Changes in Feeding Habit and Body Composition of Black Sea Bream Acanthopagrus schlegeli Released in Eelgrass Zostera marina Bed

잘피밭 해역에 방류된 감성돔 Acanthopagrus schlegeli 치어의 식성 및 어체성분 변화

  • Ji, Seung-Cheol (Jeju Sea Fisheries Research Institute, National Fisheries Research & Development Institute) ;
  • Lee, Si-Woo (Chonnam National University of College Fisheries and Ocean Science) ;
  • Kim, Yang-Su (Chonnam National University of College Fisheries and Ocean Science) ;
  • Jeong, Gwan-Sik (Chonnam National University of College Fisheries and Ocean Science) ;
  • Yoo, Jin-Hyung (Jeilfeed Company Ltd.) ;
  • Choi, Nack-Jung (Jeju Sea Fisheries Research Institute, National Fisheries Research & Development Institute) ;
  • Myeong, Jeong-Gu (Marine Resources Laboratory, Korea Ocean Research & Development Institute)
  • 지승철 (국립수산과학원 제주수산연구소) ;
  • 이시우 (전남대학교 수산해양대학) ;
  • 김양수 (전남대학교 수산해양대학) ;
  • 정관식 (전남대학교 수산해양대학) ;
  • 유진형 (주) 천하제일사료) ;
  • 최낙중 (국립수산과학원 제주수산연구소) ;
  • 명정구 (한국해양연구원)
  • Published : 2008.11.25

Abstract

Artificially-produced juvenile black sea bream Acanthopagrus schlegeli (total length $8.3{\pm}1.0\;cm$, body weight $11.2{\pm}4.2\;g$) were released in eelgrass, Zostera marina bed and their initial food organism and changes of body compositions were investigated for one month after release. Predation rates in fish sampled on 1st and 3rd days were 79%, increased up to 100% on 7th and 10th days, and then decreased on 30th days as 75%. Major prey organisms was composed of mainly Amphipoda and Gastropoda. Ratio of Amphipoda and Gastropoda in stomach were highest in fish sampled on 15th and 1st days after release, respectively. Crustacea and Algae were maintained about 20% during a sampling period. Visceral weight index (VWI) offish sampled 20th and 30th after release were significantly higher than that of initial. Carcass crude protein and lipid contents of released fish were showed significantly decreasing; however carcass n-3 HUFA composition was showed increasing tendency with the passage of time after release. Eelgrass bed was supposed to be helpful for the released fish to adjust their feeding habits and biochemical metabolism to the natural environment within a short period after release.

인공종묘 생산된 감성돔 Acanthopagrus schlegeli 치어를 잘 피밭에 방류하여 방류초기의 먹이섭취와 체성분 변화에 대하여 조사하였다. 방류어의 먹이섭취율(predation rate)은 1일째와 3일째 79%로 낮았으며, 7일과 10일째 100%로 증가하였으나 20일째와 30일에는 75%로 낮아졌다. 방류된 감성돔 치어는 단각류와 복족류(Gastropoda)를 주로 섭식하였다. 단각류(Amphipoda)의 섭취는 방류 초기와 30일째에 낮고, 15일째에 82.9%로 가장 높았다. 한편 복족류는 1일째 84.6%로 가장 높았으며, 20일째는 3.1%로 가장 낮은 값을 보였으며, 갑각류와 해조류는 채집 기간동안 20% 내외를 나타내었다. 소화기관 중량비는 방류 후 20일과 30일째 유의적으로 낮은 값을 보였다. 전어체 성분에서는 방류 후 시간 경과에 따라 조단백질과 조지방 성분이 유의적으로 감소하였으며, 지방산 중 DHA 조성이 증가하는 경향을 보였다. 본 연구결과 잘피밭은 자연 먹이의 공급장으로서 방류된 감성돔의 빠른 초기 먹이섭취 및 환경적응에 많은 도움을 준 것으로 판단된다.

