899 resultados para Bacillus thuringiensis.


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Con el fin de conocer el crecimiento, rendimiento y toxicidad de bacillus thuringiensis var kurstaki 3ª3b producida en diferente medios de cultivo se llevaron a cabo fermentación en frasco Erlenmeyer el medio M-25, el medio base nacional y el medio base balanceado. Además se evaluaron este medio después de ser sometido a un proceso de hidrolisis. Aunque no son optimo, los medios probados en este estudio, se puede considerar adecuados para el crecimiento de bacillus thuringiensis. La hidrolisis aplicada al medio base nacional no produce crecimiento mayor de bacillus thuringiensis en comparación con el medio sin hidrolisis y induciendo a la bacteria la necesidad de un periodo más largo de adaptación durante el cual su crecimiento fue sostenidamente lento. La causa de este fenómeno es aun derminada. El balance nutricional realizado a la media base nacional resulta en un crecimiento inicial rápido de bacillus thuringiensis llegando al máximo punto de crecimiento entre 30 horas comparado con 72 horas en la base nacional. Sin embargo, la producción de esporas en este medio es inferior a la media base nacional bajo condiciones de fermentación utilizada. La cepa nativa de bacillus thuringiensis var kurstaki 3ª3b cultivada en las medias bases nacionales y balanceadas muestra toxicidad para las larvas de plutella xylostella en las concentraciones de 0.000001 a 0.01 mg/ml.

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As abelhas melíferas efetuam numerosas e importantes atividades que favorecem a humanidade e, na agricultura familiar, contribuem para a sustentabilidade de sistemas de produção de base ecológica, favorecendo a polinização dos cultivos, a produção de mel, pólen e própolis para alimentação da família e a geração de novas fontes de renda. Na apicultura, a conservação dos favos contra o risco de ataque e destruição pelas traças-da-cera é assunto de interesse econômico e motivação de uma série de estratégias pelos apicultores. Com o objetivo de avaliar a possibilidade de uso de formulações comerciais de Bacillus thuringiensis como agente biológico de conservação natural de favos de cera de abelhas melíferas, foi testada a mortalidade de lagartas de Galleria mellonella a diferentes concentrações de B. thuringiensis e verificado o impacto destas concentrações sobre Apis mellifera africanizadas em fase larval. Testes foram conduzidos em laboratório com lagartas de G. mellonella e a campo com larvas de A. mellifera africanizadas, em delineamentos completamente casualizados, com seis tratamentos e quatro repetições, em concentrações próximas da dose de campo recomendada para o produto comercial à base de B. thuringiensis. Concluiu-se que a aplicação de B. thuringiensis nas maiores concentrações utilizadas apresenta efeito favorável ao controle de G. mellonella quando os favos são imersos no produto e que, porém, as mesmas concentrações apresentam efeito direto significativo sobre a mortalidade de larvas de A. mellifera.

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The feeding of neonate larvae of Pieris brassicae (Order Lepidoptera) on leaves of brassica plants that had been colonised by Bacillus thuringiensis resulted in the death of 35% of the population within 72 h. The bacteria Multiplied in the cadavers, resulting in an increase of about 50-fold compared to the living insects. Surviving insects showed no ill effects during the time of the study. There was negligible multiplication of B. thuringiensis in the frass. (C) 2009 Elsevier Inc. All rights reserved.

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Seedlings of clover (Triflorium hybridum) were colonized by Bacillus thuringiensis when spores and seeds were co-inoculated into soil. Both a strain isolated in the vegetative form from the phylloplane of clover, 2810-S-4, and a laboratory strain, HD-1, were able to colonize clover to a density of about 1000 CFU/g leaf when seeds were sown in sterile soil and to a density of about 300 CFU/g leaf in nonsterile soil. A strain lacking the characteristic insecticidal crystal proteins produced a similar level of colonization over a 5-week period as the wild type strain, indicating that crystal production was not a mitigating factor during colonization. A small plasmid, pBC16, was transferred between strains of B. thuringiensis when donor and recipient strains were sprayed in vegetative form onto leaves of clover and pak choi (Brassica campestris var. chinensis). The rate of transfer was about 0.1 transconjugants/recipient and was dependent on the plant species. The levels of B. thuringiensis that naturally colonized leaves of pak choi produced negligible levels of mortality in third instar larvae of Pieris brassicae feeding on the plants. Considerable multiplication occurred in the excreted frass but not in the guts of living insects. Spores in the frass could be a source of recolonization from the soil and be transferred to other plants. These findings illustrate a possible cycle, not dependent on insect pathology, by which B. thuringiensis diversifies and maintains itself in nature.

