1000 resultados para cultivo orgânico


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RESUMO Na pós-colheita do abacaxizeiro, a podridão-negra é considerada como um dos principais problemas na comercialização dos frutos. A doença é causada pelo fungoChalara paradoxa (De Seynes) Sacc.. Apesar da importância deste patógeno para a cultura, são poucas as informações relacionadas ao estudo do mesmo, com base em características fisiológicas in vitro. Assim, o objetivo do trabalho foi avaliar o crescimento micelial, a esporulação e a germinação de C. paradoxa, em diferentes condições de cultivo. A partir de placas contendo colônias puras do isolado de C. paradoxa, foram retirados individualmente discos para inoculação em diferentes meios. A incubação das placas foi feita em três diferentes regimes de luminosidade e em três diferentes temperaturas. Para o crescimento micelial, esporulação e germinação, as melhores condições de cultivo in vitro de C. paradoxa foram os meios aveia (OA) e batata (PDA) em alternância luminosa a 25°C, os meios batata (PDA) e abacaxi (PJA) no escuro contínuo, na mesma temperatura.

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RESUMO O uso de microjardins clonais em sistemas de cultivo sem solo para fornecimento de material propagativo na cultura do mirtileiro (Vaccinium spp.) pode trazer grandes avanços na produção de mudas dessa cultura. O objetivo desta pesquisa foi avaliar a produção de microestacas e a sobrevivência de plantas matrizes de mirtileiro micropropagadas das cultivares Woodard e Aliceblue, em dois sistemas de cultivo. Os sistemas de cultivo utilizados foram o semi-hidropônico (floreiras com substrato de areia e fornecimento diário de solução nutritiva) e o com substrato organomineral (sacos plásticos com substrato comercial e fornecimento de solução nutritiva a cada 15 dias). Após o período de 90 dias do plantio das plantas matrizes, foram iniciadas as coletas de microestacas, as quais foram realizadas a cada 60 dias, com exceção do período de inverno, em que as coletas foram realizadas a cada 90 dias, totalizando ao final do experimento onze coletas. O experimento foi constituído como um fatorial 2 x 2 x 11 (sistemas x cultivares x coletas), em delineamento inteiramente casualizado, com três repetições de 12 plantas cada. Foram avaliadas a produção total de microestacas ao final das onze coletas, o número de microestacas produzidas por planta matriz a cada coleta, a sobrevivência das plantas matrizes ao final das onze coletas e a sobrevivência das plantas matrizes a cada coleta. Os resultados indicaram que o sistema semi-hidropônico foi superior ao substrato organomineral para a produção de microestacas de ambas as cultivares. A maior produtividade total de microestacas ocorreu no sistema semi-hidropônico combinado com a cultivar Aliceblue, com produção total média de 237,67 microestacas. Porém, nesta condição, houve menor sobrevivência das plantas matrizes. A produção de microestacas apresentou alternância ao longo das coletas. A sobrevivência das plantas matrizes diminuiu após sucessivas coletas. Após as coletas de verão, ocorreu maior mortalidade de plantas matrizes.

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RESUMEN El selenio (Se) es un elemento traza esencial no solo para animales, plantas y microorganismos, sino también para la salud de las personas. Por ello, parece que aumentar las cantidades de selenio en plantas puede tener implicaciones positivas. El objetivo de este trabajo fue determinar en un sistema de cultivo sin suelo con fibra de coco el efecto del selenito (Se IV) y selenato (Se VI) en el peso, calidad de las frutas de fresa, así como en variables de crecimiento y contenido de clorofilas de las hojas jóvenes y adultas de la planta de fresa de la variedad ‘Splendor’. Los tratamientos fueron: T1 Se(IV)F (foliar), T2 Se(IV)S (sustrato), T3 Se(VI)F, T4 Se(VI)S y T5 control (sin aporte de Se). Se aplicaron semanalmente las mismas concentraciones de Se(IV) y Se(VI). Los resultados del análisis mostraron que el efecto de los tratamientos sobre firmeza, sólidos solubles totales y acidez titratable en frutas fue significativo. Los valores más altos de firmeza y sólidos solubles fueron mostrados por el tratamiento T4. Los mayores valores para el pH se producen en los tratamientos con T2 y T4. Los resultados indican que el Se tiene un efecto positivo sobre los valores de SPAD en hoja vieja. Las plantas con tratamiento de selenio presentaron un mayor número de hojas en relación a las plantas control.

