Structural shift of planktonic communities in seawater enclosures: from autotrophic to heterotrophic communities
Keywords:
enclosed environment, enclosure experiment, heterotrophic microorganismsAbstract
An outdoor enclosure experiment was carried out near the southern coast of Korea in order to investigate the effect of enclosed environments on planktonic community structure. The experiment was conducted in 6 floating, 220-liter cylindrical enclosures maintained for short periods (17 days). Rapid decreases of inorganic nutrients (N. P, Si), and in the abundance of large diatoms, Coscinodiscus spp., were observed after only one day from the start of the experiment. Decreases in chlorophyll a progressed through the experimental period, although the small diatoms, Chaetoceros spp. and Thalassiosira sp., increased considerably during the initial days. The continuous supply of dissolved organic carbon from crashing stocks of planktonic organisms sustained rapid growth of heterotrophic bacteria. The bacterial increase was followed by increase of heterotrophic nanoflagellates and ciliated protozoa. Noctiluca scintillans flourished as a dominant zooplankter until the end of the experiment, feeding on phytoplankton during the first half of the observations and on the abundant heterotrophic microorganisms during the second half. The results suggested that the enclosed environment provoked a structural shift of the plankton community from autotrophy to heterotrophy and indicated additionally that the trophic status in plankton communities was reflected by an enclosed environment formed by artificial structures in the coastal zone.
References
Fenchel, T. 1982. Ecology of heterotrophic microflagellates. IV. Quantitative occurrence and importance as bacterial consumers. Mar. Ecol. Prog. Ser., 9: 35–42.
Friebele, E. S., Correll, D. L. and Faust, M. A. 1978. Relationship between phytoplankton cell size and the rate of orthophosphate uptake: in situ observations of an estuarine population. Mar. Biol., 45: 39–52.
Jung, S. W., Kang, Y. H., Katano, T., Kim, B. H., Cho, S. Y., Lee, J. H., Kim, Y. O. and Han, M. S. 2010. Testing addition of Pseudomonas fluorescens HYK0210-SK09 to mitigate blooms of the diatom Stephanodiscus hantzschii in small- and large-scale mesocosms. J. Appl. Phycol., 22: 409–419.
Kim, Y. O., Chae, J., Hong, J. S. and Jang, P. K. 2007a. Comparing the distribution of ciliate plankton in inner and outer areas of a harbor divided by an artificial breakwater. Mar. Environ. Res., 64: 38–53.
Kim, Y. O., Yang, E. J., Kang, J. H., Shin, K., Chang, M. and Myung, C. S. 2007b. Effects of an artificial breakwater on the distributions of planktonic microbial communities. Ocean Sci. J., 42: 9–17.
Larsen, A., Castberg, T., Sandaa, R. A., Brussaard, C. P.D., Egge, J., Heldal, M., Paulino, A., Thyrhaug, R., van Hannen, E. J. and Bratbak, G. 2001. Population dynamics and diversity of phytoplankton, bacteria and viruses in a seawater enclosure. Mar. Ecol. Prog. Ser., 221: 47–57.
Parsons, T., Maita, Y. and Lalli, C. M. 1984. A manual of chemical and biological methods for seawater analysis, New York: Pergamon Press.
Petersen, J. E., Kennedy, V. S., Dennison, W. C. and Kemp, W. M. 2009. Enclosed experimental ecosystems and scale: tools for understanding and managing coastal ecosystems, NY, USA: Springer.
Porter, K. G. and Feig, Y. S. 1980. The use of DAPI for identifying and counting aquatic microflora. Limnol. Oceanogr., 25: 943–948.
Riemann, L., Steward, G. F. and Azam, F. 2000. Dynamics of bacterial community composition and activity during a mesocosm diatom bloom. Appl. Environ. Microbiol, 66: 578–587.
Shanks, A. and Walters, K. 1996. Feeding by a heterotrophic dinoflagellate (Noctiluca scintillans) in marine snow. Limnol. Oceanogr, 41: 177–181.
Sheldon, R. W., Prakash, A. and Sutcliff, Jr. W.H. 1972. The size distribution of particles in the ocean. Limnol. Oceanogr, 17: 327–340.
Sherr, E. B., Caron, D. A. and Sherr, B. F. 1993. “Staining of heterotrophic protists for visualization via epifluorescence microscopy”. In Handbook of Methods in Aquatic Microbial Ecology, Edited by: Kemp, P. F., Sherr, B. F., Sherr, E. B. and Cole, J. J. 213–227. Boca Raton: Lewis Publishers.
Tada, K., Pithakpol, S., Ichimi, K. and Montani, S. 2000. Carbon, nitrogen, phosphorus, and chlorophyll a content of the large diatom, Coscinodiscus wailesii and its abundance in the Seto Inland Sea, Japan. Fish. Sci., 66: 509–514.
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