1000 resultados para Moynet, Léon
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UANL
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UANL
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Les illustrations ont été retirées de la version numérique pour des raisons de droit d'auteur.
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L’agent régulateur des temps sociaux de la famille québécoise a été la religion catholique pendant des décennies. Les mouvements d’après-guerre et la Révolution tranquille, ont amené un changement de paradigme avec la laïcisation des institutions et la multiplication des programmes sociaux de l’État-providence. Pour cerner l’importance de ce changement, nous avons utilisé la clef analytique de Léon Gérin pour produire une analyse comparative entre deux familles à deux époques : en 1886 et en 2010. Or, au moment où l’État est de plus en plus présent dans toutes les sphères de la vie de la famille tout en leur laissant une autonomie et une liberté, la population se montre de plus en plus sceptique envers les institutions étatiques. Un fossé s’est créé entre la société officielle, celle du social, des institutions, et la société officieuse, celle de la culture populaire qui agit à partir de l’esprit de corps de son groupe, virtuel ou non. La crise de confiance des gens envers les institutions annonce un nouveau changement de paradigme. La rationalité qui a été le moteur de la modernité fait graduellement place à l’émotionnel et à la valeur du temps présent. Le travail, agent régulateur qui comblait les besoins matériels à la modernité, serait remplacé progressivement par des besoins immatériels devenant l’agent régulateur des temps sociaux de la famille.
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Resumen tomado de la publicación
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A spontaneous mutant (M113) of Escherichia coli AG100 with an unstable multiple antibiotic resistance (Mar) phenotype was isolated in the presence of tetracycline. Two mutations were found: an insertion in the promoter of lon (lon3::IS186) that occurred first and a subsequent large tandem duplication, dupIS186, bearing the genes acrAB and extending from the lon3::IS186 to another IS186 present 149 kb away from lon. The decreased amount of Lon protease increased the amount of MarA by stabilization of the basal quantities of MarA produced, which in turn increased the amount of multidrug effux pump AcrAB-TolC. However, in a mutant carrying only a lon mutation, the overproduced pump mediated little, if any, increased multidrug resistance, indicating that the Lon protease was required for the function of the pump. This requirement was only partial since resistance was mediated when amounts of AcrAB in a lon mutant were further increased by a second mutation. In M113, amplification of acrAB on the duplication led to increased amounts of AcrAB and multidrug resistance. Spontaneous gene duplication represents a new mechanism for mediating multidrug resistance in E. coli through AcrAB-TolC.
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Thirteen spontaneous multiple-antibiotic-resistant (Mar) mutants of Escherichia coli AG100 were isolated on Luria-Bertani (LB) agar in the presence of tetracycline (4 microg/ml). The phenotype was linked to insertion sequence (IS) insertions in marR or acrR or unstable large tandem genomic amplifications which included acrAB and which were bordered by IS3 or IS5 sequences. Five different lon mutations, not related to the Mar phenotype, were also found in 12 of the 13 mutants. Under specific selective conditions, most drug-resistant mutants appearing late on the selective plates evolved from a subpopulation of AG100 with lon mutations. That the lon locus was involved in the evolution to low levels of multidrug resistance was supported by the following findings: (i) AG100 grown in LB broth had an important spontaneous subpopulation (about 3.7x10(-4)) of lon::IS186 mutants, (ii) new lon mutants appeared during the selection on antibiotic-containing agar plates, (iii) lon mutants could slowly grow in the presence of low amounts (about 2x MIC of the wild type) of chloramphenicol or tetracycline, and (iv) a lon mutation conferred a mutator phenotype which increased IS transposition and genome rearrangements. The association between lon mutations and mutations causing the Mar phenotype was dependent on the medium (LB versus MacConkey medium) and the antibiotic used for the selection. A previously reported unstable amplifiable high-level resistance observed after the prolonged growth of Mar mutants in a low concentration of tetracycline or chloramphenicol can be explained by genomic amplification.
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Digitalisat der Ausg. [S.l.], 1718/19
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[David Gans]
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fon Mōše Šemû'ēl Neiman
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Übers. d. Hauptsacht.: Festtagsgebetbuch