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Decadal changes of phytoplankton chlorophyll-a in the East Sea/Sea of Japan

  • Marine Biology
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Abstract

The East Sea has very dynamic environmental conditions with respect to its physical phenomena and biological characteristics. In order to detect any longterm change in patterns of phytoplankton biomass and a longterm trend in phytoplankton spring bloom characteristics in the East Sea, recent decade chlorophyll-a data were obtained for the East Sea from NASA SeaWiFS and MODIS. We found that the average Chl-a concentration from 2008–2011 was rather higher than that from 1998–2001 in the East Sea, especially along the coastal areas and the sub-polar fronts. Distinctively, the patterns of the Chl-a concentration such as duration and intensity of the phytoplankton spring bloom were significantly different between the periods from 2008–2011 and 1998–2001. During the observation period, there were no distinct trends in environmental conditions in the East Sea. Several potential mechanisms for these changes are suggested for further intensive field studies. First, a recent increase in anticyclonic eddies could seed an early spring bloom of the phytoplankton. An increase of sea surface temperature in winter could also cause an earlier stratification leading to an earlier start of the bloom. Furthermore, a change of light regime might take place in the euphotic zone in the East Sea.

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References

  1. K. R. Arrigo, R. B. Dunbar, M. P. Lizotte, and D. H. Robinson, “Taxon-specific differences in C/P and N/P drawdown for phytoplankton in the Ross Sea, Antarctica,” Geophys. Res. Lett. 29(44), 1–4 (2002).

    Google Scholar 

  2. D. G. Boyce, M. R. Lewis, and B. Worm, “Global phytoplankton decline over the past century,” Nature 466, 591–596 (2010).

    Article  Google Scholar 

  3. S. Chiba, M. N. Aita, K. Tadokoro, T. Saino, H. Sugisaki, and K. Nakata, “From climate regime shifts to lower-trophic level phenlogy: synthesis of recent progress in retrospective studies of the western North Pacific,” Prog. Oceanogr. 77, 112–126 (2008).

    Article  Google Scholar 

  4. D. H. Cushing, “Plankton production and year-class strength in fish populations — An update of the matchmismatch hypothesis,” Adv. Mar. Biol. 26, 249–293 (1990).

    Article  Google Scholar 

  5. J. M. Grebmeier, C. P. McRoy, and H. M. Feder, “Pelagic-benthic coupling on the shelf of the northern Bering and Chukchi Seas. I. Food supply source and benthic biomass,” Mar. Ecol.: Progr. Ser. 48, 57–67 (1998).

    Article  Google Scholar 

  6. Y. Hirota and S. Hasegawa, “The zooplankton biomass in the Sea of Japan,” Fish. Oceanogr. 8, 274–283 (1999).

    Article  Google Scholar 

  7. Y. S. Kang, J. Y. Kim, H. G. Kim, and J. H. Park, “Long-term changes in zooplankton and its relationship with squid, Todarodes pacificus, catch in Japan/East Sea,” Fish. Oceanogr. 11, 337–346 (2002).

    Article  Google Scholar 

  8. D. J. Kang, S. Park, Y. G. Kim, K. Kim, and K. R. Kim, “A moving-boundary box model (MBBM) for oceans in change: an application to the East/Japan Sea,” Geophys. Res. Lett. 30, 1299 (2003).

    Article  Google Scholar 

  9. K. Kim, K.-R. Kim, D. H. Min, Y. Volkov, J. H. Yoon, and M. Takematsu, “Warming and structural changes in the East (Japan) Sea: a clue to future changes in global oceans?” Geophys. Res. Lett. 28(17), 3293–3296 (2001).

    Article  Google Scholar 

  10. S. W. Kim, S. Saitoh, J. Ishizaka, Y. Isoda, and M. Kishino, “Temporal and spatial variability of phytoplankton pigment concentration in the Japan Sea derived from CZCS images,” J. Oceanogr. 56(5), 527–538 (2000).

    Article  Google Scholar 

  11. J.-Y. Lee, D. J. Kang, I.-N. Kim, T. Rho, T. Lee, C.-K. Kang, and K.-R. Kim, “Spatial and temporal variability in the pelagic ecosystem of the East Sea (Sea of Japan): a review,” J. Mar. Syst. 78, 288–300 (2009).

    Article  Google Scholar 

  12. D. K. Lee and P. Niiler, “Eddies in the southwestern East/Japan Sea,” Deep Sea Res., Part I 57, 1233–1242 (2010).

    Article  Google Scholar 

  13. L. Legendre and R. B. Rivkin, “Fluxes of carbon in the upper ocean: regulation by food-web control nodes,” Mar. Ecol.: Progr. Ser. 242, 95–109 (2002).

    Article  Google Scholar 

  14. J. H. Lim, S. Son, J. W. Park, J. H. Kwak, C. K. Kang, Y. B. Son, and S. H. Lee, “Enhanced biological activity by an anticyclonic warm eddy during early spring in the East Sea (Japan Sea) detected by the Geostationary Ocean Color Satellite,” Ocean Sci. J. 47, 377–385 (2012).

    Article  Google Scholar 

  15. A. Mahadevan, L. N. Thomas, and A. Tandon, “Comment on “Eddy/wind interactions stimulate extraordinary mid-ocean plankton blooms,” Science 320, 448b (2008).

    Article  Google Scholar 

  16. K. Mizobata, S. Saitoh, A. Shimoto, T. Miyamura, N. Shiga, K. Imai, M. Toratani, Y. Kajiwara, and K. Sasaoka, “Bering Sea cyclonic and anticyclonic eddies observed during summer 2000 and 2001,” Prog. Oceanogr. 55, 65–75 (2002).

    Article  Google Scholar 

  17. A. C. Redfield, On the Proportions of Organic Derivations in Sea Water and Their Relation to the Composition of Plankton in James Johnston Memorial Volume, Ed. R. J. Daniel (Univ. Press of Liverpool, 1934), pp. 177–192.

  18. H. Sverdrup, “On conditions for the vernal blooming of phytoplankton,” J. Cons. Perm. Int. Explor. Mer 18, 287–295 (1953).

    Article  Google Scholar 

  19. D. W. Townsend, M. D. Keller, M. E. Sieracki, and S. G. Ackleson, “Spring phytoplankton blooms in the absence of vertical water column stratification,” Nature 360, 59–62 (1992).

    Article  Google Scholar 

  20. K. Yamada, J. Ishizaka, S. Yoo, H. C. Kim, and S. Chiba, “Seasonal and interannual variability of sea surface chlorophyll a concentration in the Japan/East Sea (JES),” Prog. Oceanogr. 61, 193–211 (2004).

    Article  Google Scholar 

  21. S. Yoo and J. Park, “Why is the southwest the most productive region of the East Sea/Sea of Japan?” J. Mar. Syst. 78, 301–315 (2009).

    Article  Google Scholar 

  22. C. I. Zhang, J. B. Lee, I. S. Young, S. C. Yoon, and S. Kim, “Variations in the abundance of fisheries resources and ecosystem structure in the Japan/East Sea,” Prog. Oceanogr. 61, 245–265 (2004).

    Article  Google Scholar 

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Lee, S.H., Son, S., Dahms, H.U. et al. Decadal changes of phytoplankton chlorophyll-a in the East Sea/Sea of Japan. Oceanology 54, 771–779 (2014). https://doi.org/10.1134/S0001437014060058

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  • DOI: https://doi.org/10.1134/S0001437014060058

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