549 resultados para Leveduras oleaginosas


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A frequência de micoses invasivas causadas por fungos oportunistas, incluindo leveduriformes, vem aumentando significativamente nas últimas décadas e atinge principalmente indivíduos imunocomprometidos. A tribo Attini possui cerca de 230 espécies de formigas e todas possuem o hábito de cultivar e se alimentar de fungos. Algumas espécies cultivam o fungo mutualista em nódulos poligonais sólidos com 0,25 a 0,50mm de diâmetro, aproximadamente. No interior desses nódulos, encontram-se células na forma de leveduras, que quando semeadas em meio de cultura se desenvolvem como fungo filamentoso. Este tipo de fungicultura está restrito a algumas espécies do gênero Cyphomyrmex. Neste trabalho, isolamos 30 leveduras dos nódulos de oito ninhos de Cyphomyrmex transversus da região de Ilhéus (BA), e analisamos a susceptibilidade aos seguintes antifúngicos: Anfotericina B (AMB), Fluconazol (FCZ), Voriconazol (VCZ) e Itraconazol (ITZ). A caracterização das estirpes foi feita através de métodos morfológicos e moleculares, incluindo-se o sequenciamento dos domínios D1/D2 do rDNA. A avaliação da atividade antifúngica foi realizada através do método de microdiluição, de acordo com a norma M27-A2 (CLSI, 2002). Candida parapsilosis ATCC 22019 e Candida krusei ATCC 6258 foram utilizadas como controle. Os resultados foram interpretados segundo os pontos de corte (breakpoints) aplicados ao gênero Candida. As estirpes foram identificadas como Trichosporon asahii (18), T. coremiiforme (4), Candida carpophila (syn. C. guilliermondii) (4), Galactomyces candidum (syn. Geotrichum candidum) (3) e Cryptococcus laurentii (1). Todas as espécies são conhecidas por possuírem representantes que já foram relatados como patógenos oportunistas. Elas foram sensíveis aos azóis FCZ, VCZ e ITZ, com exceção de G. candidus, cujas estirpes apresentaram sensibilidade dose-dependente a FCZ e ITZ... (Resumo completo, clicar acesso eletrônico abaixo)

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The yeast Cryptococcus neoformans is the etiologic agent of cryptococcosis, an infectious cosmopolitan disease that affects humans. Although rare, this disease is potentially fatal, especially for immunocompromised hosts. This pathogen is frequently isolated from excrements of pigeons and parrots, with many environmental sources such as birds, pigeon droppings, eucalyptus leaves, decaying trees, towers, churches and places of storage of grain (the port area). The isolation of this microorganism has been obtained also from the aquatic environment. The identification of environmental sources is needed to protect human health, especially susceptible populations such as immunocompromised. Therefore, this study investigated the presence of Cryptococcus neoformans in yeast isolates obtained from samples of sea water and sand from three regions of São Paulo: São Sebastião Channel, Santos and Ubatuba. Isolates were analyzed according to micro-and macroscopic characteristics and biochemical tests: microculture, urease, ink nankin, auxanograma, zymogram and phenol. We analyzed 199 isolates, 175 of which had features suggestive for Cryptococcus spp. in microculture. All these 175 isolates were sown in the Christensen urea middle to verify the production of urease and submitted to the technique nankin ink to visualize the capsule. Of these, only 24 were selected for the next test that was the auxanograma (assimilation of carbohydrate and nitrogen). Of the 24, 10 were tested in zymograms (fermented sugar), from which 5 were selected for the phenoloxidase test in medium containing dopamine. None of the 5 isolates tested had black or brown color characteristic of Cryptococcus neoformans. According to these tests, we arrived at 5 isolates identified to the genus Cryptococcus, but not the neoformans specie

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The oil and biodiesel are oily substances which, if spilled or thrown out in the environment, can cause serious damages. In this context, bioremediation techniques can be used to the recovering of sites degradated by mineral or vegetable oil, besides them, the biodegradation. However, it is necessary that there are microorganism strains used to degradate the contaminant, previously selected for the fast, efficient and minimum impact remediation. The main objective of this study was to isolate microorganism strains coming from different ecological recesses and verify their potentiality on biodegradating oil and biodiesel. Strains of bacteria, fungi and yeasts were isolated from soils contaminated by hydrocarbons (diesel, gasoline, grease) before, by doing striations on culture plates. On the biodegradation tests, it was used the redox indicator, 2,6-dichlorophenol indophenol (DCPIP), then, after the indicador’s discoloration, the absorbance of the suspension obtained was measured. 46 different microorganism strains were isolated, and the oil, when it was used as a carbon resource, it was degradate easier than the biodiesel. The experiments showed that, in a period, the site impacted by oil spills recovers itself by the biodegradation, in aerobic conditions, by the redox activity.

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The consumption of minimally processed vegetables has been growing due to consumer demand for products easy to prepare. As it is extremely manipulated, this product can be contaminated with spoilage organisms such as yeasts, that have the ability to decrease the shelf life of food. In this sense, seeking to concerns about the resistance of microorganisms to sanitation methods for food industries and given the need for more studies of the antimicrobial power of ozone, this study aimed to isolate and identify the yeasts present in minimally processed vegetables, and check their antimicrobial resistance to sodium hypochlorite and ozone. 84 samples of minimally processed vegetables were collected. From them, 47 yeast cultures were isolated and submitted for identification and testing of resistance to sodium hypochlorite sanitizers (50, 100, 200 and 400 ppm) and ozone (0.25 and 0.5 ppm). From the total yeast isolated, 85.1% corresponds to Cryptococcus laurentii, 12.8% to Arxula adeninivorans and 2.1% to Debaryomyces hansenii var. fabryii. All of them were resistant to the sanitizers sodium hypochlorite and ozone at all concentrations tested. Given these observations, some actions must be taken during processing to avoid contamination with deteriorative microbiota.

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Isolate microorganisms that fermenting xylose to ethanol is a challenge to expand production of biofuels from lignocellulosic materials. For this work was tested fermentation of xylose by yeast strains isolated from grape skins (Vitis spp) in order to ethanol produce. The yeasts were grown in submerged fermentation with xylose as a carbohydrate source. Aliquots were taken every 24 hours to measure cell growth, sugar consumption and ethanol production. The yeast had an production ethanol average of 2.5 g / L and yield (Ye / s) 0.12 g / g, showing that they have the ability to produce ethanol from xylose.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)