DOI QR코드

DOI QR Code

Study on gross finding of lung lesions and causative pathogens of porcine respiratory disease complex from slaughtered pigs in Incheon

인천지역 도축돈에서 돼지호흡기질병복합감염증의 육안적 폐병변과 원인체에 관한 연구

  • Lee, Chang-Hee (College of Veterinary Medicine and Institute of Veterinary Science, Kangwon National University) ;
  • Hwang, Weon-Moo (Incheon Metropolitan City Institute of Health & Environment) ;
  • Lee, Jung-Goo (Incheon Metropolitan City Institute of Health & Environment) ;
  • Lee, Sung-Mo (Incheon Metropolitan City Institute of Health & Environment) ;
  • Kim, Sung-Jae (College of Veterinary Medicine and Institute of Veterinary Science, Kangwon National University) ;
  • Kim, Nam-Hee (College of Veterinary Medicine and Institute of Veterinary Science, Kangwon National University) ;
  • Yang, Don-Sik (College of Veterinary Medicine and Institute of Veterinary Science, Kangwon National University) ;
  • Han, Jeong-Hee (College of Veterinary Medicine and Institute of Veterinary Science, Kangwon National University)
  • 이창희 (강원대학교 수의과대학.동물종합연구소) ;
  • 황원무 (인천광역시보건환경연구원) ;
  • 이정구 (인천광역시보건환경연구원) ;
  • 이성모 (인천광역시보건환경연구원) ;
  • 김성재 (강원대학교 수의과대학.동물종합연구소) ;
  • 김남희 (강원대학교 수의과대학.동물종합연구소) ;
  • 양돈식 (강원대학교 수의과대학.동물종합연구소) ;
  • 한정희 (강원대학교 수의과대학.동물종합연구소)
  • Received : 2011.10.08
  • Accepted : 2011.10.28
  • Published : 2011.12.30

Abstract

The purpose of this study was to investigate association with gross lesions and causative pathogens of porcine respiratory disease complex (PRDC) including porcine circovirus type 2 (PCV2), porcine reproductive and respiratory syndrome virus (PRRSV), swine influenza virus (SIV), Mycoplasma hyopneumoniae (MH), Pasteurella multocida (PM), Actinobacillus pleuropneumoniae (APP), Haemophilus parasuis (HP) in slaughtered pigs. A total of 1,200 lung samples were collected randomly from slaughtered pigs in Korea during August of 2010 through July of 2011. The gross lesions were classified according to the six stages (0, 1~10, 11~20, 21~30, 31~40 and ${\geq}41$, unit=%) and 48 samples from each stage were selected to detect viral and bacterial pathogens. The results according to the six stages were 100 (8.3%), 259 (21.6%), 326 (27.2%), 213 (17.8%), 144 (12.0%) and 158 (13.2%) cases, respectively. Prevalence of pneumonia according to season was 87.0~96.7% and the highest prevalence was in spring. In detection of pathogens by PCR, 53 samples were not detected any causative pathogens of PRDC. PCV2, PRRSV, SIV, MH, PM, APP serotype 2, APP serotype 5 and HP were positive in 45.5%, 12.5%, 10.4%, 60.1%, 1.7%, 13.9%, 12.2% and 15.6%, respectively. In co-infection, PCV2-MH was the most detected causative pathogens of PRDC. The detection rate of PCV2 and PRRSV was the highest in spring, of SIV, MH and HP was in winter. The detection rate of APP-2 and APP-5 had no seasonal prevalence. The more severe gross lesions increased, the higher the detection rate showed.

