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Author Spotlight: Bridging the Gap Between Field Observations and Lab Manipulations in Larval Ecology Research
Published on: January 5, 2024
Limacina helicina shell dissolution as an indicator of declining habitat suitability owing to ocean acidification in
N Bednaršek1, R A Feely, J C P Reum
1National Oceanic and Atmospheric Administration (NOAA), Pacific Marine Environmental Laboratory (PMEL), , 7600 Sand Point Way NE, Seattle, WA 98115, USA, Conservation Biology Division, Northwest Fisheries Science Center, National Marine Fisheries Service, National Oceanic and Atmospheric Administration (NOAA), , 2725 Montlake Boulevard East, Seattle, WA 98112, USA, NOAA NMFS NW Fisheries Science Center, , 2030 SE Marine Science Drive, Newport, OR 97365, USA, Oregon State University, Cooperative Institute for Marine Resources Studies, Hatfield Marine Science Center, , 2030 SE Marine Science Drive, Newport, OR 97365, USA, College of Earth, Ocean, and Atmospheric Sciences, Oregon State University, , Corvallis, OR 97331, USA.
Abstract:
Few studies to date have demonstrated widespread biological impacts of ocean acidification (OA) under conditions currently found in the natural environment. From a combined survey of physical and chemical water properties and biological sampling along the Washington-Oregon-California coast in August 2011, we show that large portions of the shelf waters are corrosive to pteropods in the natural environment. We show a strong positive correlation between the proportion of pteropod individuals with severe shell dissolution damage and the percentage of undersaturated water in the top 100 m with respect to aragonite. We found 53% of onshore individuals and 24% of offshore individuals on average to have severe dissolution damage. Relative to pre-industrial CO2 concentrations, the extent of undersaturated waters in the top 100 m of the water column has increased over sixfold along the California Current Ecosystem (CCE). We estimate that the incidence of severe pteropod shell dissolution owing to anthropogenic OA has doubled in near shore habitats since pre-industrial conditions across this region and is on track to triple by 2050. These results demonstrate that habitat suitability for pteropods in the coastal CCE is declining. The observed impacts represent a baseline for future observations towards understanding broader scale OA effects.
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