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제주지역 한우의 요네병 감염실태 조사

Prevalence of Johne's disease of Korean native cattle in Jeju Province, Korea

  • 강완철 (제주특별자치도 동물위생시험소) ;
  • 양형석 (제주특별자치도 동물위생시험소) ;
  • 고진아 (제주특별자치도 동물위생시험소) ;
  • 이두식 (제주대학교 수의과대학) ;
  • 손원근 (제주대학교 수의과대학)
  • Kang, Wan-Choul (Jeju Self-Governing Provincial Veterinary Research Institute) ;
  • Yang, Hyoung-Seok (Jeju Self-Governing Provincial Veterinary Research Institute) ;
  • Ko, Jin-A (Jeju Self-Governing Provincial Veterinary Research Institute) ;
  • Lee, Du-Sik (College of Veterinary Medicine, Jeju National University) ;
  • Son, Won-Geun (College of Veterinary Medicine, Jeju National University)
  • 투고 : 2015.10.14
  • 심사 : 2015.12.14
  • 발행 : 2015.12.30

초록

The bacterium causing Johne's disease (JD), Mycobacterium avium subspecies paratuberculosis (MAP), is distributed worldwide and causes progressive intestinal disease, also known as paratuberculosis, in domestic and exotic ruminants, including cattle. The subclinical form of this disease results in progressive weight loss, reduced milk production, lower slaughter value, and premature culling, with possible impacts on fertility and udder health. Eventually, infection can lead to the clinical form that manifests chronic diarrhea, emaciation, debilitation, and eventual death. JD is a major cause of economic loss in cattle industry. In this study, serological testing was conducted by ELISA to determine the prevalence of MAP in Korean native cattle of Jeju during the duration of 2010 to 2013. A total of 5,150 blood sera were collected in 111 farms and the samples were classified into four different age groups for MAP; group 1 (2 years or less), group 2 (2~4 years), group 3 (5~7 years), and group 4 (over 8 years). Overall seroprevalence of MAP was 5.2% (269/5,150), and annually from 2010 to 2013, they were 11.6% (106/915), 2.1% (10/474), 5.5% (89/1,627), and 3.0% (64/2,134), respectively. Also, the prevalence rates was determined by age groups: 48 of group 1 (17.8%), 154 of group 2 (57.3%), 48 of group 3 (17.8%), and 19 of group 4 (7.1%) were seropositive for MAP. Although seropositive samples were found in all age groups, the highest seroprevalence was found in group 2. This study showed that during the investigation the seroprevalence of MAP tended to decrease.

