256 resultados para cyanobacterium


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Analysis of cellular response to zinc exposure provides insights into how organisms maintain homeostatic levels of zinc that are essential, while avoiding potentially toxic cytosolic levels. Using the cyanobacterium Nostoc punctiforme as a model, qRT-PCR analyses established a profile of the changes in relative mRNA levels of the ZntA-like zinc efflux transporter NpunR4017 in response to extracellular zinc. In cells treated with 18 μM of zinc for 1 h, NpunR4017 mRNA levels increased by up to 1300 % above basal levels. The accumulation and retention of radiolabelled (65)Zn by NpunR4107-deficient and overexpressing strains were compared to wild-type levels. Disruption of NpunR4017 resulted in a significant increase in zinc accumulation up to 24 % greater than the wild type, while cells overexpressing NpunR4107 accumulated 22 % less than the wild type. Accumulation of (65)Zn in ZntA(-) Escherichia coli overexpressing NpunR4017 was reduced by up to 21 %, indicating the capacity for NpunR4017 to compensate for the loss of ZntA. These findings establish the newly identified NpunR4017 as a zinc efflux transporter and a key transporter for maintaining zinc homeostasis in N. punctiforme.

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Protozoa may be an important alternative food source for Calanoida copepods in these environments. Aiming to quantify the feeding preferences of N. cearensis by ciliates in the presence of cyanobacteria, in vitro experiments were conducted, using mixed cultures in different concentrations of total food for copepod. Two ciliates species (Paramecium sp. and Cyclidium sp.) and a cyanobacteria toxic strain (Microcystis aeruginosa) were offered as food. Previous experiments were done to identify the copepod s maximum ingestion rate through the use of a type II functional response model when each prey is offered separately. High maximum ingestion rate were found when those protists were offered as prey. N. cearensis showed significant preference for protozoal prey over the cyanobacterium tested both in low (corresponding 95.15% of the diet) and in high food concentration treatments (about 91.56% of the diet), preferring the bigger ciliate in lower concentrations (67.52% of the diet). The meaningful involvement of heterotrophic organisms in the zooplankton diet emphasis the microbial loop participation in the energy transition from copepods to higher trophic levels. This data contributes to understand the stability of existing trophic interactions in reservoirs subjected to eutrophication and assists trophic cascade studies in these environments

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

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The genetic and morphological variability among 15 Brazilian strains of Microcystis aeruginosa (Kütz.) Kütz. collected from four locations was examined and compared with several reference strains of M. aeruginosa, M. viridis (A. Br.) Lemm. and M. wesenbergii (Kom.) Kom. in Kondr. Brazilian strains were classified by morphological features and by comparison of the nucleotide sequences of the cpcBA intergenic spacer and flanking regions. Our results indicate that Brazilian strains classified as M. aeruginosa are phylogenetically diverse compared with reference strains of M. aeruginosa and that the current taxonomy underestimates genetic diversity within M. aeruginosa. The data also demonstrate that morphological criteria alone are inadequate to characterize Microcystis species. Although colonial characters were shown to vary considerably in culture, some genetic lineages demonstrated consistent cellular diameter ranges, indicating that cell size has value as a taxonomic character. The detection of six M. aeruginosa genotypes in a single water body indicates that morphological approaches can also seriously underestimate the diversity of Microcystis bloom populations.

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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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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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O arsênio é um metalóide tóxico que se tornou um problema de saúde pública em todo o mundo. Como forma de reduzir a contaminação ambiental por este metalóide, a qual é proveniente de atividades antropogênicas e naturais, a utilização de microorganismos em processos de biorremediação se tem mostrado uma estratégia promissora. A cianobactéria filamentosa homocitada, Geitlerinema unigranulatum UFV-E01, pertencente à ordem Pseudanabaenales, foi isolada de um ambiente contaminado por arsênio, sugerindo uma habilidade em lidar com o efeito tóxico deste metalóide. Com vista nisso, o presente trabalho objetivou caracterizar a resistência ao arsenato de sódio e quantificar o arsênio total extracelular da cianobactéria G. unigranulatum UFV-E01. As análises de resistência ao arsenato de sódio revelaram que a cianobactéria foi capaz de crescer em até 50 mM por 20 dias. Além disso, a cianobactéria G. unigranulatum UFV-E01 acumulou arsenato de sódio por 10 dias, reduzindo em até 67% o arsênio extracelular. Pelos dados obtidos neste estudo, a cianobactéria G. unigranulatum UFV-E01 foi capaz de resistir a altas concentrações de arsenato de sódio, no entanto outras análises, como a caracterização das vias metabólicas envolvidas no processo de resistência, devem ser realizadas para considerar sua aplicação em ambientes impactados por arsênio.

