99 resultados para Photobacterium indicum


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The number of bacteria and yeasts occurring in the organic matter inside the nests were determined both in colonies of leaf-cutting ants reared on Eucaliptus alba (control) or Sesamum indicum (experimental). Sesame leaves induce imbalance and nests usually die. In control nests the number of bacteria in newer sponge and in older sponge were similar (3.6 x 105 and 1.4 x 105 CFU/g, respectively) whereas in waste deposit the mean reached 7.3 x 107 CFU/g. The most Probable Number (MPN/g) of yeasts were 2.7 x 104, 1.3 x 105/g and 2.2 x 104 for newer sponge, older sponge and waste deposit, respectively. Using material from older sponge for comparison, the number of bacteria and yeasts reared on sesame leaves showed significant differences. The number of bacteria was 3.3 x 107 CFU/g, a value close to that found in waste deposit of normal (control) nests, whereas the number of yeasts was 6.7 x 105/g. These changes in microbial populations due to the effect of sesame leaf uptake could be a significant factor in nest imbalance and mortality when leaf-cutting ants are consuming toxic plants.

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Extracts of different sesame plant (Sesamum indicum, Linnaeus) organs were tested through ingestion and contact experiments to investigate their toxicity to Atta sexdens rubropilosa (Forel) workers. Dichloromethane extracts of seeds were toxic to the leaf-cutting ants and the factor responsible for the toxicity does not show seasonal occurrence.

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Extracts of the ripe seeds of the sesame plant (Sesamum indicum, Linnaeus) were tested through contact experiments to investigate their toxicity to Atta sexdens rubropilosa workers. Dichloromethane extract of seeds was toxic to the ants and the factor responsible for this effect was distributed through the ethyl acetate fraction. This fraction was divided into four sub fractions composed of: A) triglycerides, B) monoglycerides + diglycerides + triglycerides, C) diglycerides + sesamoline + sesamine and D) sesamine. However, when these sub fractions were separated, no toxicity was observed. Therefore, in order to determine why the activity was lost, the concentration of each sub fraction was duplicated, and the possible combinations among them were also tested. We concluded that the toxicity to the ants is due mainly to a mixture of triglycerides, and sesamoline or the combination of sesamoline + sesamine can be a synergistic factor in this fraction.

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Four Mucor hiemalis strains (M1, M2, M3 and M4), isolated from soil at a depth of 0 - 15 cm in the Juréia-Itatins Ecology Station (JIES), in the state of São Paulo, Brazil and were evaluated for the production of γ-linolenic (GLA) and other unsaturated fatty acids. Five growth variables (temperature, pH, carbon source, nitrogen source, and vegetable oils) were studied. Liquid media containing 2% vegetable oil (palm oil, canola oil, soybean oil, sesame oil, or sunflower oil) or 2% carbohydrate (fructose, galactose, glycerol, glucose, lactose, maltose, sucrose, sorbitol or xylose) and 1% yeast extract as a nitrogen source were used. The greatest biomass production was observed with M3 and M4 strains in palm oil (91.5 g l -1) and sunflower oil (68.3 g l -1) media, respectively. Strain M4 produced greater quantities of polyunsaturated acids in medium containing glucose. The GLA production in the M4 biomass was 1,132.2 mg l -1 in glucose medium. Plant oils were inhibitors of fatty acid production by these strains. © 2007 Academic Journals.

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The evaluation of diversity in germplasm collections is important for both plant breeders and germplasm curators to optimize the use of the variability available. Diversity can be estimated by different genetic markers. The purpose of this study was to estimate the genetic divergence of 30 morphological and agronomic traits in 108 sesame genotypes by multivariate analysis. The Cole-Rodgers index was used to establish the dissimilarity matrices. The principal component analysis identified the traits that contributed most to the divergence and the genotypes were clustered by Tocher's optimization. Despite the narrow genetic basis, the markers were efficient to characterize the genotypes and identify the most similar groups or duplicate and divergent genotypes. Greatest variation was found for the traits number of capsules per plant and grain yield.

