Study on Feeding Habits of Micropterus salmoides in Habitat Types from Korea

서식처 유형에 따른 배스 Micropterus salmoides 식성의 차이

  • Park, Jong Sung (Inland Aquaculture Research Center, National Institute of Fisheries Science) ;
  • Kim, Su Hwan (Division of Ecological Conservation, National Institute of Ecology) ;
  • Kim, Hyun Tae (Department of Biological Science, College of Natural Science, Chonbuk National University) ;
  • Kim, Jae Goo (Department of Biological Science, College of Natural Science, Chonbuk National University) ;
  • Park, Jong Young (Department of Biological Science, College of Natural Science, Chonbuk National University) ;
  • Kim, Hyeong Su (Inland Aquaculture Research Center, National Institute of Fisheries Science)
  • 박종성 (국립수산과학원 중앙내수면연구소 내수면양식연구센터) ;
  • 김수환 (국립생태원 생태연구본부) ;
  • 김현태 (전북대학교 생명과학과) ;
  • 김재구 (전북대학교 생명과학과) ;
  • 박종영 (전북대학교 생명과학과) ;
  • 김형수 (국립수산과학원 중앙내수면연구소 내수면양식연구센터)
  • Received : 2019.02.28
  • Accepted : 2019.03.21
  • Published : 2019.03.31

Abstract

In order to compared the feeding habits of Micropterus salmoides according to the habitat types, the stomach content of a total of 306 M. salmoides were investigated from April to September 2016 in the stream and reservoir. As a result, the highest IRI (Index of relative importance) value in M. salmoides inhibiting the stream and reservoir were identified as fishes. However, the IRI value of crustaceans and insects as well as fishes in M. salmoides inhibiting the reservoir were high, showing a difference in IRI value of M. salmoides inhibiting the stream.

서식처 유형에 따른 배스의 식성을 비교하기 위해 하천과 저수지에서 2016년 4월부터 9월까지 306개체의 배스를 채집한 후 먹이생물을 분석하였다. 그 결과 하천과 저수지에 서식하는 배스의 가장 중요한 먹이생물은 어류로 확인되었다. 그러나 저수지에 서식하는 배스의 소화관 내용물에는 어류뿐 아니라 갑각류와 곤충류의 비율도 높게 나타나 하천에 서식하는 배스와 섭식 차이를 보였다.