Keywords

References

  1. 권준헌. 1992. 동물의 호흡기관련 마이코플라즈마병에 관한 연구. pp. 251-254. 농촌진흥청 가축위생연구소.
  2. 김영환, 조광현, 정영석, 박인화, 김정화. 2005. 경북지방 돼지의 유산태아에서 PCV2 감염률 조사. 한국가축위생학회지 28: 267-273.
  3. 김영환, 조광현, 김성국, 김순태, 박인화, 손재권, 정종식. 2004. 경북지방 돼지에서 이유후전신성소모성증후군 및 pocine circovirus type 2 의 감염 양상. 한국가축위생학회지 27: 139-146.
  4. 박원헌, 최문희, 최원정, 이시창, 이유섭. 1995. 강원남부지역 출하돈에 대한 유행성폐렴(마이코플라즈마성폐렴) 분포조사. 한국가축위생학회지 18: 103-112.
  5. 오효성, 임창형, 박응복. 1985. 출하돈의 마이코플라즈마 폐렴에 관한 병리학적 연구. 서울대학교 수의대 논문집 10: 25-36.
  6. 이석규, 한정희, 정현규. 1999. 계절에 따른 출하돈에서의 폐렴관찰. 대한수의학회지 39: 85-89.
  7. 이정아, 김성국, 조옥숙, 오강희, 박영구. 1997. 돼지의 호흡기 질병 감염상황 조사. 한국가축위생학회지 20: 27-35.
  8. 이청산, 김원설, 손현수, 이은정, 박경재. 2000. 도축돈의 호흡기질병에 관한 연구. 한국가축위생학회지 23: 255-262.
  9. 최원종, 홍경수, 정웅호, 김남선, 김년수, 김기태, 김광재, 김문식. 2006. 강원도 영동지역의 도축돈에 대한 porcine circovirus type 2 감염율 조사. 한국가축위생학회지 29: 249-256.
  10. 추금숙, 강미선, 조영숙, 이정원. 2008. 돼지 폐렴병변에서 PCR을 이용한 써코바이러스 2, 돼지생식기호흡기증후군, 마이코플라즈마 폐렴 감염실태 조사. 한국가축위생학회지 31: 71-77.
  11. Amigot JA, Torremorell M, Pijoan C. 1998. Evaluation of techniques for the detection of toxigenic Pasteurella multocida strains from pigs. J Vet Diag Invest 10: 169-173. https://doi.org/10.1177/104063879801000209
  12. Backstrom L, Bremer H. 1978. The relationship between disease incidences of fatteners registered at slaughter and environmental factors in herds. Nord Vet Med 30: 526-533.
  13. Baskerville A. 1981. Mechanisms of infection in the respiratory tract. N Z Vet J 29: 235-238. https://doi.org/10.1080/00480169.1981.34852
  14. Boessen CR. Rea CJ, Jesse G, Kliebenstein J. 1987. pp. 66-70. Pneumonia and atrophic rhinitis levels for winter and summer slaughter checks. Swine Research Report, Animal Science Report 112.
  15. Brockmeier SL, Halbur PG, Thacker EL. 2002. Porcine respiratory disease complex. pp. 231-258. In: Brogden KA, Guthmiller JM(ed.). Polymicrobial disease. ASM Press, Washington, DC.
  16. Choi YK, Goyal SM, Joo HS. 2002. Prevalence of swine influenza virus subtypes on swine farms in the united states. Arch Virol 147: 1209-1220. https://doi.org/10.1007/s00705-002-0788-4
  17. Curtis SE, Kelly KW. 1983. Environment and health in the hog house. Proc Univ Ill Pork Ind Conf: 56.
  18. DeBey MC, Ross RF. 1994. Ciliostasis and loss of cilia induced by Mycoplasma hyopneumoniae in porcine tracheal organ cultures. Infect Immun 62: 5312-5318.
  19. Easterday B Van Reeth K. 1999. Swine influenza. pp. 277-290. In: Straw BE, D'Allaire S, Mengeling WL, Taylor DI(ed.). Diseases of swine. 8th ed. Iowa State University Press, Ames.
  20. Falk K, Hoie S, Lium BM. 1991. An abattoir survey of pneumonia and pleuritis in slaughter weight swine from 9 selected herds. II. Enzootic pneumonia of pigs: microbiological findings and their relationship to pathomorphology. Acta Vet Scand 32: 67-77.
  21. Gardner IA, Hird DW. 1990. Host determinants of pneumonia in slaughter weight swine. Am J Vet Res 51: 1306-1311.
  22. Hansen MS, Pors SE, Jensen HE, Bille-Hansen V, Bisgaard M, Flachs EM, Nielsen OL. 2010. An investigation of the pathology and pathogens associated with porcine respiratory disease complex in denmark. J Comp Pathol 143: 120-131. https://doi.org/10.1016/j.jcpa.2010.01.012
  23. Haruna J, Hanna P, Hurnik D, Ikede B, Miller L, Yason C. 2006. The role of immunostimulation in the development of postweaning multisystemic wasting syndrome in pigs under field conditions. Can J Vet Res 70: 269-276.
  24. Kurth KT, Hsu T, Snook ER, Thacker EL, Thacker BJ, Minion FC. 2002. Use of a Mycoplasma hyopneumoniae nested polymerase chain reaction test to determine the optimal sampling sites in swine. J Vet Diag Invest 14: 463-469. https://doi.org/10.1177/104063870201400603
  25. Lium B, Falk K. 1991. An abattoir survey of pneumonia and pleuritis in slaughter weight swine from 9 selected herds. I. Prevalence and morphological description of gross lung lesions. Acta Vet Scand 32: 55-65.
  26. Lyoo YS, Park CK, Lee CH. 1998. RT-PCR and nested PCR amplification of the PRRSV genes from boar semen for the rapid and sensitive differential diagnosis. Korean J Vet Res 38: 77-83.
  27. Morrison RB, Pijoan C, Hilley HD, Rapp V. 1985. Microorganisms associated with pneumonia in slaughter weight swine. Can J Comp Med 49: 129-137.
  28. Muirhead MR. 1979. Respiratory disease of pigs. Br Vet J 135: 497-508.
  29. Mueller RD, Abbott PB. 1986. Estimating the cost of respiratory disease in hogs. Anim Health Nutr 2: 30-35.
  30. Oliveira S, Galina L, Pijoan C. 2001. Development of a PCR test to diagnose Haemophilus parasuis infections. J Vet Diag Invest 13: 495-501. https://doi.org/10.1177/104063870101300607
  31. Olvera A, Sibila M, Calsamiglia M, Segales J, Domingo M. 2004. Comparison of porcine circovirus type 2 load in serum quantified by a real time PCR in postweaning multisystemic wasting syndrome and porcine dermatitis and nephropathy syndrome naturally affected pigs. J Virol Methods 117: 75-80. https://doi.org/10.1016/j.jviromet.2003.12.007
  32. Opriessnig T, McKeown NE, Harmon KL, Meng XJ, Halbur PG. 2006. Porcine circovirus type 2 infection decreases the efficacy of a modified live porcine reproductive and respiratory syndrome virus vaccine. Clin Vaccine Immunol 13: 923-929. https://doi.org/10.1128/CVI.00074-06
  33. Opriessnig T, Madson DM, Prickett JR, Kuhar D, Lunney JK, Elsener J, Halbur PG. 2008. Effect of porcine circovirus type 2 (PCV2) vaccination on porcine reproductive and respiratory syndrome virus (PRRSV) and PCV2 coinfection. Vet Microbiol 131: 103-114. https://doi.org/10.1016/j.vetmic.2008.03.002
  34. Park JS, Kim J, Ha Y, Jung K, Choi C, Lim JK, Kim SH, Chae C. 2005. Birth abnormalities in pregnant sows infected intranasally with porcine circovirus 2. J Comp Pathol 132: 139-144. https://doi.org/10.1016/j.jcpa.2004.09.003
  35. Pijoan C, Lastra A, Ramirez C, Leman AD. 1984. Isolation of toxigenic strains of Pasteurella multocida from lungs of pneumonic swine. J Am Vet Med Assoc 185: 522-523.
  36. Pointon A, Mercy A, Backstrom L, Dial G. 1992. Disease surveillance at slaughter. pp. 968-987. In: Leman AD, Straw BE, Mengeling WL, D'Allaire S, Taylor DI(ed.). Diseases of swine. 7th ed. Iowa State University Press, Ames.
  37. Richt JA, Lager KM, Clouser DF, Spackman E, Suarez DL, Yoon KJ. 2004. Real-time reverse transcription-polymerase chain reaction assays for the detection and differentiation of North American swine influenza viruses. J Vet Diag Invest 16: 367-373. https://doi.org/10.1177/104063870401600501
  38. Ross RF. 1992. Mycoplasmal disease. pp. 537-551. In: Leman AD, Straw BE, Mengeling WL, D'Allaire S, Taylor DI(ed.). Diseases of swine. 7th ed. Iowa State University Press, Ames.
  39. Scheidt AB, Mayrose VB, Hill MA, Clark LK, Einstein ME, Frantz SF, Runnels LJ, Knox KE. 1992. Relationship to growth performance of pneumonia and atrophic rhinitis lesions detected in pigs at slaughter among four seasons. J Am Vet Med Assoc 200: 1492-1496.
  40. Schuchert JA, Inzana TJ, Angen O, Jessing S. 2004. Detection and identification of Actinobacillus pleuropneumoniae serotypes 1, 2, and 8 by multiplex PCR. J Clin Microbiol 42: 4344-4348. https://doi.org/10.1128/JCM.42.9.4344-4348.2004
  41. Straw B. 1986. A look at the factors that contribute to the development of swine pneumonia. Vet Med 81: 747-756.