Keywords

References

  1. Akiyama, T., T. Murai and T. Nose, 1983. Fluctuations in some body components of fingerling chum salmon after release. Bull. Natl. Res. Inst. Aquaculture, 4, 107−112
  2. AOAC, 1990. Official Method of Analysis of the Association of Official Analysis Chemists. 15th ed. Arlington. Virginia, 1298 pp
  3. AOCS, 1990. AOCS official method. (in) Official method and recommended practice of the AOCS, 4th ed., Vol I, AOCS. Champaign, USA, 89 pp
  4. Huh, S. H. and S. N. Kwak, 1997. Feeding habits of Syngnathus schlegeli in eelgrass (Zostera marina) bed in Kwangyang Bay, J. Kor. Fish. Soc., 30, 896−902
  5. Huh, S. H. and S. N. Kwak, 1998. Feeding habits of juvenile Acanthopagrus schlegeli in the eelgrass (Zostera marina) bed in Kwangyang Bay. Kor. J. Ichthyol., 10, 168−175
  6. Huh, S. H. and S. N. Kwak, 1999. Feeding habits of Acnathogobius flavimanus in the eelgrass (Zostera marina) bed in Kwangyang Bay. J. Kor. Fish. Soc., 32, 10−17
  7. Jeong, S. J., O. H. Yu and H. L. Suh, 2004. Seasonal variation and feeding habits of amphipods inhabiting Zostera marina beds in Gwangyang Bay, Korea. J. Kor. Fish. Soc., 37, 122−128
  8. Ji, S. C., J. H. Yoo, S. W. Lee, H. J. Go, G. S. Jeong and J. G. Myeong, 2004. Comparison of digestive organ and body composition among the cultured, wild and released fish, 1-year black sea bream, Acanthopagrus schlegeli. J. Kor. Fish. Soc., 37, 462−468
  9. JI, S. C., S. W. Lee, J. H. Yoo, Y. S. Kim, G. S. Jeong and J. G. Myoung, 2007. Initial feeding habits and changes in body composition of juvenile black sea bream, Acanthopagrus schlegeli released into the Gamak Bay. J. Aquacult., 20, 90−95
  10. Kudoh, T., K. Suetomo and K. Yamaoka, 1999. Distribution and behaviour of wild and artificially reared juveniles of red sea bream Pagrus major at Morodo Cove in Ehime Prefecture. Nippon Suisan Gakkaishi, 65, 230−240
  11. Kwak, S. N. and S. H. Huh, 2002. Feeding habits of Platycephalus indicus in eelgrass (Zostera marina) beds in Kwangyang Bay. Kor. J. Ichthyol., 14, 29−35
  12. Kwak, S. N., S. H. Huh and C. G. Choi, 2006. Comparisons of fish assemblages associated with eelgrass bed and adjacent unvegetated habitat in Jindong Bay. Kor. J. Ichthyol., 18, 119−128
  13. Lee, T. W., H. T. Moon, H. B. Hwang, S. H. Huh and D. J. Kim, 2000. Seasonal variation in species composition of fishes in the eelgrass beds in Angol Bay of the southern coast of Korea. J. Kor. Fish. Soc., 33, 439−447
  14. Masaki, K., K. Yamaura, I. Aoto, H. Okuma, H. Kanamaru and Y. Ito, 2007. Movement, dispersal and growth of farm-raised Apostichopus japonicus juveniles after relese into artificial reef. Aquaculture Sci., 55, 355−366
  15. Matsumiya, Y. and K. Kiso, 1982. Movements and adaptation process in Shijiki Bay, Hirao Island. Bull. Seikai Reg. Fish. Res. Lab., 58, 89−98
  16. Nakagawa, H., J. Karakawa and M. Yamamoto, 1994. Changes in body constituents of young black sea bream, Acanthopagrus schlegeli (Bleeker) released into the Inland Sea of Japan. The 3rd Asian Fish. Forum, Asian Fish. Soc. Manila, Philippines, pp. 880−883
  17. Nakagawa, H., T. Umino and H. Mizogami, 1999. Effect of feeding regime on biological and biochemical parameters in ayu. Fish. Sci., 65, 259−263
  18. Nakagawa, H., T. Umino, M. Hayashi, T. Sasaki and K. Okada, 2000. Changes in biochemical composition of black sea bream released at 20 mm size in Daio bay, Hiroshima. Suisanzoshoku, 48, 643−648
  19. Nakamura, T., O. Katano and S. Yamamoto, 2004. Effects of aquatic plant zones on the reduction of predation pressure on Japanese native fish by smallmouth bass Micropterus dolomieu. Suisanzoshoku, 52, 287−291
  20. Park, J. I., Y. K. Kim, S. R. Park, J. H. Kim, Y. S. Kim, J. B. Kim, P. Y. Lee, C. K. Kang and K. S. Lee, 2005. Selection of the optimal transplanting method and time for restoration of Zostera marina habitats. Algae, 20, 379−388 https://doi.org/10.4490/ALGAE.2005.20.4.379
  21. Shoji, J., K. Sakiyama, M. Hori, G. Yoshida and M. Hamaguchi, 2007. Seagrass habitat reduces vulnerability of red sea bream Pagrus major juveniles to piscivorous fish predator. Fish. Sci., 73, 1281−1285
  22. Sikida, A., N. Taniguchi and H. Ando, 1983. Benthos fauna and food habit of black sea-bream in nursery pond. Rep. Usa mar. biol. Inst. Kochi Univ., 5, 53−63
  23. Sudo, H., M. Azuma and M. Azeta, 1987. Dial changes in predator- prey relationships between red sea bream and gammaridean amphipods in Shijiki Bay. Nippon Suisan Gakkaishi, 53, 1567−1575
  24. Sung, K. B., 1988. Artificial propagation of chum salmon (Oncorhynchus keta) in Korea. North Pac. Anadr. Fish Comm. Bull., 1, 375−379
  25. Umino, T., H. Imabayashi, H. Itozaki, H. Nakagawa and H. Yamanaka, 1989. Feeding habit and body constitute of the larval red sea bream, Pagrus major, in the semi-extensive rearing condition. J. Fac. Appl. Biol. Sci., 28, 71−77
  26. Umino, T., M. Hayashi, J. Miyatake, K. Nakagawa, T. Sasaki, K. Okada and H. Nakagawa, 1999. Significance of release of black sea bream at 20-mm size on stock enhancement in Daiô Bay, Hiroshima. Suisanzoshoku, 47, 337−342
  27. Yamashita, H., T. Umino, S. Nakahara, K. Okada and H. Nakagawa, 1996. Comparison of biochemical characteristics between hatchery-produced and wild black sea bream. Nippon Suisan Gakkaishi, 62, 89−93
  28. Yoo, J. H., D. J. Hwang, Y. H. Yoon, G. S. Jeong and H. J. Go, 2003. Initial adaptation of released black sea bream, Acanthopagrus schlegeli in Gamak Bay, southern coast in Korea. J. Kor. Fish. Soc., 36, 365−371
  29. Yun, S. G., S. H. Byun, S. N. Kwak and S. H. Huh, 2002. Seasonal variation of Caprellids (Crustracea: Amphipoda) on blades of Zostera marina in Kwangyang Bay, Kor. J. Kor. Fish. Soc., 35, 105−109