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Wei, Chih-Lin; González-Irusta, José Manuel; Domínguez-Carrió, Carlos; Morato, Telmo (2020): Set of terrain (static in time) and environmental (dynamic in time) variables used as candidate predictors of present-day (1951-2000) and future (2081-2100) suitable habitat of cold-water corals and deep-sea fishes in the North Atlantic [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.911117

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Abstract:
We used environmental niche modelling along with the best available species occurrence data and environmental parameters to model habitat suitability for key cold-water coral and commercially important deep-sea fish species under present-day (1951-2000) environmental conditions and to forecast changes under severe, high emissions future (2081-2100) climate projections (RCP8.5 scenario) for the North Atlantic Ocean (from 18°N to 76°N and 36°E to 98°W). This dataset contains a set of terrain (static in time) and environmental (dynamic in time) variables were used as candidate predictors of present-day (1951-2000) distribution and to forecast future (2081-2100) changes. All predictor variables were projected with the Albers equal-area conical projection centred in the middle of the study area. The terrain variable depth was extracted from a bathymetry grid built from two data sources: the EMODnet Digital Terrain Model (EMODnet, 2018) and the General Bathymetric Chart of the Oceans (GEBCO 2014; Weatherall et al., 2015). Slope (in degrees) was derived from the final bathymetry grid using the Raster package in R (Hijmans, 2016) and the Bathymetric Position Index (BPI) was computed using the Benthic Terrain Model 3.0 tool in ArcGIS 10.1 with an inner radius of 3 and an outer radius of 25 grid cells. In order to avoid extreme values, BPI was standardized using the scale function from the Raster package. Environmental variables of present-day and future conditions, including particulate organic carbon (POC) flux at 100-m depth (epc100, mg C m-2 d-1), bottom water dissolved oxygen concentration (µmol kg-1), pH, and potential temperature (°K) were downloaded from the Earth System Grid Federation (ESGF) Peer-to-Peer (P2P) enterprise system. The epc100 was converted to export POC flux at the seafloor using the Martin curve (Martin, Knauer, Karl, & Broenkow, 1987) following the equation: epc = epc100*(water depth/export depth)-0.858, and setting the export depth to 100 m. Near seafloor aragonite (Ωar) and calcite (Ωcal) saturation were also used as candidate predictors for habitat suitability of cold-water coral species. These saturation states were computed by dividing the bottom water carbonate ion concentration (mol m-3) by the bottom water carbonate ion concentration (mol m-3) for seawater in equilibrium with pure aragonite and calcite. Yearly means of these parameters were calculated for the periods 1951-2000 (historical simulation) and 2081-2100 (RCP8.5 or business-as-usual scenario) using the average values obtained from the Geophysical Fluid Dynamics Laboratory's ESM 2G model (GFDL-ESM-2G; Dunne et al., 2012), the Institut Pierre Simon Laplace's CM6-MR model (IPSL-CM5A-MR; Dufresne et al., 2013) and Max Planck Institute's ESM-MR model (MPI-ESM-MR; Giorgetta et al., 2013) within the Coupled Models Intercomparison Project Phase 5 (CMIP5) for each grid cell of the present study area.
Keyword(s):
Climate change; Deep-sea; environmental conditions; habitat suitability modelling; RCP8.5
Related to:
Morato, Telmo; González-Irusta, José Manuel; Domínguez-Carrió, Carlos; Wei, Chih-Lin; Davies, Andrew; Sweetman, Andrew K; Taranto, Gerald; Beazley, Lindsay; García-Alegre, A; Grehan, Anthony J; Laffargue, P; Murillo, Francisco Javier; Sacau, M; Vaz, S; Kenchington, Ellen L; Arnaud-Haond, Sophie; Callery, Oisín; Chimienti, G; Cordes, E; Egilsdottir, Hronn; Freiwald, André; Gasbarro, R; Gutierrez-Zárate, C; Gianni, M; Gilkinson, Kent; Wareham Hayes, V E; Hebbeln, Dierk; Hedges, K; Henry, Lea-Anne; Johnson, David; Koen-Alonso, M; Lirette, C; Mastrototaro, F; Menot, Lenaick; Molodtsova, Tina; Durán Muñoz, P; Orejas, Covadonga; Pennino, Maria Grazia; Puerta, P; Ragnarsson, Stefan Aki; Ramiro-Sánchez, Berta; Rice, J; Rivera, Jesús; Roberts, J Murray; Ross, Steve W; Rueda, José Luis; Sampaio, Íris; Snelgrove, Paul V R; Stirling, David; Treble, M A; Urra, Javier; Vad, Johanne; van Oevelen, Dick; Watling, L; Walkusz, Wojciech; Wienberg, Claudia; Woillez, M; Levin, Lisa A; Carreiro-Silva, Marina (2020): Climate-induced changes in the suitable habitat of cold-water corals and commercially important deep-sea fishes in the North Atlantic. Global Change Biology, https://doi.org/10.1111/gcb.14996
Funding:
Horizon 2020 (H2020), grant/award no. 678760: A Trans-Atlantic assessment and deep-water ecosystem-based spatial management plan for Europe
Coverage:
Median Latitude: 45.000000 * Median Longitude: -25.000000 * South-bound Latitude: 20.000000 * West-bound Longitude: -90.000000 * North-bound Latitude: 70.000000 * East-bound Longitude: 40.000000
Event(s):
North_Atlantic_region * Latitude Start: 20.000000 * Longitude Start: -90.000000 * Latitude End: 70.000000 * Longitude End: 40.000000
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1File nameFile nameMorato, Telmo
2File formatFile formatMorato, Telmo
3File sizeFile sizekByteMorato, Telmo
4Uniform resource locator/link to fileURL fileMorato, Telmo
Size:
48 data points

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