Segmented filamentous bacteria in the rodent small intestine: Their colonization of growing animals and possible role in host resistance toSalmonella (original) (raw)
Abstract
The establishment and proliferation of a model population of autochthonous surface-associated microorganisms in the small bowel of growing rats (2–12 weeks of age) was studied. Segmented filamentous bacteria on the distal ileal villi were examined by scanning electron microscopy (SEM) and counted_in situ_ by transect line analysis. In young animals, these bacteria first colonized the villous base, but occupied all areas on the villus by adult age. Their distribution on Peyer's patches was also noted.
In growing animals, colonization of the ileal villi by filamentous bacteria was significantly correlated to the development of host resistance to fatal infection by orally-dosed_Salmonella enteritidis_. In animals given_Salmonella_ and examined by SEM and transmission EM (TEM), the pathogen was seen only on ileal tissue surfaces, predominantly the villous base, from which the autochthonous population was absent. Conversely, in animals with filamentous bacteria,Salmonella surface colonization was not observed. The results suggest a possible protective role for the surface flora in the small bowel.
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- Christian D. Garland
Present address: Faculty of Agricultural Science, University of Tasmania, G.P.O. Box 252C, 7001, Hobart, Tasmania, Australia
Authors and Affiliations
- School of Microbiology, University of New South Wales, P.O. Box 1, 2033, Kensington, N.S.W., Australia
Christian D. Garland & Adrian Lee - Biomedical Electron Microscope Unit, University of New South Wales, P.O. Box 1, 2033, Kensington, N.S.W., Australia
Melvyn R. Dickson
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- Christian D. Garland
You can also search for this author inPubMed Google Scholar - Adrian Lee
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Garland, C.D., Lee, A. & Dickson, M.R. Segmented filamentous bacteria in the rodent small intestine: Their colonization of growing animals and possible role in host resistance to_Salmonella_.Microb Ecol 8, 181–190 (1982). https://doi.org/10.1007/BF02010451
- Issue Date: October 1982
- DOI: https://doi.org/10.1007/BF02010451