DOI QR코드

DOI QR Code

Marine Environments and Production of Laver Farm at Aphae-do Based on Water Quality and Phytoplankton Community

수질환경과 식물플랑크톤 군집 변화에 의한 압해도 김 양식장의 해양환경과 생산

  • Yoon, Yang Ho (Faculty of Marine Technology, Chonnam National University)
  • Received : 2014.06.13
  • Accepted : 2014.07.12
  • Published : 2014.09.30

Abstract

In this study, I examined the water quality and phytoplankton community in aquaculture laver farm in the southwest part of Aphae-do, South Korea, based on the young leaf stage, middle leaf stage, and adult leaf stage of laver thallus from October, 2013 to January, 2014. It was observed that the Aphae laver farm, as located in shallow waters, was found to have a serious resuspsension of the surface sediments due to physical disturbance caused by winds and tidal mixing. Such a resuspension of surface sediments coupled with nutrients supply obstructs light penetration into the sea for its huge amount of total suspended matters. As a result for this reason, it was viewed toimpedthe growth of phytoplankton was impeded as it also competes with laver to absorb the same kinds of nutrients as laver does during the laver growth period in winter. Such elements of the marine environment in Aphae laver farm are in contrast with the environment of Japan, where nutrients including dissolved inorganic nitrogen, in particular, are insufficient to cause the recent laver bad harvest, discoloration and quality degradation while large diatoms, with their higher nutrients absorption efficiency than laver, generate winter red tide. In other words, an important factor to maintain the high laver production in the southern parts of West Sea of Korea was found to be the marine environment of its laver farms where large diatoms are prevented from growing due to nutrients supply and dense seston weights from resuspended matters by physical disturbances.

신안군 압해도 남서해역에 위치하는 김 양식 어장의 해양환경 특성을 파악하기 위하여 2013년 10월부터 2014년 월까지 김 엽상체의 성육 단계인 유엽기, 중엽기 및 성엽기에 맞추어 3회에 거쳐 수질환경과 식물플랑크톤 군집 파악을 위한 현장조사를 실시하였다. 압해 김 양식장은 수심의 얕은 천해역에 위치하여 바람과 조석혼합 등 물리적 교란에 의해 해저 표층퇴적물의 재부유가 심하게 발생하고 있다. 해저 표층퇴적물의 재부유는 영양염류의 공급과 함께 높은 총부유물질량에 의해 해수 중으로 투과되는 빛을 방해하여, 겨울 김 성장시기에 김과 동일한 영양염류 흡수를 경쟁하는 식물플랑크톤 성장을 방해하는 것으로 판단되었다. 이러한 압해 김 양식장 해양환경은 최근 일본의 김 흉작과 변색에 의해 품질이 저하되는 원인인 김 성장기 질소원을 중심으로 하는 영양염류 부족과 투명한 해수로 인한 충분한 광 투과로 김 보다 영양흡수 효율이 좋은 대형 규조류가 겨울 규조적조를 발생시키는 환경과 대조된다. 즉 압해도 김 양식장의 물리적 교란에 따른 퇴적물 재부유로 인한 영양염 공급과 높은 부유물질량에 따른 식물플랑크톤 성장 억제와 같은 해양환경이 우리나라 서해 남부 김 양식장의 높은 생산량으로 연결하는 중요한 인자로 작용한다고 판단되었다.

