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Giorgio Castellan
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Global warming and ocean acidification are predicted to impinge on deep sea ecosystems with deleterious consequences on their biodiversity and ecosystem services. More specifically, human-induced global climate changes may pose a major threat to cold water corals which are known to engineer some of the most complex, diverse and charismatic habitats at bathyal depths. Furthermore, these corals may suffer in the future from an unprecedented destruction of their habitat from additional pressures (e.g. bottom fishing, deep-sea mining), which may further modify their structure and function. However, the adaptive potential of cold water corals in response to increasing warming remains largely undocumented. In the Mediterranean Sea, the analysis of radiometrically-dated fossil specimens shows a general decline in the abundance of cold water corals that were exposed to temperatures higher than 14°C in the past. Considering that modern intermediate and deep Mediterranean waters are close or above 14°C, this suggests that most of the Mediterranean cold water coral species thrive today very close to their physiological threshold, , with deleterious consequences on deep-sea ecosystems and biodiversity.
This multidisciplinary case study will target those Mediterranean cold water coral habitats that develop under thermal conditions very close to 14°C. Maps of the current cold water coral distribution in the Mediterranean Sea will be correlated to chemical and physical parameters (e.g. temperature, salinity, nutrients, dissolved oxygen concentration) from field data and modelling. The fossil records will be also analysed through U/Th dating and isotopic geochemistry, and the abundance of fossil corals will be correlated to proxy-based environmental reconstructions. Future scenarios will be provided based on regional models (e.g. Med-CORDEX) and will focus on the increase of temperature and consequent cold water coral habitat loss. The role of other parameters such as nutrient concentration and decreasing pH will be also investigated. This case study involves experts in paleoclimatology, paleoecology, physical and chemical oceanography, biology, ecology and modelling.
Key hypothesis to be tested: the seawater temperature is the main environmental factor controlling the past, present and future distribution of cold water corals in the Mediterranean Sea.
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Spatial and temporal distribution of Cold Water Corals (CWC) in the Mediterranean Sea
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Recent ROV (Remotely Operated Vehicle) exploration and bottom sampling in the southern Adriatic Sea (Apulian and Montenegrin margins) resulted in the discovery of cnidarian-rich deep-sea habitats in the depth range of ca. 400-700 m. In particular, RO
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ANGELETTI, L., TAVIANI, M., CANESE, S., FOGLINI, F., MASTROTOTARO, F., ARGNANI, A., TRINCARDI, F., BAKRAN-PETRICIOLI, T., CEREGATO, A., CHIMIENTI, G., MAČIĆ, V., & POLISENO, A. (2013). New deep-water cnidarian sites in the southern Adriatic Sea. Medi
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Scleractinians Antipatharians Gorgonians benthos nekton deep-sea ROV south Adriatic
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New deep-water cnidarian sites in the southern Adriatic Sea
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This case study targets the Mediterranean cold water coral habitats that develop under thermal conditions very close to 14°C. Maps of the current cold water coral distribution in the Mediterranean Sea will be correlated to physical parameters (i.e. Temperature) from field data and regional model Med-CORDEX. the effect of the increase of temperature and its consequence on cold water coral habitat loss.
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The Gulf of Naples is an example of the most beautiful and biodiverse marine regions of the Mediterranean Sea and of the most impacted areas in terms of industrial activities, large contaminated areas, resource exploitation, infrastructures at sea an
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Taviani, M., Angeletti, L., Cardone, F. et al. A unique and threatened deep water coral-bivalve biotope new to the Mediterranean Sea offshore the Naples megalopolis. Sci Rep 9, 3411 (2019). https://doi.org/10.1038/s41598-019-39655-8
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A unique and threatened deep water coral-bivalve biotope new to the Mediterranean Sea offshore the Naples megalopolis
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A new cold-water coral (CWC) province has been identified in the Mediterranean Sea in the Capo Spartivento canyon system offshore the southern coast of Sardinia. The ‘Sardinia cold-water coral province’ is characterized in the Nora canyon by a specta
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M. Taviani, L. Angeletti, S. Canese, R. Cannas, F. Cardone, A. Cau, A.B. Cau, M.C. Follesa, F. Marchese, P. Montagna, C. Tessarolo. The “Sardinian cold-water coral province” in the context of the Mediterranean coral ecosystems, Deep Sea Research Part
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Cold-water coral; Mediterranean Sea; Habitat mapping; Biodiversity; Oceanography
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The “Sardinian cold-water coral province” in the context of the Mediterranean coral ecosystems
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Data on temperature, salinity, dissolved oxygen, pH, and nutrient concentrations in seawater used to explore how environmental variables influence the distribution of CWC in the Mediterranean Sea
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Spatial and temporal distribution of Cold Water Corals (CWC) in the Mediterranean Sea - Data
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