24 research outputs found

    Effects of light intensity and dilution rate on the semicontinuous cultivation of Arthrospira (Spirulina) platensis. A kinetic Monod-type approach.

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    Abstract Semicontinuous cultures were carried out at different dilution rates (D) and light intensities (I) to determine the maximum productivity of Arthrospira platensis cultivated in helicoidal photobioreactor up to the achievement of pseudo-steady-state conditions. At I = 108 μmol photons m−2 s−1, the semicontinuous regime ensured the highest values of maximum cell concentration (Xm = 5772 ± 113 mg L−1) and productivity (PXS = 1319 ± 25 mg L−1 d−1) at the lowest (D = 0.1 day−1) and the highest (D = 0.3 day−1) dilution rates, respectively. A kinetic model derived from that of Monod was proposed to determine the relationship between the product of light intensity to dilution rate (ID) and the cell productivity, which were shown to exert a combined influence on this parameter. This result put into evidence that pseudo-steady-state conditions could be modified according to circumstances, conveniently varying one or other of the two independent variables

    Estudo da partição de fitase produzida por Aspergillus niger var. phoenicis utilizando bioconversão extrativa em sistemas de duas fases aquosas PEG/citrato

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    Existem diversos métodos tradicionais que são utilizados para extratir biomoléculas produzidas por fermentação convencional. Um método alternativo é o sistema de duas fases aquosas, o qual foi desenvolvido para a extração de bioprodutos. A bioconversão extrativa trata-se de um sistema de duas fases aquosas que integra cultivo microbiológico à produção e recuperação do bioproduto. Fitases são fosfatases específicas que estão envolvidas na catálise do ácido fitico. O objetivo deste trabalho foi estudar a partição da fitase produzida por A. niger var. phoenicis por bioconversão extrativa utilizando PEG/citrato. Realizou-se um planejamento fatorial completo 25, estudando as seguintes variáveis: massa molar do PEG, concentração do PEG, concentração de citrato, pH e agitação, onde obteve-se como variável-resposta o coeficiente de partição em atividade (KATIV). Neste trabalho conseguiu-se um coeficiente de partição de 25,77 utilizando MPEG (8000 g/mol), CPEG, (26,0% m/m), CCIT (20,0% m/m), pH (6,0) e agitação (100 rpm). Através dos resultados obtivos, pode-se concluir que a fitase utilizada no presente estudo apresenta uma tendência de particionar para a fase superior do sistema (K>1). A técnica de fermentação extrativa utilizando SDFA PEG/citrato demonstrou ser promissora para extração de fitase produzida por A. niger var. phoenicis, podendo ser aplicada na composição de rações comerciais

    Purification of a lectin from Cratylia mollis crude extract seed by a single step PEG/phosphate aqueous two-phase system

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    The partitioning and purification of lectins from the crude extract of Cratylia mollis seeds (Cramoll 1,4) was investigated in aqueous two-phase systems (ATPS). A factorial design model (24) was used to evaluate the influence of polyethylene glycol (PEG) molar mass (15008000g/mol), PEG concentration (12.517.5% w/w), phosphate (1015% w/w) concentration, and pH (68) on the differential partitioning, purification factor, and yield of the lectin. Polymer and salt concentration were the most important variables affecting partition of lectin and used to find optimum purification factor by experimental BoxBehnken design together with the response surface methodology (RSM). ATPS showed best conditions composed by 13.9% PEG1500, 15.3% phosphate buffer at pH 6, which ensured purification factor of 4.70. Sodium dodecyl sulfatepolyacrylamide gel electrophoresis showed a single band of protein with 26.1kDa. Furthermore, results demonstrated a thermostable lectin presenting activity until 60°C and lost hemagglutinating activity at 80°C. According to the obtained data it can be inferred that the ATPS optimization using RSM approach can be applied for recovery and purification of lectins.We are grateful to the following bodies for the grants awarded: CAPES (Coordination for the Improvement of Level Personnel Superior); FACEPE (Pernambuco Science and Technology Foundation): Researcher's scholarship grant: BFP-0017-5.05/18 CNPq (National Council for Scientific Development and Technological) process: 427153/2016-6 and we also thank the reviewers for their valuable comments and suggestions as these helped us to improve the manuscript.info:eu-repo/semantics/publishedVersio

