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Published on: October 31, 2019
Linking land-based pollution pathways to coral reef exposure and ecological response
Rex Steward1, Pierre Chopin1, Vesna Bertoncelj2
1Environmental Geography Group, Institute for Environmental Studies (IVM), Vrije Universiteit Amsterdam, Amsterdam, 1081HV, the Netherlands.
None:
Land-based pollution is a major driver of coral reef degradation, yet the pathways linking terrestrial activities to marine exposure and ecological response remain difficult to resolve. Using Curaçao as a case study, we developed and tested 78 land-based pressure indices (LBPIs) that represent alternative spatial assumptions about pollutant sources, contributing catchments, and coastal dispersion. These indices were evaluated both as proxies for nutrient enrichment, using water-quality indicators, and as integrative measures of land-based pressure, using benthic condition. The framework spans simple land-use metrics (e.g., built-up area) to process-based nutrient export and hydrodynamic connectivity models, allowing systematic evaluation of land-based pollution pathways and their ecological consequences. We assessed how these indices explain spatial variation in reef pollution signatures (macroalgal δ15N, a tracer of wastewater-derived nitrogen) and ecological condition. Coral cover was evaluated across two survey years (1982 and 2015), while δ15N and benthic community composition were assessed for 2015. Results show that LBPIs capture most of the spatial variation in δ15N (R2 = 0.78), demonstrating their effectiveness in representing land-derived nutrient exposure. By contrast, coral cover was more weakly explained by LBPIs alone (R2 = 0.23), but model fits improved markedly when environmental variables such as wave exposure and geomorphology were included. Proxy performance also shifted over time: localized dispersion and land-use intensity metrics performed best in 1982, while broader source metrics combined with model-based connectivity were strongest in 2015, suggesting changes in pollution regimes or reef sensitivity. These findings demonstrate how alternative representations of land-based pollution pathways influence predictions of ecological exposure and response. The approach advances process-based modeling of pollutant transport across the land-sea continuum, providing transferable methods for diagnosing and managing land-derived pressures on coral reef ecosystems.
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