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Rioja-Nieto, R.

Publications and source records attributed to Rioja-Nieto, R..

2 recordsLinked to original sources

The paradox of neutral carbonate budgets on coral-dominated reefs

Coral reefs deliver vital services via a complex three-dimensional framework sustained by the balance between calcium carbonate production and erosion, or the net carbonate budget state. In many tropical western Atlantic reefs, ecological decline has reduced carbonate production, yielding near-neutral or negative budgets. Yet some reefs retain high coral cover and, theoretically, should also have high net positive budgets, yet often show modest carbonate accumulation. We used the remote reef of Cayo Arenas in the Campeche Bank, Gulf of Mexico, to test whether in reefs under suboptimal (variable) environmental conditions, high coral production is offset by robust bioeroder communities, producing neutral budgets. At 14 sites, we quantified carbonate producers and bioeroders to estimate gross production, bioerosion, and net budget states. Despite relatively high live coral cover, mean net carbonate budgets were approximately neutral. Crucially, this neutrality arose not from depressed biological activity (as in degraded reefs) but from an active equilibrium: vigorous carbonate production coupled with substantial bioerosion. These reefs, therefore, represent a contemporary, functional reef state in net stasis. Distinguishing active-neutral from impoverishment-neutral regimes is critical for predicting reef trajectories under environmental change and for targeting management, although near-stasis emerging from high carbonate turnover can appear functionally intact yet operate with limited buffering capacity against net carbonate loss.

ecology↗

Multiscale Rugosity Assessment of Coral Reefs Using Underwater Photogrammetry

Understanding the structural complexity of coral reefs is essential for assessing their condition, biodiversity, and resilience. Traditional methods commonly use a rugosity index, based on the chain method, that overlooks the underlaying structure of coral reefs. However, digital underwater photogrammetry allows to build models of coral structures which can then be used to decompose reef topography across multiple layers. This study introduces a wavelet-based method for the multiscale analysis of reef rugosity, considering reefs surface and underlying characteristics. Data were collected from six reefs within the Cozumel Reefs National Marine Park (CRNP) at depths ranging from 6 to 14 m. High-resolution Digital Elevation Models (DEMs) and orthomosaics were constructed using digital underwater photogrammetry (UWP). The elevation profiles extracted from the DEMs were analyzed using a Maximum Overlap Discrete Wavelet Transform (MODWT), with a Daubechies mother wavelet to decompose the reef topography into local rugosity (related to live coral coverage) and underlying rugosity (related to the historical context of the formation of the reef matrix). The wavelet-based method effectively decomposed the DEMs into components representing rugosity at different scales, with the reconstructed DEMs being statistically equivalent to the data source (p> 0.05). Underlying reef characteristics contributed the most to the rugosity estimates. Significant differences in rugosity were observed between reefs (p< 0.05), where interpretations differed based on the contribution of surface and underlying characteristics. For the CRNP, Agariciid and branching corals are the primary drivers of surface rugosity (p < 0.05), rather than the mound & boulder, and meandroid corals. Our results highlight that traditional methods to estimate rugosity can underestimate the importance of local rugosity in maintaining rugosity over time.

ecology↗