927 resultados para agricultural resources use efficiency
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The use of crop rotation and manure application can provide sustainability for an agricultural production system by improving soil quality and increasing nutrient use efficiency. This study aimed to evaluate the effect of mineral, organic and mineral+organic fertilization on grain yield and on soil phosphorus and potassium balance, in two crop systems under no-till, with and without rotation of cover crops. The experiment was carried out from 2006 to 2008 on a clayey Rhodic Hapludox in Marechal Candido Rondon, Parana State, Brazil. The cropping sequence in the rotation system involving cover crops was black oat + hairy vetch + forage turnip/corn/pigeon pea/wheat/mucuna + brachiaria + sunn hemp, and in the succession system was wheat/corn/wheat/soybean. Organic and mineral+organic fertilizations consisted of the application of solely manure and manure combined with mineral fertilizer, respectively. Soil P and K balances were calculated after the second year of the experiment, up to a depth of 0.40 m. First year corn yields were higher in the crop succession system accompanied by mineral fertilization. In the second year, wheat and soybean yield did not vary between crop systems and nutrient sources, demonstrating the residual effect of crop rotation and manure use. Crop rotation with cover crops resulted in an increase in soil K levels by promoting the recycling of this nutrient in the soil. In both crop systems, the application of mineral and organic fertilizers - either in isolation or in combination - resulted in a negative soil P and K balance in the short term. This represents a threat to the sustainability of the agricultural production system in the long term, due to the depletion of soil nutrient reserves.
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center dot Background and Aims Drought is a major environmental constraint affecting growth and production of Coffea canephora. Selection of C. canephora clones has been largely empirical as little is known about how clones respond physiologically to drought. Using clones previously shown to differ in drought tolerance, this study aimed to identify the extent of variation of water use and the mechanisms responsible, particularly those associated morphological traits.center dot Methods Clones (14 and 120, drought-tolerant; 46 and 109A, drought-sensitive, based on their abilities to yield under drought) were grown in 120-L pots until they were 12-months old, when an irrigation and a drought treatment were applied; plants were droughted until the pressure potential (Psi(x)) before dawn (pre-dawn) reached -3.0 MPa. Throughout the drought period, Psi(x) and stomatal conductance (g(s)) were measured. At the end of the experiment, carbon isotope ratio and parameters from pressure-volume curves were estimated. Morphological traits were also assessed.center dot Key Results and Conclusions With irrigation, plant hydraulic conductance (K-L), midday Psi(x) and total biomass were all greater in clones 109A and 120 than in the other clones. Root mass to leaf area ratio was larger in clone 109A than in the others, whereas rooting depth was greater in drought-tolerant than in drought-sensitive clones. Predawn Psi(x) of -3.0 MPa was reached fastest by 109A, followed progressively by clones 46, 120 and 14. Decreases in g(s) with declining Psi(x), or increasing evaporative demand, were similar for clones 14, 46, and 120, but lower in 109A. Carbon isotope ratio increased under drought; however, it was lower in 109A than in other clones. For all clones, Psi(x), g(s) and KL recovered rapidly following re-watering. Differences in root depth, KL and stomatal control of water use, but not osmotic or elastic adjustments, largely explained the differences in relative tolerance to drought stress of clones 14 and 120 compared with clones 46 and 109A.
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This paper evaluated the critical level, responsivity and boron use effciency on growth and the biomass production in six Eucalyptus grandis x Eucalyptus urophylla clones (Ca, Cb, Cc, Cd, Ce and Cf). An experiment was carried out in pots containing ground silicon, under greenhouse conditions using four boron rates per solution (0; 0.135; 0.27; 0.54 mg L -1 of B). The treatments were combined in a randomized block experimental design in a 4 × 6 factorial scheme with three replications. Plant height, stem diameter, dry matter production in the shoots of the plant and boron use effciency in the leaves, stem and total dry matter at the 8th month of age were evaluated. Due to boron fertilization, growth and shoot biomass were observed in the Eucalyptus plants after 240 days of being planted in pots. The increases in growth and biomass were 35 to 54% and 21 to 64%, respectively. The boron rates that promoted major growth of the plants were 0.33 to 0.44 mg L -1 of B and in this range the most effcient clone for dry matter production of leaves was Cf and the least effcient one to stem biomass production and the shoot biomass was Cd, no signifcant differences among other clones were observed. The critical level of boron in solution was 0.09 to 0.24 mg L -1 of B in the growth of the plants.