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The chromosomal genotype, as judged by multi locus sequence typing, and the episomal genotype, as judged by plasmid profile and cry gene content, were analyzed for a collection of strains of Bacillus thuringiensis. These had been recovered in vegetative form over a period of several months from the leaves of a small plot of clover (Trifolium hybridum). A clonal population structure was indicated, although greater variation in sequence types (STs) was discovered than in previous collections of B. cereus/B. thuringiensis. Isolates taken at the same time had quite different genotypes, whereas those of identical genotypes were recovered at different times. The profiles of plasmid content and cry genes generally bore no relation to each other nor to the STs. Evidently, although relatively little recombination was occurring in the seven chromosomal genes analyzed, a great deal of conjugal transfer, and perhaps recombination, was occurring involving plasmids. A clinical diarrheal isolate of B. cereus and the commercial biopesticide strain HD-1 of B. thuringiensis, both included as out-groups, were found to have very similar STs. This further emphasizes the role of episomal elements in the characteristics and differentiation of these two species.

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AIM: To investigate the effect of repeated culture in a rich medium on certain genetic, metabolic, pathogenic and structural characteristics of fresh isolates of Bacillus thuringiensis. METHODS AND RESULTS: Four strains of B. thuringiensis, which had been isolated in vegetative form from leaf surfaces, were grown for 500 generations in batch culture in a rich medium. One of the strains, S4g, differed from the parent in the following respects: greater cell width; changed plasmid profile; complete loss of ability to produce delta-endotoxins; loss of ability to produce beta-exotoxin and disruption of vip3 gene; radically different fatty acid composition; and altered metabolic activity. Two of the other evolved strains (S1g and S6g) showed differences in fatty acid profiles compared with the parents. Genetic finger-printing showed that there were also mutations in the cry genes of two of the evolved strains (S1g and S2g). The delta-endotoxins of strain S6g were significantly less toxic to the larvae of Pieris brassica compared with those of the parent and it also differed in the plasmid content. CONCLUSION: Radical and unpredictable changes can occur in fresh isolates of B. thuringiensis when subjected to growth in the laboratory. SIGNIFICANCE AND IMPACT OF THE STUDY: This is the first analysis of a Gram positive and biotechnologically significant bacterium after repeated laboratory culture. It is of great relevance to the biotechnological exploitation of B. thuringiensis that prolonged growth of environmental isolates on laboratory culture media can have profound effects on their structure, genome and virulence determinants.

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Two media were developed which specifically allow the cultivation of Bacillus thuringiensis while it is in the vegetative as opposed to the spore form. Using these media B. thuringiensis was shown conclusively for the first time to exist in an active form on the phylloplane. The profile of its appearance in vegetative and spore form was followed over a growing season on clover (Trifolium hybridum) in the field. Three simultaneous and sudden rises and declines of both spore and vegetative cell densities were observed. The most common other spore-former on these leaves was Bacillus cereus but the fluctuations in appearance of these two very closely related species were not co-incident. Using specific PCR primers a considerable diversity of cry toxin gene types was found in isolates that had been recovered in vegetative form ([`]vegetative isolates') with the majority possessing multiple [delta]-endotoxin genes while some had only one of those tested. Bioassays against a lepidopteran insect of purified [delta]-endotoxins showed that they were no more potent than those from a laboratory-adapted strain. PCR primers for an internal region of the vip3A gene produced amplification in 70% of the vegetative isolates compared to 25% of the laboratory-adapted strains tested.

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Tesis (Maestría en Ciencias con Especialidad en Microbiología) UANL

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Tesis (Maestría en Ciencias con Especialidad en Inmunobiología) UANL

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Tesis (Maestría en Ciencias con Especialidad en Microbiología Industrial) UANL

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Tesis (Maestría en Ciencias con Especialidad en Microbiología Industrial) UANL