DOI QR코드

DOI QR Code

The Clarification Of Spatial-temporal Patterns of Phytoplankton From Southern Korean Coastal Waters In 2004

2004년 한국 남해연안 해역에 출현하는 식물플랑크톤의 시.공간적 특성 조사

  • 조은섭 (국립수산과학원 남해수산연구소) ;
  • 김정배 (국립수산과학원 남해수산연구소) ;
  • 안경호 (국립수산과학원 양식환경연구소) ;
  • 유준 (국립수산과학원 남해수산연구소) ;
  • 권정노 (국립수산과학원 양식환경연구소) ;
  • 정창수 (국립수산과학원 남해수산연구소)
  • Published : 2006.06.01

Abstract

The clarification of spatial-temporal patterns of phytoplankton from southern coastal waters during the period of March to November in 2004 was carried out. Total cell numbers were shown in 5,286 cells $ml^{-1}$ on March and reached to encounter a peak of 27,775 cells $ml^{-1}$ on July. Mean cell number was also shown in maximum of 1,587 cells $ml^{-1}$ on July, which recorded approximately two times higher than on June. The cell number of phytoplankton from southmiddle waters attained an abundance of ${\geq}35%$ regardless of months, which was the highest the abundance of phytoplankton in 2004 than any other waters in this study. Southwestern waters were lower the cell number of 2-5 times than those of southmiddle and southeastern waters. In particular, Prorocentrum occurred in southeastern waters on June and the highest cell number of 8,200 cells $ml^{-1}$ around Tongyeong region on July, which was recorded to occupy the value of 60.9% in southeast waters. The abundance of Skeletonema costatum as a dominant taxa in southwest was shown in ${\geq}60%$ on March, July, September, and October, whereas was also recorded to achieve the abundance of above 80% in southmiddle waters on March, July, and September. The majority of the taxa in southeastern waters was diatom: Eucampia zoodiacus, and Chaetoceros spp.. They occupied above 45%. On November, most of southern waters were abundant to Chaetoceros spp. On the basis of cluster analysis using SPSS ver 10.0, phytoplankton occurring on March showed somewhat no correlation with all of southern waters. In contrast to on March, the relationship between southwestern and southmiddle waters was shown on August and November, indicating a distinction from southeastern waters. However, the distance between southwestern/middle and southeastern waters appeared to be less than 5. Consequently, the abundance of phytoplankton in southern waters showed much fluctuations in temporal and spatial assays. In particular, southwestern and southmiddle waters during the periods of summer and winter appeared to be a similar to environmental characteristics.