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Fertirrigation with phosphoric acid has been considered as an option to avoid drips from clogging. In some cases, this acid cause soil acidification and it can be substituted bypotassium hydroxide. This study had the objective of evaluating the effects of different phosphoric acid and potassium hydroxide doses, applied via fertirrigation, on soil fertility, plant nutrition and lettuce yield, compared to the conventional fertilization system. The experiment was carried out in greenhouse, in the College of Agricultural Sciences, FCA/UNESP, Botucatu-SP-Brazil. The experimental design was the completely randomized block, with 6 treatments and 4 replications. Treatments consisted of the combinations of doses (25% and 50% of the recommended complete dose for the lettuce) and application ofcomplete dose (100%) of phosphorus (P) and potassium (K) applied via fertirrigation, and a control (conventional fertilization system). The results showed that P and K availability in soil and nutrient concentration in plants were affected by treatments. Low phosphorus and potassium doses, applied via fertirrigation, were not efficient for the appropriate development of lettuce plants. The results showed that agronomic characteristics and commercial lettuce were affected by doses and application systems, especially the treatment with application of P and K full dose fertirrigation.
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Nutrient use efficiency has become an important issue in agriculture, and crop rotations with deep vigorous rooted cover crops under no till may be an important tool in increasing nutrient conservation in agricultural systems. Ruzigrass (Brachiaria ruziziensis) has a vigorous, deep root system and may be effective in cycling P and K. The balance of P and K in cropping systems with crop rotations using ruzigrass, pearl millet (Pennisetum glaucum) and ruzigrass + castor bean (Ricinus communis), chiseled or not, was calculated down to 0.60 m in the soil profile for 2 years. The cash crops were corn in the first year and soybean in the second year. Crop rotations under no-till increased available P amounts in the soil-plant system from 80 to 100 %, and reduced K losses between 4 and 23 %. The benefits in nutrient balance promoted by crop rotations were higher in the second year and under without chiseling. Plant residues deposited on the soil surface in no-till systems contain considerable nutrient reserve and increase fertilizer use efficiency. However, P release from ruzigrass grown as a sole crop is not synchronized with soybean uptake rate, which may result in decreased yields. © 2013 Springer Science+Business Media Dordrecht.
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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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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Pós-graduação em Agronomia (Irrigação e Drenagem) - FCA
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Este trabalho é resultado de um estudo etnográfico em uma comunidade ribeirinha da várzea amazônica, destacando suas especificidades em relação ao uso dos recursos naturais. Tendo como elemento de análise um projeto de desenvolvimento da pequena produção agrícola, elaborado com base em resultados de investigações científicas, direcionado ao manejo participativo dos recursos naturais, com acompanhamento do processo, através de avaliações periódicas dos resultados obtidos, em conjunto entre extensionistas do Instituto Mamirauá e as famílias camponesas. O objetivo da dissertação é analisar uma situação de intervenção social direcionada ao manejo sustentado de produtos agrícolas, em uma área de Reserva de Desenvolvimento Sustentável na várzea amazônica. Este estudo traz elementos que contribuem para a compreensão dos resultados dos investimentos feitos na produção agrícola das famílias da comunidade de São Francisco do Aiucá, possibilitando a interação entre o pensar-fazer a partir do entendimento dos resultados e avaliação da intervenção social. Através de alguns indicadores, construídos com uso das metodologias participativas, foi possível avaliar as alterações nas atividades econômicas de São Francisco do Aiucá, e outras formas de uso dos recursos naturais, identificando alternativas para diversificação do plantio e formas de organização para a comercialização desses produtos.
