사료내 맥반석과 BAISM 복합첨가가 치어기 뱀장어 Anguilla japonica의 성장과 내병성에 미치는 영향

Effects of Dietary Quartz Porphyry and Feed Stimulants, BAISM Supplementation on Growth Performance and Disease Resistance of juvenile eel Anguilla japonica

  • 배준영 (부경대학교 양식학과/사료영양연구소) ;
  • 한경민 (부경대학교 양식학과/사료영양연구소) ;
  • 이준호 (부경대학교 양식학과/사료영양연구소) ;
  • 김상은 ((주) 다비스톤) ;
  • 이정열 (군산대학교 해양생명과학부) ;
  • 배승철 (부경대학교 양식학과/사료영양연구소)
  • Bae, Jun-Young (Department of Aquaculture/Feeds & Foods Nutrition Research Center, Pukyong National University) ;
  • Han, Kyung-Min (Department of Aquaculture/Feeds & Foods Nutrition Research Center, Pukyong National University) ;
  • Lee, Jun-Ho (Department of Aquaculture/Feeds & Foods Nutrition Research Center, Pukyong National University) ;
  • Kim, Sang-Eun (Davistone Co. Ltd.) ;
  • Lee, Jeong-Yeol (School of Marine Life Science, Kunsan National University) ;
  • Bai, Sung-Chul C. (Department of Aquaculture/Feeds & Foods Nutrition Research Center, Pukyong National University)
  • 발행 : 2008.02.25

초록

이 연구는 치어기 뱀장어 Anguilla japonica의 사료 내 맥반석(quartz porphyry, QP)과 BAISM을 단독 및 혼합 첨가가 성장과 내병성에 미치는 영향을 확인하고 첨가제로써 이용성을 평가하였다. 사료 내 첨가 물질로 맥반석(Quartz porphyry, QP)과 실험실에서 제작한 섭취 촉진 물질인 BAISM(BS)을 기초 사료에 각각 0% QP+0% BS($Q_0B_0$), 0.7% QP+0% BS($Q_{0.7}B_0$), 0.7% QP+0.3% BS($Q_{0.7}B_{0.3}$), 0.7% QP+0.5% BS($Q_{0.7}B_{0.5}$), 0.7% QP+0.75% BS($Q_{0.7}B_{0.75}$), 0.7% QP+1.0% BS($Q_{0.7}B_{1.0}$)의 6가지 수준으로 첨가하였다. 실험어는 4주간 예비사육 후, 평균 어체중 $15{\pm}0.3g(mean{\pm}SD)$인 치어기 뱀장어를 60 L 사각수조에 실험구별 30 마리씩 3반복으로 무작위 배치하여 8주간 사육실험을 진행하였다. 사육실험 종료 후, Edwardsiella tarda 복강 주사에 의한 누적 생존율을 조사하였다. 증체율, 일간성장률, 사료효율, 단백질전환효율에서 맥반석 단독 첨가구($Q_{0.7}B_0$)와 맥반석 BAISM 복합 첨가구($Q_{0.7}B_{0.3},\;Q_{0.7}B_{0.5},\;Q_{0.7}B_{0.75},\;Q_{0.7}B_{1.0}$)는 대조구($Q_0B_0$)에 비하여 유의하게 높았다(P<0.05). 특히, 맥반석 BAISM 복합 첨가구들 중 BAISM 0.5% 이상의 실험구($Q_{0.7}B_{0.5},\;Q_{0.7}B_{0.75},\;Q_{0.7}B_{1.0}$)는 나머지 실험구들에 비해 유의하게 높았고(P<0.05), 이들에 대한 유의한 차이는 없었다(P>0.05). 전어체 일반성분의 분석결과 수분 함량은 전 실험구에서 유의한 차이가 없었고(P>0.05), 단백질 함량은 첨가수준에 따라 유의적으로 증가한 반면(P<0.05), 지질과 회분의 함량은 유의적으로 감소하는 경향을 나타내었다(P<0.05). E. tarda에 의한 공격실험 결과 주사 15일 후, 맥반석BAISM 0.5% 이상 혼합 첨가구의 누적 생존율은 다른 실험구에 비해 유의하게 높았고(P<0.05), 전 실험구에서 40% 이상의 누적 생존율을 나타내었다. 따라서 치어기 뱀장어 사료에 맥반석 0.7%와 BAISM 0.5%를 첨가하는 것이 성장과 사료효율 증대 및 질병 저항성 증진에 효과가 있을 것으로 판단된다.

