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The Relationship between Germination of Dinoflgellate Cysts and Vegetative Cells in Gamak Bay

가막만 와편모조류 시스트와 영양세포의 관련성

  • Received : 2017.10.25
  • Accepted : 2017.11.08
  • Published : 2017.12.31

Abstract

This study examined the relationship between dinoflagellate cysts and vegetative cells, to a certain extent, by conducting a germination experiment on dinoflagellate cysts collected from a sediment trap and surface sediment. The germination experiment showed that 56.8%, 25 of the 44 species of dinoflagellate cysts seen in the sediment trap, germinated, which confirmed the relationship between cysts and vegetative cells. The germination experiment also found that Votadinium carvum showed different forms of vegetative cells in all three forms of cysts, which required an accurate identification of the species through a genetic analysis. Furthermore, the species known to be the cyst of Cochlodinium polykrikoides was determined to be Cochlodinium sp., and the cysts of C. polykrikoides did not appear.

시스트와 영양세포의 유연성을 파악하기 위해 발아실험을 실시하였다. 발아실험 결과 총 25종에서 발아가 이루어져 시스트와 영양세포와의 관계를 확인하였다. 가막만에서 우점종으로 출현하지만 영양세포로 출현이 제한적인 Protoperidinium americanum이 발아실험 결과 확인되었고, Protoperidinium oblongum의 시스트로 알려진 Votadinium carvum은 발아실험 결과 세 가지 형태의 시스트에서 각기 다른 영양세포가 출현하여, 유전자 분석 등을 통한 정확한 종 동정이 요구되었다. 또한 Cochlodinium polykrikoides의 시스트라고 알려진 종은 발아실험 결과 C. polykrikoides의 시스트가 아닌 Cochlodinium sp.인 것으로 판명되었고 C. polykrikoides의 시스트는 출현하지 않았다.

Keywords

References

  1. Bolch CJ and GM Hallegraeff. 1990. Dinoflagellate cysts in recent marine sediments from Tasmania, Australia. Bot. Mar. 33:173-192.
  2. Dale B. 1983. Dinoflagellate resting cysts: benthic plankton. pp. 69-136. In Survival strategies of the Algae (Fryxell GA ed.). Cambridge Univ. Press.
  3. Evitt WR and SE Davidson. 1964. Dinoflagellate Studies: Dinoflagellate cysts and thecae. Stanford Univ. publs., Geol. Sci. 10:1-12.
  4. Fensome RA, FJR Taylor, G Norris, WAS Sarjeant, DI Wharton and GL Williams. 1993. A Classification of Modern and Fossil Dinoflagellates. Micropaleontology Special Publication 7. Sheridan Press, New Hampshire, p. 351.
  5. Gomez F, ML Richlen and DM Anderson. 2017. Molecular characterization and morphology of Cochlodinium strangulatum, the type species of Cochlodinium, and Margalefidinium gen. nov. for C. polykrikoides and allied species (Gymnodiniales, Dinophyceae). Harmful Algae 63:32-44. https://doi.org/10.1016/j.hal.2017.01.008
  6. Head MJ. 1996. Modern dinoflagellate cysts and their biological affinities. pp. 1197-1248. In Palynology Principles and Applications, Vol. 3 (Janosnius J and DC McGregor eds.). AASP Founcation, Texas.
  7. Lee MH, JB Lee, JA Lee and JK Park. 1999. Community structure of Flagellates and dynamics of resting cysts in Kamak Bay, Korea. Algae 14:255-266.
  8. Li Z, MS Han, K Matsuoka, SY Kim and HH Shin. 2015. Identification of the resting cyst of Cochlodinium polykrikoides Margalef (Dinophyceae, Gymnodiniales) in Korean coastal sediments. J. Phycol. 51:204-210. https://doi.org/10.1111/jpy.12252
  9. Matsuoka K. 1985. Organic-walled dinoflagellate cysts from surface sediments of Nagasaki Bay and Senzaki Bay, West Japan. Bull. Fac. Liberal. Arts, Nagasaki Univ., Nat. Sci. 25:21-115.
  10. Matsuoka K and Y Fukuyo. 2000. Technical Guide for Modern Dinoflagellate Cyst Study. WESTPAC-HAB/WESTPAC/IOC. p. 43.
  11. NIBR (National Institue of Biological Resources, Ministry of Environment, Korea). 2015. National List of Species of Korea [Flagellates]. p. 194.
  12. Park JS and YH Yoon. 2003. A study on the marine environmental characteristics with the distribution of dinoflagellate cysts in the Southwestern coastal waters of Korea 1. Spatio-temporal distribution of dinoflagellate cysts in Gamak Bay. J. Kor. Fish. Soc. 36:151-156.
  13. Rosales-Loessener F, K Matsuoka, Y Fukuyo and EH Sanchez. 1996. Cysts of harmful dinoflagellates found from pacific coastal waters of Guatemala. pp. 193-196. In Harmful and Toxic Algal Biooms (Yasumoto T, Y Oshima and Y Fukuyo eds.). IOC-Unesco, Sendai.
  14. Shin HH, JS Park, YO Kim, SH Baek, DI Lim and YH Yoon. 2012. Dinoflagellate cyst production and flux in Gamak Bay, Korea: A sediment trap study. Mar. Micropaleontol. 94/95:72-79. https://doi.org/10.1016/j.marmicro.2012.06.005
  15. Shin HH, SW Jung, MC Jang and YO Kim. 2013. Effect of pH on the morphology and viability of Scrippsiella trochoidea cysts in the hypoxic zone of a eutrophied area. Harmful Algae 28:37-45. https://doi.org/10.1016/j.hal.2013.05.011
  16. Sonneman JA and DRA Hill. 1997. A taxonomic survey of cyst-producing dinoflagellates from recent sediments of Victorian coastal waters, Australia. Bot. Mar. 40:149-177.
  17. Wall D and B Dale. 1966. "Living fossils" in western Atlantic plankton. Nature 211:1025-1026. https://doi.org/10.1038/2111025a0
  18. Wall D and B Dale. 1968. Modern dinoflagellate cysts and evolution of Peridiniales. Micropaleont. 14:265-304. https://doi.org/10.2307/1484690
  19. Yoon YH. 2010. Red Tides: The uprising from the sea. Gipmundang. Seoul. p. 531.
  20. Yoon YH and HH Shin. 2013. Summary on the dinoflagellate cysts assemblages of modern sediments from Korean coastal waters and adjoining sea. Korean J. Environ. Biol. 31:243-274. https://doi.org/10.11626/KJEB.2013.31.4.243
  21. Yoon YH and HH Shin. 2014. Dinoflagellate Cysts. Chonnam Nat'l Univ. Press. Gwangju. p. 306.