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Coral reef calcifiers buffer their response to ocean acidification using both bicarbonate and carbonate

机译:碳酸钙和碳酸盐均能使珊瑚礁钙化剂缓冲其对海洋酸化的反应

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摘要

Central to evaluating the effects of ocean acidification (OA) on coral reefs is understanding how calcification is affected by the dissolution of CO2 in sea water, which causes declines in carbonate ion concentration [CO32−] and increases in bicarbonate ion concentration [HCO3]. To address this topic, we manipulated [CO32−] and [HCO3] to test the effects on calcification of the coral Porites rus and the alga Hydrolithon onkodes, measured from the start to the end of a 15-day incubation, as well as in the day and night. [CO32−] played a significant role in light and dark calcification of P. rus, whereas [HCO3] mainly affected calcification in the light. Both [CO32−] and [HCO3] had a significant effect on the calcification of H. onkodes, but the strongest relationship was found with [CO32−]. Our results show that the negative effect of declining [CO32−] on the calcification of corals and algae can be partly mitigated by the use of HCO3 for calcification and perhaps photosynthesis. These results add empirical support to two conceptual models that can form a template for further research to account for the calcification response of corals and crustose coralline algae to OA.
机译:评估海洋酸化(OA)对珊瑚礁的影响的核心是了解海水中CO2的溶解如何影响钙化,这会导致碳酸根离子浓度[CO3 2 − ]下降并增加碳酸氢根离子浓度[HCO3 -]为了解决这个问题,我们操作了[CO3 2-]和[HCO3 -],以测试对珊瑚Porrus rus和藻类Hydrolithon onkodes钙化的影响,从15天孵化的开始以及白天和黑夜。 [CO3 2-]在rus的光和暗钙化中起重要作用,而[HCO3 -]主要影响光的钙化。 [CO3 2-]和[HCO3 -]均对onkodes的钙化有显着影响,但与[CO3 2 − ]。我们的结果表明,降低[CO3 2-]对珊瑚和藻类钙化的负面影响可以通过使用HCO3 -进行钙化和光合作用得到部分缓解。 。这些结果为两个概念模型提供了经验支持,这两个概念模型可以构成进一步研究的模板,以说明珊瑚和rust壳珊瑚藻对OA的钙化反应。

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