This study investigated the synergistic effects of dietary supplementation of quartz porphyry(QP) and a laboratory developed feed stimulants, BAISM(BS) on growth performance and utilization as the additives for juvenile eel Anguilla japonica. Six isoenergetic experimental diets(18.2 kJ/g) were formulated to contain 50% crude protein, 15% lipid with or without dietary QP(Song-Gang stone, Davistone, Korea) and BS supplementation. QP and BS were provided at 0% in the control diet($Q_0B_0$) and at 0.7% QP+0% BS($Q_{0.7}B_0$), 0.7% QP+0.3% BS($Q_{0.7}B_{0.3}$), 0.7% QP+0.5% BS($Q_{0.7}B_{0.5}$), 0.7% QP+0.75% BS($Q_{0.7}B_{0.75}$) and 0.7% QP+1.0% BS($Q_{0.7}B_{1.0}$) in experimental diets on dry matter basis. After four weeks of adaptation, triplicate groups of 30 fish initially averaging $15{\pm}0.1g(mean{\pm}SD)$ were randomly distributed into each aquarium, and they were fed one of the experimental diets for 8 weeks. By the end of the feeding trial, weight gain(%), specific growth rate(%), feed efficiency(%) and protein efficiency ratio of fish fed diet $Q_{0.7}B_{0.5},\;Q_{0.7}B_{0.75}\;and\;Q_{0.7}B_{1.0}$, were significantly higher(P<0.05) than those of fish fed the other diets. But, $Q_{0.7}B_{0.5},\;Q_{0.7}B_{0.75}\;and\;Q_{0.7}B_{1.0}$ were no significant differences(P<0.05). In challenge test, fish were infected by intraperitoneal injection of 0.1 mL bacterial suspension with Edwardsiella tarda per fish after the feeding trial. As a result, fish fed QP and BS supplemented diets have a significantly higher cumulative survival rate than those of fish fed control diet(P<0.05). In conclusion, these results indicated that the optimum dietary supplementation level of QP and BS could be approximately 0.7% quartz porphyry+0.5% BAISM($Q_{0.7}B_{0.5}$) of diet based on WG, FER, SGR, PER, cumulative survival rate in juvenile eel A. japonica.

