avaliados 17 isolados e duas estirpes de referência (CIAT 899 e NGR 234), em casa de vegetação, utilizando-se vasos de Leonard autoclavados, no delineamento experimental inteiramente ao acaso, com três repetições. O genótipo de feijão-fava utilizado foi o UFPI-468. A inoculação foi feita por ocasião do plantio. A coleta foi realizada aos 34 dias após o plantio, sendo avaliadas as seguintes características: matéria seca da parte aérea (MSPA), da raiz (MSR) e dos nódulos (MSN); relação MSPA/MSR; N acumulado (Nac) na MSPA e a eficiência da fixação de N2. Foi observada diferença significativa entre os isolados em todas as características, exceto em MSR. Em geral, os isolados ISO-18, ISO-23, ISO-24, ISO-25, ISO-30, ISO-32, ISO-35, ISO-36, ISO-43 e ISO-45 apresentaram os melhores índices de MSPA, MSR, MSPA/MSR, Nac e eficiência da fixação de N2, em relação aos isolados ISO-2, ISO-9, ISO-16, ISO-40 e testemunha absoluta. As características avaliadas foram suficientes para discriminar e selecionar isolados eficientes na nodulação em feijão-fava, contribuindo para a efetividade da FBN. Os melhores isolados apresentaram bom desempenho no fornecimento de N às plantas, podendo ser recomendados para testes de eficiência agronômica.

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Water infiltration in the soil is an important hydrological process that occurs at the interface of the soil-atmosphere system; thus, the soil management practice used has a strong influence on this process. The aim of this study was to evaluate water infiltration in the soil and compare equations for estimating the water infiltration rate in an Ultisol after harvesting common bean (Phaseolus vulgaris L.) under simulated rainfall. Field tests with a rainfall simulator were carried out in three soil management systems: minimum tillage (MT), conventional tillage (CT), and no tillage (NT). In NT, four levels of plant residue on the soil surface were evaluated: 0, 3, 6, and 9 t ha-1. The models of Kostiakov-Lewis, Horton, and Philip were used to estimate the infiltration rate. In the MT system, the final infiltration rate was 54 mm h-1, whereas in the CT and NT systems with up to 3 t ha-1 of plant residue on the soil surface, the rate was near 17 mm h-1. In addition, the results indicated that in the NT system the infiltration rate increased with plant residue coverage greater than 6 t ha-1, i.e., there was a positive correlation between plant cover and the water infiltration rate. The Horton model was the most suitable in representing the water infiltration process in the soil. Therefore, this model can be recommended for estimation of this variable regardless of the soil tillage system used.

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ABSTRACT Investigations into water potentials in the soil-plant system are of great relevance in environments with abiotic stresses, such as salinity and drought. An experiment was developed using bell pepper in a Neossolo Flvico (Fluvent) irrigated with water of six levels of electrical conductivity (0, 1, 3, 5, 7 and 9 dS m-1) by using exclusively NaCl and by simulating the actual condition (using a mixture of salts). The treatments were arranged in a randomized block design, in a 6 × 2 factorial arrangement, with four replicates. Soil matric (Ψm) and osmotic (Ψo) potentials were determined 70 days after transplanting (DAT). Soil total potential was considered as the sum of Ψm and Ψo. Leaf water (obtained with the Scholander Chamber) and osmotic potentials were determined before sunrise (predawn) and at noon at 42 and 70 DAT. There were no significant differences between the salt sources used in the irrigation water for soil and plant water potentials. The supply of salts to the soil through irrigation water was the main factor responsible for the decrease in Ψo in the soil and in bell pepper leaves. The total potential of bell pepper at predawn reached values of -1.30 and -1.33 MPa at 42 and 70 DAT, respectively, when water of 9 dS m-1 was used in the irrigation. The total potential at noon reached -2.19 MPa. The soil subjected to the most saline treatment reached a water potential of -1.20 MPa at 70 DAT. There was no predawn equilibrium between the total water potentials of the soil and the plant, indicating that soil potential cannot be considered similar to that of the plant. The determination of the osmotic potential in the soil solution should not be neglected in saline soils, since it has strong influence on the calculation of the total potential.