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Este trabalho teve como objetivo descrever a composição, abundância relativa e frequência de ocorrência do microfitoplâncton do rio Arienga, determinadas a partir da análise qualitativa de 10 amostras coletadas no período chuvoso e seco (respectivamente maio e setembro de 2009), em cinco estações georreferenciadas, utilizando-se uma rede cônico-cilíndrica de plâncton com abertura de malha de 20μm. No período estudado a precipitação pluviométrica apresentou um comportamento atípico, comparado à média dos últimos 10 anos para a região de Barcarena, e o pH e a temperatura não sofreram grande variações. Foram identificadas 128 espécies pertencentes às divisões: Dinophyta (0,78%), Chrysophyta (0,78%), Cyanobactéria (12,50%), Chlorophyta (26,56%) e Bacillariophyta (59,38%). Os gêneros Microcystis Kützing ex Lemmermann, Staurastrum Meyen ex Ralfs, Ulothrix Kützing, Eudorina Ehrenberg ex Ralfs, Volvox Linnaeus, Hydrodictyon Roth, Pediastrum Meyen, Aulacoseira Thwaites, Coscinodiscus Kützing, Pinnularia Ehrenberg, Polymyxus Bailey, Rhizosolenia Brightwell, Actinoptychus Ehrenberg, Thalassiosira Ehrenberg, Tabellaria Ehrenberg ex Kützing, Fragilaria Lyngbye e Navicula Bory de St. Vincent apresentaram 100% de representatividade, nos dois períodos de coleta. Foi possível constatar dois grandes grupos, sugerindo que o regime pluviométrico foi o principal fator controlador da composição fitoplanctônica e da variação espacial de espécies do rio Arienga. A diversidade fitoplanctônica foi considerada característica para a região amazônica.

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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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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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Credneramides A (1) and B (2), two vinyl chloride-containing metabolites, were isolated from a Papua New Guinea collection of cf. Trichodesmium sp. nov. and expand a recently described class of vinyl chloride-containing natural products. The precursor fatty acid, credneric acid (3), was isolated from both the aqueous and organic fractions of the parent fraction as well as from another geographically and phylogenetically distinct cyanobacterial collection (Panama). Credneramides A and B inhibited spontaneous calcium oscillations in murine cerebrocortical neurons at low micro-molar concentrations (1, IC50 4.0 mu M; 2, IC50 3.8 mu M).

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Bioenergetic analysis may be applied in order to predict microbial growth yields, based on the Gibbs energy dissipation and mass conservation principles of the overall growth reaction. The bioenergetics of the photoautotrophic growth of the cyanobacterium Arthrospira (Spirulina) platensis was investigated in different bioreactor configurations (tubular photobioreactor and open ponds) using different nitrogen sources (nitrate and urea) and under different light intensity conditions to determine the best growing conditions in terms of Gibbs energy dissipation, number of photons to sustain cell growth and phototrophic energy yields distribution in relation to the ATP and NADPH formation, and release of heat. Although an increase in the light intensity increased the Gibbs energy dissipated for cell growth and maintenance with both nitrogen sources, it did not exert any appreciable influence on the moles of photons absorbed by the system to produce one C-mol biomass. On the other hand, both bioenergetic parameters were higher in cultures with nitrate than with urea, likely because of the higher energy requirements needed to reduce the former nitrogen source to ammonia. They appreciably increased also when open ponds were substituted by the tubular photobioreactor, where a more efficient light distribution ensured a remarkably higher cell mass concentration. The estimated percentages of the energy absorbed by the cell showed that, compared with nitrate, the use of urea as nitrogen source allowed the system to address higher energy fractions to ATP production and light fixation by the photosynthetic apparatus, as well as a lower fraction released as heat. The best energy yields values on Gibbs energy necessary for cell growth and maintenance were achieved in up to 4-5 days of cultivation, indicating that it would be the optimum range to maintain cell growth. Thanks to this better bioenergetic situation, urea appears to be a quite promising low-cost, alternative nitrogen source for Arthrospira platensis cultures in photobioreactors. (C) 2011 Elsevier Ltd. All rights reserved.

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Similar to other photosynthetic microorganisms, the cyanobacterium Arthrospira platensis can be used to produce pigments, single cell proteins, fatty acids (which can be used for bioenergy), food and feed supplements, and biofixation of CO2. Cultivation in a specifically designed tubular photobioreactor is suitable for photosynthetic biomass production, because the cultivation area can be reduced by distributing the microbial cells vertically, thus avoiding loss of ammonia and CO2. The aim of this study was to investigate the influence of light intensity and dilution rate on the photosynthetic efficiency and CO2 assimilation efficiency of A. platensis cultured in a tubular photobioreactor in a continuous process. Urea was used as a nitrogen source and CO2 as carbon source and for pH control. Steady-state conditions were achieved in most of the runs, indicating that continuous cultivation of this cyanobacterium in a tubular photobioreactor could be an interesting alternative for the large-scale fixation of CO2 to mitigate the greenhouse effect while producing high protein content biomass.