140 resultados para Pistia stratiotes


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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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The aim of this study was to evaluate the nutritive value of free-floating aquatic macrophytes, Eichhornia crassipes (Mart.) Solms (Pontederiaceae), Pistia stratiotes (L.) (Araceae) and Salvinia molesta (Mitchell) (Salviniaceae) used in a Nile tilapia (Oreochromis niloticus) waste treatment, and these species biomass potential uses. The vegetal biomass samples were collected from 0.25 m 2 floating squares and divided in aerial and submerse parts, to determine the concentrations of cell wall fraction, soluble carbohydrates, polyphenols, lipids, crude protein and total phosphorus. The higher nutritive value was observed in E. crassipes and S. molesta aerial parts, and in P. stratiotes total biomass, due to their lower cell wall fraction mean rates (60.7; 64.2 and 56.9 % dry mass, respectively) and to the higher rates of: crude protein (10.1; 9.1 and 8.8 % dry mass, respectively), soluble carbohydrates (26.6; 18.7 and 12.4 mg.g -1 dry mass, respectively) and lipids (7.6; 4.5 and 4.4% dry mass, respectively). It may be concluded that P. stratiotes total biomass, and E. crassipes and S. molesta aerial biomass have nutritive values with potential use for ruminant feeding or as ration ingredients.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Pós-graduação em Ciências Biológicas (Biologia Vegetal) - IBRC

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A disponibilidade de nutrientes é um dos fatores que controla a produção primária dos ecossistemas. O objetivo deste trabalho foi avaliar o efeito da concentração de nitrato (N-NO3) no crescimento da macrófita aquática flutuante Pistia stratiotes. Um experimento com delineamento totalmente casualisado foi realizado em laboratório, consistindo de três réplicas e cinco tratamentos: (1) sem adição de nitrato; (2)196μg.L-1, (3) 490μg.L-1, (4) 980μg.L-1 e (5) 1960μg.L-1. Em intervalos de sete dias, durante 70 dias, foi obtida a massa fresca de P. stratiotes. A massa fresca foi transformada em massa seca, e a esses valores aplicou-se o modelo de crescimento logístico. Também foram analisados o diâmetro de roseta, o número de indivíduos, o volume de raiz, a absorção de N-NO3 e P-PO4 por P. stratiotes e os teores de nitrogênio, fósforo e clorofila a e b da biomassa. Os valores médios de capacidade suporte (K) encontrados foram: (1) 220,9 gMS.m-2; (2) 262,8 gMS.m-2; (3) 288,3 gMS.m-2; (4) 356,9 gMS.m-2; e (5) 394,6 gMS.m-2. Os resultados indicam que a relação entre concentração de nitrato e K é uma hipérbole que apresenta K como valor assintótico. Conclui-se que o aumento da disponibilidade de nitrato promove o aumento no crescimento desta espécie. Conclui-se também que P. stratiotes apresenta consumo de luxúria de nitrogênio e que a maior disponibilidade de nitrogênio promove o aumento do número de indivíduos e do diâmetro da roseta e a diminuição da relação volume de raiz/biomassa do indivíduo.

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Pistia stratiotes e Salvinia molesta são duas macrófitas aquáticas flutuantes predominantes em ambientes de água parada. Embora as duas espécies em questão ocorram em ambientes com altos níveis de fósforo, P. stratiotes tem seu crescimento limitado por baixas concentrações de nitrogênio e fósforo, enquanto S. molesta se desenvolve bem tanto em águas com baixas como com altas concentrações de nutrientes. Dessa forma, S. molesta tem maior habilidade competitiva do que P. stratiotes em baixas concentrações de nitrogênio e fósforo. Neste contexto, este trabalho teve por objetivo principal analisar a relação de competição entre P. stratiotes e S. molesta, quando submetidas a diferentes concentrações de nutrientes ao longo do tempo. O estudo foi desenvolvido em uma casa de vegetação do Jardim Experimental da Unesp de Rio Claro, com duração de 66 dias, no período entre 25 de janeiro e 31 de março de 2008. As duas espécies foram misturadas em proporções iguais de área, em seis unidades experimentais. Em intervalos entre 4 e 7 dias, os nutrientes de cada unidade foram trocados e medidos o pH e a temperatura da água, bem como a massa fresca, massa morta e o comprimento da raiz de cada espécie. Todas as concentrações de nutrientes oferecidas foram suficientes para o bom crescimento de P. stratiotes, a qual venceu a competição, limitando o crescimento de S. molesta por falta de espaço e luz, levando-a à exclusão competitiva. O crescimento de P.stratiotes aumentou à medida que maiores concentrações de nutrientes foram oferecidas. Além disso, a temperatura também parece ter influenciado o crescimento da espécie, sendo esse maior em maiores temperaturas. A parte submersa de ambas as espécies diminuiu ao longo do experimento, devido às maiores ofertas de nutrientes.

