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DOIhttps://doi.org/10.1594/PANGAEA.846877
Decreased light availability can amplify negative impacts of ocean acidification on calcifying coral reef organisms
Vogel; Nikolas; Meyer; Friedrich Wilhelm; Wild; Christian; Uthicke; Sven
发布日期2015-06-10
数据集类型dataset
英文关键词Acropora millepora ; Animalia ; Benthic animals ; Benthos ; Bottles or small containers/Aquaria ( 20 L) ; Calcification/Dissolution ; Chlorophyta ; Cnidaria ; Coast and continental shelf ; Growth/Morphology ; Halimeda opuntia ; Laboratory experiment ; Light ; Macroalgae ; Plantae ; Primary production/Photosynthesis ; Respiration ; Single species ; South Pacific ; Tropical
英文简介Coral reef organisms are increasingly and simultaneously affected by global and local stressors such as ocean acidification (OA) and reduced light availability. However, knowledge of the interplay between OA and light availability is scarce. We exposed 2 calcifying coral reef species (the scleractinian coral Acropora millepora and the green alga Halimeda opuntia) to combinations of ambient and increased pCO2 (427 and 1073 µatm, respectively), and 2 light intensities (35 and 150 µmol photons/m**2/s) for 16 d. We evaluated the individual and combined effects of these 2 stressors on weight increase, calcification rates, O2 fluxes and chlorophyll a content for the species investigated. Weight increase of A. millepora was significantly reduced by OA (48%) and low light intensity (96%) compared to controls. While OA did not affect coral calcification in the light, it decreased calcification in the dark by 155%, leading to dissolution of the skeleton. H. opuntia weight increase was not affected by OA, but decreased (40%) at low light. OA did not affect algae calcification in the light, but decreased calcification in the dark by 164%, leading to dissolution. Low light significantly reduced gross photosynthesis (56 and 57%), net photosynthesis (62 and 60%) and respiration (43 and 48%) of A. millepora and H. opuntia, respectively. In contrast to A. millepora, H. opuntia significantly increased chlorophyll content by 15% over the course of the experiment. No interactive effects of OA and low light intensity were found on any response variable for either organism. However, A. millepora exhibited additive effects of OA and low light, while H. opuntia was only affected by low light. Thus, this study suggests that negative effects of low light and OA are additive on corals, which may have implications for management of river discharge into coastal coral reefs.
空间范围Median Latitude: -18.581150 * Median Longitude: 146.486785 * South-bound Latitude: -18.612280 * West-bound Longitude: 146.485170 * North-bound Latitude: -18.550020 * East-bound Longitude: 146.488400
语种英语
国家国际
学科大类气候变化
学科子类气候变化
文献类型数据集
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/217097
推荐引用方式
GB/T 7714
Vogel,Nikolas,Meyer,et al. Decreased light availability can amplify negative impacts of ocean acidification on calcifying coral reef organisms.2015-06-10.https://doi.org/10.1594/PANGAEA.846877.
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