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KMID : 0613820080180091194
Journal of Life Science
2008 Volume.18 No. 9 p.1194 ~ p.1201
Dependence of Sub-Cellular Activities of the Blooming and Harmful Dinoflagellate Cochlodinium Polykrikoides on Temperature
Cho Eun-Seob

Abstract
Water temperature-dependent fluctuations of biochemical and molecular activities in the harmful dinoflagellate, Cochlodinium polykrikoides were studied. In terms of genomic DNA concentration, a similar value of 0.6 was observed at 12¡É and 15¡É. However, DNA significantly increased beyond 18¡É (p<0.05), to a maximum of 1.8 at 24¡É. DNA concentration significantly decreased to 0.6. The concentrations of RNA and total protein were likely at their highest values of 1.7 and 0.07 §¶ ml?©ö at 24¡É, respectively. RNA and total protein concentrations began to increase at 15¡É. Oxygen availability between lower and higher temperatures was significantly different and increased from 18¡É according to light intensity, regardless of wavelengths (p<0.05). At 24¡É, the highest value of the maximum electron transport rate (ETRmax), ranging from 537.9 (Ch 1) to 602.5 ¥ì§ß electrons g?©ö Chl ¥á s?©ö (Ch 4), was also apparent. Nitrate reductase (NR) and ATPase activities were at their highest values of 0.11 ¥ì§ß NO©ü?§¶?©ö Chl ¥á h?©ö and 0.78 pmol 100 §·?©ö at 24¡É, respectively. In an analysis of CHN, the concentration of C and N also significantly increased (p<0.05). Most of the measurements for the cellular activities at 27¡É, however, were less than at 24¡É. These results suggest that the sub-cellular activities of C. polykrikoides are sensitive to changes in water temperature. It may be desirable to estimate at 18¡É the initiation of the massive blooming development of C. polykrikoides. In nature, it will be very difficult to maintain the massive blooms beyond 24¡É because of a possibly significant decrease in molecular activity of C. polykrikoides.
KEYWORD
Biochemical activities, blooming, Cochlodinium polykrikoides, DNA, RNA, water temperature
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