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Lab based measurements of ocean acidification on Caribbean bioeroders (endolithic algae and reef-excavating sponges): implications for coral reef persistence, Cheeca Rocks Reef, Florida Keys, Northwest Atlantic Ocean, from 2018-06-11 to 2018-07-12 (NCEI Accession 0224590)

This dataset includes lab-based measurements of ocean acidification on Caribbean bioeroders (endolithic algae and reef-excavating sponges) collected on Cheeca Rocks Reef, Florida Keys, Northwest Atlantic Ocean, from 2018-06-11 to 2018-07-12. Caribbean coral reef ecosystems have entered a state of net erosion in response to ocean acidification (OA) due to a combination of reduced carbonate production and enhanced bioerosion. The negative response of coral reef calcifiers to OA has been well-established, whereas OA-enhanced bioerosion is relatively poorly understood. Microboring algae and macroboring sponges are both major contributors to coral reef carbonate budgets (Perry et al., 2012). Microboring algae use exclusively chemical (extracellular ion transport) means (Garcia-Pichel, 2006) to break down carbonate framework, whereas macroboring sponges use a combination of both chemical (enzymatic dissolution) and mechanical (substrate dislodgment) methods (Rutzler and Rieger, 1973) to erode reef framework. Prior studies have found that both microboring algae and macroboring sponges appear to benefit from OA through both enhanced bioerosion and physiological fitness, but have disproportionally focused on the responses of Pacific Ocean species. Here, we independently evaluated the OA-response of two Caribbean bioeroders to quantify the impact of OA on their physiology and bioerosion rates.

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Updated: 2024-02-22
Metadata Last Updated: 2025-11-19T16:18:11.830Z
Date Created: N/A
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Title Lab based measurements of ocean acidification on Caribbean bioeroders (endolithic algae and reef-excavating sponges): implications for coral reef persistence, Cheeca Rocks Reef, Florida Keys, Northwest Atlantic Ocean, from 2018-06-11 to 2018-07-12 (NCEI Accession 0224590)
Description This dataset includes lab-based measurements of ocean acidification on Caribbean bioeroders (endolithic algae and reef-excavating sponges) collected on Cheeca Rocks Reef, Florida Keys, Northwest Atlantic Ocean, from 2018-06-11 to 2018-07-12. Caribbean coral reef ecosystems have entered a state of net erosion in response to ocean acidification (OA) due to a combination of reduced carbonate production and enhanced bioerosion. The negative response of coral reef calcifiers to OA has been well-established, whereas OA-enhanced bioerosion is relatively poorly understood. Microboring algae and macroboring sponges are both major contributors to coral reef carbonate budgets (Perry et al., 2012). Microboring algae use exclusively chemical (extracellular ion transport) means (Garcia-Pichel, 2006) to break down carbonate framework, whereas macroboring sponges use a combination of both chemical (enzymatic dissolution) and mechanical (substrate dislodgment) methods (Rutzler and Rieger, 1973) to erode reef framework. Prior studies have found that both microboring algae and macroboring sponges appear to benefit from OA through both enhanced bioerosion and physiological fitness, but have disproportionally focused on the responses of Pacific Ocean species. Here, we independently evaluated the OA-response of two Caribbean bioeroders to quantify the impact of OA on their physiology and bioerosion rates.
Modified 2025-11-19T16:18:11.830Z
Publisher Name N/A
Contact N/A
Keywords 0224590 , BIOEROSION , biological data , bottle , calipers , Non-dispersive infrared (NDIR) dissolved inorganic carbon (DIC) analyzer , pH sensor , pump sampler , titrator , laboratory experiments , NOAA Atlantic Oceanographic and Meteorological Laboratory , NOAA Atlantic Oceanographic and Meteorological Laboratory , US DOC; NOAA; Office of Oceanic and Atmospheric Research; Ocean Acidification Program (OAP) , Northwest Atlantic Ocean (limit-40 W) , oceanography , DOC/NOAA/OAR/AOML > Atlantic Oceanographic and Meteorological Laboratory, OAR, NOAA, U.S. Department of Commerce , 09UY20180611 , Ocean Acidification Program (OAP) , Ocean Carbon and Acidification Data System (OCADS) Project , EARTH SCIENCE > BIOLOGICAL CLASSIFICATION , Laboratory experiment , DIC_umol/kg , DO% , SA , TA_umol/kg , density , diameter_mm , height_mm , mass , mass_weekX_g , pCO2_uatm , pH , pH_Treatment , CO2NDIR > Carbon Dioxide Nondispersive Infrared Analyzer , PH METERS > PH METERS , OCEAN > ATLANTIC OCEAN > NORTH ATLANTIC OCEAN , Western North Atlantic Ocean , environment , oceans
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