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Abstract
The coral skeletons that contribute to tropical reef structures are biominerals, composed of inorganic aragonite and organic biomolecules. The biomolecules influence the aragonite structure and material properties of the skeleton. We collected massive Porites lutea skeletons from Phuket, Thailand, in 1991, approximately one month into a temperature-induced bleaching event. Some specimens had expelled their Symbiodiniaceae in response to the increased water temperatures (bleached), while other corals appeared unaffected (unbleached). We investigate the effect of Symbiodiniaceae loss on the amino acid composition, aragonite structure, and Vickers hardness of the coral skeletons. We observe no significant difference in the amino acid content or composition of the outermost 1 mm of skeleton (representing 0.5 to 2 months growth) between bleached and unbleached specimens. The full width half maximum of the Raman spectrum ʋ1 band, an indicator of disorder around the CO3 group in the aragonite lattice, varies significantly between some corals in the outermost 200 µm of skeleton, but these differences are not attributable to the bleaching status of the coral colonies. Similarly, Vickers hardness varies significantly between some colonies, but this is not related to coral bleaching. This is a positive finding, suggesting that bleaching, from which corals recover, does not adversely affect the coral skeletal structure.
| Original language | English |
|---|---|
| Number of pages | 13 |
| Journal | Coral Reefs |
| Volume | Online first |
| Early online date | 29 Aug 2025 |
| DOIs | |
| Publication status | E-pub ahead of print - 29 Aug 2025 |
Keywords
- Coral bleaching
- Material properties
- Skeleton
- Raman spectroscopy
- Organic matrix
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Dive into the research topics of 'The effects of seawater temperature-induced coral bleaching on the aragonite structure and material properties of massive Porites lutea coral skeletons'. Together they form a unique fingerprint.Projects
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Trace element and isotope partitioning: Trace element and isotope partitioning in carbonates in simulated biological environments
Allison, N. (PI) & Finch, A. A. (CoI)
18/03/19 → 17/03/22
Project: Standard
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