    Screening, production and biochemical characterization of a new fibrinolytic enzyme produced by Streptomyces sp. (Streptomycetaceae) isolated from Amazonian lichens

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    Thrombosis is a pathophysiological disorder caused by accumulation of fibrin in the blood. Fibrinolytic proteases with potent thrombolytic activity have been produced by diverse microbial sources. Considering the microbial biodiversity of the Amazon region, this study aimed at the screening, production and biochemical characterization of a fibrinolytic enzyme produced by Streptomyces sp. isolated from Amazonian lichens. The strain Streptomyces DPUA1576 showed the highest fibrinolytic activity, which was 283 mm2. Three variables at two levels were used to assess their effects on the fibrinolytic production. The parameters studied were agitation (0.28 - 1.12 g), temperature (28 - 36 ºC) and pH (6.0 - 8.0); all of them had significant effects on the fibrinolytic production. The maximum fibrinolytic activity (304 mm2) was observed at 1.12 g, 28 ºC, and pH of 8.0. The crude extract of the fermentation broth was used to assess the biochemical properties of the enzyme. Protease and fibrinolytic activities were stable during 6 h, at a pH ranging from 6.8 to 8.4 and 5.8 to 9.2, respectively. Optimum temperature for protease activity ranged between 35 and 55 °C, while the highest fibrinolytic activity was observed at 45 ºC. Proteolytic activity was inhibited by Cu2+ and Co2+ ions, phenylmethylsulfonyl fluoride (PMSF) and pepstatin A, which suggests that the enzyme is a serine protease. Enzymatic extract cleaved fibrinogen at the subunits A-chain, A-chain, and -chain. The results indicated that Streptomyces sp. DPUA 1576 produces enzymes with fibrinolytic and fibrinogenolytic activity, enzymes with an important application in the pharmaceutical industry.The authors grateful acknowledge the financial support of Fundação de Amparo a Pesquisa do Estado de Pernambuco (FACEPE, Pernambuco, Brazil, N. 0158-2.12/11), CNPq/ RENORBIO (National Counsel of Technological and Scientific Development, N.55146/2010-3) and National Council for the Improvement of Higher Education (CAPES, Brazil) for the scholarship. The author thanks editor and reviewers for their review and comments.info:eu-repo/semantics/publishedVersio

    Pervasive gaps in Amazonian ecological research

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    Biodiversity loss is one of the main challenges of our time,1,2 and attempts to address it require a clear un derstanding of how ecological communities respond to environmental change across time and space.3,4 While the increasing availability of global databases on ecological communities has advanced our knowledge of biodiversity sensitivity to environmental changes,5–7 vast areas of the tropics remain understudied.8–11 In the American tropics, Amazonia stands out as the world’s most diverse rainforest and the primary source of Neotropical biodiversity,12 but it remains among the least known forests in America and is often underrepre sented in biodiversity databases.13–15 To worsen this situation, human-induced modifications16,17 may elim inate pieces of the Amazon’s biodiversity puzzle before we can use them to understand how ecological com munities are responding. To increase generalization and applicability of biodiversity knowledge,18,19 it is thus crucial to reduce biases in ecological research, particularly in regions projected to face the most pronounced environmental changes. We integrate ecological community metadata of 7,694 sampling sites for multiple or ganism groups in a machine learning model framework to map the research probability across the Brazilian Amazonia, while identifying the region’s vulnerability to environmental change. 15%–18% of the most ne glected areas in ecological research are expected to experience severe climate or land use changes by 2050. This means that unless we take immediate action, we will not be able to establish their current status, much less monitor how it is changing and what is being lostinfo:eu-repo/semantics/publishedVersio

    Pervasive gaps in Amazonian ecological research

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    Educomunicação e suas áreas de intervenção: Novos paradigmas para o diálogo intercultural

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    oai:omp.abpeducom.org.br:publicationFormat/1O material aqui divulgado representa, em essência, a contribuição do VII Encontro Brasileiro de Educomunicação ao V Global MIL Week, da UNESCO, ocorrido na ECA/USP, entre 3 e 5 de novembro de 2016. Estamos diante de um conjunto de 104 papers executivos, com uma média de entre 7 e 10 páginas, cada um. Com este rico e abundante material, chegamos ao sétimo e-book publicado pela ABPEducom, em seus seis primeiros anos de existência. A especificidade desta obra é a de trazer as “Áreas de Intervenção” do campo da Educomunicação, colocando-as a serviço de uma meta essencial ao agir educomunicativo: o diálogo intercultural, trabalhado na linha do tema geral do evento internacional: Media and Information Literacy: New Paradigms for Intercultural Dialogue

