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Author Helman, R.G.; Russell, W.C.; Jenny, A.; Miller, J.; Payeur, J.
Title Diagnosis of tuberculosis in two snow leopards using polymerase chain reaction Type Miscellaneous
Year 1998 Publication Journal of Veterinary Diagnostic Investigation Abbreviated Journal
Volume 10 Issue Pages 89-92
Keywords Disease; Mycobacterium; skin; snow leopard; zoo
Abstract The incidence of tuberculosis in zoological animal collections is low, and the disease is monitored through skin testing primarily in primates and artiodactylids.15,16 Other exotic animals are clearly at risk; tuberculosis has been described in elephants (Mycobacterium tuberculosis, M. bovis), rhinoceros (M. bovis), felids (M. bovis), foxes (M. bovis), birds (M. avium complex, M. tuberculosis, M. bovis), and reptiles, amphibians, and fish (cryophilic Mycobacterium species). 1,2,4,6,8-10,13,14,17 Mycobacterial infections in mammals and birds serve as a potential source of disease that can spread to other animals and to humans.7,15,16 In humans, M. bovis and M. tuberculosis are the most important mycobacteria in the USA.
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Call Number SLN @ rana @ 888 Serial 381
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Author Thorel, M.F.; Karoui, C.; Varnerot, A.; Fleury, C.; Vincent, V.
Title Isolation of Mycobacterium bovis from baboons, leopards and a sea-lion Type Journal Article
Year 1998 Publication Vet Res Abbreviated Journal
Volume 29 Issue 2 Pages 207-212
Keywords Animal; Animals; zoo; Carnivora; microbiology; Case; Report; Cattle; Dna; Fingerprinting; Transposable; Elements; Disease; Outbreaks; veterinary; France; Genome; Bacterial; Germany; Male; Monkey; Diseases; diagnosis; epidemiology; Mycobacterium; Infections; bovis; classification; isolation; purification; Papio; Seals; browse; 440
Abstract This study reports on two series of cases of Mycobacterium bovis infection in zoo animals. The first was in a captive population of baboons (Papio hamadryas) and the second in a mixed group of wild mammals, including four leopards (Panthera uncia and Panthera pardus) and a sea-lion (Otaria byrona). The isolation and identification of strains of M. bovis confirmed the presence of M. bovis infections in both zoos. The epidemiological study using genetic markers such as the IS6110-based DNA fingerprinting system made it possible to differentiate between M. bovis strains. The M. bovis strains isolated from baboons were shown to contain a single IS6110 copy, as usually do cattle isolates, whereas the M. bovis strains isolated from the other exotic animals presented multiple copies. This finding suggests that the origin of the contamination for the baboons in zoo A could be related to cattle. The origin of the contamination for the leopards and sea-lion in zoo B is more difficult to determine. In conclusion, the authors suggest some recommendations for avoiding outbreaks of tuberculosis infections in zoos.
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ISSN 0928-4249 ISBN Medium
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Notes Document Type: eng Approved no
Call Number SLN @ rana @ 346 Serial 966
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