991 resultados para Pennisetum glaucum L. Leek.
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Millets are major food and feed sources in the developing world especially in the semi-arid tropical regions of Africa and Asia. The most widely cultivated millets are pearl millet [Pennisetum glaucum (L.) R. Br.], finger millet [Eleusine coracana (L.) Gaertn], foxtail millet [Setaria italica (L.) P. Beauvois], Japanese barnyard millet [Echinochloa esculneta (A. Braun) H. Scholz], Indian Barnyard millet [Echinochloa frumetacea Link], kodo millet [Paspalum scrobiculatum L.], little millet [Panicum sumatrense Roth.ex.Roem. & Schult.], proso millet [Panicum miliaceum L.], tef [Eragrostis tef (Zucc.) Trotter] and fonio or acha [Digitaria exilis (Kippist) Stapf and D. iburua Stapf]. Millets are resilient to extreme environmental conditions especially to inadequate moisture and are rich in nutrients. Millets are also considered to be a healthy food, mainly due to the lack of gluten (a substance that causes coeliac disease) in their grain. Despite these agronomic, nutritional and health-related benefits, millets produce very low yield compared to major cereals such as wheat and rice. This extremely low productivity is related to the challenging environment in which they are extensively cultivated and to the little research investment in these crops. Recently, several national and international initiatives have begun to support the improvement of diverse millet types.
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In the semi-arid zones of Uganda, pearl millet ( Pennisetum glaucum (L.) R. Br.) is mainly grown for food and income; but rust (Puccinia substriata var indica (L.) R. Br.) is the main foliar constraint lowering yield. The objective of the study was to genetically improve grain yield and rust resistance of two locally adapted populations (Lam and Omoda), through two cycles of modified phenotypic S1 progeny recurrent selection. Treatments included three cycles of two locally adapted pearl millet populations, evaluated at three locations. Significant net genetic gain for grain yield (72 and 36%) were achieved in Lam and Omoda populations, respectively. This led to grain yield of 1,047 from 611 kg ha-1 in Lam population and 943 from 693 kg ha-1 in Omoda population. Significant improvement in rust resistance was achieved in the two populations, with a net genetic gain of -55 and -71% in Lam and Omoda populations, respectively. Rust severity reduced from 30 to 14% in Lam population and from 57 to 17% in Omoda population. Net positive genetic gains of 68 and 8% were also achieved for 1000-grain weight in Lam and Omoda, respectively. Traits with a net negative genetic gain in both populations were days to 50% flowering, days to 50% anthesis, days to 50% physiological maturity, flower-anthesis interval, plant height and leaf area.
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The use of green manures (GMs) in combination with nitrogen (N) fertilizer application is a promising practice to improve N fertilizer management in agricultural production systems. The main objective of this study was to evaluate the N use efficiency (NUE) of rice plant, derived from GMs including sunn hemp (Crotalaria juncea L.), millet (Pennisetum glaucum L.) and urea in the greenhouse. The experimental treatments included two GMs (sunn hemp-15N and millet-15N), absence of N organic source (without GM residues in soil) and four N rates, as urea-15N (0, 28.6, 57.2 and 85.8 mg N kg-1). The results showed that both rice grain and straw biomass yields under sunn hemp were greater than that of millet or without the application of GM. The NUE of rice under sunn hemp was greater than that under millet (18.9 and 7.8% under sunn hemp and millet, respectively). The urea N application rates did not affect the fertilizer NUE by rice (53.7%) with or without GMs. The NUE of GMs by rice plants ranged from 14.1% and 16.8% for root and shoot, respectively. The study showed that green manures can play an important role in enhancing soil fertility and N supply to subsequent crops.
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Sunflower is an annual dicotyledonous plant, herbaceous, erect and native of North America. It is thermo- and photo-insensitive, hence, can be grown round the year in sub-tropical and tropical countries. Only two spp. H. annuus and H. tuberosum are cultivated for food, remaining spp. are ornamentals, weeds and wild plants. However, H. annuus is allelopathic and inhibit the growth and development of other plants thus reducing their productivity. Much information is available about the allelopathic effects of sunflower crop on following crops in crop rotations. Although it is harmful to all crops, but, is less harmful to crops of Graminae family than other families. It seems that the harmful effects of sunflower in crop rotations are due to release and accumulation of root exudates during crop growth in soil. Soil incorporation of its fresh (green manure) or dry biomass in soil is inhibitory to both crops and weed spp. Several allelochemicals have been characterized from the H. annuus, which inhibit the seed germination and seedling growth of A. albus, A. viridis, Agropyron repens (Elymus repens), Ambrosia artemsiifolia, Avena fatua, Celosia crustata, Chenopodium album, Chloris barbara, Cynodon dactylon, D. sanguinalis, Dactyloctenium ageyptium, Digitaria ciliaris, Echinochloa crus-galli, Flaveria australasica, Parthenium hysterophorus, Portulaca oleracea, Sida spinosa, Trianthema portulacastrum, Veronica perisca the inhibitory effects of this crop may be used for weed management with less herbicides for sustainable agriculture.