    Pervasive gaps in Amazonian ecological research

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    Biodiversity loss is one of the main challenges of our time,1,2 and attempts to address it require a clear understanding of how ecological communities respond to environmental change across time and space.3,4 While the increasing availability of global databases on ecological communities has advanced our knowledge of biodiversity sensitivity to environmental changes,5,6,7 vast areas of the tropics remain understudied.8,9,10,11 In the American tropics, Amazonia stands out as the world's most diverse rainforest and the primary source of Neotropical biodiversity,12 but it remains among the least known forests in America and is often underrepresented in biodiversity databases.13,14,15 To worsen this situation, human-induced modifications16,17 may eliminate pieces of the Amazon's biodiversity puzzle before we can use them to understand how ecological communities are responding. To increase generalization and applicability of biodiversity knowledge,18,19 it is thus crucial to reduce biases in ecological research, particularly in regions projected to face the most pronounced environmental changes. We integrate ecological community metadata of 7,694 sampling sites for multiple organism groups in a machine learning model framework to map the research probability across the Brazilian Amazonia, while identifying the region's vulnerability to environmental change. 15%–18% of the most neglected areas in ecological research are expected to experience severe climate or land use changes by 2050. This means that unless we take immediate action, we will not be able to establish their current status, much less monitor how it is changing and what is being lost

    Influence of the feeding time and light intensity on the S. platensis cultivation with ammoniun chloride as nitrogen source

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    A Cianobactéria Spirulina platensis representa uma fonte de proteínas e ácidos graxos que a tornam importante como suplemento alimentar. A fonte de nitrogênio é um nutriente que exerce influência em seu metabolismo. Neste trabalho, observou-se o crescimento de S. platensis e a composição da biomassa obtida, com a utilização de cloreto de amônio como fonte de nitrogênio por processo descontínuo alimentado. Com a utilização de planejamento fatorial, foi realizado o estudo do tempo de alimentação do cloreto de amônio e da intensidade luminosa no cultivo da S. platensis. Os resultados foram avaliados com auxílio da metodologia de superfície de resposta. Menores teores de proteínas e lipídios na biomassa final foram encontrados nos cultivos submetidos a maiores intensidades luminosas. A condição ótima calculada, obtida pela análise estatística, para a obtenção da concentração celular máxima (Xm) e fator de conversão de nitrogênio em células (YX/N) foi encontrada no cultivo sob intensidade luminosa de 13 klux e tempo de alimentação de 17,2 dias. Nessas condições foram obtidos Xm igual 1771 ± 2,3 mg/L e YX/N igual a 5,7 ± 0,17 mg/mg, 3,4% e 4,0% menores que os valores máximos estimados pelo modelo matemático, respectivamente. Maiores produtividades foram obtidas nos cultivos submetidos a maiores intensidades luminosas e menores tempos de alimentação.Cyanobacterium Spirulina platensis represents a protein and fatty acid source that becomes it important as food supplement. The nitrogen source is a nutrient that influences in its metabolism. In this work, it was observed the S. platensis growth and biomass composition using ammonium chloride as nitrogen source in fed-batch process. Using factorial experimental design, it was carried out the study of the ammonium chloride feeding time and light intensity in the S. platensis culture. The results were evaluated by response surface methodology (RSM). Lower protein and lipids contents were found in cell cultures cultivated at higher light intensity. The predictive optimal condition, obtained by statistic analysis, for maximum cellular concentration (Xm) and nitrogen-cell conversion factor (YX/N) was obtained in the culture grown at 13 klux and feeding time of 17.2 days. In these conditions, Xm of 1771 ± 2.3 mg/L and YX/N of 5.7 ± 0.17 mg/mg were obtained. These values are 3.4 % and 4.0 % lower than that ones predicted by mathematical model, respectively. Higher productivities were observed in the culture grown at higher intensity light and lower feeding time

    Arthrospira (Spirulina) platensis fed batch cultivation using urea as nitrogen source and CO2 pure or from alcoholic fermentation in tubular photobioreactor