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The objective of this work was to determine the critical irrigation time for common bean (Phaseolus vulgaris L. cv. Carioca) using infrared thermometry. Five treatments were analyzed. Canopy temperature differences between plants and a well-watered control about 1, 2, 3, 4, and 5±0.5ºC were tested. Physiological variables and plant growth were analyzed to establish the best time to irrigate. There was a significant linear correlation between the index and stomatal resistance, transpiration rate, and leaf water potential. Although significant linear correlation between the index and mean values of total dry matter, absolute growth rate, and leaf area index was found, no correlation was found with other growth index like relative growth rate, net assimilation rate, and leaf area ratio. Plants irrigated when their canopy temperature was 3±0.5ºC above the control had their relative growth rate mean value increased up to 59.7%, yielding 2,260.2 kg ha-1, with a reduction of 38.0% in the amount of water used. Plants irrigated when their canopy temperature was 4±0.5ºC yielded 1,907.6 kg ha-1, although their relative growth rate mean value was 4.0% below the control. These results show that the best moment to irrigate common bean is when their canopy temperature is between 3ºC and 4±0.5ºC above the control.

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Evaluation of root traits may be facilitated if they are assessed on samples of the root system. The objective of this work was to determine the sample size of the root system in order to estimate root traits of common bean (Phaseolus vulgaris L.) cultivars by digital image analysis. One plant was grown per pot and harvested at pod setting, with 64 and 16 pots corresponding to two and four cultivars in the first and second experiments, respectively. Root samples were scanned up to the completeness of the root system and the root area and length were estimated. Scanning a root sample demanded 21 minutes, and scanning the entire root system demanded 4 hours and 53 minutes. In the first experiment, root area and length estimated with two samples showed, respectively, a correlation of 0.977 and 0.860, with these traits measured in the entire root. In the second experiment, the correlation was 0.889 and 0.915. The increase in the correlation with more than two samples was negligible. The two samples corresponded to 13.4% and 16.9% of total root mass (excluding taproot and nodules) in the first and second experiments. Taproot stands for a high proportion of root mass and must be deducted on root trait estimations. Samples with nearly 15% of total root mass produce reliable root trait estimates.

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Photosynthetic responses to daily environmental changes were studied in bean (Phaseolus vulgaris L.) genotypes 'Carioca', 'Ouro Negro', and Guarumbé. Light response curves of CO2 assimilation and stomatal conductance (g s) were also evaluated under controlled (optimum) environmental condition. Under this condition, CO2 assimilation of 'Carioca' was not saturated at 2,000 µmol m-2 s-1, whereas Guarumbé and 'Ouro Negro' exhibited different levels of light saturation. All genotypes showed dynamic photoinhibition and reversible increase in the minimum chlorophyll fluorescence yield under natural condition, as well as lower photosynthetic capacity when compared with optimum environmental condition. Since differences in g s were not observed between natural and controlled conditions for Guarumbé and 'Ouro Negro', the lower photosynthetic capacity of these genotypes under natural condition seems to be caused by high temperature effects on biochemical reactions, as suggested by increased alternative electron sinks. The highest g s values of 'Carioca' were observed at controlled condition, providing evidences that reduction of photosynthetic capacity at natural condition was due to low g s in addition to the high temperature effects on the photosynthetic apparatus. 'Carioca' exhibited the highest photosynthetic rates under optimum environmental condition, and was more affected by daily changes of air temperature and leaf-to-air vapor pressure difference.

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This work had as objective to produce citrus somatic hybrids between sweet oranges and pummelos. After chemical fusion of sweet orange embryogenic protoplasts with pummelo mesophyll-derived protoplasts, plants were regenerated by somatic embryogenesis and acclimatized in a greenhouse. The hybrids of 'Hamlin' sweet orange + 'Indian Red' pummelo and 'Hamlin' sweet orange + 'Singapura' pummelo were confirmed by leaf morphology, chromosome counting and molecular analysis. These hybrids have potential to be used directly as rootstocks aiming blight, citrus tristeza virus, and Phytophthora-induced disease tolerance, as well as for rootstocks improvement programs.