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Pós-graduação em Agronomia (Proteção de Plantas) - FCA
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Com a crescente elevação nas possibilidades de utilização da biomassa nos mais diversos setores da indústria, o presente estudo visa identificar uma alternativa para aumentar a produção utilizando, para tanto, o capim elefante (Pennisetum purpureum) e sorgo sacarino (Sorghum bicolor L.). Os experimentos foram realizados na Fazenda Vitória (4°21'36"S 38°5'17"W) em Beberibe – CE, em uma área total de 1.944 m2. A semeadura foi realizada em 36 parcelas de 54 m2, em delineamento inteiramente casualizado, sendo 9 tratamentos (genótipos) e 4 repetições. Foram utilizados seis diferentes genótipos de sorgo sacarino, s_1, s_2, s_3, s_4, s_5 e s_6. Fazem parte do estudo, ainda, um hÃbrido de capim elefante e milheto (Pennisetum glaucum), comercialmente conhecido como paraÃso, e dois tratamentos de capim elefante, Cameroon e Napier. Para o sorgo sacarino, foram realizadas três colheitas, a primeira avaliada semanalmente e as demais com avaliação única. Para o capim elefante foram realizadas duas colheitas, a primeira com intervalo de 186 dias e a segunda com intervalo de 92 dias. Esse intervalo possibilitou a comparação da produtividade de biomassa de cada tratamento de forma trimestral e semestral. Os resultados observados mostraram que os tratamentos de maior destaque de produtividade de biomassa (base seca) foram com capim elefante, independente do perÃodo. Com base nessas informações, concluiu-se que, analisando apenas a produtividade de biomassa, o mais indicado dos tratamentos estudados é o capim elefante Napier ou Cameroon. No entanto, constatou-se que o sorgo sacarino apresentou grande potencial de produtividade com um aditivo, seu mosto pode ser utilizado no processo de fermentação para obtenção do etanol.
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O objetivo deste trabalho foi verificar o efeito de geada no desenvolvimento do feijoeiro em experimentação de cultivo em sucessão a espécies de cobertura e adubação nitrogenada, em delineamento experimental de blocos ao acaso em esquema de parcelas subdivididas, com quatro repetições. As parcelas foram constituÃdas pelas espécies Sorghum bicolor tipo guinea, Canavalia brasiliensis, Sorghum bicolor, Crotalaria juncea, Pennisetum glaucum e uma testemunha mantida no limpo, enquanto as subparcelas por doses de nitrogênio em cobertura (0, 25, 50 e 75 kg ha-1 de N), utilizando-se como fonte a uréia. Menores danos e severidade da geada foram constatados em plantas de feijão cultivadas após as espécies Canavalia brasiliensis e Crotalaria juncea, devido à menor quantidade de massa seca residual em relação à das culturas de gramÃneas. Produtividades superiores de grãos de feijoeiro após geada foram obtidas na sucessão com Crotalária juncea e C. brasiliensis e com a aplicação de doses entre 44,5 e 52,0 kg ha-1 de N, em cobertura.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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A aplicação antecipada de fertilizante potássico no cultivo de espécies de cobertura no sistema plantio direto (SPD) pode ser vantajosa para a lavoura comercial. O objetivo deste trabalho foi avaliar a produtividade de grãos e a acumulação de K na soja em função da aplicação antecipada de fertilizante potássico na instalação do milheto em relação com o K aplicado na semeadura da soja subseqüente no SPD. O experimento foi realizado na FCA-Unesp em Botucatu-SP, nas safras 2000/2001, 2001/2002 e 2002/2003. Utilizou-se um Latossolo Vermelho distroférrico de textura média, que estava sendo cultivado com soja e aveia-preta no SPD, por dois anos antes da instalação do experimento. O milheto (Pennisetum glaucum) foi semeado em setembro sobre a palhada de aveia-preta (Avena strigosa), e a soja (Glycine max) na primeira quinzena de dezembro, nos três anos agrÃcolas. Utilizou-se o delineamento experimental em blocos ao acaso no esquema fatorial 4 x 4, com quatro repetições, com 0, 30, 60 e 90 kg ha-1 de K2O no milheto, combinados com 0, 30, 60 e 90 kg ha-1 de K2O na soja. Coletaram-se plantas de soja aos 25, 50, 75 e 100 dias após a emergência, e os grãos no final do ciclo, para a determinação do acúmulo de K e da produtividade. A antecipação de 60 a 90 kg ha-1 de K2O na semeadura do milheto não comprometeu o acúmulo de K na lavoura de soja. As máximas produtividades de soja foram alcançadas no primeiro e segundo ano com doses de 85 a 90 kg ha-1 de K2O, que poderiam ser antecipadas totalmente na semeadura da gramÃnea de cobertura. A aplicação antecipada de KCl na semeadura do milheto minimizou a exportação de K pela colheita de grãos de soja.