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

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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As borboletas do grupo Ithomiinae são caracterizadas por espécies estritamente neotropicais, consideradas modelos de anéis miméticos e apresentam uma taxonomia relativamente bem conhecida. Por estas razões são frequentemente utilizadas como indicadores biológicos. O presente estudo teve como intuito caracterizar a comunidade de Ithomiinae em uma área de Floresta Ombrófila Densa (terra firme), localizada na Estação Científica Ferreira Penna (Floresta Nacional de Caxiuanã), município de Melgaço, estado do Pará, além de testar a eficiência do protocolo de captura deste grupo. Para isto foram realizadas coletas em uma área de 500 x 500 m, utilizando dois métodos. O primeiro foi o de armadilhas contendo isca de folhas e inflorescências de Heliotropium indicum dentro de cinco parcelas amostrais de 100 x 100 m, sendo que cada uma continha cinco pares de armadilhas (uma sub-bosque e outra no dossel da floresta). O outro método foi o de coletas com redes entorno lógicas entre as parcelas. O período da amostragem foi nos meses de julho, outubro de 2004 e janeiro a novembro de 2005 (cinco dias de coleta mensais). Com um esforço total de 2000 armadilha horas por mês e 40 redes horas por mês foram registrados 1844 indivíduos de Ithomiinae, pertencentes a 14 espécies. As espécies Hypothyris ninonia (Hübner, [1806]) e Napeogenes rhezia (Geyer, [1834]) foram as espécies mais abundantes. Foi encontrada uma diversidade homogênea tanto no sentido horizontal quanto vertical, apesar de ser observada uma preferência da maioria das espécies pelo ambiente de sub-bosque. Foi registrada uma predominância de machos na comunidade da área. Como o grupo apresenta diferenças comportamentais entre indivíduos machos e fêmeas, essa predominância de machos nos registros pode ser resultado de uma seleção dos métodos na captura dos espécimes. Não foi encontrada uma diferença significativa entre a riqueza de espécies registrada pelos diferentes métodos, apesar de três espécies serem obtidas exclusivamente pelas redes, e outras duas pelas armadilhas de isca. Houve uma predominância nos registros de Methona sp. pelas redes entomológicas, sugerindo uma atração diferenciada da espécie pela isca utilizada. Verificou-se uma correlação negativa entre o número de indivíduos coletados e o aumento dos índices de pluviosidade. O estudo apresentou uma baixa riqueza de espécies com amostragem intensiva, a comunidade é representada por espécies abundantes e raras; e apresenta oscilações na abundância conforme a precipitação pluviométrica. As armadilhas de sub-bosque foram mais eficiente. Sugere-se para Ithomiinae a utilização de somente armadilhas no subbosque com isca de Heliotropium indicum.

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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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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Programa de doctorado en Sanidad Animal y Seguridad Alimentaria

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Background: Studies of oyster microbiomes have revealed that a limited number of microbes, including pathogens, can dominate microbial communities in host tissues such as gills and gut. Much of the bacterial diversity however remains underexplored and unexplained, although environmental conditions and host genetics have been implicated. We used 454 next generation 16S rRNA amplicon sequencing of individually tagged PCR reactions to explore the diversity of bacterial communities in gill tissue of the invasive Pacific oyster Crassostrea gigas stemming from genetically differentiated beds under ambient outdoor conditions and after a multifaceted disturbance treatment imposing stress on the host. Results: While the gill associated microbial communities in oysters were dominated by few abundant taxa (i.e. Sphingomonas, Mycoplasma) the distribution of rare bacterial groups correlated to relatedness between the hosts under ambient conditions. Exposing the host to disturbance broke apart this relationship by removing rare phylotypes thereby reducing overall microbial diversity. Shifts in the microbiome composition in response to stress did not result in a net increase in genera known to contain potentially pathogenic strains. Conclusion: The decrease in microbial diversity and the disassociation between population genetic structure of the hosts and their associated microbiome suggest that disturbance (i.e. stress) may play a significant role for the assembly of the natural microbiome. Such community shifts may in turn also feed back on the course of disease and the occurrence of mass mortality events in oyster populations.

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