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The effects of elevated-CO2 on physiological performance of Bryopsis plumosa
作者姓名:YILDIZ Gamze  DERE &#;&#;kran
作者单位:Biology Department, Science and Arts Faculty, Uludag University, Bursa 16059, Turkey,Biology Department, Science and Arts Faculty, Uludag University, Bursa 16059, Turkey
摘    要:An increase in the level of atmospheric carbon dioxide (CO2) and the resultant rise in CO2 in seawater alter the inorganic carbon concentrations of seawater. This change, known as ocean acidification, ...

关 键 词:Bryopsis  plumosa  chlorophyll  fluorescence  ocean  acidification  photosynthesis
收稿时间:2014/2/14 0:00:00
修稿时间:2014/5/28 0:00:00

The effects of elevated-CO2 on physiological performance of Bryopsis plumosa
YILDIZ Gamze,DERE &#;&#;kran.The effects of elevated-CO2 on physiological performance of Bryopsis plumosa[J].Acta Oceanologica Sinica,2015,34(4):125-129.
Authors:YILDIZ Gamze and DERE &#;&#;kran
Institution:Biology Department, Science and Arts Faculty, Uludag University, Bursa 16059, Turkey
Abstract:An increase in the level of atmospheric carbon dioxide (CO2) and the resultant rise in CO2 in seawater alter the inorganic carbon concentrations of seawater. This change, known as ocean acidification, causes lower pH in seawater and may affect the physiology of seaweed species. Accordingly, the main goal of the current study was to determine the physiological responses of Bryopsis plumosa to elevated-CO2. The results indicated that photosynthesis of B. plumosa was insignificantly affected to elevated-CO2, but photosynthetic pigment contents and phenolics were significantly decreased. The results obtained from the research reveal that B. plumosa may become physiologically advanced when exposed to CO2-induced ocean acidification. In particular, B. plumosa may be more able to compete with calcifying algae when it will become future predicted CO2 scenario.
Keywords:Bryopsis plumosa  chlorophyll fluorescence  ocean acidification  photosynthesis
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