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O objetivo desse trabalho foi avaliar as possíveis diferenças no teor de nitrogênio e fósforo na biomassa de Pistia stratiotes, que coloniza um rio com caracterísicas naturais (Aguapeú) e outro, que recebe grande carga de efluentes domésticos (rio do Poço). Para tanto, foram coletadas amostras de água e indivíduos de P.stratiotes (cinco réplicas) nesses rios. Paralelamente foram feitas medidas diretas de variáveis físico-químicas na água (pH, temperatura, condutividade elétrica, salinidade e turbidez). Em laboratório, foram determinados os teores de oxigênio dissolvido e a alcalinidade das amostras de água, bem como as concentrações de nitrogênio orgânico total, nitrogênio orgânico dissolvido, N-amoniacal N-nitrito, N-nitrato, fósforo total, fósforo dissolvido e P-ortofosfato. Os indivíduos de P. stratiotes coletados tiveram o número de folhas, diâmetro da roseta, altura da parte aérea e, o comprimento e volume da raiz medidos logo após a coleta. Esse material vegetal foi separado em biomassa aérea e submersa, seco e moído para a determinação da biomassa e dos teores de nitrogênio e fósforo totais. Observou-se que o rio Poço apresentou anoxia e as maiores concentrações de nutrientes na água. Pistia stratiotes apresentou maior biomassa e teores de nitrogênio e fósforo totais no rio Poço, provavelmente, devido às maiores concentrações de nutrientes deste rio. Por outro lado, a anoxia não foi limitante para o crescimento da espécie nesse rio. A maior proliferação de P stratiotes se deu no rio Poço, em relação ao rio Aguapeú, devido às condições de eutrofização em que se encontra esse ambiente, ocasionada pelo lançamento freqüente de efluentes domésticos, ricos em nutrientes, em seu curso d’água.

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The environmental pollution caused by industries has increased the concentration of pollutants in the environment, especially in water. Among the most diverse contaminants, there is the metals, who may or may not to be heavy/toxic, causing effluent of difficult treatment when in low concentrations. The search for alternative measures of wastewater effluent treatment has led to studies using phytoremediation technique through the various matrices (plant, fungi, bacteria) as means of polishing treatment to remove contaminants by means of biosorption/bioaccumulation. In order to use the phytoremediation technique for removing metals of the environmental, it have been performed bioassay with the macrophyte Pistia stratiotes. The bioassays were realized with healthy plants of P. stratiotes acclimatized in a greenhouse, at room temperature and lighting conditions during 28 days of cultivate. The cultivations were performed in glass vessels containing 1 L of the hydroponic solution with chromium (VI) in the potassium dichromate form with concentration range 0.10 to 4.90 mg L-1. The experiments were performed by Outlining Central Composite Rotational (OCCR), where the kinetics of bioaccumulation and chlorophyll a fluorescence were monitored in plants of P. stratiotes during cultivation. The collections of the samples and cultive solution were performed according to the OCCR. The chromium levels were measured in samples of P. stratiotes and the remaining solutions by the methodology of atomic absorption spectrometry by flame. The tolerance of P. stratiotes in relation to exposure to chromium (VI) was analyzed by parameters of physiological activity by means of chlorophyll a fluorescence, using the portable fluorometer PAM (Pulse Amplitude Modulation). The development of P. stratiots and their biomass were related to the time factor, while bioaccumulation capacities were strongly influenced by factors of time and chromium concentration (VI). The chlorophyll fluorescence parameters were affected by chromium and the exposure time at the bioassays. It was obtained an higher metal removal from the root in relation to the sheet, reaching a high rate of metal removal in solution. The experimental data removal kinetics were represented by kinetic models Irreversibly Langmuir, Reversible Langmuir, Pseudo-first Order and Pseudo-second Order, and the best fit for the culture solution was the Reversible Langmuir model with R² 0.993 and for the plant the best model was Pseudo-second order with R² 0.760.

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Waterlettuce ( Pistia stratiotes L.) is a free-floating exotic aquatic weed that often invades and clogs waterways in the southeastern United States. A study was conducted to evaluate the potential of using remote sensing technology to distinguish infestations of waterlettuce in Texas waterways. Field reflectance measurements showed that waterlettuce had higher visible green reflectance than associated plant species. Waterlettuce could be detected in both aerial color- infrared (CIR) photography and videography where it had light pink to pinkish-white image tonal responses. Computer analysis of CIR photographic and videographic images had overall accuracy assessments of 86% and 84%, respectively. (PDF contains 6 pages.)