Keywords

References

  1. Aoki K and K Kajitori. 2011. An essay on a construction of quantitative models of cultured nori prodution in Ariake Sea using SVM. J. Nat'l Fish. Univ. 59:253-256. (in Japanese)
  2. Chihara M and M Murano. 1997. An Illustrated Guide to Marine Plankton in Japan. Tokai Univ. Press, Tokyo. 1574pp. (in Japanese)
  3. Cho HY, BJ Cho and YH Kim. 2007. Estimation error analysis on the COD loads due to the sampling intervals. J. Korean Soc. Coast. Ocean Eng. 19:266-273. (in Korean)
  4. Choe S and TW Chung. 1972. Nutrients and suspended organic particulates in the Estuary of Nak-Dong River. J. Oceanol. Soc. Korea. 7:1-14. (in Korean)
  5. Choi JK. 1991. The influence of the tidal front on primary productivity and distribution of phytoplankton in the mid-eastern coast of Yellow Sea. J. Oceanol. Soc. Korea. 26:223-241. (in Korean)
  6. Cupp EE. 1943. Marine plankton diatoms of the west coast of north America. Bulletin of the Scripps Institution of Oceanogr. Univ. Calif. 5:1-237.
  7. Dodge JD. 1982. Marine dinoflagellates of the British Isles. Her Majesty's Office, London. 303pp.
  8. FSI-YNU (Fisheries Science Institute, Yosu National University). 2005. Report on the survey for damages of fishery right by the developmental projects of industrial complex of rural areas in Shinan-gun. FSI-YNU. Yeosu. 222pp. (in Korean)
  9. Gallegos CL, TE Jordan, AH Hines and DH Weller. 2005. Temporal variability of optical properties in a shallow, eutrophic estuary: Seasonal and interannual variability. Est. Coast. Shelf Sci. 64:156-170. https://doi.org/10.1016/j.ecss.2005.01.013
  10. Hallegraeff GM, CJS Bolch, DRA Hill, I Jameson, JM LeRoi, A McMinn, S Murray, MF de Salas and K Saunders. 2010. Algae of Australia: Phytoplankton of Temperate Coastal Waters. CSIRO Publishing, Canbella. 432pp.
  11. Haury LR, JA McGowan and PH Wiebe. 1978. Patterns and processes in the time-space scales of plankton distributions. pp. 277-327. In Spacial Pattern in Plankton Communities (Steele JH ed.). NATO Conf. Ser. IV, Vol. 3, Plenum.
  12. Hong JS, CB Song, NG Kim, JM Kim and HT Huh. 1987. Oceanographic conditions in relation to laver production in Kwangyang Bay, Korea. Bull. Korean Fish. Soc. 20:237-247. (in Korean)
  13. Ishii M, K Hasegawa and U Matsuyama. 2008. Environmental factors influencing Porphyra (Nori) farming in Tokyo Bay: Longterm changes in inorganic nutrients and recent proliferation of diatoms. Bull. Japan. Soc. Fish. Oceanogr. 72:22-29. (in Japanese)
  14. Ishizawa J, Y Kitaura, Y Touke, H Sasaki, A Tanaka, H Murakami, T Suzuki, K Matsuoka and H Nakata. 2006. Satellite detection of red tide in Ariake Sound, 1998-2001. J. Oceanogr. 62:37-45. https://doi.org/10.1007/s10872-006-0030-1
  15. Jang PK, WJ Lee, MC Jang, JD Lee, WJ Lee, M Chang, KC Hwang and K Shin. 2005. Spatial and temporal distribution of inorganic nutrients and factors controlling their distributions in Gwangyang Bay. Ocean Polar Res. 27:359-379. (in Korean) https://doi.org/10.4217/OPR.2005.27.4.359
  16. Jang ST and KC Kim. 2006. Changes of oceanographic environment in the Nakdong Estuary. The Sea J. Korean Soc. Oceanogr. 11:11-20. (in Korean)
  17. JWA (Japan Weather Association). 1985. Manual for Marine Observation. Oceanogr. Soc. Japan. Tokyo. 428pp. (in Japanese)
  18. Kim J, B Kim, M Shin, JK Kim, S Jung, Y Lee and JH Park. 2009. The distribution of nitrogen and the decomposition rate of organic nitrogen in the Youngsan River and the Sumjin River, Korea. J. Korean Soc. Water Qual. 25:135-143. (in Korean).
  19. Kim SJ, SH Woo, BM Kim and SD Hur. 2011. Trends in sea surface temperature (SST) change near the Korean Peninsula for the past 130 years. Ocean Polar Res. 33:281-290. https://doi.org/10.4217/OPR.2011.33.3.281
  20. Kirk JTO. 2011. Light and Photosynthesis in Aquatic Ecosystems (3rd eds). Cambridge Univ. Press, Oxford. 662pp.
  21. Kumagai K and T Naitoh. 2007. The trend of DIN supply to the area of Fukuoka Prefecture in the Ariake Sea. Bull. Fukuola Fish. Mar. Tech. Res. Center. 17:73-80. (in Japanese)
  22. Kwon HG, SJ Oh, MO Park and HS Yang. 2014. Distribution of water masses and distribution characteristics of dissolved inorganic and organic nutrients in the southern part of the East Sea of Korea: Focus on the observed data in September, 2011. J. Kor. Soc. Mar. Environ. Energ. 17:90-103. (in Korean) https://doi.org/10.7846/JKOSMEE.2014.17.2.90
