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  • 1
    Publication Date: 2023-03-10
    Keywords: 17; 21; 25; 3; 6; Angeles Alvarino; Area/locality; Bay of Biscay; Biological sample; BIOS; Campaign; Carter_St-25; Carvalho_St-17; Carvalho_St-21; Collection; Comment; DATE/TIME; Deep-sea Sponge Grounds Ecosystems of the North Atlantic; Depth, description; DEPTH, water; DR15; DR4; DR7; DR9; ECOMARG_0717; ECOMARG_0717_TF17; ECOMARG_0717_TF24; ECOMARG_0717_TF51; ECOMARG_0717_TF52; ECOMARG_0717_TF53; ECOMARG_0717_TF54; ECOMARG_0717_TF55; ECOMARG_0717_TV17; ECOMARG_2019; ECOMARG_2019_TF11; ECOMARG_2019_TF12; ECOMARG_2019_TF13; ECOMARG_2019_TF2; ECOMARG_2019_TF20; ECOMARG_2019_TF21; ECOMARG_2019_TF22; ECOMARG_2019_TF3; ECOMARG_2019_TF4; ECOMARG_2019_TF5; ESMAREC_0514; ESMAREC_0514_TF13; ESMAREC_0514_TF16; ESMAREC_0514_TF20; ESMAREC_0514_TF30; ESMAREC_0514_TF9; Habitat; INDEMARES_AV0511; INDERMARES_AV0511_DR7; Johnson; Latitude of event; Longitude of event; Name; Pisera_Vacelet; Pouliquen_St-3; Pouliquen_St-6; Ramon Margalef; South Atlantic Ocean; Species; SponGES; SponGES_0617; SponGES_0617_DR15; SponGES_0617_DR4; SponGES_0617_DR9; Station label; TF11; TF12; TF13; TF16; TF17; TF2; TF20; TF21; TF22; TF24; TF3; TF30; TF4; TF5; TF51; TF52; TF53; TF54; TF55; TF9; TV17; Type; Vizconde de Eza; Western Basin
    Type: Dataset
    Format: text/tab-separated-values, 215 data points
    Location Call Number Expected Availability
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  • 2
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    Unknown
    PANGAEA
    In:  Supplement to: Cárdenas, Paco; Vacelet, Jean; Chevaldonné, Pierre; Pérez, Thierry; Xavier, Joana R (2018): From marine caves to the deep sea, a new look at Caminella (Demospongiae, Geodiidae) in the Atlanto-Mediterranean region. Zootaxa, 4466(1), 174, https://doi.org/10.11646/zootaxa.4466.1.14
    Publication Date: 2023-03-10
    Description: Caminella Lendenfeld, 1894 is a poorly known Geodiidae genus with unclear phylogenetic relationships. In order to find new lines of evidence that could shed light on the evolutionary history of Caminella, we decided to revise type material and museum material, as well as examine new material from underwater caves and deep-sea ecosystems. In doing so, we formally show that Isops maculosus Vosmaer, 1894 and Caminella loricata Lendenfeld, 1894 are junior synonyms of Caminella intuta (Topsent, 1892). We discuss different spicule morphological phenotypes in C. intuta, which may be linked to silica availability. We also discovered two new species of deep-sea Caminella: 1) from Cape Verde (Caminella caboverdensis sp. nov.) and 2) from seamounts located south of the Azores archipelago and the North of Spain (Caminella pustula sp. nov.). We reveal that Caminella sterrasters have complex surface microstructures, unique amongst the Geodiidae, where actin tips are linked to each other. Molecular markers (COI, 28S (C1-D2) and 18S) sequenced for some specimens led to new phylogenetic analyses, which continue to suggest a close relationship of Caminella with the Erylinae and Calthropella; these affinities are discussed in light of morphological characters.
