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Salmonella crossness – a new serotype containing a new somatic (O) antigen, 67

Published online by Cambridge University Press:  15 May 2009

B. Rowe
Affiliation:
Salmonella and Shigella Reference Laboratory, Central Public Health Laboratory, Colindale Avenue, London NW9 5HT
Mary L. M. Hall
Affiliation:
Salmonella and Shigella Reference Laboratory, Central Public Health Laboratory, Colindale Avenue, London NW9 5HT
J. H. McCoy
Affiliation:
Public Health Laboratory, Hull HU3 2JZ
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Summary

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A new salmonella subgenus I serotype is described. Strain C.S. 1608/73, serotype 67: r: 1, 2, was isolated from activated sewage sludge and was assigned the name S. crossness. The serotype is biochemically atypical in its ability to utilize sucrose and this ability appears to be controlled by a transferable plasmid.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1976

References

REFERENCES

Bulmash, J. M., & Fulton, M. (1964). Discrepant tests for hydrogen sulfide. Journal of Bacteriology 88, 1813.CrossRefGoogle ScholarPubMed
Bulmash, J. M., Fulton, M., & Jiron, J. (1965). Lactose and sulfide reactions of an aberrant salmonella strain. Journal of Bacteriology 89, 259.CrossRefGoogle ScholarPubMed
Cowan, S. T., &Steel, K. J. (1974). Manual for the Identification of Medical Bacteria. Cambridge University Press.Google Scholar
Edwards, P. R. &Ewing, W. H. (1972). Identification of Enterobacteriaceae. Minneapolis: Burgess Publishing Company.Google Scholar
Kauffmann, F. (1966). The Bacteriology of Enterobacteriaceae, p. 364. Copenhagen: Munksgaard.Google Scholar
Kauffmann, F. (1972). Serological Diagnosis of Salmonella Species. Copenhagen: Munksgaard.Google Scholar
Le Minor, L., Rohde, R., & Rowe, B. (1973). Supplément No. XVI au schéma do Kauffmann—White. Annales de Microbiologie (Institut Pasteur) 124B, 169.Google Scholar
Le Minor, L., Coynault, C., Rohde, R., Rowe, B., & Aleksic, S. (1973). Localisation plasmidique du déterminant génétique du caraotère atypique ‘saceharose +’ des Salmonella. Annales de Microbiologic (Institut Pasteur) 124B, 295.Google Scholar
Le Minor, L., Rohde, R., & Rowe, B. (1975). Supplement No. XVIII au schema de Kauffmann—White. Annales de Microbiologie (Institut Pasteur) 126B, 63.Google ScholarPubMed
Smith, H. W., & Parsell, Z. (1975). Transmissible substrate-utilizing ability in Enterobacteria. Journal of General Microbiology 87, 129.CrossRefGoogle ScholarPubMed
Stamp, D. M., & Store, D. M. (1944). An agglutinogen common to certain strains of lactose and non-lactose fermenting coliform bacilli. Journal of Hygiene 43, 266.Google ScholarPubMed
Wohlhieter, J. A., Lazere, J. R., Snellings, N. J., oenson, E. M., Synenki, R. M., &Baron, L. S. (1975). Characterization of transmissible genetic elements from sucrose-fermenting Salmonella strains. Journal of Bacteriology 122, 401.CrossRefGoogle ScholarPubMed