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Recommended priorities for research on ecological impacts of ocean and coastal acidification in the U.S. Mid-Atlantic

  • Grace K. Saba
  • , Kaitlin A. Goldsmith
  • , Sarah R. Cooley
  • , Daniel Grosse
  • , Shannon L. Meseck
  • , A. Whitman Miller
  • , Beth Phelan
  • , Matthew Poach
  • , Robert Rheault
  • , Kari St.Laurent
  • , Jeremy M. Testa
  • , Judith S. Weis
  • , Richard Zimmerman
  • Rutgers - The State University of New Jersey, New Brunswick
  • Mid-Atlantic Regional Council on the Ocean
  • Ocean Conservancy
  • LLC
  • NOAA/NMFS/NEFSC Milford Laboratory
  • Smithsonian Institution
  • National Oceanic and Atmospheric Administration
  • East Coast Shellfish Growers Association
  • Delaware Department of Natural Resources and Environmental Control
  • University of Maryland Center for Environmental Science
  • Rutgers - The State University of New Jersey, Newark
  • Old Dominion University

Research output: Contribution to journalReview articlepeer-review

25 Scopus citations

Abstract

The estuaries and continental shelf system of the United States Mid-Atlantic are subject to ocean acidification driven by atmospheric CO2, and coastal acidification caused by nearshore and land-sea interactions that include biological, chemical, and physical processes. These processes include freshwater and nutrient input from rivers and groundwater; tidally-driven outwelling of nutrients, inorganic carbon, alkalinity; high productivity and respiration; and hypoxia. Hence, these complex dynamic systems exhibit substantial daily, seasonal, and interannual variability that is not well captured by current acidification research on Mid-Atlantic organisms and ecosystems. We present recommendations for research priorities that target better understanding of the ecological impacts of acidification in the U. S. Mid-Atlantic region. Suggested priorities are: 1) Determining the impact of multiple stressors on our resource species as well as the magnitude of acidification; 2) Filling information gaps on major taxa and regionally important species in different life stages to improve understanding of their response to variable temporal scales and sources of acidification; 3) Improving experimental approaches to incorporate realistic environmental variability and gradients, include interactions with other environmental stressors, increase transferability to other systems or organisms, and evaluate community and ecosystem response; 4) Determining the capacity of important species to acclimate or adapt to changing ocean conditions; 5) Considering multi-disciplinary, ecosystem-level research that examines acidification impacts on biodiversity and biotic interactions; and 6) Connecting potential acidification-induced ecological impacts to ecosystem services and the economy. These recommendations, while developed for the Mid-Atlantic, can be applicable to other regions will help align research towards knowledge of potential larger-scale ecological and economic impacts.

Original languageEnglish
Article number106188
JournalEstuarine, Coastal and Shelf Science
Volume225
DOIs
StatePublished - Sep 30 2019
Externally publishedYes

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