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Effect of Immersion and Oral Vaccination using Formalin-killed Edwardsiella tarda against Eel Anguilla japonica

뱀장어(Anguilla japonica)에 대한 Edwardsiella tarda 불활화 백신의 침지 및 경구 투여 효과

  • Received : 2015.03.06
  • Accepted : 2015.04.16
  • Published : 2015.06.30

Abstract

Edwardsiellosis has become a serious diseases problem in cultured eels for many years. This study was performed to investigate possibility of vaccination against edwardsiellosis caused by Edwardsiella tarda. We conducted a immersion and/or oral vaccination using formalin-killed E. tarda in eel Anguilla japonica. Three groups of fish ($26.8{\pm}1.2g$, $7.1{\pm}0.7g$ and $2.2{\pm}0.4g$) were used in this study. The protection (relative percentage survival, RPS) and serum antibody response (agglutination titer) were evaluated in the vaccinated fish. No correlation between agglutination titer and survival rate was observed in vaccinated fish. However, there was a satisfactory protective (RPS>50%) in vaccinated fish. Immersion (10 mg/mL, 1 hr) and immersion (10 mg/mL, 1 hr) plus oral (10 mg/g, 10 days) of $26.8{\pm}1.2g$, immersion (10 mg/mL, 1 hr) plus oral (10 mg/g, 10 days) of $7.1{\pm}0.7g$ showed RPS of 62.6%, 52.2% and 56.8%, respectively.

본 연구는 뱀장어 양식에서 오랜 기간 문제시되고 있는 에드와드병(Edwardsiellosis)에 대한 효과적인 백신 투여 방법의 가능성을 알아보고자하였다. 뱀장어 유래의 Edwardsiella tarda로부터 포르말린 불활화백신(FKC)을 제작하여, 크기가 다른 3개 그룹의 뱀장어($26.8{\pm}1.2g$, $7.1{\pm}0.7g$, $2.2{\pm}0.4g$)에 침지 및 경구 투여를 실시하였다. 그리고 혈청 응집항체가의 활성과 E. tarda 공격접종에 대한 방어력(상대생존율, RSP)의 변화를 조사하였다. 모든 그룹에서 응집항체가와 공격접종에 의한 방어력은 상관성이 없었다. 그러나 $26.8g{\pm}1.2g$그룹의 경우, 침지(10 mg/mL)와 침지(10 mg/mL)+경구(10 mg/g) 실험구에서 RSP는 각각 62.6% 및 52.2%를 나타내었으며, $7.1{\pm}0.7g$ 그룹의 경우, 침지(10 mg/mL)+경구(10 mg/g) 실험구에서 RSP는 56.8%로 나타나서 방어력(RPS>50%)이 확인되었다.