Keywords

References

  1. Braun, C.D. and C.A. Walser. 2011. Distribution and diet of largemouth bass(Micropterus salmoides) in the Lower Boise river, Idaho. West. N. Am. Nat., 71: 316-326. https://doi.org/10.3398/064.071.0315
  2. Britton, J.R. and D.M. Harper. 2006. Length-weight relationships of fish species in the freshwater rift valley lakes of Kenya. J. Appl. Ichthyol., 22: 334-336. https://doi.org/10.1111/j.1439-0426.2006.00769.x
  3. Carpenter, S.R. and J.F. Kitchell. 1993. Trophic cascade in lakes. Cambridge University Press, Cambridge, 400pp.
  4. Costantini, M.L., P. Carlino, E. Calizza, G. Careddu, D. Cicala, S.S. Caputi, F. Florentino and L. Rossi. 2018. The role of alien fish (the centrarchid Micropterus salmoides) in lake food webs highlighted by stable isotope analysis. Freshw. Biol., 63: 1130-1142. https://doi.org/10.1111/fwb.13122
  5. Dobson, M. and C. Frid. 2009. Ecology of aquatic system. Oxyford University Press Inc., New York, 321pp.
  6. Garcia, D.A.Z., A.D.A Costa, G.L.A. Leme and M.L Orsi. 2014. Biology of black bass Micropterus salmoides(Lacepede, 1802) fifty years after the introduction in a small drainage of the upper Parana river basin, Brazil. Biodiversitas, 14: 180-185.
  7. Garcia-Berthou, E. and R. Moreno-Amich. 2000. Introduction of exotic fish into a Mediterranean lake over a 90-year period. Archiv fur Hydrobiologie, 149: 271-284. https://doi.org/10.1127/archiv-hydrobiol/149/2000/271
  8. Hossain, M.M., G. Perhar, G.B. Arhonditsis, T. Matsuishi, A. Goto and M. Azuma. 2013. Examination of the effects of largemouth bass (Micropterus salmoides) and bluegill (Lepomis macrochirus) on the ecosystem attributes of lake Kawahara-oike, Nagasaki, Japan. Ecol. Inform., 18: 149-161. https://doi.org/10.1016/j.ecoinf.2013.07.005
  9. Jang, M.H., G.J. Joo and M.C. Lucas. 2006. Diet of introduced largemouth bass in Korean rivers and potential interaction with native fishes. Ecol. Freshw. Fish, 15: 315-320. https://doi.org/10.1111/j.1600-0633.2006.00161.x
  10. Jeon, S.R., Y.M. Son, H.B. Song and H.G. Byeon. 1997. Feeding habit of bluegill, Lepomis macrochirus, introduced at Lake Paldang. Korean J. Limnol., 30: 75-84.(in Korean)
  11. Kim, C.H., W.O. Lee, J.K. Lee and K.E. Hong. 2005. The ichthyofauna in lake Cheongpyeong Korea. Korean J. Ichthyol., 17: 123-130.(in Korean)
  12. Kim, D.H., S.O. Hwang, H.J. Yang, S.R. Jeon, S.S. Choi, I.S. Kim and C.G. Choi. 1996. Studies on the distribution and effect of the exotic fishes in dam reservoir. K-water, 258pp.
  13. Kim, I.S. and J.Y. Park. 2002. Freshwater fishes of Korea. Kyohak publishing, Seoul, 467pp.(in Korean)
  14. Kim, J.D. and G.S. Kim. 1976. Experiment of the Large mouth bass (Micropterus salmoides) transplantation (I) (Studies on the feed habit and growth). Bull. Nat. Fish Hat., 1: 53-75.
  15. Kim, M.C., S.P. Cheon and J.K. Lee. 2013. Invertebrates in Korean freshwater ecosystems. Geobook publishing, Seoul, 483pp. (in Korean)
  16. Kim, S.G., Y.H. Kang, G.B. Hong, D.U. Yoo, H.Y. Suk, B.S. Chae, H.S. Kim and U.W. Hwang. 2011. Ichthyofauna and community structure from 21 Lakes in the yeungnam are including Gyeongsangbuk-do and Gyeongsangnam-do provinces, Korea. Korean J. Ichthyol., 23: 288-299.(in Korean)
  17. KNPRI (Korea National Park Research Institue). 2014. Management plan of invasive alien species (Micropterus salmoides, Lepomis macrochirus). Korea National Park Research Institue, 140pp.(in Korean)
  18. Ko, M.H., J.Y. Park and Y.J. Lee. 2008. Feeding habits of an introduced large mouth bass, Micropterus salmoides(Perciformes; Centrachidae), and its influence on ichthyofauna in the lake Okjeong, Korea. Korean J. Ichthyol., 20: 36-44.(in Korean)
  19. Lee, W.O., C.B. Kang, H.W. Park, M.C. Han, H.G. Byeon, J.K. Meyong, C.H. No, G.P. Hong, H.B. Song, B.S. Chae, G.H. Han, J.R. Ko and Y.P. Hong. 2002. The introduced fishes of Korea. 2002 the ichthyological society of Korea symposium, 128pp. (in Korean)
  20. Lee, W.O., K.H. Kim, J.H. Kim and K.E. Hong. 2008. Study of freshwater fish fauna and distribution of introduced species of Mankyeong river, Korea. Korean J. Ichthyol., 20: 198-209.(in Korean)
