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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
11

Mécanismes moléculaires impliqués dans la formation de biofilm à l’interface eau-composés organiques hydrophobes / Molecular mecanisms involved in the bacterial biofilm formation at the water-hydrophobic organic compound interface

Arantxa, Camus Etchecopar 28 November 2014 (has links)
Les composés organiques hydrophobes (HOC), une grande famille de molécules naturelles ou d’origine anthropique incluant les lipides et les hydrocarbures, constituent une part significative de la matière organique dans les écosystèmes marins. Du fait de leur faible solubilité dans l’eau, les bactéries qui les dégradent requièrent la mise en place de fonctions cellulaires spécifiques permettant d’augmenter la fraction assimilable de ces HOC. La formation de biofilms à l’interface eau-HOC est une de ces stratégies adaptatives. C’est le cas pour Marinobacter hydrocarbonoclasticus SP17, modèle d’étude utilisé au laboratoire, qui est capable de former des biofilms sur un large spectre de HOC métabolisables tels que les alcanes, les triglycérides et les alcools gras. Le but de mes recherches consistait à améliorer la compréhension du processus d’adhésion et de développement des biofilms sur les HOC, à travers la caractérisation fonctionnelle de 10 gènes candidats mis en évidence lors d’analyses d’expression en protéomique et en transcriptomique. Pour mener à bien ce projet, des outils génétiques et une caractérisation fonctionnelle propre à chaque gène ont dû être développés. L’étude fonctionnelle du gène MARHY2686 a relevé son implication dans la formation de biofilm sur les alcanes. La co-expression de MARHY2686 et des gènes adjacents MARHY2687 et MARHY2685 en transcriptomique, leur distribution phylogénétique et leur conservation de la synthénie suggèreraient que ces trois gènes soient impliqués dans le même processus biologique. D’après l’identité forte de 36 % qui existe entre la protéine MARHY2686 et une protéine périplasmique AdeT d’un système de pompe d’efflux tripartite d’Acinetobacter baumanii, cette protéine, en association avec MARHY2687 et MARHY2685, pourrait faire partie d’un système de ce type. Par ailleurs, des observations ont permis d’envisager une implication potentielle de ce gène dans l’assimilation des HOC ou dans l’accumulation des réserves lipidiques intracellulaires. M. hydrocarbonoclasticus SP17 utilise les pili de type IV lors de la formation de biofilm sur les HOC. Ces appendices interviennent lors de l’adhésion de cette souche à des HOC ainsi que dans un processus de détachement d’un support hydrophobe. Les pili pourraient soit intervenir directement pour permettre à la bactérie de se détacher de la surface à laquelle elle s’est adhérée, soit indirectement par l’action de bactériophages. La présence d’une mobilité de type twitching sur les HOC a pu être également envisagée. Enfin, le rôle du système de sécrétion de type VI (T6SS), connu pour permettre à la bactérie d’interagir avec une cellule hôte, lors de la formation de biofilm mono-spécifique sur HOC, où aucun autre microorganisme que M. hydrocarbonoclasticus SP17 n’est présent, a été étudié. / Hydrophobic organic compounds (HOC), a large family of naturally-produced or anthropogenic molecules including lipids and hydrocarbons, represent a significant part of organic matter in marine ecosystems. Because of their low solubility in water, bacteria that degrade those compounds require the establishment of specific cell functions to increase their biodisponibility. Biofilm formation in water-HOC interface is one of these adaptations. The model of bacteria used in our laboratory, Marinobacter hydrocarbonoclasticus SP17, is able to form a biofilm on a wide range of HOC, such as alkanes, fatty alcohols and triglycerides, in order to use them as a carbon and energy source. The main purpose of my work was to broaden the knowledge of how bacteria adhere to and from biofilms on HOC, through the functional characterization of 10 candidate genes highlighted during proteomic and transcriptomic studies. Genetic tools and a gene-specific functional characterization have been developed in order to carry out this project. Functional study conducted on MARHY2686 revealed its involvement in the formation of biofilm on alkanes. Co-expression of MARHY2686 and the adjacent genes MARHY2687 and MARHY2685 durnig transcriptomic analysis together with their phylogenetic distribution and synteny conservation suggest that these three genes are involved in the same biological process. According to the high peptide sequence identity between MARHY2686 and AdeT, a periplasmic protein of a tripartite efflux pump system of Acinetobacter baumanii, MARHY2686 in combination with MARHY2687 and MARHY2685 could be the components of such a system. Other phenotypic observations would consider the involvement of MARHY2686 either in the assimilation of HOC or in the accumulation of intracellular lipid reserves. M. hydrocarbonoclasticus SP17 uses type IV pili during biofilm formation on HOC. These appendages are involved in the adhesion of this strain to and in a detachment process from HOC. Type IV pili could either act directly to allow bacteria to detach from the surface to which it is adhered, or indirectly through the action of bacteriophages. The presence of twitching motility on HOC has also been suggested. Finally, the role of the type VI secretion system (T6SS), a well-known protein system which allows interactions between bacteria and host cells, during the formation of a mono-species biofilm on HOC where no other microorganism than M. hydrocarbonoclasticus SP17 is present, has been studied.
12