키워드

참고문헌

  1. 김광현. 2010. 한우 혈액에서 PCR법을 이용한 Mycobacterium avian subsp. paratuberculosis의 검출. 전북대 석사학위논문 1-36.
  2. Brett E. 1998. Johne's disease: An economic evaluation of control options for the New Zealand livestock industries. Agriculture New Zealand, Wellington.
  3. Cho J, Tauer LW, Schukken YH, Gomez MI, Smith RL, Lu Z, Grohn YT. 2012. Economic analysis of Mycobacterium avium subspecies paratuberculosis vaccines in dairy herds. J Dairy Sci 95: 1855-1872. https://doi.org/10.3168/jds.2011-4787
  4. Collins MT, Socket DC, Goodger WJ, Conrad TA, Thomas CB, Carr DJ. 1994. Herd prevalence and geographic distribution of, and risk factors for, bovine paratuberculosis in Wisconsin. J Am Vet Med Assoc 204: 636-641.
  5. Dufour B, Pouillot R, Durand B. 2004. A cost/benefit study of paratuberculosis certification in French cattle herds. Vet Res 35: 69-81. https://doi.org/10.1051/vetres:2003045
  6. Garry F. 2011. Control of paratuberculosis in dairy herds. Vet Clin North Am Food Anim Pract 27: 599-607. https://doi.org/10.1016/j.cvfa.2011.07.006
  7. Good M, Clegg T, Sheridan H, Yearsely D, O'Brien T, Egan J, Mullowney P. 2009. Prevalence and distribution of paratuberculosis (Johne's disease) in cattle herds in Ireland. Ir Vet J 62: 597-606. https://doi.org/10.1186/2046-0481-62-9-597
  8. Jeon YS, Lee BW, Kim JB, Choi CS, KIM JK. 1984. Isolation and Identification of Mycobactin Dependent Acid - fast Bacteria (M. paratuberculosis) from Bovine Fecal Material. Korean J Vet Res 24: 58-63.
  9. Johnson-Ifearulundu Y, Kaneene JB. 1999. Distribution and environmental risk factors for paratuberculosis in dairy cattle herds in Michigan. Am J Vet Res 60: 589-596.
  10. Kim D, Jeon KJ, Kim JT, Shin KS, Shin MK, Chang GH, Kim JK, Kim OS, Jung JY. 2002. Prevalence of paratuberculosis of dairy cattle in Kangwon area. Korean J Vet Res 42: 81-88.
  11. Lee SM, Kim MS, Jang YS, Chon RH, Park NC. 2009. Seroprevalence of paratuberculosis of dairy cattle and Korean cattle in Eastern-Gyeongbuk area. Korean J Vet Serv 32: 171-176.
  12. Milner A, Wood P. 1989. Johne's disease: current trends in research, diagnosis and management. In: Gill IJ (ed), The economic impact of Johne's disease in cattle in Australia. pp. 36-40. 1st ed. Common wealth Scientific and Industrial Research Organization, Melbourne.
  13. Muskens J, Barkema HW, Russchen E, van Maanen K, Schukken YH, Bakker D. 2000. Prevalence and regional distribution of paratuberculosis in dairy herds in the Netherlands. Vet Microbiol 77: 253-261. https://doi.org/10.1016/S0378-1135(00)00310-2
  14. Nielsen SS, Thamsborg SM, Houe H, Bitsch V. 2000. Bulk-tank milk ELISA antibodies for estimating the prevalence of paratuberculosis in Danish dairy herds. Prev Vet Med 44: 1-7. https://doi.org/10.1016/S0167-5877(00)00098-2
  15. Ott SL, Wells SJ, Wagner BA. 1999. Herd-level economic losses associated with Johne's disease on US dairy operations. Prev Vet Med 40: 179-192. https://doi.org/10.1016/S0167-5877(99)00037-9
  16. Singh SV, Sohal JS, Singh PK, Singh AV. 2009. Genotype profiles of Mycobacterium avium subspecies paratuberculosis isolates recovered from animals, commercial milk, and human beings in North India. Int J Infect Dis 13: 221-227. https://doi.org/10.1016/j.ijid.2008.11.022
  17. Son BG, Seok JM, Jang EH, Ji DH, Shin JS, Hwang BW. 2013. Prevalence of Johne's disease from slaughtered cattle in central area of Gyeongnam province, Korea. Korean J Vet Serv 36: 31-36. https://doi.org/10.7853/kjvs.2013.36.1.31
  18. Sorge U, Kelton D, Lissemore K, Godkin A, Hendrick S, Wells S. 2010. Attitudes of Canadian dairy farmers toward a voluntary Johne's disease control program. J Dairy Sci 93: 1491-1499. https://doi.org/10.3168/jds.2009-2447
  19. Thoen CO, Baum KH. 1988. Current knowledge on paratuberculosis. J Am Vet Med Assoc 192: 1609-1611.
  20. Timoney JF, Gillespie JH, Scott FW, Barlough JE. 1988. The gene mycobacterium. pp. 270-289. In: Hagan and Bruner's microbiology and infectious disease of domestic animal. Comstock. Ithaca, New York.
  21. Tiwari A, VanLeeuwen JA, Dohoo IR, Keefe GP, Haddad JP, Scott HM, Whiting T. 2009. Risk factors associated with Mycobacterium avium subspecies paratuberculosis seropositivity in Canadian dairy cows and herds. Pre Vet Med 88: 32-41. https://doi.org/10.1016/j.prevetmed.2008.06.019
  22. Van Leeuwen JA, Tiwari A, Plaizier JC, Whiting TL. 2006. Sero-prevalences of andtibodies against bovine leukemia virus, bovine viral diarrhea virus, Mycobacterium avium subspecies paratuberculosis, and Neospora caninum in beef and dairy cattle in Manitoba. Can Vet J 47: 783-786.
  23. Van Metre DC, Tenant BC, Whitlock RH. 1995. Infectious disease of the gastrointestinal track. pp. 279-283. In: Divers TJ, Peek SF(ed.). Rebhun's diseases of dairy cattle. 2nd ed. Saunders Elsevier Inc., Missouri.

피인용 문헌

  1. 최근 10년간 국내 소 질병 원인체에 관한 문헌적 고찰 vol.43, pp.3, 2020, https://doi.org/10.7853/kjvs.2020.43.3.113