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A limited role for SsrA/B in persistent Salmonella Typhimurium infections in pigs

Boyen, F.
Pasmans, F.
Van Immerseel, F.
Morgan, E.
Botteldoorn, N
Heyndrickx, M.
Volf, J.
Favoreel, H.
Hernalsteens, J.P.
Ducatelle, R.
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Abstract

Virulence genes regulated by the SsrA/B system are indispensable for systemic disease in BALB/c mice. The role of this regulating system in the pathogenesis of Salmonella Typhimurium infections in pigs is not documented. In the present study, the interactions of Salmonella Typhimurium and an ssrA/B mutant were compared in vitro and in vivo. The ssrA/B mutant strain displayed decreased Salmonella Pathogenicity Island 2 (SPI-2) expression levels, showed a replication defect in mouse macrophages and was attenuated in a mouse model after oral inoculation. Using real time qRT-PCR and a porcine ileal loop model, it was shown that the ssrA/B mutant strain was not significantly attenuated in overall virulence and SPI-1 expression in specific. Flowcytometric analysis demonstrated that the ssrA/B mutant strain was defective in intracellular replication in porcine macrophages. After oral inoculation of piglets with the wild type strain or the ssrA/B mutant strain, the animals of both groups excreted Salmonella and were colonized by Salmonella to the same extent. In an intravenous mixed infection model, the ssrA/B mutant strain was defective in the colonization of several internal organs. These results suggest that the ssrA/B gene of Salmonella Typhimurium plays a limited role in the persistent intestinal colonization of pigs

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2008-04-30
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a, analysi, analysis, Animal, Animals, article, Bacterial Proteins, Belgium, disease, Diseases, expression, factors, Faculty, Female, Flow Cytometry, gene, Gene Expression Regulation,Bacterial, Genes, genetics, Genomic Islands, Group, im, in vivo, INFECTION, infections, interaction, interactions, Intestines, IS, IT, journal, LEVEL, levels, Macrophage, Macrophages, Medicine, mice, Mice,Inbred BALB C, microbiology, MODEL, Mutation, Organ Specificity, pathogenicity, pathology, Pig, Pigs, present, Print, protein, Proteins, Random Allocation, Research, Research Support, result, results, Rna, RNA,Bacterial, Role, Salmonella, Salmonella Infections,Animal, Salmonella typhimurium, SB - IM, specific, strain, study, Swine, Swine Diseases, System, time, Transcription Factors, Type, Universities, university, veterinary, Veterinary Medicine, virulence
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