  23. Kwon JN, JH Shim, SY Lee and JD Cho. 2013. Effects of meteorological and oceanographic properties on variability of laver production at Nakdong River estuary, south coast of Korea. Korean J. Fish. Aquat. Sci. 46:868-877. (in Korean) https://doi.org/10.5657/KFAS.2013.0868
  24. Laskar HS and S Gupta. 2009. Phytoplankton diversity and dynamics of Chatla floodplain lake, Barak Valley, Assam, North East India-a seasonal study. J. Environ. Biol. 30:1007-1012.
  25. Lee BG and KD Cho. 1995. Temporal variations of stratification-destratification in the Deukryang Bay, Korea. Korean Environ. Sci. Soc. 4:139-149.
  26. MOF (Ministry of Ocaen and Fisheries). 2010. Manual for Stan-dard Methods of Marine Environments. Seoul. 461pp. (in Korean)
  27. Nagai S, H Hori, K Miyahara, T Manabe and I Imai. 1996. population dynamic of Coscinodiscus wailesii Gran (Bacillariophyceae) in Harima-Nada, Seto Inland Sea, Japan. pp. 239-242. In Harmful and Toxic Algal Blooms (Yasumoto T, Y Oshima and Y Fukuyo eds). IOC of Unesco. Paris.
  28. NFRDI (National Fisheries Research and Development Institute). 1993. Daily variations of SSR at Mokpo area. NFRDI, Pusan. 111pp.
  29. Ock YS. 2011. The research on the development steps and facing problems of Korean and Japanese laver industry. J. Fish. Bus. Admin. 42:113-130. (in Korean)
  30. Omura T, M Iwataki, VM Borja, H Takayama and Y Fukuyo. 2012. Marine Phytoplankton of the Western Pacific. Kouseisha Kouseikaku. Tokyo. 160pp.
  31. Oyama K, T Fujisawa, M Abe and T Kitao. 2012. Environmental factores influencing the changes in dissolved inorganic nitrogen during season of Porphyra yezoensis cultures in the coastal area of Kagawa Precfecture, Seto Inland Sea, Japan. Bull. Akashiwo Res. Inst. Kagawa Pref. 8:7-15. (in Japanese)
  32. Park SY, SS Kim, PJ Kim, ES Cho, SY Kim, YS Choi, BM Kim and DU Kim. 2010. Long-term variation and characteristics of water quality in the Mokpo coastal areas of the Yellow Sea, Korea. J. Korean Soc. Mar. Environ. Saf. 16:321-337. (in Korean)
  33. Parsons TR, M Takahashi and B Hargrave. 1984. Biological Oceanographic Processes (3rd Eds). Pergamon Press, Oxford. 330pp.
  34. Redfield AC, BH Ketchum and FA Richards. 1963. The influence of organisms on the composition of sea-water. pp.26-77. In The Sea. Vol. 2. The composition of sea-water comparative and descriptive oceanography (Hill MN ed). John Wiley & Son, New York.
  35. Sato M. 2004. Richness of Ariake Sea in Kyushu, Japan and its crisis by human impacts. Saga Nat. Study 10:129-149. (in Japanese)
  36. SCOR-Unesco. 1966. Determination of photosynthetic pigments. pp.10-18. In Determination of photosynthetic pigments in sea water (Unesco ed.). Paris.
  37. Sohn CH. 1996. Historical review on seaweed cultivation of Korea. Algae 11:357-364. (in Korean)
  38. Song HI and YK Chung. 1999. A study on the production and environmental conditions of wild-Porphyra farming area in the West Sea of Korea. Bull. Nat'l Fish. Res. Devel. Inst. 55:83-97. (in Korean)
  39. Tada K, M Fujiwara and T. Honjo. 2010. Water quality and nori (Porphyra) culture in the Seto Inland Sea. Bunseki Kagaku. 59:945-955. (in Japanese) https://doi.org/10.2116/bunsekikagaku.59.945
  40. Throndsen J. 1978. Preservation and storage. pp.69-74. In Phytoplankton Manualin (Sournia A ed.). Unesco, Paris.
  41. Tomas CR (ed.). 1997. Identifying marine diatoms and dinoflagellates. Academic Press. Oxford. 858pp.
  42. Yoon HS, S Park, IC Lee and HT Kim. 2008. Spatio-temporal variations of seawater quality due to the inflow of discharge from Nakdong River Barrage. J. Korean Soc. Mar. Environ. Eng. 11:78-85. (in Korean)
  43. Yoon YH. 2000. On the distributional characteristics of organic matters on the surface sediments and its origin in Mokpo coastal waters, southwestern Korea during low temperature seasons. J. Inst. Nat. Sci., Yeosu Nat'l Univ. 2:83-94. (in Korean)
  44. Yoon YH. 2001. On the distributional characteristics of water quality and environmental factors on the variation of primary production in Mokpo coastal waters, southwestern Korea during low temperature seasons. J. Korean Soc. Water Qual. 17:1-13. (in Korean)
  45. Yoon YH. 2010. Red Tides -An Uprising from the Sea-. Jipmoondang, Seoul. 531pp. (in Korean)