DOI QR코드

DOI QR Code

Marine Algal Flora and Community Structure of Igidea Area in Busan, Korea

부산 이기대 지역의 해조상 및 군집구조

  • Shin, Bong-Kyun (Department of Environmental Engineering, Pukyung National University) ;
  • Kwon, Chun-Jung (Korea Inter-University Institute of Ocean Science, Pukyung National University) ;
  • Lee, Suk-Mo (Department of Ecological Engineering, Pukyung National University) ;
  • Choi, Chang-Geun (Department of Ecological Engineering, Pukyung National University)
  • 신봉균 (부경대학교 환경공학과) ;
  • 권천중 (부경대학교 해양과학공동연구소) ;
  • 이석모 (부경대학교 생태공학과) ;
  • 최창근 (부경대학교 생태공학과)
  • Received : 2013.10.16
  • Accepted : 2014.04.25
  • Published : 2014.04.30

Abstract

Marine algal flora and community structure were seasonally investigated at four sites in the vicinity of the Igidae on the southern east coast of Korea from May 2010 to February 2011. A total of 66 species including 9 of Chlorophyta, 14 of Phaeophyta, 43 of Rhodophyta were found during the survey period. Among these species, 16 species were found throughout the year. Seasonal mean biomass in wet weight was 123.6 (spring), 2,061.6 (summer), 412.0 (autumn), 678.9 (winter) $g{\cdot}m^{-2}$. Maximum biomass was recorded in summer($2,061.6g{\cdot}m^{-2}$), and minimum was recorded in spring($123.6g{\cdot}m^{-2}$). Spatial maximum and minimum species number were recorded at station 3 and 4(50 species) and at station 1(47 species). At station 1, 2 directly exposure on Yongho and Daeyeon cheon (stream) run off, and discharge from Nambu sewage treatment plants near coastal area, species diversity was relatively low and dominant species were similar throughout four seasons. The R/P, C/P and (R+C)/P value reflecting flora characteristics were 3.07, 0.64 and 3.71, respectively. The flora investigated could be classified into six functional groups such as coarsely branch form 39.39 %, sheet form 30.30 %, thick leather form 13.64 %, filamentous form 12.12 %, crustose form 3.03% and jointed calcareous form 1.52 % during survey period. The number of marine algae species in Igidea were 96 species at 1996 to 1997 and 66 species at 2010 to 2011, respectively. The change of seaweed species is due to the pollution loaded from sewage treatment plant and stream. We thus recommend that the positive maintenance control method like sewage treatment, for the protection of seaweed bed should be proceeded to near coastal area.

우리나라 동남해 연안 해역에 위치한 이기대 지역에서 2010년 5월부터 2011년 2월까지 계절별로 해조상 및 군집구조에 관한 연구를 수행하였다. 조사기간 동안 녹조류 9종, 갈조류 14종, 홍조류 43을 포함한 총 66종이 동정되었으며, 16종의 해조류는 조사지역에서 연중 출현하였다. 계절별 평균 현존량은 봄 $123.6g{\cdot}m^{-2}$, 여름 $2,061.6g{\cdot}m^{-2}$, 가을 $412.0g{\cdot}m^{-2}$, 겨울 $678.9g{\cdot}m^{-2}$로 나타났다. 종조성의 차이는 주변의 오염원이 존재하지 않는 정점 3과 4에 비하여 주변 하천의 영향을 받는 정점 1로 갈수록 종조성이 상대적으로 낮은 경향을 보였는데 이는 주변의 용호천, 대연천, 남부하수처리장 방류수에 의한 영향으로 판단되었다. 해조군집의 생태적 특성을 판단할 수 있는 R/P, C/P, (R+C)/P 값은 각각 3.07, 0.64, 3.71로 나타났으며, 해조류의 외부형태와 내부구조 등에 따라 구분되는 6가지 기능형군에 따른 분류결과는 성긴분기형 39.39 %, 엽상형 30.30 %, 다육질형 13.64 %, 사상형 12.12 %, 각상형 3.03 %, 유절산호말형 1.52 %으로 나타났다. 한편, 이기대 지역의 해조류 개체수는 1996년부터 1997년에 96종, 2010년부터 2011년에 66종으로 감소된 것을 확인하였다. 이는 주변하천과 하수처리장의 방류수 등에 의한 영향으로 판단된다. 결론적으로 대도시 인근 연안의 해조군락 보호 및 육성을 위하여 연안역에 유입되는 오하수의 처리 및 해조장 복원과 같은 적극적인 해양환경 유지관리방법이 체계적으로 추진되어야 할 것이다.

