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Reduction in CO2 uptake rates of red tide dinoflagellates due to mixotrophy

Cited 7 time in Web of Science Cited 7 time in Scopus
Authors

Jeong, Hae Jin; Lee, Kitack; Yoo, Yeong Du; Kim, Ja-Myung; Kim, Tae Hoon; Kim, Miok; Kim, Ju-Hyoung; Kim, Kwang Young

Issue Date
2016-12
Publisher
한국조류학회I
Citation
ALGAE, Vol.31 No.4, pp.351-362
Abstract
We investigated a possible reduction in CO, uptake rate by phototrophic red tide dinoflagellates arising from mixotrophy. We measured the daily ingestion rates of Prorocentrum minimum by Prorocentrum micans over 5 days in 10 L experimental bottles, and the uptake rates of total dissolved inorganic carbon (C-T) by a mixture of B micans and B minimum (mixotrophic growth), and for the predator B micans (phototrophic growth; control) and prey B minimum (phototrophic growth; control) alone. To account for the effect of pH on the phototrophic growth rates of B micans and P minimum, measurements of C-T and pH in the predator and prey control bottles were continued until the pH reached the same level (pH 9.5) as that in the experimental bottles on the final day of incubation. The measured total C-T uptake rate by the mixture of B micans and B minimum changed from 123 to 161 mu mol C-T kg(-1) d(-1) over the course of the experiment, and was lower than the C-T uptake rates shown by P. micans and B minimum in the predator and prey control bottles, respectively, which changed from 132 to 176 mol C-T kg(-1) d(-1) over the course of the experiment. The reduction in total C-T uptake rate arising from the mixotrophy of B micans was 7-31% of the daily C-T uptake rate seen during photosynthesis. The results suggest that red tide dinoflagellates take up less C-T during mixotrophy.
ISSN
1226-2617
URI
https://hdl.handle.net/10371/192663
DOI
https://doi.org/10.4490/algae.2016.31.11.17
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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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