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DOI | 10.1038/s41558-020-0737-9 |
Coral reef survival under accelerating ocean deoxygenation | |
Hughes D.J., Alderdice R., Cooney C., Kühl M., Pernice M., Voolstra C.R., Suggett D.J. | |
发表日期 | 2020 |
ISSN | 1758-678X |
英文摘要 | Global warming and local eutrophication simultaneously lower oxygen (O2) saturation and increase biological O2 demands to cause deoxygenation. Tropical shallow waters, and their coral reefs, are particularly vulnerable to extreme low O2 (hypoxia) events. These events can drive mass mortality of reef biota; however, they currently remain unaccounted for when considering coral reef persistence under local environmental alterations and global climatic change. In this Perspective, we integrate existing biological, ecological and geochemical evidence to consider how O2 availability and hypoxia affect reef biota, with particular focus on the ecosystem architects, reef-building corals, that operate as both O2 consumers and producers. We pinpoint fundamental knowledge gaps and highlight the need to understand sub-lethal hypoxia effects that are likely already in play. © 2020, Springer Nature Limited. |
来源期刊 | Nature Climate Change
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文献类型 | 期刊论文 |
条目标识符 | http://gcip.llas.ac.cn/handle/2XKMVOVA/128138 |
作者单位 | Climate Change Cluster, University of Technology Sydney |
推荐引用方式 GB/T 7714 | Hughes D.J., Alderdice R., Cooney C., Kühl M., Pernice M., Voolstra C.R., Suggett D.J.. Coral reef survival under accelerating ocean deoxygenation[J],2020. |
APA | Hughes D.J., Alderdice R., Cooney C., Kühl M., Pernice M., Voolstra C.R., Suggett D.J..(2020).Coral reef survival under accelerating ocean deoxygenation.Nature Climate Change. |
MLA | Hughes D.J., Alderdice R., Cooney C., Kühl M., Pernice M., Voolstra C.R., Suggett D.J.."Coral reef survival under accelerating ocean deoxygenation".Nature Climate Change (2020). |
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