245 resultados para cyanobacterial


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A contaminação ambiental por arsênio vem aumentando nos últimos anos, seja através de fontes naturais ou antropogênicas, o que pode ocasionar uma maior exposição do homem a este composto tóxico. Vários estudos vêm analisando o potencial de espécies cianobacterianas como possíveis biorremediadoras na busca de soluções para diminuir os impactos causados por este metaloide. A cianobactéria filamentosa Phormidium sp. se destaca por apresentar mecanismos bem desenvolvidos de adaptação às diversas condições ambientais. O presente estudo objetivou analisar o perfil de resistência da Phormidium sp. em diferentes concentrações de arsenato de sódio. A cianobactéria foi inoculada em tubos contendo 4 mL de meio BG-11 líquido e diferentes concentrações de arsenato (5, 10, 30, 50, 100, 130, 150, 200 e 250 mM) e sem a presença do metaloide (controle) e cultivadas durante 20 dias a 25ºC, sem agitação e com fotoperíodo de 12/12 horas de luz/escuro. A toxicidade do arsenato para Phormidium sp. foi caracterizada pela inibição do crescimento, sendo este determinado pela concentração de clorofila a. Todas as condições foram realizadas em triplicatas. A determinação do arsênio total presente nas amostras foi obtida através da técnica de espectrometria de emissão óptica com plasma induzido, do Instituto Evandro Chagas. A resistência de Phormidium sp. ao arsenato foi observada em até 50 mM do composto (p>0,05). À partir de 100 mM de arsenato foi observada inibição do crescimento cianobacteriano (p<0,05). As análises da dosagem de arsênio total no meio de cultura mostram que, durante os primeiros dias de experimento, a concentração de arsênio no meio de cultura foi reduzido, seguido de um aumento gradativo na concentração deste metaloide. Provavelmente, esta cianobacteria pode acumular o arsênio e posteriormente excretar este metaloide para o meio extracelular. Os resultados obtidos indicam a capacidade que a cianobactéria Phormidium sp. possui de crescer em meio contendo altas concentrações de arsênio. No entanto, outras análises se tornam fundamental para elucidar as vias metabólicas envolvidas durante o processo de resistência a este metaloide.

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Pós-graduação em Ciências Cartográficas - FCT

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In extensive animal husbandry, natural or artificial ponds allow direct access of cattle to water but result in degradation of water quality and in increased health risks. Under such circumstances eutrophication occurs and consequently algal bloom, among them toxigenic cyanobacteria. The present study aimed to report the occurrence of cyanobacteria in the drinking water of cattle and to describe their physical and chemical parameters, as pH, temperature and dissolved oxygen. Nineteen samples of natural ponds or water troughs formed predominantly as result of rainfall from six farms located in the Southeast and Midwest regions of Brazil were analyzed for the presence of cyanobacteria, and pH, temperature and dissolved oxygen was measured. Microcystis and/or Merismopedia were detected in two ponds; one of them was covered with intense flowering. The values of pH, temperature and dissolved oxygen in 19 collections were pH 7.2-9.7, 31-34ºC and 7.8-30mg/l respectively. Also non-pathogenic algae of several genera were detected besides the occurrence or not of cianogenics. Under these conditions, the common practices of drinking water supply for extensively raised cattle and the possibilities of eutrophication and cyanobacterial growth bring potential risks for animal health.

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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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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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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Agronomia (Proteção de Plantas) - FCA

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Pós-graduação em Agronomia (Proteção de Plantas) - FCA

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The cyanobacterium Microcystis aeruginosa strain NPCD-1, isolated from sewage treatment plant and characterized as a non-microcystin producer by mass spectrometry and molecular analysis, was found to be a source of lipid when cultivated in ASM-1 medium at 25 degrees C under constant white fluorescent illumination (109 mu mol photon m(-2) s(-1)). In these conditions, biomass productivity of 46.92 +/- 3.84 mg L-1 day(-1) and lipid content of 28.10 +/- 1.47% were obtained. Quantitative analysis of fatty acid methyl esters demonstrated high concentration of saturated fatty acids (50%), palmitic (24.34%) and lauric (13.21%) acids being the major components. The remaining 50% constituting unsaturated fatty acids showed higher concentrations of oleic (26.88%) and linoleic (12.53%) acids. The feasibility to produce biodiesel from this cyanobacterial lipid was demonstrated by running enzymatic transesterification reactions catalyzed by Novozym (R) 435 and using palm oil as feedstock control. Batch experiments were carried out using tert-butanol and iso-octane as solvent. Results showed similarity on the main ethyl esters formed for both feedstocks. The highest ethyl ester concentration was related to palmitate and oleate esters followed by laurate and linoleate esters. However, both reaction rates and ester yields were dependent on the solvent tested. Total ethyl ester concentrations varied in the range of 44.24-67.84 wt%, corresponding to ester yields from 80 to 100%. Iso-octane provided better solubility and miscibility, with ester yield of 98.10% obtained at 48 h for reaction using the cyanobacterium lipid, while full conversion was achieved in 12 h for reaction carried out with palm oil. These results demonstrated that cyanobacterial lipids from M. aeruginosa NPCD-1 have interesting properties for biofuel production. (c) 2012 Elsevier B.V. All rights reserved.

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Species of Microcystis are the most common bloom-forming cyanobacteria in several countries. Despite extensive studies regarding the production of bioactive cyanopeptides in this genus, there are limited data on isolated strains from Brazil. Three Microcystis sp. strains were isolated from the Salto Grande Reservoir (LTPNA01, 08 and 09) and investigated for the presence of mcy genes, microcystins and other cyanopeptides. Microcystin and microginin production was confirmed in two isolates using high-resolution tandem mass spectrometry after electrospray ionization (ESI-Q-TOF), and the structures of two new microginin congeners were proposed (MG756 Ahda-Val-Leu-Hty-Tyr and MG770 MeAhda-Val-Leu-Hty-Tyr). The biosynthesis profile of the identified cyanopeptides was evaluated at different growth phases via a newly developed HPLC-UV method. Results demonstrated no substantial differences in the production of microcystins and microginins after data normalization to cell quota, suggesting a constitutive biosynthesis. This study represents the first confirmed co-production of microginins and microcystins in Brazilian strains of Microcystis sp. and highlights the potential of Brazilian cyanobacteria as a source of natural compounds with pharmaceutical interest.