Keywords

References

  1. 윤양호, 2003, 한국 남서해역의 식물플랑크톤 군집 출현 및 분포 특성, 여수대학교 수산과학 연구소 논문집, 12, 1-17
  2. 윤양호, 1998, 완도 신지연안해역 식물플랑크톤 군집구조 특성, 여수대 논문집, 12, 651-664
  3. 윤양호, 2001, 저수온기 목포연안해역의 해양환경학적 특성 1, 수질환경과 기초생산에 영향을 미치는 환경요인 해석, 한국불환경학회지, 17, 1-13
  4. Lee, J. C., J. Y. Kim and S. D. Chang, 1984, Thermohaline structure of the shelf front in the Korea strait in early winter, J. Oceanol. Soc., Korea. 19, 39-46
  5. 강영실, 전경암, 1999, 한국 남해 연안전선의 생물 . 화학적 특성 및 영양역학 구조, 한국수산학회지, 32; 22-29
  6. 추효상, 김동수, 1998, 한국 남해의 대마난류 변동이 멸치 난. 자어의 연안역 수송에 미치는 영향, 한국수산학회지 , 31, 226-244
  7. NFRDI, 2002, Harmful algal blooms in Korean coastal waters from 2000 to 2001, 158pp
  8. 박홍식, 이재학, 최진우, 2000, 목포 주변 해역 조하대 저서동물 시.공간적 분포, 바다, 5, 169-176
  9. Yamaguch, M. and I. Imai, 1996, Size fractionated phytoplankton biomass and primary productivity in Osaka Bay, Eastern Seto Inland, Japan. Bull. Nansei Nat'l. Fish. Res. Inst., 29, 59-73
  10. Maita, Y. and T. Odate, 1988, Seasonal change in size fractionated primary production and nutrient concentrations in the temperature neritic water of Funka Bay, Japan. J. Oceanogr, Soc., Japan, 44, 268-279 https://doi.org/10.1007/BF02302569
  11. 윤양호, 1988, 시아해 식물플랑크톤 군집의 계절변동 특성, 한국환경생물학회지, 16, 403-409
  12. Nybakken, J. W., 1993, Marine biology-An ecological approach, Harper Collins Coll. Pub., New York, 462pp
  13. Banse, K., 1982, Cell volumes, maximal growth rates of unicellular algae and ciliates, and the role of ciliates in the marine pelagial, Limnol. Oceanogr., 27, 1059-1071 https://doi.org/10.4319/lo.1982.27.6.1059
  14. Hecky, R. E. and P. Kilham, 1988, Nutrient limitation of phytoplankton in freshwater and marine environments: A reiview of recent evidence on the effects of enrichment, Limnol. Oceanogr., 33, 796-822 https://doi.org/10.4319/lo.1988.33.4_part_2.0796
  15. Furnas, M., 1990, In situ growth rates of marine phytoplankton: Approaches to measurement, community and species growth rates, J. Plank. Res., 12, 1117-1151 https://doi.org/10.1093/plankt/12.6.1117
  16. Lim, W. A., W. J. Choi, Y. C. Park and K. H. Hum, 1999, Species composition and abundance of phytoplankton and marine bacteria during a Cochlodinium bloom in Tongyong, Bull. Nat'l. Fish. Res. Dev. Inst., 57, 145-151
  17. 이영식, 박영태, 김영숙, 김귀영, 박종수, 고우진, 조영조, 박승윤, 2001, Cochlodinium polykrikoides 적조 발생과 소멸의 환경특성, 바다, 6, 259-264
  18. 이창규, 김형철, 이삼근, 정창수, 김학균, 임월애, 2001, 남해안 연안에서 적조생물 Cochlodinium polykrikoides, Gyrodinium impudicum, Gymnodinium catenatum의 출현상황 및 온도, 염분, 조도 및 영양염류에 따른 성장 특성, 한수지, 34, 536-544
  19. 심재형, 신윤근, 이원호, 1984, 광양만 식물플랑크톤 분포에 관한 연구, 한국해양학회지, 19, 172-186
  20. 심재형, 여환구, 박종규, 1992, 한국 동해 남부 해역의 일차생산계 1, 생물량과 생산력, 한국해양학회지, 27, 91-100
  21. 윤양호, 1995, 가막만 북부해역의 해양환경과 식물플랑크톤 군집 의 변동특성 1, 식 물플랑크톤 군집의 계절동태와 적조원인생물, 여수수산대학교 수산과학연구소 연구보고, 4, 1-15
  22. Larsson, U. and A. Hagatrom, 1982, Fractionated phytoplankton primary production in Baltic eutrophication gradient, Mar. Biol., 67, 57-70 https://doi.org/10.1007/BF00397095
  23. 정해진, 박종규, 최현용, 양재삼, 심재형, 신윤근, 이원호, 김형섭, 조경제, 2000, 전남 고흥 해역의 유해성 적조의 발생연구 2, 1997년도 식물 플랑크톤의 시공간적 변화, 바다, 5, 27-36
  24. 정창수, 최우정, 김학균, 정영균, 김정배, 임월애, 1999, 1998년도 남해도 인근수역의 Cochlodinium polykrikoides 적조발생과 동물플랑크톤의 분포특성, 수진연구보고, 57, 153-161
  25. 이영식, 박영태, 김영숙, 김귀영, 박종수, 고우진, 조영조, 박승윤, 2001, Cochlodinium polykrikoides 적조 발생기작과 대책 1, Cochlodinium poly krikoides 적조발생과 환경특성, 바다, 6, 259-264
  26. 임월애, 정창수, 이창규, 조용철, 이삼근, 김학균, 정익교, 2002, 2000년 여름 남해안에 나타난 Cochlodinium polykrikoides 우점적조의 발생 특성, 바다, 7, 68-77
  27. Kang, Y. S., H G. Kim, W. A Lim, C. K Lee, S. G. Lee and S. Y. Kim, 2002, Anunusual environment and Cochlodinium polykrikoides blooms in 1995 in the South Sea of Korea, J. Oceanol. Soc. Kor., 37, 212-223
  28. Park, H. S., J. W. Choi and H. G. Lee, 2000, Community structure of macrobenthic fauna under marine fish culture cages near Tongyong, southern coastal of Korea, J. Kor. Fish. Soc., 33, 1-8
  29. Moon, T. S., H. S. Choi and S. L. Lee, 1992, Studies on the environment of finfish farming area in Tongyong, 1989 to 1990, Bull. Fish. Res. Dev. Agency, Korea, 96, 97-118
  30. Lee, J. M., W. C. Lee and S. E. Park, 1994, Studies on the environment of finfish farming area, Bull. Fish. Res. Dev. Agency, Korea, 115, 1-12

Cited by

  1. Distribution of potential risky species on phytoplankton at ports in Korea vol.14, pp.1, 2013, https://doi.org/10.5762/KAIS.2013.14.1.506
  2. Variation of Standing Crops and Biomass on Phytoplankton Dominant Species in the Coastal Waters of Ulleungdo island, Korea vol.30, pp.6, 2018, https://doi.org/10.13000/JFMSE.2018.12.30.6.1948