  21. Lee, W.O., H. Yang, S.W. Yoon and J.Y. Park. 2009. Study on the feeding habits of Micropterus salmoides in lake Okjeong and lake Yongdam, Korea. Korean J. Ichthyol., 21: 200-207. (in Korean)
  22. Lorenzoni, M., M. Corboli, A.J.M. Dorr, G. Giovinazzo, S. Selvi and M. Mearelli. 2002. Diets of Micropterus salmoides Lac. and Esox lucius L. in Lake Trasimeno (Umbria, Italy) and their diet overlap. Bull. Fr. Peche Piscic., 365-366: 537-547.
  23. Maezono, Y., R. Kobayashi, M. Kusahara and T. Miyashita. 2005. Direct and indirect effects of exotic bass and bluegill on exotic and native organisms in farm pond. Ecol. Appl., 15: 638-650. https://doi.org/10.1890/02-5386
  24. Maezono, Y. and T. Miyashita. 2003. Community-level impacts induced by introduced largemouth bass and bluegill in farm ponds in Japan. Biol. Conserv., 109: 111-121. https://doi.org/10.1016/S0006-3207(02)00144-1
  25. ME (Ministry of Environment). 1998. Enforcement decree of the natural environment conservation act(Law no. 15639).
  26. ME (Ministry of Environment). 2014. Study on the development of effecctive fishing method for invasive alien species(II). Ministry of Environment, 224pp.(in Korean)
  27. NIE (National Institute of Ecology). 2014. Present and future of invasive alien species. National Institute of Ecology, 237pp. (in Korean)
  28. NIFS (National Institute of Fisheies Science). 2009. Distribution, utilization and management strategy of introduced freshwater fish. National Institute of Fisheies Science, 125pp. (in Korean)
  29. Orru, F., A.M. Deiana and A. Cau. 2010. Introduction and distribution of alien freshwater fishes on the island of Sardinia (Italy): an assessment on the basis of existing data sources. J. Appl. Ichthyol., 26: 46-52. https://doi.org/10.1111/j.1439-0426.2010.01501.x
  30. Oscoz, J., P.M. Leunda, F. Campos, M.C. Escala, C. Garcia-Fresca and R. Miranda. 2005. Spring diet composition of rainbow trout, Oncorhynchus mykiss, in the Urederra river (Spain). Int. J. Lim., 41: 27-34. https://doi.org/10.1051/limn/2005003
  31. Pinkas, L., M.S. Oliphant and I.K.K. Ivrson. 1971. Food habits of albacore, bluefin tuna, and bonito in California water. Calif. Dept. Fish Game. Fish Bull., 152: 1-105.
  32. Rivero, L.H. 1937. The introduced largemouth bass, a predator upon native Cuban fishes. Trans. Am. Fish. Soc., 66: 367-368. https://doi.org/10.1577/1548-8659(1936)66[367:TILBAP]2.0.CO;2
  33. Son, Y.M. and H.G. Byeon. 2001. Feeding habit of main carnivirous fish (Erhthroculter erythropterus, Opsariichtys uncirostris and Micropterus salmoides) at Lake Paldang. Inst. Bas. Sci. Seowon Univ., 15: 61-78.(in Korean)
  34. Takamura, K. 2007. Performance as a fish predator of largemouth bass (Micropterus salmoides (Lecepede)) invading Japanese freshwaters: a review. Ecol. Res., 22: 940-946. https://doi.org/10.1007/s11284-007-0415-7
  35. Takaharu, N., N. Takamura, M. Nakagawa, Y. Kadono, T. Tanaka and H. Mitsuhashi. 2015. Environmental and biotic characteristics to discriminate farm ponds with and without exotic largemouth bass and bluegill in western Japan. Limmology, 16: 139-148.
  36. Vitousek, P.M., C.M. D'Antonio, L.L. Loope and R. Westbrooks. 1996. Biological invasions as global environmental change. Am. Sci., 84: 468-477.
  37. Walsh, J.R., S.R. Carpenter and M.J.V. Zanden. 2016. Invasive species triggers a massive loss of ecosystem services through a trophic cascade. P. N. A. S., 113: 4081-4085. https://doi.org/10.1073/pnas.1600366113
  38. Wasserman, B.J., N.A. Strydom and O.L.F. Weyl. 2011. Diet of largemouth bass, Micropterus salmoides (Centrarchidae), an invasive alien in the lower reaches of an Eastern Cape river, South Africa. Afr. Zool., 46: 378-386. https://doi.org/10.3377/004.046.0217
  39. Yodo, T. and K. Iguchi. 2004. A review on the black bass problem referring to the historical background in Japan. Bull. Fish. Res. Agen., 12: 10-24.
  40. Yodo, T. and S. Kimura. 1998. Feeding habits of largemouth bass in lake Shorenji and Nishinoko, central Japan. Nippon Suisan Gakkaishi, 64: 26-38.(in Japanese) https://doi.org/10.2331/suisan.64.26
  41. Zaret, T.M. and R.T. Paine. 1973. Species introduction in a tropical lake. Science, 182: 449-455. https://doi.org/10.1126/science.182.4111.449