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Ocean acidification affects coral growth by reducing skeletal density

机译:海洋酸化通过降低骨骼密度影响珊瑚的生长

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摘要

Ocean acidification (OA) is considered an important threat to coral reef ecosystems, because it reduces the availability of carbonate ions that reef-building corals need to produce their skeletons. However, while theory predicts that coral calcification rates decline as carbonate ion concentrations decrease, this prediction is not consistently borne out in laboratory manipulation experiments or in studies of corals inhabiting naturally low-pH reefs today. The skeletal growth of corals consists of two distinct processes: extension (upward growth) and densification (lateral thickening). Here, we show that skeletal density is directly sensitive to changes in seawater carbonate ion concentration and thus, to OA, whereas extension is not. We present a numerical model of Porites skeletal growth that links skeletal density with the external seawater environment via its influence on the chemistry of coral calcifying fluid. We validate the model using existing coral skeletal datasets from six Porites species collected across five reef sites and use this framework to project the impact of 21st century OA on Porites skeletal density across the global tropics. Our model predicts that OA alone will drive up to 20.3 ± 5.4% decline in the skeletal density of reef-building Porites corals.
机译:海洋酸化(OA)被认为是对珊瑚礁生态系统的重要威胁,因为它降低了造礁珊瑚生产其骨骼所需的碳酸根离子的可用性。然而,尽管理论预测珊瑚钙化速率会随着碳酸根离子浓度的降低而下降,但这一预测在实验室操纵实验或当今居住在天然低pH值珊瑚礁中的珊瑚研究中并未得到一致证实。珊瑚的骨骼生长包括两个不同的过程:扩展(向上生长)和致密化(侧向增厚)。在这里,我们表明骨骼密度对海水中碳酸盐离子浓度的变化直接敏感,因此对OA敏感,而延伸则不敏感。我们提出了一个Porites骨骼生长的数值模型,该模型通过对珊瑚钙化液化学的影响将骨骼密度与外部海水环境联系起来。我们使用从五个珊瑚礁站点收集的六个Porites物种的现有珊瑚骨骼数据集验证了该模型,并使用此框架预测了21世纪OA对全球热带地区Porites骨骼密度的影响。我们的模型预测,仅OA一项就可以使造礁的Porites珊瑚的骨骼密度下降20.3±5.4%。

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