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Este estudo apresenta diferentes metodologias aplicadas para compreender o funcionamento dos ambientes de um trecho do rio Xingu (PA), em relação à comunidade de peixes que nele habitam. Através do uso da ictiofauna procurou-se confirmar alguns padrões ambientais, visando constatar o estado atual de conservação de um trecho deste rio. A partir de levantamentos da ictiofauna local conforme a variação sazonal do rio, foram feitas diferentes análises ao nível espécies, populações e guildas tróficas. No nível de organização das populações, o estudo de parâmetros biológicos tais como: taxa de crescimento corporal, tamanho corporal máximo, taxa de mortalidade e o tamanho médio do início da maturação sexual constituíram uma boa aproximação para entender a história de vida dos diferentes grupos de peixes. Foi evidenciada uma tendência das comunidades de estarem conformadas por espécies tipo r-estrategistas e com menor tamanho corporal, em relação ao número de k-estrategistas de maior tamanho. Numa abordagem funcional, foi verificado que estruturar as comunidades em guildas constitui um bom indicador tanto dos padrões de convergência de uni ecossistema afim ao setor estudado do Xingu quanto do atual estado de conservação do mesmo. Um modelo de balanço de massas construído para o setor do médio rio Xingu indicou que se trata de um sistema com grande instabilidade ambiental e, que por sua vez, se comporta como um sistema sazonalmente maduro. A aparente restrição sazonal na disponibilidade de recursos alimentares observada para o setor de rio estudado pode incidir numa máxima eficiência no uso e transferência dos mesmos no ecossistema. Uma análise biogeográfica foi feita a partir da ocorrência das espécies para contextualizar o setor do rio compreendido entre a confluência dos rios Iriri e Xingu até as proximidades do povoado de Senador José Porfirio, na bacia do Xingu. Através desta análise verificou-se que o médio (a montante das cachoeiras) e baixo Xingu (a jusante) encontram-se inseridos em duas áreas de endemismo. A baixa afinidade na composição de espécies, observada para estes dois setores, é atribuída a uma variação geográfica na paisagem. Assim, a ocorrência do limite das cachoeiras nas proximidades do povoado de Belomonte e o efeito do rio Amazonas no setor do baixo Xingu podem ser os principais fatores que explicam as diferenças na composição ictiofaunística e na abundância das espécies em relação ao setor do médio Xingu. Finalmente, ressalta-se a importância da manutenção da conectividade hidrológica como forma de manter os processos ecológicos que ligam o sistema das cabeceiras à foz, e discutem-se os eventuais impactos na dinâmica ambiental e nas espécies de peixes do médio rio Xingu que serão ocasionados com a construção do projeto hidrelétrico de Belomonte.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Pós-graduação em Agronomia (Proteção de Plantas) - FCA
Potencial produtivo da cana-de-açúcar sob irrigação por gotejamento em função de variedades e ciclos
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This study aimed to evaluate the yield potential of different varieties of sugarcane under drip irrigation in two growth cycles. A trial was set up in October 2006 at Jaú region (São Paulo state, Brazil), in an experimental field with a eutrophic Ultisol. The experiment was conducted in randomized complete blocks with factorial treatment structure 8 x 2, constituted by eight sugarcane varieties and two crop cycles, with six replicates. Stalk productivity (TCH), sugar productivity (TPH), juice quality traits and water use efficiency in relation to stalk productivity were evaluated in each crop cycle. It was observed that varieties of sugarcane respond differently to full irrigation, and this response is influenced by climatic conditions of the agricultural year. In this study, only the first evaluation cycle (plant cane) was decisive to differentiate the performance among the varieties. The varieties IAC91-1099, IACSP96-3060, RB855536, RB867515 and SP85-1115 showed higher agro-industrial yield potential and less consumption of water and can be recommended for the management of production under drip irrigation.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)