Keywords

References

  1. Brudeseth, B. E..Wiulsrod, R..Fredriksen, B. N..Lindmo, K..Lokling, K. E..Bordevik, M..Steine, N..Klevan, A. & Gravningen, K.(2013). Status and future perspectives of vaccines for industrialised fin-fish farming. Fish & Shellfish Immunology 35, 1759-1768. https://doi.org/10.1016/j.fsi.2013.05.029
  2. Han, Myoung-Guk.Lee, O-Soo & Kim, Jea-Hong (2002). Safety and efficacy of modified-live infectious laryngotracheitis vaccines. Korean Journal Veterinary Research 42(2), 241-251.
  3. Kim, Dae-Jung.Kim, Kyung-Kil.Kim, Eung-Oh.Son Maeng Hyun & Seong, Ki-Baik(2013). Effects of estradiol-$17{\beta}$ on the feminization of Japanese eel, Anguilla japonica. Journal of Life Science 23(8), 998-1003. https://doi.org/10.5352/JLS.2013.23.8.998
  4. Kim, Jin Woo.Lee, Han Na.Jee, Bo Young.Woo, Sung Ho.Kim, Young Jae & Lee, Mu Kun(2012). Monitoring of the mortalities in the aquaculture farms of South Korea. Journal of Pathology 25(3), 271-277.
  5. Kim, Wi-Sik.Ok, Ha-Na.Kim, Do-Hyung.Kim, Heung-Yun & Oh, Myung-Joo(2011). Current status of pathogen infection in cultured eel Anguilla japonica between 2000 and 2010. Journal of Pathology 24(3), 237-245.
  6. Kwon, Mun-Gyeong & Bang Jong Deuk(2004). Effects of immersion vaccination in different concentration of edwardsiellosis vaccine on olive flounder, Paralichthys olivaceus. Journal of Fish Pathology 17(3), 171-177.
  7. Lee, Joo-Seok & Park, Soo-Il(1992). The effects of adjuvants and vaccine against edwardsiellosis in tilapia, Oreochromis niloticus. Journal of Fish Pathology 5(1), 19-27.
  8. Ministry of Oceans & Fisheries(2014). Major Statistics of Oceans and Fisheries. 11-1192000-000226-10, 385pp.
  9. National Fisheries Research & Development Institute(2014). Manual of fish vaccination. 11-1192266000072-01, 88pp.
  10. Palm, Jr. R. C..Landolt, M.L. & Busch, R.A.(1998). Route of vaccine administration: effects on the specific hemoral response in rainbow trout Oncorhynchus mykiss. Diseases of Aquatic Organisms 33, 157-166. https://doi.org/10.3354/dao033157
  11. Park, Eun-Joon.Kim, Mina.Park, Ju Young.Cha Jae Ho & Chung Hwa-Jee(2010). Edible vaccine for aquacultured fish: present and prospect. Journal of Plant Biotechnology 37, 269-274. https://doi.org/10.5010/JPB.2010.37.3.269
  12. Park, Soo-Il(1989). Studies on immuno-responses of eel, Anguilla japonica- . Serological studies on Edwardsiella tarda. Journal of Fish Pathology 2(2), 83-90.
  13. Park, Soo-Il.Choi, Yoon-Jeong & Lee, Joo-Seok (1993). Immuno response of eel against fish pathogen, Edwardsiella tarda. Journal of Pathology 6(1), 11-20.
  14. Plant, Karen P. & LaPatra, Scott E.(2011). Advances in fish vaccine delivery. Developmental and Comparative Immunology 35, 1256-1262. https://doi.org/10.1016/j.dci.2011.03.007
  15. Salati, F..Kawai, K. & Kusuda, R.(1983). Immunoresponse of eel against Edwardsiella tarda antigens. Fish Pathology 18(3), 135-141. https://doi.org/10.3147/jsfp.18.135
  16. Salati, F..Kawai, K. & Kusuda, R.(1984). Immune response of eel to Edwardsiella tarda lipopolysaccharide. Fish Pathology 19(3), 187-192. https://doi.org/10.3147/jsfp.19.187
  17. Salati, F. & Kusuda, R.(1985). Vaccine preparation used for immunization of eel, Anguilla japonica against Edwardsiella tarda infection. Bulletin of Japanese Society of Scientific Fisheries 51(8), 1233-1237. https://doi.org/10.2331/suisan.51.1233
  18. Salati, F. & Kusuda, R.(1986). Immune response of eel to Edwardsiella tarda lipid. Fish Pathology 21(3), 201-205. https://doi.org/10.3147/jsfp.21.201
  19. Salati, F..Ono, K. & Kusuda, K.(1991). Oral vaccination of glass eel of Anguilla japonica against Edwardsiella tarda infection. Fish & Shellfish Immunology 1, 309-310. https://doi.org/10.1016/S1050-4648(05)80068-3
  20. Sommerset, I..Krossoy, B..Biering, E. & Frost, P.(2005). Vaccines for fish in aquaculture. Expert review of vaccines, 4(1), 89-11. https://doi.org/10.1586/14760584.4.1.89
  21. Son, Maeng Hyun.Kim, Kang-Woong.Kim, Kyoung-Duck & Kim Shin-Kwon(2011). State of aquaculture management for optimal rearing of eel Anguilla japonica. Korean Journal of Fisheries and Aquatic Sciences 44(4), 359-365. https://doi.org/10.5657/KFAS.2011.0359
  22. Song, Y. L. & Kou, G. H.(1981). The immunoresponses of eel (Anguilla japonica) against Edwardsiella anguillimorifera as studied by the immersion method. Fish Pathology 15(3/4), 249-255. https://doi.org/10.3147/jsfp.15.249
  23. Tafalla, Carolina.Bpgwald, Jarl & Dalmo, Roy A.(2013). Adjuvants and immunostimulants in fish vaccines: Current knowledge and future perspectives. Fish & Shellfish Immunology 35, 1740-1750. https://doi.org/10.1016/j.fsi.2013.02.029
  24. Tskahashi, Y..Fukuda, K..Kondo, M..Yasumoto, S..Hirono, I. & Aoki, T.(2011). Bacterial diseases of marine fish and development of vaccine in japan. Journal of National Fisheries University 60(1), 51-56.
  25. Xu, Tingting & Zhang, Xiao-Hua(2014). Edwardsiella tarda: an intriguing problem in aquaculture. Aquaculture 431, 129-132. https://doi.org/10.1016/j.aquaculture.2013.12.001