Characteristics of aBrucellaSpecies from a Bottlenose Dolphin (Tursiops Truncatus)

Author:

Ewalt Darla R.1,Payeur Janet B.1,Martin Barbara M.1,Cummins Donna R.1,Miller W. George2

Affiliation:

1. US Department of Agriculture, Animal and Plant Health Inspection Service, Veterinary Services, National Veterinary Services Laboratories, Ames, IA 50010

2. NCCOSC, RTDE DIV511, San Diego, CA 92152

Abstract

A culture isolated from an aborted fetus of a bottlenose dolphin ( Tursiops truncatus) was characterized. The isolate was a gram-negative coccobacillus, and the colonial morphology was typical of a smooth Brucella. The isolate was positive for catalase, oxidase, nitrate reduction, and urease. Hydrogen sulfide was not produced. It grew in air at 37 C but required 72 hours for good growth. There was growth on media containing basic fuchsin, thionin, thionin blue, penicillin, and erythritol. The M antigen was dominant, and the isolate was lysed by 4 of 10 brucellaphages tested. The oxidative metabolic profile of the isolate was similar to that for B. abortus but differed in utilization of L-asparagine, L-glutamic acid, and DL-citrulline. Whole-cell lysates were analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The protein profiles were markedly different from the protein profiles of reference strains of Brucella species. Biochemical and oxidative metabolism profiles indicated that the isolate belongs in the genus Brucella but did not match the profiles of any established species or biovars. This isolate may be an atypical strain of a recognized Brucella species or a new biovar or species of Brucella.

Publisher

SAGE Publications

Subject

General Veterinary

Reference22 articles.

1. Differentiation by western blotting of immune responses of cattle vaccinated with Brucella abortus strain 19 or infected experimentally or naturally with virulent Brucella abortus

2. Conservation of antigenicity in a 31-kDa Brucella protein

3. Clark WA, Hollis DG, Weaver RE, Riley P: 1984, Identification of unusual pathogenic gram-negative aerobic and facultatively anaerobic bacteria, pp. 5–25. Centers for Disease Control, Atlanta, GA.

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