Análise do perfil de genes relacionados ao SST5 e SST6, formação de biofilme e invasão em cepas de Escherichia coli enteroagregativa / Profile analysis of genes related to SST5 and SST6, biofilm formation and invasion in strains EAEC

Felipe da Silva Sarges 31 August 2011 (has links)
Conselho Nacional de Desenvolvimento Científico e Tecnológico / A Escherichia coli enteroagregativa (EAEC) é um patotipo emergente e heterogêneo que causa a diarréia aguda ou persistente em indivíduos de diferentes faixas etárias e em pacientes imunocomprometidos. Além disso, EAEC é um dos principais agentes etiológicos da diarréia dos viajantes. O padrão de aderência agregativa de EAEC está associado ao plasmídeo de aderência agregativa (pAA). Genes presentes no plasmídeo e no cromossomo codificam proteínas envolvidas na secreção extracelular de fatores de virulência na superfície ou diretamente na célula hospedeira. A capacidade de produção de muco e biofilme, elaboração de toxinas, aderência e indução de inflamação intensa na mucosa intestinal são importantes características da patogenicidade de EAEC. Nesse estudo, determinamos o perfil genotípico de genes do sistema de secreção Tipo V (SST5) e sistema de secreção Tipo VI (SST6) em cepas de EAEC. Os genes do SST5 ocorreram com mais frequência que os genes do SST6. A presença de pelo menos um gene do SST5 foi detectada em 79% das cepas, enquanto que os genes relacionados ao SST6 foram detectados em apenas 42% das cepas analisadas. A produção de biofilme foi observada em teste quantitativo e verificamos que 67% das cepas produziram biofilme. No teste qualitativo, o tipo de biofilme que predomina é o biofilme moderado (11 cepas), seguido do biofilme forte (9 cepas) e do biofilme discreto (4 cepas). A presença ou ausência de genes do SST5 e SST6 não parece interferir com a capacidade de produção de biofilme, nem com o tipo de biofilme formado. Em ensaios de citotoxicidade, apenas 25% das cepas EAEC (sobrenadante) causaram redução significativa na viabilidade de células T84 avaliada pelo teste de redução com MTT. Nossos resultados mostram que as cepas EAEC isoladas de crianças com diarréia aguda ou de grupo controle são invasoras para células T84. Ao compararmos a capacidade invasora das cepas clinicas e controle, observamos que a média do índice de internalização obtido nas 15 cepas do grupo clinico foi de 5,7% 1,7 e para as 9 cepas do grupo controle foi de 2.4 % 0,7; entretanto essa diferença observada não foi estatisticamente significativa. Não foi possível correlacionar o perfil genotípico dos genes do SST5 e SST6 com o perfil fenotípico analisado (formação de biofilme, citotoxicidade e invasão).O que pode ser atribuído a heterogeneidade genotípica e fenotípica, uma característica relevante de cepas EAEC. / Enteroaggregative Escherichia coli (EAEC) is an emerging and heterogeneous pathotype that causes acute or persistent diarrhea in individuals of different age groups and HIV-positive patients. In addition, EAEC is a major etiologic agent of travelers' diarrhea. The pattern of aggregative adherence of EAEC is associated with the aggregative adherence plasmid (pAA). Genes present in the plasmid and chromosome encode proteins involved in extracellular secretion of virulence factors on the surface or directly into the host cell. The production of mucus, biofilm and toxins; and induction of intense inflammation in the intestinal mucosa and mucosal adherence are major features of EAEC pathogenesis. In this study, we determined the genotypic profile of type V secretion system (T5SS) and type VI secretion system (T6SS) genes in EAEC strains. T5SS genes occurred more frequently than T6SS genes. The presence of at least one T5SS gene was detected in 79% of the strains, while genes related with T6SS were detected in only 42% of the strains tested. The biofilm production was observed in quantitative test, we have found that 67% of strains produced biofilm. In the qualitative test, we detected three distinctive patterns of biofilm formation: moderate (11 strains), strong (9 strains) and discrete biofilm (4 strains). The presence or absence of T5SS and T6SS genes do not interfere with the ability to produce biofilm, neither with biofilm pattern. In cytotoxicity assays, only 25% of EAEC strains (supernatant)resulted in significant reduction of T84 cells activity as evaluated by MTT reduction test. Our results show that EAEC strains isolated from children with acute diarrhea or the control group are able to invade T84 cells. When comparing the invasive ability of clinical and control strains, we observed that the average rate of internalization obtained in 15 clinical strains was 5.7% 1.7, for the nine strains of control group was 2.4% 0. 7, however this difference was not statistically significant. It was not possible to correlate the genotypic profile of T5SS and T6SS genes with the phenotypic profile analysed (biofilm formation, cytotoxicity and invasion), which can be attributed to genotypic and phenotypic heterogeneity, an important characteristic of EAEC strains
13

