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      Impact of elevated levels of CO2 on animal mediated ecosystem function: The modification of sediment nutrient fluxes by burrowing urchins

      Widdicombe, S.; Beesley, A.; Berge, J.A.; Dashfield, S.L.; McNeill, C.L.; Needham, Hazel Rosemary; Øxnevad, S.
      DOI
       10.1016/j.marpolbul.2012.11.008
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      Widdicombe, S., Beesley, A., Berge, J. A., Dashfield, S. L., McNeill, C. L., Needham, H. R., & Øxnevad, S. (2012). Impact of elevated levels of CO2 on animal mediated ecosystem function: The modification of sediment nutrient fluxes by burrowing urchins. Marine Pollution Bulletin.
      Permanent Research Commons link: https://hdl.handle.net/10289/7064
      Abstract
      A mesocosm experiment was conducted to quantify the relationships between the presence and body size of two burrowing heart urchins (Brissopsis lyrifera and Echinocardium cordatum) and rates of sediment nutrient flux. Furthermore, the impact of seawater acidification on these relationships was determined during this 40-day exposure experiment. Using carbon dioxide (CO ₂) gas, seawater was acidified to pH NBS 7.6, 7.2 or 6.8. Control treatments were maintained in natural seawater (pH ≈ 8.0). Under normocapnic conditions, burrowing urchins were seen to reduce the sediment uptake of nitrite or nitrate whilst enhancing the release of silicate and phosphate. In acidified (hypercapnic) treatments, the biological control of biogeochemical cycles by urchins was significantly affected, probably through the combined impacts of high CO ₂ on nitrifying bacteria, benthic algae and urchin behaviour. This study highlights the importance of considering biological interactions when predicting the consequences of seawater acidification on ecosystem function.
      Date
      2012
      Type
      Journal Article
      Publisher
      Elsevier
      Collections
      • Science and Engineering Papers [3074]
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