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Conselho Nacional de Desenvolvimento CientÃfico e Tecnológico (CNPq)
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Winter cover crops can affect N nutrition of the following maize crop. Although legumes have been recommend for maize rotations, in tropical areas grasses may be more interesting because they provide a longer protection of soil surface. Legumes can add N to the system and grasses can compete with maize for the available nutrient. An experiment was conducted in Botucatu, São Paulo State, Brazil, to study N dynamics in the soil surface straw-maize system as affected by N fertilization management and species included in the no-till rotation. Treatments were fallow, black oat (Avena strigosa), pearl millet (Pennisetum glaucum), white lupins (Lupinus albus), black oat fertilized with N. and pearl millet fertilized with N. Maize was grown afterwards in the same plots, receiving 0.0, 60.0 and 120.0 kg ha(-1) of N sidedressed 30 days after plant emergence. Soil, straw and maize samples were taken periodically. The highest corn yields were observed when it was cropped after pearl millet fertilized with N. Nitrogen side dressed application up to 120 kg ha(-1) was not able to avoid corn yield decrease caused by black oat. Grasses can be recommended in maize rotations in tropical areas, provided they receive nitrogen fertilizer and show no allelopathy. Due to its higher ON ratio and dry matter yield they are better than legumes, protecting the soil surface for a longer period. Pearl millet is particularly interesting because it enhances N use efficiency by the following maize crop. For a better N availability/demand synchronism, the cover crops should be desiccated right before maize planting.
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This work studied alterations of physical properties of a distroferric red nitosol due to millet (Pennisetum americanum) covering, with or without liming, in a no-tillage system during the agricultural years of 1999/2000 and 2000/2001, using soybean and corn as culture succession. 6m×10m plots, with and without millet as vegetal covering, received only one initial superficial application of limestone, 3.1 t ha-1 in the first half of each plot in order to obtain 70% base saturation (V), after the desiccation of the millet. Some physical properties as soil density, aggregate stability, > 2 mm aggregate proportion, macro and micro porosity were analyzed whereas the chemical analysis determined Ca and Mg macro nutrients, organic matter, soil pH and H+Al. Millet vegetal residues and surface liming did not alter soil density nor the average weight diameter (AWD), > 2 mm aggregate, soil macro porosity and organic matter content, twenty-four months after the no-tillage system implantation for studied experimental conditions. Soil micro porosity was significantly affected in layers deeper than 0.20 m, in treatment with millet and limestone. Calcium, magnesium and H + Al contents and the soil pH values suffered significant alterations in superficial layer, between 0-0.05 m.
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The experiment was carried out aiming to evaluate the gas exchange of dwarf elephant grass genotypes under different hydric conditions, in a randomized design with three replications. Genotypes of dwarf elephant grass (Mott, CNPGL 94-34-3 and CNPGL 92-198-7) were analyzed under two hydric conditions: irrigated (I) and non-irrigated (NI). Differences between treatments I and NI were observed for all genotypes for photosynthesis, stomatal conductance, transpiration and water vapor pressure deficit. Genotype CNPGL 94-34-3 presented highest tolerance to hydric stress, followed by Mott and CNPGL 92-198-7 genotypes. All genotypes presented high photosynthetic rate, under ideal conditions of soil humidity, thus characterizing the analyzed dwarf elephant grass genotypes as plants with high photosynthetic efficiency.