Análise do perfil de genes relacionados ao SST5 e SST6, formação de biofilme e invasão em cepas de Escherichia coli enteroagregativa / Profile analysis of genes related to SST5 and SST6, biofilm formation and invasion in strains EAEC

Felipe da Silva Sarges 31 August 2011 (has links)
Conselho Nacional de Desenvolvimento Científico e Tecnológico / A Escherichia coli enteroagregativa (EAEC) é um patotipo emergente e heterogêneo que causa a diarréia aguda ou persistente em indivíduos de diferentes faixas etárias e em pacientes imunocomprometidos. Além disso, EAEC é um dos principais agentes etiológicos da diarréia dos viajantes. O padrão de aderência agregativa de EAEC está associado ao plasmídeo de aderência agregativa (pAA). Genes presentes no plasmídeo e no cromossomo codificam proteínas envolvidas na secreção extracelular de fatores de virulência na superfície ou diretamente na célula hospedeira. A capacidade de produção de muco e biofilme, elaboração de toxinas, aderência e indução de inflamação intensa na mucosa intestinal são importantes características da patogenicidade de EAEC. Nesse estudo, determinamos o perfil genotípico de genes do sistema de secreção Tipo V (SST5) e sistema de secreção Tipo VI (SST6) em cepas de EAEC. Os genes do SST5 ocorreram com mais frequência que os genes do SST6. A presença de pelo menos um gene do SST5 foi detectada em 79% das cepas, enquanto que os genes relacionados ao SST6 foram detectados em apenas 42% das cepas analisadas. A produção de biofilme foi observada em teste quantitativo e verificamos que 67% das cepas produziram biofilme. No teste qualitativo, o tipo de biofilme que predomina é o biofilme moderado (11 cepas), seguido do biofilme forte (9 cepas) e do biofilme discreto (4 cepas). A presença ou ausência de genes do SST5 e SST6 não parece interferir com a capacidade de produção de biofilme, nem com o tipo de biofilme formado. Em ensaios de citotoxicidade, apenas 25% das cepas EAEC (sobrenadante) causaram redução significativa na viabilidade de células T84 avaliada pelo teste de redução com MTT. Nossos resultados mostram que as cepas EAEC isoladas de crianças com diarréia aguda ou de grupo controle são invasoras para células T84. Ao compararmos a capacidade invasora das cepas clinicas e controle, observamos que a média do índice de internalização obtido nas 15 cepas do grupo clinico foi de 5,7% 1,7 e para as 9 cepas do grupo controle foi de 2.4 % 0,7; entretanto essa diferença observada não foi estatisticamente significativa. Não foi possível correlacionar o perfil genotípico dos genes do SST5 e SST6 com o perfil fenotípico analisado (formação de biofilme, citotoxicidade e invasão).O que pode ser atribuído a heterogeneidade genotípica e fenotípica, uma característica relevante de cepas EAEC. / Enteroaggregative Escherichia coli (EAEC) is an emerging and heterogeneous pathotype that causes acute or persistent diarrhea in individuals of different age groups and HIV-positive patients. In addition, EAEC is a major etiologic agent of travelers' diarrhea. The pattern of aggregative adherence of EAEC is associated with the aggregative adherence plasmid (pAA). Genes present in the plasmid and chromosome encode proteins involved in extracellular secretion of virulence factors on the surface or directly into the host cell. The production of mucus, biofilm and toxins; and induction of intense inflammation in the intestinal mucosa and mucosal adherence are major features of EAEC pathogenesis. In this study, we determined the genotypic profile of type V secretion system (T5SS) and type VI secretion system (T6SS) genes in EAEC strains. T5SS genes occurred more frequently than T6SS genes. The presence of at least one T5SS gene was detected in 79% of the strains, while genes related with T6SS were detected in only 42% of the strains tested. The biofilm production was observed in quantitative test, we have found that 67% of strains produced biofilm. In the qualitative test, we detected three distinctive patterns of biofilm formation: moderate (11 strains), strong (9 strains) and discrete biofilm (4 strains). The presence or absence of T5SS and T6SS genes do not interfere with the ability to produce biofilm, neither with biofilm pattern. In cytotoxicity assays, only 25% of EAEC strains (supernatant)resulted in significant reduction of T84 cells activity as evaluated by MTT reduction test. Our results show that EAEC strains isolated from children with acute diarrhea or the control group are able to invade T84 cells. When comparing the invasive ability of clinical and control strains, we observed that the average rate of internalization obtained in 15 clinical strains was 5.7% 1.7, for the nine strains of control group was 2.4% 0. 7, however this difference was not statistically significant. It was not possible to correlate the genotypic profile of T5SS and T6SS genes with the phenotypic profile analysed (biofilm formation, cytotoxicity and invasion), which can be attributed to genotypic and phenotypic heterogeneity, an important characteristic of EAEC strains

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