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Results on the optimization of analytical methods for the determination of phosphorus in phosphino-polycarboxylate (PPCA), used frequently as scale inhibitor during oil production, by ICP-AES and ICP-MS are presented. Due to the complex matrix of production waters (brines) and their high concentration in inorganic phosphorus, the separation of organic phosphorus prior to its determination is necessary. In this work, minicolumns of silica immobilized C18 were used. Optimization of the separation step resulted in the following working conditions: (1) prewashing of the column with methanol (80% v/v); (2) use of a flow rate of 5 mL/min and 10 mL/min, respectively, for the preconditioning step and for percolation of the water sample; (3) final elution of organic phosphorus with 7 mL of buffer of H3BO3/NaOH (0.05 M, pH 9) with a flow rate of 1 mL/min. Sample detection limits (3s) for different combinations of nebulizers and spectrometric methods, based on 10 mL water aliquots, are: ICP-AES -Cross flow (47 mg/L) and Ultrasonic (18 mug/L); ICP-MS -Cross flow (1.2 mug/L), Cyclonic (0.7 mug/L) and Ultrasonic (0.5 mug/L). Typical recoveries of organic phosphorus are between 90 and 95% and the repeatability of the whole procedure is better than 10%. The developed methodology was applied successfully to samples from the oil-well NA 46, platform PNA 2, Campos basin, Brazil. Assessment of the PPCA inhibitor was possible at lower concentrations than achieved by current analytical methods, resulting in benefits such as reduced cost of chemicals, postponed oil production and lower environmental impacts.

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Atrazine and alachlor herbicides are widely and extensively used in agriculture for the control of a variety of weeds. These herbicides are quite mobile in soil and there is a concern that they may contaminate the environment, specially surface and ground water and soils. The results suggest that alachlor and atrazine present similar behavior in the environment, but alaclhor dissipates with greater rate.

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New methodologies for protection of Saccharomyces cerevisiae (FP) cells when supported in montmorillonite K10 (K10), recovered or not with gelatin (G) and in the presence or absence of sucrose (S) are presented. These systems were used for the enantioselective reduction of ethyl acetoacetate and a-chloroacetophenone in hexane, under FP/K10/G/S and FP/S at 20ºC during 24 hours, affording S-(+)-ethyl-3-hydroxybutanoate in 100% conversion and 99% ee, and R-(-)-2-chloro-1-phenylethanol 79% and 78% ee at 20 and 30 ºC, respectivelly.

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Sequential extraction is not totally effective to dissolve distinct forms of trace elements. The extractive solution, for example, can dissolve less of the target fraction and more than another not wished fraction. The goal of this work is to compare the extraction of native iron with three sequential extraction methods of the heavy metals, using three soils with different physical chemistry characteristics: a histosol, an oxisol, and a mollisol. The results obtained in this work demonstrate that a smaller relation soil/extractor results in a larger extraction in almost all phases. The use of many stages of the sequential extraction, with the purpose of more association of the metal with different components of the soil, can result, among other things, in modification of the substratum by the action of the reagents used, besides reducing the selectivity of the more specific extractors. Readsorption and redistribution of the heavy metals could have happened with larger intensity in the fraction where hidroxilamine was used with higher temperature. Sequential extraction of iron, without enrichment of soil samples, in the respective fractions in each method, it was important to better understand the behavior of the reagents considered specific to each form of the metal in soil.

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Poly (ethylene) glycol (PEG) and bovine serum albumin (BSA), as additive agents, were used to enhance the activity of immobilized microbial lipase in organic solvent. Controlled pore silica (CPS) was selected as matrix and different immobilization procedures were evaluated: directly lipase binding on CPS and simultaneous addition of lipase and additive agent on the same support. The highest coupling yield (59.6%) was attained when the immobilization procedure was performed at lipase loading of 150 U/g support in the presence of PEG-1.500. This immobilized system was used in esterification reactions under repeated batch cycles and the biocatalyst half-life was found to increase 2.7 times when compared with the control.

