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Characterization of Mycoplasma suipneumoniae: a mycoplasma causing enzootic pneumonia of pigs

Published online by Cambridge University Press:  15 May 2009

R. F. W. Goodwin
Affiliation:
School of Veterinary Medicine, University of Cambridge
Annette P. Pomeroy
Affiliation:
School of Veterinary Medicine, University of Cambridge
P. Whittlestone
Affiliation:
School of Veterinary Medicine, University of Cambridge
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A micro-organism, previously known as the J agent, was grown on solid medium: its various characteristics suggested that it was a mycoplasma and it was provisionally named Mycoplasma suipneumoniae.

In the growth-inhibition and metabolic-inhibition tests, M. suipneumoniae was indistinguishable from M. hyopneumoniae (Maré & Switzer, 1965).

By the growth-inhibition test, M. suipneumoniae seemed unrelated to all of a wide range (42 strains) of other mycoplasmas examined. These results suggest that, if the similarity between M. suipneumoniae and M. hyopneumoniae is substantiated in further work, these latter two strains are probably a new species.

M. suipneumoniae was also identified by the metabolic-inhibition test, by precipitation in agar gel, and by immune-fluorescence. Using the last two methods, M. suipneumoniae was distinguished from a second porcine mycoplasma (strain 603).

The most important property of M. suipneumoniae is its ability to induce enzootic pneumonia experimentally in pigs.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1967

References

Clyde, W. A. (1964). Mycoplasma species identification based upon growth inhibition by specific antisera. J. Immun. 92, 958.CrossRefGoogle ScholarPubMed
Dinter, Z., Danielsson, D. & Bakos, K. (1965). Differentiation of porcine mycoplasma strains. J. gen. Microbiol. 41, 77.CrossRefGoogle ScholarPubMed
Goodwin, R. F. W., Pomeroy, A. P. & Whittlestone, P. (1965). Production of enzootic pneumonia in pigs with a mycoplasma. Vet. Rec. 77, 1247.Google Scholar
Goodwin, R. F. W. & Whittlestone, P. (1963). Production of enzootic pneumonia in pigs with an agent grown in tissue culture from the natural disease. Br. J. exp. Path. 44, 291.Google ScholarPubMed
Goodwin, R. F. W. & Whittlestone, P. (1964). Production of enzootic pneumonia in pigs with a micro-organism grown in media free from living cells. Vet. Rec. 76, 611.Google Scholar
Goodwin, R. F. W. & Whittlestone, P. (1965). Experiments on the possible relationship between inclusion-body rhinitis, enzootic pneumonia and type-XI pneumonia of pigs. Res. vet. Sci. 6, 100.CrossRefGoogle ScholarPubMed
Goodwin, R. F. W. & Whittlestone, P. (1966). Enzootic pneumonia of pigs: growth and behaviour of the causal mycoplasma in liquid media. Br. J. exp. Path. 47, 518.Google ScholarPubMed
Herderscheê, D. (1963). An improved medium for the cultivation of the Eaton agent. Antonie van Leeuwenhoek 29, 154.CrossRefGoogle ScholarPubMed
Kohn, J. (1959). A simple method for the concentration of fluids containing protein. Nature, Lond. 183, 1055.CrossRefGoogle ScholarPubMed
Maré, C. J. & Switzer, W. P. (1965). New species: Mycoplasma hyopneumoniae—a causative agent of virus pig pneumonia. Vet. Med. 60, 841.Google ScholarPubMed
Marrack, J. R., Hoch, H. & Johns, R. G. S. (1951). The valency of antibodies. Br. J. exp. Path. 32, 212.Google ScholarPubMed
Marshall, J. D., Eveland, W. C. & Smith, C. W. (1958). Superiority of fluorescein isothiocyanate (Riggs) for fluorescent-antibody technique with a modification of its application. Proc. Soo. exp. Biol. Med. 98, 898.CrossRefGoogle ScholarPubMed
Nairn, R. C. (1962). Immunological tracing: general considerations. In Fluorescent Protein Tracing. Edinburgh and London: E. and S. Livingstone Ltd.Google Scholar
Ouchterlony, Ö. (1964). Gel-diffusion techniques. In Immunological Methods. Oxford: Blackwell Scientific publications.Google Scholar
Taylor-Robinson, D., Somerson, N. L., Turner, H. C. & Chanock, R. M. (1963). Serological relationships among human mycoplasmas as shown by complement-fixation and gel diffusion. J. Bact. 85, 1261.CrossRefGoogle ScholarPubMed
Taylor-Robinson, D., Purcell, R. H., Wong, D. C. & Chanock, R. M. (1966). A colour test for the measurement of antibody to certain mycoplasma species based upon the inhibition of acid production. J. Hyg., Camb. 64, 91.CrossRefGoogle ScholarPubMed
Whittlestone, P. (1967). Mycoplasmas in enzootic pneumonia of pigs. Ann. N.Y. Acad. Sci. (In the Press.)CrossRefGoogle ScholarPubMed