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Inhibition of growth rate and swimming speed of the harmful dinoflagellate Cochlodinium polykrikoides by diatoms: Implications for red tide formation

Cited 38 time in Web of Science Cited 38 time in Scopus
Authors

Lim, An Suk; Jeong, Hae Jin; Jang, Tae Young; Jang, Se Hyeon; Franks, Peter J. S.

Issue Date
2014-07
Publisher
ELSEVIER SCIENCE BV
Citation
HARMFUL ALGAE, Vol.37, pp.53-61
Abstract
The harmful dinoflagellate Cochlodinium polykrikoides is responsible for red tides that cause large fish kills and extensive economic losses for the fishing industry. Diatoms, another component of planlctonic communities, may play critical roles in the red tide dynamics of C. polykrikoides. Possible inhibition of C polykrikoides growth rate and swimming speed by the common diatoms Chaetoceros danicus, Skeletonema costatum, and Thalassiosira decipiens through physical and chemical mechanisms was explored. S. costatum, C danicus, and T. decipiens reduced the swimming speed of C polykrikoides at diatom concentrations of >5000, 25,000, and 1000 cells ml(-1), respectively. Filtrates from cultures of S. costatum, C. danicus, and T. decipiens also lowered swimming speeds of C polykrikoides, at diatom concentrations of >250,000, 50,000, and 1000 cells ml(-1), respectively. S. costatum caused negative growth rates of C polykrikoides at concentrations of >similar to 130,000 cells ml(-1), while C danicus caused negative growth rates at concentrations of >similar to 1200 cells ml(-1). Simple models parameterized using the experimental data reproduced the changes in C polykrikoides cell concentrations driven by the presence of diatoms. Thus common diatoms may inhibit growth rate and swimming speed of C polykrikoides; reduce the depths reached by C polykrikoides through vertical migration; and, in turn, delay or prevent the outbreak of C polykrikoides red tides. (C) 2014 Elsevier B.V. All rights reserved.
ISSN
1568-9883
URI
https://hdl.handle.net/10371/192689
DOI
https://doi.org/10.1016/j.hal.2014.05.003
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  • College of Natural Sciences
  • Department of Earth and Environmental Sciences
Research Area Aquatic Microbial Ecology, Biological Oceanography, Plankton

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