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    A cianobactéria fotossintetizante Arthrospira platensis é conhecida por apresentar em sua biomassa altos teores protéicos (50-70%), presença do ácido graxo essencial γ-linolênico e diversas outras substâncias importantes para a alimentação humana e animal. Esses micro-organismos são capazes de converter o CO2 em biomassa de grande potencial na área de alimentos. Durante a fermentação alcoólica, a produção de CO2 é da mesma ordem de grandeza da produção de etanol e, considerando a crescente demanda interna e externa por esse combustível, seria importante que houvesse um processo que fixasse esse CO2, transformando-o em um produto que poderia ser útil para a nossa população. Adicionalmente, o uso de uma fonte de nitrogênio de baixo custo (uréia) em reatores tubulares contribuiria para a redução do custo de produção da A. platensis. O objetivo desse trabalho foi avaliar os parâmetros cinéticos e bioenergéticos, bem como a composição centesimal da A. platensis cultivadas em biorreator tubular, alimentados com CO2 proveniente de fermentação alcoólica ou com utilização de CO2 puro, para o controle do pH, sob diferentes intensidades luminosas (I) e fontes de nitrogênio (N) adicionadas por meio de processo descontínuo alimentado. Os resultados mostraram que maiores valores de I proporcionaram maiores valores de concentração celular máxima (Xm) e produtividade em células (Px), mas não influenciaram nos valores do fator de conversão de nitrogênio em células (YX/N). As diferentes fontes de CO2 não influenciaram nos valores de Xm, Px, YX/N. O uso da uréia aumentou os valores de YX/N em relação aos cultivos com NO3-. Na composição centesimal, pode-se observar que I influenciou nos teores de clorofila, proteínas e lipídios, mas não influenciou nos teores de cinzas e carboidratos na biomassa final. Em relação aos parâmetros bioenergéticos dos cultivos com CO2 puro, observou-se que os maiores valores de dissipação de energia de Gibbs foram obtidos em tempos mais curtos a 120-240 µmol de fótons m-2 s-1, independentemente do N selecionado, enquanto que o número de moles de fótons absorvidos pelas células para produzir um C-mol de biomassa foi maior nas culturas com NO3-, independentemente do I. As frações da energia direcionada para a síntese de ATP e fixada pela célula foram superiores em culturas com uréia quando comparadas com as culturas com NO3-, que se revelou uma fonte de nitrogênio capaz de sustentar o crescimento energicamente da A. platensis.Photosynthetic cyanobacterium A. platensis contains in its biomass high protein content (50-70%), γ-linolenic acid and many other substances important for health human. These microorganisms are capable of converting CO2 into biomass of great potential in the food industry. During the alcoholic fermentation, the production of CO2 has the same magnitude of the production of ethanol. Considering the increasingly global demand for this fuel, a process to fix this CO2 is of utmost importance. Furthermore, the use of low cost nitrogen source (urea) in tubular reactors would contribute to reducing the production cost of A. platensis. Therefore, the purpose of this work was to evaluate the kinetic and bioenergetics parameters, as well as the chemical composition of biomass obtained in A. platensis cultures in tubular bioreactor using CO2 from alcoholic fermentation or pure CO2 to control the pH under different light intensity (I) and nitrogen sources (N). The results showed that higher I induced higher maximum cell concentration (Xm) and cell productivity (Px) values, but it did not exert any influence on the nitrogen-cell conversion factor (YX/N). Urea increased the YX/N values compared to use of NO3-. In the centesimal composition of biomass, it can be observed that I influenced the chlorophyll, protein, and lipid contents, but not influenced the carbohydrate and ash contents. For bioenergetics parameters, it was observed that the highest Gibbs energy dissipation values for cell growth and maintenance were obtained in shorter time at 120-240 mol photons m-2 s-1 in both nitrogen sources, while the moles of photons absorbed by the system to produce one C-mol biomass was higher in cultures with NO3-. The highest values of the molar production of O2 and consumption of H+ were obtained at the highest I values, using NO3-. 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 fractions to ATP production and light fixation by the photosynthetic apparatus, as well as a lower fraction released as heat. Thanks to this better bioenergetic situation, urea appears to be a quite promising low-cost, alternative nitrogen source for A. platensis cultures in photobioreactors
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