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The objective of this work was to determine the most susceptible nymphal stage of Bemisia tabaci biotype B to neem (Azadirachta indica A. Juss.) oil applied to dry bean (Phaseolus vulgaris L.) in a screenhouse. A solution of commercial oil (Dalneem) extracted from neem seeds was sprayed directly on each nymphal instar at 0, 0.1, 0.25, 0.5, 1 and 2% concentrations for lethal concentration (LC) determination, and at 0, 0.5 and 1% concentrations for lethal time (LT) determination. The number of living and dead nymphs was recorded five days after spraying for LC determination, and daily during six days for LT determination. The LC50 estimated for fourth instar nymphs occurred at 0.56% concentration. For all instars, LC50 and LC95 were estimated at 0.32 and 2.78% concentrations, respectively. The estimated values of LT50 at 1% concentration were 2.46, 4.45, 3.02 and 6.98 days for the first to fourth instars, respectively. The LT50 occurred at five days for 0.5% and at four days for 1% concentration in all instars. A mortality rate of over 80% was observed on the 6th day for the first to third instars at 1% concentration. The first three nymphal stages were more susceptible to neem oil when compared to the fourth nymphal stage.

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São apresentados resultados pertinentes às culturas do milho (Z. mays), feijão (P. vulgaris) e caupi (V. unguiculata) consorciados com bananeira 'Terra' (Musa AAB) em Teolndia, Litoral Sul da Bahia, em cultivo simultâneo, no estabelecimento da bananeira e sucessivo logo após a colheita do primeiro. Os espaçamentos utilizados foram o 4,0 x 2,0 x 3,0 m, 4,0 x 2,0 x 2,6m e 4,0 x 2,0 x 2,8m em fileira dupla, o que permitiu melhor proveito da área pelas culturas intercalares. O milho, ou o feijão, ou o caupi ocupou apenas as ruas entre as fileiras duplas de bananeiras, ficando livres as ruas formadas pelas fileiras duplas, devido ao seu sombreamento pela bananeira ser mais rápido. O objetivo deste trabalho foi avaliar o desempenho das culturas do milho, feijão e caupi na agregação de valor à bananeira 'Terra', quando consorciadas com esta cultura. Nos melhores tratamentos (T9, T6, T8 e T4), o índice de rentabilidade-IR (receita total ÷ custos) alcançou valores expressivos, de 3,36 até 6,68, resultando em efeitos altamente positivos em decorrência das tecnologias e insumos utilizados, o que vai permitir a agregação de um elevado valor à bananeira e, conseqüentemente, uma boa remuneração ao produtor. Estes resultados indicam que, para cada real investido, houve um retorno de R$ 3,36 e R$ 6,68, respectivamente. O IR 0,91 (T2), relativo à cultura do milho, implica que houve prejuízo, o que significa que a receita lquida deste tratamento vai reduzir e não incrementar a receita lquida proporcionada pela cultura da bananeira.

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The objective of this study was to characterize the chemical composition of the essential oil from the leaves of Annona emarginata (Schltdl.) H. Rainer 'terra-fria' and Annona squamosa L. The species were grown in a greenhouse for 18 months, which nutrient solution was applied weekly; the plants were then harvested and the leaves dried to extract the essential oil. The essential oil was analyzed by gas chromatography and mass spectrometry to study its chemical profiles. Eleven substances were found in the essential oil of A. emarginata, primarily (E)-caryophyllene (29.29%), (Z)-caryophyllene (16.86%), γ-muurolene (7.54%), α-pinene (13.86%), and tricyclene (10.04%). Ten substances were detected in the oil from A. squamosa, primarily (E)-caryophyllene (28.71%), (Z)-caryophyllene (14.46%), α-humulene (4.41%), camphene (18.10%), α-pinene (7.37%), β-pinene (8.71%), and longifolene (5.64%). Six substances were common to both species: (E)-caryophyllene, (Z)-caryophyllene, α-humulene, camphene, α-pinene, and β-pinene.