豌豆花柱
珊瑚
海洋酸化
呼吸
海水
钙化
环境化学
珊瑚礁
光合作用
生物
生态学
海洋学
化学
动物科学
作者
Sarah Cryer,C. Schlosser,Nicola Allison
标识
DOI:10.1016/j.marenvres.2022.105610
摘要
A decrease in ocean pH of 0.3 units will likely double the proportion of dissolved copper (Cu) present as the free metal ion, Cu 2+ , the most bioavailable form of Cu, and one of the most common marine pollutants. We assess the impact of ocean acidification and Cu, separately and in combination, on calcification, photosynthesis and respiration of sub-colonies of a single tropical Stylophora pistillata colony. After 15 days of treatment, total calcification rates were significantly decreased in corals exposed to high seawater p CO 2 (∼1000-μatm, 2100 scenario) and at both ambient (1.6–1.9 nmols) and high (2.5–3.6 nmols) dissolved Cu concentrations compared to controls. The effect was increased when both stressors were combined. Coral respiration rates were significantly reduced by the combined stressors after 2 weeks of exposure, indicating the importance of experiment duration. It is therefore likely rising atmospheric CO 2 will exacerbate the negative effects of Cu pollution to S. pistillata . • Exposure to increased Cu concentrations suppressed coral calcification. • Calcification was suppressed further when exposed to Cu under high pCO 2 . • Respiration decreased after two weeks when stressors were applied in combination.
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