Cumulative Human Impacts on Coral Reefs: Assessing Risk and Management Implications for Brazilian Coral Reefs
Abstract
:1. Introduction
2. Materials and Methods
2.1. Mapping the Exposure to Multiple Stressors
2.2. Composite Index of the Cumulative Impact on Coral Reefs
3. Results
4. Discussion
Supplementary Materials
Acknowledgments
Author Contributions
Conflicts of Interest
References
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Stressor | Justification for Stressor | Source of Dataset | Scaling of Data | Data Model and Attributes |
---|---|---|---|---|
Fishing FII | The wholesale removal of reef fish species causes severe depletion of populations and impairs coral reef resilience [37] | Google Earth Pro and government reports described in [38] | Continuous | Linear decay model based on mapping the spatial location of 3610 traditional and 65 industrial active vessels |
Land-based activities LAI | These activities are proven to increase erosion and deteriorate coastal water quality, changes that cause detrimental impacts on coral reef species [39] | Land-use data, infrastructure, and human access to natural areas in the terrestrial environment described in [40,41] and river plume data (Appendix A) | Continuous | Raster dataset containing the human footprint score derived from several variables (e.g., crop land, extent of built environments, and roads) measuring the direct and indirect human pressures on coastal catchments; Euclidean distance from each reef cell centroid to mouth of the nearest main river |
Coastal develop-ment CDI | Coastal development results in sewage discharge, urbanisation, presence of engineering structures, and other general uses of the shore that can disrupt coral reef ecosystems [42,43] | DMSP/NOAA/NGDC nighttime satellite imagery as described in [38,44] | Continuous | Relative distance from each reef cell (centroid) to a source of night-time light (based on the metric LPI (light proximity index) |
Ocean mining OMI | Physical structures for mineral extraction promote habitat loss. Indirect impacts include nutrient loading and sedimentation [45] | Government databases publicly available (Appendix A) | Categorical (presence or absence) | Vector data set of spatial locations of areas converted for mining (n = 70) as well as areas beyond their physical presence under indirect exposure |
Aqua-culture ADI | An important source of organic and inorganic pollution, often associated with eutrophication of coastal waters [46] | Shrimp farm locations mapped by [47] | Continuous | Euclidean-distance-based model from the centroid of each farm pond (n = 115) that would potentially affect a given reef cell |
Shipping move-ments SMI | Shipping-associated disturbances such as sediment resuspension and noise pollution lead to habitat degradation [48] | Shipping activity including domestic and international fleet and several vessel types made available by Marine Traffic (Appendix A) | Categorical (low, medium, high, and very high) | Density map classifying levels of ship movement based on historical data on ship positions |
Thermal stress TSI | Sea-surface temperature is associated with coral bleaching and several other ecological shifts in coral reef ecosystems [2] | Sea surface temperature data obtained from NOAA and described by [25] | Continuous | Rate of warming using non-linear mixed effect models based on monthly climatology of sea surface temperature. |
Stressor | Constants Used in the Formula Above | Weights |
---|---|---|
Fishing intensity | a | 2.5 |
Land-based activity | b | 2.8 |
Coastal development | c | 2.9 |
Ocean mining | d | 0.8 |
Aquaculture | e | 1.8 |
Shipping movement | f | 1.5 |
Thermal stress | g | 2.8 |
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Magris, R.A.; Grech, A.; Pressey, R.L. Cumulative Human Impacts on Coral Reefs: Assessing Risk and Management Implications for Brazilian Coral Reefs. Diversity 2018, 10, 26. https://doi.org/10.3390/d10020026
Magris RA, Grech A, Pressey RL. Cumulative Human Impacts on Coral Reefs: Assessing Risk and Management Implications for Brazilian Coral Reefs. Diversity. 2018; 10(2):26. https://doi.org/10.3390/d10020026
Chicago/Turabian StyleMagris, Rafael A., Alana Grech, and Robert L. Pressey. 2018. "Cumulative Human Impacts on Coral Reefs: Assessing Risk and Management Implications for Brazilian Coral Reefs" Diversity 10, no. 2: 26. https://doi.org/10.3390/d10020026
APA StyleMagris, R. A., Grech, A., & Pressey, R. L. (2018). Cumulative Human Impacts on Coral Reefs: Assessing Risk and Management Implications for Brazilian Coral Reefs. Diversity, 10(2), 26. https://doi.org/10.3390/d10020026