Coral calcification in a changing World and the interactive dynamics of pH and DIC upregulation.
basic_science · Level V
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- Record sourced from PubMed, PMID 28555644.
- Also identified by DOI 10.1038/ncomms15686 and PMC identifier 5499203.
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Abstract
Coral calcification is dependent on the mutualistic partnership between endosymbiotic zooxanthellae and the coral host. Here, using newly developed geochemical proxies (δ<sup>11</sup>B and B/Ca), we show that Porites corals from natural reef environments exhibit a close (r<sup>2</sup> ∼0.9) antithetic relationship between dissolved inorganic carbon (DIC) and pH of the corals' calcifying fluid (cf). The highest DIC<sub>cf</sub> (∼ × 3.2 seawater) is found during summer, consistent with thermal/light enhancement of metabolically (zooxanthellae) derived carbon, while the highest pH<sub>cf</sub> (∼8.5) occurs in winter during periods of low DIC<sub>cf</sub> (∼ × 2 seawater). These opposing changes in DIC<sub>cf</sub> and pH<sub>cf</sub> are shown to maintain oversaturated but stable levels of carbonate saturation (Ω<sub>cf</sub> ∼ × 5 seawater), the key parameter controlling coral calcification. These findings are in marked contrast to artificial experiments and show that pH<sub>cf</sub> upregulation occurs largely independent of changes in seawater carbonate chemistry, and hence ocean acidification, but is highly vulnerable to thermally induced stress from global warming.
Medical subject headings
- Anthozoa
- Calcification, Physiologic
- Carbon
- Global Warming
- Oceans and Seas
- Seawater