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短期珊瑚白化无法通过骨骼硼同位素记录下来。

Short-term coral bleaching is not recorded by skeletal boron isotopes.

作者信息

Schoepf Verena, McCulloch Malcolm T, Warner Mark E, Levas Stephen J, Matsui Yohei, Aschaffenburg Matthew D, Grottoli Andréa G

机构信息

School of Earth and Environment, The University of Western Australia and ARC Centre of Excellence for Coral Reef Studies, Crawley, WA, Australia; School of Earth Sciences, The Ohio State University, Columbus, Ohio, United States of America.

School of Earth and Environment, The University of Western Australia and ARC Centre of Excellence for Coral Reef Studies, Crawley, WA, Australia.

出版信息

PLoS One. 2014 Nov 14;9(11):e112011. doi: 10.1371/journal.pone.0112011. eCollection 2014.

Abstract

Coral skeletal boron isotopes have been established as a proxy for seawater pH, yet it remains unclear if and how this proxy is affected by seawater temperature. Specifically, it has never been directly tested whether coral bleaching caused by high water temperatures influences coral boron isotopes. Here we report the results from a controlled bleaching experiment conducted on the Caribbean corals Porites divaricata, Porites astreoides, and Orbicella faveolata. Stable boron (δ11B), carbon (δ13C), oxygen (δ18O) isotopes, Sr/Ca, Mg/Ca, U/Ca, and Ba/Ca ratios, as well as chlorophyll a concentrations and calcification rates were measured on coral skeletal material corresponding to the period during and immediately after the elevated temperature treatment and again after 6 weeks of recovery on the reef. We show that under these conditions, coral bleaching did not affect the boron isotopic signature in any coral species tested, despite significant changes in coral physiology. This contradicts published findings from coral cores, where significant decreases in boron isotopes were interpreted as corresponding to times of known mass bleaching events. In contrast, δ13C and δ18O exhibited major enrichment corresponding to decreases in calcification rates associated with bleaching. Sr/Ca of bleached corals did not consistently record the 1.2°C difference in seawater temperature during the bleaching treatment, or alternatively show a consistent increase due to impaired photosynthesis and calcification. Mg/Ca, U/Ca, and Ba/Ca were affected by coral bleaching in some of the coral species, but the observed patterns could not be satisfactorily explained by temperature dependence or changes in coral physiology. This demonstrates that coral boron isotopes do not record short-term bleaching events, and therefore cannot be used as a proxy for past bleaching events. The robustness of coral boron isotopes to changes in coral physiology, however, suggests that reconstruction of seawater pH using boron isotopes should be uncompromised by short-term bleaching events.

摘要

珊瑚骨骼硼同位素已被确立为海水pH值的替代指标,但该替代指标是否以及如何受到海水温度的影响仍不清楚。具体而言,高温导致的珊瑚白化是否会影响珊瑚硼同位素,从未得到过直接验证。在此,我们报告了对加勒比珊瑚多孔鹿角珊瑚、星孔鹿角珊瑚和蜂巢珊瑚进行的对照白化实验结果。我们测量了与高温处理期间及之后紧接着的时间段相对应的珊瑚骨骼材料中的稳定硼(δ11B)、碳(δ13C)、氧(δ18O)同位素,锶/钙、镁/钙、铀/钙和钡/钙比率,以及叶绿素a浓度和钙化率,并且在珊瑚礁上恢复6周后再次进行了测量。我们发现,在这些条件下,尽管珊瑚生理发生了显著变化,但珊瑚白化并未影响所测试的任何珊瑚物种的硼同位素特征。这与来自珊瑚岩芯的已发表研究结果相矛盾,在那些研究中,硼同位素的显著下降被解释为与已知大规模白化事件的时期相对应。相比之下,δ13C和δ18O表现出显著富集,这与白化相关的钙化率下降相对应。白化珊瑚的锶/钙并未始终记录漂白处理期间海水中1.2°C的温度差异,或者因光合作用和钙化受损而始终显示出一致的增加。镁/钙、铀/钙和钡/钙在某些珊瑚物种中受到珊瑚白化的影响,但观察到的模式无法通过温度依赖性或珊瑚生理变化得到令人满意的解释。这表明珊瑚硼同位素不会记录短期白化事件,因此不能用作过去白化事件的替代指标。然而,珊瑚硼同位素对珊瑚生理变化的稳健性表明,利用硼同位素重建海水pH值不应受到短期白化事件的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c76/4232377/c645fb96672c/pone.0112011.g001.jpg

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