Keywords

References

  1. Arevalo, R., S. Pinedo and E. Ballesteros(2007), Changes in the composition and structure of Mediterranean rocky-shore communities following a gradient of nutrient enrichment: descriptive study and test of proposed methods to assess water quality regarding macroalgae, Marine Pollution Bulletin, Vol. 55, Issues 1-6, pp. 104-113. https://doi.org/10.1016/j.marpolbul.2006.08.023
  2. Cheney, D. P.(1977), R&C/P - A new and improved ratio for comparing seaweed floras, Journal of Phycology, No. 13, p. 129.
  3. Choi, C. G.(2007), Algal flora and Ecklonia stolonifera Okamura (Laminariaceae) population of Youngdo in Busan, Korea, Algae, Vol. 22, No. 4, pp. 313-318. https://doi.org/10.4490/ALGAE.2007.22.4.313
  4. Choi, C. G., H. G. Kim and C. H. Sohn(2002), Effect of transplantation of Ecklonia stolonifera Okamura with adhesive glue, Journal of the Korean fisheries society, Vol. 35, No. 6, pp. 608-613. https://doi.org/10.5657/kfas.2002.35.6.608
  5. Choi, C. G., M. T. H. Chowdhury, I. Y. Choi and Y. K. Hong(2010a), Marine algal flora and community structure on the southern east coast of Korea, The sea, Vol. 15, pp. 133-139.
  6. Choi, C. G., S. J. Oh and I. J. Kang(2010b), A study on the community structure of subtidal marine algae in Kijang, Korea, Faculty of agriculture, Kyushu university, Vol. 55, No. 1, pp. 39-46.
  7. Choi, H. G.(2008), Effects of thermal effluents from Wolseong nuclear power plant on macroalgal composition and community structure, Algae, Vol. 23, pp. 151-162. https://doi.org/10.4490/ALGAE.2008.23.2.151
  8. Diez, I., A. Secilla, A. Santolaria and J. M. Gorostiaga (1999), Phytobenthic intertidal community structure along an environmental pollution gradient, Marine Pollution Bulletin, Vol. 38, pp. 463-472. https://doi.org/10.1016/S0025-326X(98)90161-8
  9. Feldmann, J.(1937), Recherches sur la vegetation marine de la Miditerranee, La cote des Alberes, Revue Algologique, Vol. 10, pp. 1-339.
  10. Guiry, M. D. and G. M. Guiry(2012), Algaebase. World-wide electronic publication, National University of Ireland, Galway, Retrieved from "http://www.algaebase.org" on December 12.
  11. Hong, S. Y., C. W. Ma and Y. S. Kang(1994), Distribution of copepod indicator species and zooplankton communities in Pusan Harbor, Korea, The Sea Journal of the Korean Society of Oceanography, Vol. 29, No. 2, pp. 132-144.
  12. Kang, J. W.(1966), On the geographical distribution of marine algae in Korea, Bulletin of Pusan Fisheries College, Vol. 7, pp. 1-125.
  13. Kang, J. W.(1968), Illustrated encyclopedia of fauna & flora of Korea, Vol. 8, Marine algae. Samhwa Press, Seoul, Korea, pp. 1-465.
  14. Kang, P. J., Y. S. Kim and K. W. Nam(2008), Flora and community structure of benthic marine algae in Ilkwang Bay, Korea, Algae, Vol. 23, No. 4, pp. 317-326. https://doi.org/10.4490/ALGAE.2008.23.4.317
  15. Kim, B. Y., W. S. Kim and H. G. Choi(2010), Seasonal variability of seaweed biomass along the vertical shore gradients of Nachido and Odo islands, the Yellow Sea, Korea, Journal of the Korean fisheries society, Vol. 13, No. 4, pp 324-332. https://doi.org/10.5657/fas.2010.13.4.324
  16. Kim, Y. T. and H. J. Lee(2010), Positive correlation water temperature increase with thermal front retrogression in the southern sea of Korea, Proceedings of spring conference of the Korean earth science society, pp. 122-123.
  17. Langford, T. E. L.(1990), Ecological Effects of Thermal Discharges. Elsevier Applied Science Publishers Ltd. London and New York, p. 468.
  18. Lee, I. K., H. S. Kim., C. H. Koh, J. W. Kang, S. Y. Hong, S. M. Boo, I. H. Kim and Y. C. Kang(1984), Studies on the marine benthic communities in inter- and subtidal zone II. Qualitative and quantitative analysis of the community structure in south-eastern coast of Korea. Proceedings of College of Natural Sciences Seoul National University, Vol. 9, pp. 71-126.
  19. Lee, K. H., H. I. Yoo and H. G. Choi(2007), Seasonal community structure and vertical distribution of medicinal seaweeds at Kkotji in Taean Peninsula, Korea, Algae, Vol. 22, No. 3, pp. 209-219. https://doi.org/10.4490/ALGAE.2007.22.3.209