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Carfentrazone-ethyl (CE) is a reduced risk herbicide that is currently being evaluated for the control of aquatic weeds. Greenhouse trials were conducted to determine efficacy of CE on water hyacinth ( Eichhornia crassipes (Mart.) Solms- Laub.), water lettuce ( Pistia stratiotes L.), salvinia ( Salvinia minima Baker) and landoltia (Landoltia punctata (G. Mey.) Les & D. J. Crawford ) . CE controlled water lettuce, water hyacinth and salvinia at rates less than the maximum proposed use rate of 224 g ha -1 . Water lettuce was the most susceptible to CE with an EC 90 of 26.9 and 33.0 g ha -1 in two separate trials. Water hyacinth EC 90 values were calculated to be 86.2 to 116.3 g ha -1 , and salvinia had a similar susceptibility to water hyacinth with an EC 90 of 79.1 g ha -1 . Landoltia was not adequately controlled at the rates evaluated. In addition, CE was applied to one-half of a 0.08 ha pond located in North Central, Florida to determine dissipation rates in water and hydrosoil when applied at an equivalent rate of 224 g ha -1 . The half-life of CE plus the primary metabolite, CE-chloropropionic acid, was calculated to be 83.0 h from the whole pond, and no residues were detected in water above the limit of quantification (5 μg L -1 ) 168 h after treatment. CE dissipated rapidly from the water column, did not occur in the sediment above the levels of quantification, and in greenhouse studies effectively controlled three species of aquatic weeds at relatively low rates.(PDF contains 6 pages.)

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A total of sixty juvenile Oreochromis niloticus (Nile tilapia) were fed three species of aquatic weed, namely Azolla filiculoides (water fern), Elodea sp. and Pistia stratiotes (water lettuce) to determine which of the weeds will be selectively consumed, and preferred of all. A control group of twenty Nile tilapia was fed compounded feed. The selectivity of the weeds was observed based on their utilization as food source, and Azolla filiculoides was found to be highly utilized, followed by Elodea sp. and the roots of Pistia stratiotes. The growth response of the fish to the diets was found to be highest for fish fed compounded feed followed by Azolla filiculoides and Elodea sp., while Pistia stratiotes produced a negative growth trend. It is therefore postulated that Azolla filiculoides and Pista sp. are good feedstuffs for O. niloticus especially when used together with other feedstuffs

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In situ ecological assessment of the breeding grounds of palaemonid prawns was conducted in some selected locations around Ondo state coastal area between the months of April and September. Data obtained were subjected to both descriptive and inferential statistics. Three species of Palaemonid prawns were identified in four different locations within the study area with relative abundance ratio of 4:3:1. Macrobrachium macrobrachion, Nematopalaemon hastatus and Palaemon maculatus respectively. Sex ratio of 1 male to 5 females for M. macrobrachion, and 1 male to 2 females for N. hastatus and P. maculatus were observed with result showing significant relationships (P < 0.05) in distribution patterns across collection sites. Population distribution within the water column showed that palaemons are sub-lithoral prawns inhabiting maximum mean depth of 0.67m ± 0.025. Surface macro-phytes such as Eichhornia crassipies, Paspalum vaginatum, and Pistia stratiotes are common providing hiding spots for the prawn at the breeding ground. The mean soil pH across the sites stands at 6.67± 0.399 with the soil textural class that range from silty-loam to silty-clay. Also, the water quality parameters of study areas suggest that captive culture and rearing of Palaemons may be feasible outside the breeding areas.

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The hatching rates of African catfish (Clarias gariepinus) eggs on four natural substrates: the roots of Nile cabbage (Pistia stratiotes), water hyacinth (Eichhornia crassipes), pond weed (Ceratophyllum dermasum) and green grass leaves (Commelina sp.), and four artificial substrates: sisal mats, nylon mats, papyrus mats and kakaban mats, was assessed. Concrete slabs were used as control. The natural substrates performed better than the artificial ones. Pistia roots gave the best mean hatching rate of 66.2 ± 3.62%. Green grass leaves were second with a mean rate of 54.0 ± 3.46%, water hyacinth was third with 49.7 ± 3.16% and Ceratophyllum fourth with a mean of 13.0 ± 2.37%. Concrete slabs gave a mean rate of 18.6 ± 2.8%, sisal mats 18.6 ± 2.0%, papyrus 12.2 ± 1.2% and kakaban 11.8 ± 1.9%. Nylon mats were the last, with a mean rate of 4.0 ± 0.7%. The best performing natural substrates were those with the ability to float and thin fibrous roots that seemed to allow higher aeration of the eggs during incubation. The cost of using natural substrates was minimal.