키워드

참고문헌

  1. Adron, J. W. and A. M. Mackie, 1978. Studies on the chemical nature of feeding stimulants for rainbow trout, Salmo gairdneri Richardson. J. Fish Biol., 12, 303−310
  2. Almquist, H. J., H. L. Christensen and J. Maurer, 1967. The effect of bantonites on nutrient retention by turkeys. Feedstuffs, 39, 54−56
  3. AOAC, 1995. Official Methods of Analysis. 16th edition. Association of Official Analytical Chemists. Arlington, Virginia, USA
  4. Bae, J. Y., K. M. Han, G. J. Park and S. C. Bai, 2004. Studies of requirements of optimum dietary essential fatty acids in juvenile eel, Anguilla japonica. J. Aquacult., 17(4), 275−281
  5. Barton, B. A. and G. K. Iwama, 1991. Physiological changes in fish from stress in aquaculture with emphasis on the response and effects of corticosteroids. Ann. Rev. Fish Dis., 1, 3−26
  6. Carr, W. E. S., K. M. Blumenthal and J. C. Netherton III, 1977. Chemoreception in the pigfish, Orthopristis chrysopterus: the contribution of amino acids and betaine to stimulation of feeding behavior by various extracts. Comp. Biochem. Physiol., 58A, 69−73
  7. Choi, D. U., P. K. Jung, K. T. Um, N. K. Park and S. D. Park, 1987. A study on the mineralogical characteristics and its agricultural use of barley stone. J. Kor. Soc. Soil Sci. Fert., 20(3), 199−204
  8. Choi, Y. J., N. J. Lee, Y. J. Cho and S. C. Bai., 2002. Identification of feeding stimulants to improve efficiency of diet for flatfish. J. Kor. Fish. Soc., 35, 196−200
  9. Choi, S. M., S. H. Ko, G. J. Park, S. R. Lim, G. Y. Yoo, J. H. Lee and S. C. Bai, 2004. Utilization of song-gang stone as the dietary additive in juvenile olive flounder, Paralichthys olivaceus. J. Aquacult., 17(1), 39−45
  10. Hayashi, H., 1997. Health effects of mineral dusts. J. Miner. Soc. Kor., 10, 1−17
  11. Han, Y. O., 2003. Synergistic effects of dietary ${\beta}$-1,3 glucan and feed stimulants in juvenile olive flounder, Paralichthys olivaceus. Ms. thesis, Pukyong National University, Busan, Korea
  12. Harada, K., A. Eguchi and Y. Kurosaki, 1987. Feeding attraction activities in the combinations of amino acids and other compounds for abalone, oriental weatherfish and yellow tail. Nippon Suisan Gakkaishi, 53, 1483−1489
  13. Ikeda, I., H. Hosokawa, S. Shimeno and M. Takeda, 1988. Identification of feeding stimulant in the krill extract for jack mackerel. Nippon Suisan Gakkaishi, 54(2), 235−238
  14. Kim, D. S., J. H. Kim, C. H. Jeong, S. Y. Lee, S. M. Lee and Y. B. Moon, 1998. Utilization of obosan (dietary herbs) I. Effects on survival, growth, feed conversion ratio and condition factor in olive flounder, Paralichthys olivaceus. J. Aquacult., 11, 213−221
  15. Kim, K. W., G. J. Park, I. H. Ok, S. C. Bai, Y. J. Choi and I. S. Shin, 2002a. Effects of dietary synthetic amino acid supplementation in Korean rockfish fry, Sebastes schlegeli. J. Aquacult., 15(3), 157−163
  16. Kim, K. W., S. C. Bai, J. W. Koo, X. Wang and S. K. Kim, 2002b. Effects of dietary Chlorella ellipsoidea supplementation on growth, blood characteristics, and whole-body composition in juvenile Japanese flounder Paralichthys olivaceus. J. World Aquacult. Soc., 33, 425−431
  17. Kim, K. H., Y. J. Hwang, K. W. Kim, S. C. Bai and D. S. Kim, 2002c. Effect of dietary aloe on chemiluminescent responses of peripheral blood phagocytes and resistance against Edwardsiella tarda Ewing and Mcwhorter 1965 in the cultured olive flounder, Paralichthys olivaceus. Aquacult. Res., 33, 147−150
  18. Kim, K. H., Y. J. Hwang, K. W. Kim, S. C. Bai and D. S. Kim, 2002c. Effect of dietary aloe on chemiluminescent responses of peripheral blood phagocytes and resistance against Edwardsiella tarda Ewing and Mcwhorter 1965 in the cultured olive flounder, Paralichthys olivaceus. Aquacult. Res., 33, 147−150
  19. Kubitza, F., L. L. Lovshin and R. T. Lovell, 1997. Identification of feed enhancers for juvenile largemouth bass Micropterus salmoides. Aquaculture 148, 191−200
  20. Kumich, A. A. and B. L. Reid, 1960. Poultry nutrition studies with bentonite. Feedstuff, 32, 18
  21. Mackie, A. M. and A. J. Mitchell, 1983. Studies on the chemical nature of feeding stimulants for the juvenile European eel, Anguilla anguilla. J. Fish Biol., 22, 425−430
  22. MOMAF, 2006. Ministry of Maritime Affairs and Fisheries, Statistical Year Book of Maritime Affairs and Fisheries. Seoul, Korea
  23. Murai, T., T. Akiyama and T. Takeuchi, 1985. Effect of dietary protein and lipid levels on performance and carcass composition of fingerling carp. Bull. Jap. Soc. Sci. Fish., 51(4), 605− 608 https://doi.org/10.2331/suisan.51.605
  24. Nematipour, G. R., H. Nakagawa and S. Ohya, 1990. Effect of Chlorella-extract supplement to diet on in vitro lipolysis in ayu. Nippon Suisan Gakkaishi 56, 777−782
  25. Papatryphon, E. and J. H. Soares, 2001. Optimizing the levels of feeding stimulants for use in high-fish meal and plant feedstuff- based diets for striped bass, Morone saxatilis. Aquaculture, 202, 279−288
  26. Park, G. J., 2004. Development of the growth and immune stimulants in olive flounder, Paralichthys oilvaceus. Ph. D. thesis, Department of Fisheries Biology, Pukyong National University, Korea, 143 pp
  27. Pickering, A. D., 1992. Rainbow trout husbandry: management of the stress response. Aquaculture, 100, 125−139
  28. Sola, C. and P. Tongiorgi, 1998. Behaviorural responses of glass eel Anguilla anguilla to non protein amino acid. J. Fish Biology, 53(6), 1253−1262
  29. Son, J. H. and C. I. Park, 1997. Effects of dietary quartz porphyry supplementation on moisture content of excreta, intestinal ammonia contents and blood composition of growing broilers. Kor. J. Poult. Sci., 24(4), 179−184
  30. Son, Y. S., S. H. Kim, S. H. Hong and S. H. Lee, 1998. Effects of feeding bentonite and granite porphyry on ruminal buffering activity and fermentation pattern. Kor. J. Dairy Sci., 20(1), 21− 32
  31. Takeda, M., K. Takii and K. Matsui, 1984. Identification of feeding stimulants for juvenile eel. Bull. Jap. Soc. Sci. Fish., 59, 645−651
  32. Takii, K., S. Shimeno and M. Takeda, 1986. The effect of feeding stimulants in diet on some hapatic enzyme activities of eel. Nippon Susan Gakkaishi, 52(12), 2131−2134
  33. Vadstein, O., 1997. The use of immunostimulation in marine larviculture: possibility and challenge. Aquaculture. 155, 401−417
  34. Watanabe, T., V. Kiron and S. Satoh, 1997. Trace mineral in fish nutrition. Aquaculture, 151, 185−207
  35. Wendelaar Bonga, S. E., 1977. The stress response in fish. Physiol. Rev., 77, 591-625
  36. Yoo, S. J. 2003. Removal characteristic of heavy metal by Song- Gang stone. MS thesis, Kyungsung University, Busan, Korea, 65 pp
  37. Yoo, G. Y., S. H. Lee, Y. C. Kim and O. E. Okorie, 2007. Effects of dietary ${\beta}$-1,3 glucan and feed stimulants in juvenile olive flounder, Paralichthys olivaceus. J. World Aquacult. Soc., 38(1), 138−145