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Polyhydroxyalkanoates (PHAs) are carbon and energy storage materials that are accumulated as intracellular granules in a variety of microorganisms during unbalanced growth. PHAs have drawn attention due to their properties similar to conventional plastics and complete biodegradability. They can be used for food and cosmetics packaging, and in medicine and agriculture. However, their applicability is reduced because of their high production cost compared to conventional plastics. An overview on production strategies of poly(3-hydroxybutyrate) and poly(3-hydroxybutyrate-co-3-hydroxyvalerate) aiming at reducing the production costs is presented.

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The preparation and application of organic-inorganic hybrid materials are under fast development and constitute an interesting research topic on account of the versatility and wide range of applications offered by these materials. These properties can be achieved due to the mixture of the components at the molecular level. The present review covers the state of the art, the most useful preparation routes and the potential applications of these materials.

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This article presents an evaluation of the pollution of river water by herbicides used in the culture of irrigated rice in Rio Grande do Sul State, Brazil. Firstly, a theoretical evaluation was made using the approaches suggested by EPA-USA, the "Groundwater Ubiquity Score" index and the Goss method to estimate the pollution possibilities. Afterwards, a monitoring program was established for the rivers of the area from 2001 to 2003 to investigate the presence of herbicide residues. The results indicate that the herbicides clomazone and propanil are the ones with larger presence and frequency in the analyzed samples. The theoretical forecast was confirmed by the results of the monitoring program.

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Sugar cane cultivation in the State of São Paulo has expanded in the last years, with an annual production of 200•10(6) t in an area of 2.5• 10(6) hectares. The use of herbicides, pesticides and fertilizers in sugar cane plantations, together with deforestation of riparian vegetation, have caused impacts on the hydric resources of the adjacent areas. The aim of this work is to evaluate the influence of sugar cane plantations on streams in the central region of the State of São Paulo, studying 16 organochlorinated compounds and 7 metals (Cu, Fe, Cd, Zn, Mn, Cr and Ni) found in the sediments of 11 streams. The results show that there is a higher concentration of metals and organochlorinated compounds in streams without riparian vegetation when compared to forested areas.

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Microbial lipase from Candida rugosa was immobilized by covalent binding on wood cellulignin (Eucaliptus grandis) chemically modified with carbonyldiimidazole. The immobilized system was fully evaluated in aqueous (olive oil hydrolysis) and organic (ester synthesis) media. A comparative study between free and immobilized lipase was carried out in terms of pH, temperature and thermal stability. A higher pH value (8.0) was found optimal for the immobilized lipase. The optimal reaction temperature shifted from 37 °C for the free lipase to 45 °C for the immobilized lipase. The pattern of heat stability indicated that the immobilization process tends to stabilize the enzyme. Kinetics tests at 37 °C following the hydrolysis of olive oil obeyed the Michaelis-Menten rate equation. Values for Km = 924.9 mM and Vmax = 198.3 U/mg were lower than for free lipase, suggesting that the affinity towards the substrate changed and the activity of the immobilized lipase decreased during the course of immobilization. The immobilized derivative was also tested in the ester synthesis from several alcohols and carboxylic acids.

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In this work a simple and sensitive procedure to extract organic mercury from water and sediment samples, using methylene chloride in acidic media followed by CVAFS quantification has been developed. The method was evaluated for possible interferents, using different inorganic mercury species and humic acid, no effects being observed. The detection limit for organic mercury was 160 pg and 396 pg for water and sediment samples respectively. The accuracy of the method was evaluated using a certified reference material of methylmercury (BCR-580, estuarine sediment). Recovery tests using methylmercury as surrogate spiked with 1.0 up to 30.0 ng L-1 ranged from 90 up to 109% for water samples, whereas for sediments, recoveries ranged from 57 up to 97%.

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This study was performed to establish the correlation between the growth conditions and essential oil composition of Hyptis suaveolens from Alfenas (MG), Brazil. The plants were grown in a greenhouse, four treatments were used and they were harvested at two different periods of time (60 and 135-day-old plants). The essential oil composition was determined by GC-MS analysis. The terpenes spathulenol, globulol, dehydroabietol, a-cadinol and beta-phellandrene were the major constituents found in the essential oil. Oxygenated sesquiterpenes represented the main group of constituents in most of the treatments. The major changes in the essential oil composition were found in 135-day-old plants grown under NPK deficiency. We also identified three groups of volatile components that have not been previously described in H suaveolens.