  20. Lee, K. W. and J. W. Kang(1971), A preliminary survey of the algal flora and communities of Dongbaiksum, Pusan, Publications of Marine Laboratory Pusan Fisheries College, Vol. 4, pp. 29-37.
  21. Lee, K. W.(1972), Annual variation of marine algae flora at Dongbaeksum, Bulletin of Fishery, Cheju University, Vol. 1, pp. 8-16.
  22. Lee, K. W.(1973), Observation of algal community near Dongbaeksum, Haeundae, Bulletin of Fishery, Cheju University, Vol. 5, pp. 319-331.
  23. Lee, Y. P.(2008), Marine algae of Jeju, Academy Publisher, Seoul, Korea, pp. 1-477.
  24. Lee, Y. P and S. Y. Kang(2001), A Catalogue of the Seaweeds in Korea, Cheju National University Press, Cheju, Korea, p. 662.
  25. Littler, M. M. and D. S. Littler(1984), Relationships between macroalgal functional form groups and substrata stability in a subtropical rocky-intertidal system, Journal of Experimental Marine Biology and Ecology, Vol. 74, pp. 13-34. https://doi.org/10.1016/0022-0981(84)90035-2
  26. Mueller-Dombois, D. and H. Ellenberg(1974), Aims and Methods of Vegetation Ecology, John Wiley and Sons, New York, U.S.A., pp. 1-547.
  27. Nam, K. W. and Y. S. Kim(1999), Benthic marine algal flora and community structure of Yongho-dong area in Pusan Korea, Korean Journal of Fisheries and Aquatic Sciences, Vol. 32, pp. 374-384.
  28. Orfanidis, S., P. Panayotidis and N. Stamatis(2001), Ecological evaluation of transitional and coastal and water; A marine benthic macrophytes-based model, Mediterranean Marine Science, Vol. 2, pp. 45-65.
  29. Park, H. S.(2001), Numerical simulation for the optimum design factor for the construction of ocean outfall system, Ph.D. Thesis, Pukyong National University, Busan, Korea, p. 16
  30. Saito, Y. and S. Atobe(1970), Phytosociological study of intertidal marine algae I. Usujiri Benten-Jima, Hokkaido, Faculty of Fisheries Hokkaido University, Vol. 21, No. 2, pp. 37-69.
  31. Segawa, S.(1956), Coloured illustration of the seaweeds of Japan, Hoikusha Publishing Co, Ltd., Osaka, Japan, pp. 1-195.
  32. Sohn, C. H., C. G. Choi and H. G. Kim(2007), Algal Communities and Useful Seaweed Distribution at Gangnung and Its Vicinity in East Coast of Korea, Algae, Vol. 22, No. 1, pp. 45-52. https://doi.org/10.4490/ALGAE.2007.22.1.045
  33. Song, J. N., S. K. Park, J. S. Heo, B. Y. Kim, H. I. Yoo and H. G. Choi(2011), Summer Seaweed Flora and Community Structure of Uninhabited Islands in Goheung, Korea, Korean Journal of Fisheries and Aquatic Sciences, Vol. 44, No. 5, pp. 524-532. https://doi.org/10.5657/KFAS.2011.0524
  34. Wells, E., M. Wilkionson, P. Wood and C. Scanlan(2007), The use of macroalgal species richness and composition on intertidal rocky seashores in the assessment of ecological quality under the European water framework directive, Marine Pollution Bulletin, Vol. 55, pp. 151-161. https://doi.org/10.1016/j.marpolbul.2006.08.031
  35. Yoo, H. I., J. H. Lee, K. H. Lee, S. H. Beak, Y. B. Heo, H. S. Noh and H. G. Choi(2007), Summer marine algal floras and community structures in Taean Peninsula, Korea, Journal of the Korean fisheries society, Vol. 40, No. 4, pp. 210-219. https://doi.org/10.5657/kfas.2007.40.4.210
  36. Yoo, J. S.(2003a), Biodiversity and community structure of marine benthic community in the rocky shore of Dongbaekseom, Busan, Algae, Vol. 18, pp. 225-232. https://doi.org/10.4490/ALGAE.2003.18.3.225
  37. Yoo, J. S.(2003b), Dynamics of marine benthic community in intertidal zone of Seoam, Busan. The Sea Journal of the Korean Society of Oceanography, Vol. 8, No. 4, pp. 420-425.
  38. Yoshida, T.(1998), Marine algae of Japan, Uchida Rokakuho Publishing Company, Tokyo, Japan, pp. 1-1222.

Cited by

  1. Marine Algal Communities around Oryukdo, Busan, Korea vol.47, pp.6, 2014, https://doi.org/10.5657/KFAS.2014.0960
  2. Macroalgal Community Structure on the Subtidal of Southern Six Islands, Korea vol.35, pp.4, 2017, https://doi.org/10.11626/KJEB.2017.35.4.595