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SEAWATER TEMPERATURE CHANGE AND OCEAN ACIDIFICATION RESPONSIVE GENES IN SCLERONEPHTHYA GRACILLIMUM AND METHOD FOR DIAGNOSING MARINE ECOSYSTEM USING THE SAME
SEAWATER TEMPERATURE CHANGE AND OCEAN ACIDIFICATION RESPONSIVE GENES IN SCLERONEPHTHYA GRACILLIMUM AND METHOD FOR DIAGNOSING MARINE ECOSYSTEM USING THE SAME
The present invention relates to a genetic marker derived from Scleronephthya gracillimum which differentially expresses genes by responding to the rise of seawater temperature and ocean acidification, a biosensor for detecting double stress of the rise of seawater temperature and ocean acidification, and a detection method.
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