Cited by

  1. Study on porcine respiratory disease complex from slaughtered pigs in Namwon, Korea vol.36, pp.2, 2013, https://doi.org/10.7853/kjvs.2013.36.2.139
  2. Survey on the red internal organs gross lesions of slaughtered pigs in Jeonbuk vol.37, pp.3, 2014, https://doi.org/10.7853/kjvs.2014.37.3.173
  3. Survey on the gross lesions of slaughtered pigs in Jeonbuk area, Korea vol.38, pp.2, 2015, https://doi.org/10.7853/kjvs.2015.38.2.89
  4. 전북지역 도축돈 호흡기질병 조사 vol.39, pp.4, 2011, https://doi.org/10.7853/kjvs.2016.39.4.231
  5. 국내 도축돈에서 발생한 폐렴에 대한 실물 폐 병변 지수와 조직병리학적 진단의 상관성 평가 vol.57, pp.4, 2011, https://doi.org/10.14405/kjvr.2017.57.4.227
  6. 경기지역 도축우 및 도축돈의 폐렴병변에서 Mycoplasma spp. 원인체에 관한 연 vol.33, pp.4, 2011, https://doi.org/10.13103/jfhs.2018.33.4.306
  7. RNA-seq transcriptome profiling of porcine lung from two pig breeds in response to Mycoplasma hyopneumoniae infection vol.7, pp.None, 2011, https://doi.org/10.7717/peerj.7900
  8. Age-specific Prevalence of Porcine Reproductive and Respiratory Syndrome Virus, Porcine Circovirus Type 2, and Mycoplasma hyopneumoniae in Korea Pig Farms vol.50, pp.1, 2011, https://doi.org/10.4167/jbv.2020.50.1.009