    Keywords: Accession number, genetics; Adriatic Sea; Alboran-Is_reconstr; Alboran-Is_st3; Alboran Sea; Alboran-Sea_BV41; Area/locality; Banc-Atlantis_DW265; Banc-Hyeres_DW184; Banc-Plato_DW248; Bay of Biscay; BIO; Biology; Canarias Sea; Cape-Verde_st6-174; Cap-Ferrat-dAil; Cap-lAbeille_reconst; Chak-El-Hatab; Collection; Comment; Deep-sea Sponge Grounds Ecosystems of the North Atlantic; DEPTH, water; Dugi-Otok-Is_Y-Cave; Eastern Basin; El-Cachucho-Bank_DR9; Grand-Banc-Meteor_CP151; Grotte-Cosquer_reconstr; Grotte-de-Bear_reconstr; Grotte-de-Gameau_reconstr; Grotte-des-Tremies_reconstr; Grotte-du-Figuier_reconstr; Grotte-Fauconniere_reconstr; Gruta-do-Carreiro-Maldito_reconstr; Gulf-of-Naples_reconstr; Habitat; Hvar_reconstr; LATITUDE; Le-Petit-Conglue_reconstr; LONGITUDE; Name; Reference/source; Sagres_reconstr; Sampling date; South Atlantic Ocean; Species; SponGES; Station label; Strazica_Velebit-Ch; Tirreno Sea; Tremiti-Is_reconstr; Type; Western Basin
    Type: Dataset
    Format: text/tab-separated-values, 197 data points
    Location Call Number Expected Availability
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  • 3
    Publication Date: 2023-02-24
    Keywords: Comment; Deep-sea Sponge Grounds Ecosystems of the North Atlantic; Description; HUD2011-010; HUD-2011-010_transects; Hudson; Number of individuals; off Nova Scotia; Phylum; SponGES; Taxa; Taxon/taxa
    Type: Dataset
    Format: text/tab-separated-values, 1270 data points
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  • 4
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    Unknown
    PANGAEA
    In:  Supplement to: Riesgo, Ana; Taboada, Sergi; Pérez-Portela, Rocío; Melis, Paolo; Xavier, Joana R; Blasco, Gema; López-Legentil, Susanna (2019): Genetic diversity, connectivity and gene flow along the distribution of the emblematic Atlanto-Mediterranean sponge Petrosia ficiformis (Haplosclerida, Demospongiae). BMC Evolutionary Biology, 19(1), https://doi.org/10.1186/s12862-018-1343-6
    Publication Date: 2023-01-13
    Description: The allele matrix contains the genotypes (coded as length of fragments) for 10 microsatellite markers described in Taboada et al. (2015). There are 280 individuals for 10 populations across the Atlanto-Mediterranean distribution of the species.
    Keywords: Blanes; MULT; Multiple investigations
    Type: Dataset
    Format: application/vnd.openxmlformats-officedocument.spreadsheetml.sheet, 192.5 kBytes
    Location Call Number Expected Availability
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  • 5
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Hawkes, Nickolas; Korabik, Michelle; Beazley, Lindsay; Rapp, Hans Tore; Xavier, Joana R; Kenchington, Ellen L (2019): Glass sponge grounds on the Scotian Shelf and their associated biodiversity. Marine Ecology Progress Series, 614, 91-109, https://doi.org/10.3354/meps12903
    Publication Date: 2023-02-24
    Description: Emerald Basin on the Scotian Shelf off Nova Scotia, Canada, is home to a globally unique population of the glass sponge Vazella pourtalesi. Through the analysis of both in situ photographs and trawl catch data from annual multispecies bottom-trawl surveys, we examined community composition, species density, and abundance of epibenthos and fish associated with V. pourtalesi compared to locations without this sponge. Using generalized linear models and analysis of similarities, the importance of V. pourtalesi in enhancing species density and abundance of the associated epibenthic community was assessed against that of the hard substrate on which it settles. Our results indicated that the megafaunal assemblage associated with V. pourtalesi was significantly different in composition and higher in species density and abundance compared to locations without V. pourtalesi. Analysis of similarity of trawl catch data indicated that fish communities associated with the sponge grounds are significantly different from those without V. pourtalesi, although no species were found exclusively on the sponge grounds. Our study provides further evidence of the role played by sponge grounds in shaping community structure and biodiversity of associated deep-sea epibenthic and fish communities. The mechanism for biodiversity enhancement within the sponge grounds formed by V. pourtalesi is likely the combined effect of both the sponge itself and its attachment substrate, which together comprise the habitat of the sponge grounds. We also discuss the role of habitat provision between the mixed-species tetractinellid sponges of the Flemish Cap and the monospecific glass sponge grounds of Emerald Basin.
    Keywords: Deep-sea Sponge Grounds Ecosystems of the North Atlantic; SponGES
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 6
    Publication Date: 2023-02-24
    Description: Supplementary Material 1: List of specimens analysed in this study with detailed information of the stations in which they were sampled. All specimens are deposited in the MNHN Paris.
    Keywords: Area/locality; BD; BEAM; Beam trawl; BIO; Biology; Campaign; Code; CP11; CP138; CP144; CP156; CP20; CP257; CP28; DATE/TIME; DE140; Deep-sea Sponge Grounds Ecosystems of the North Atlantic; DEPTH, water; Description; Device type; Dredge, benthos; DW128; DW129; DW130; DW139; DW148; DW159; DW16; DW182; DW184; DW188; DW202; DW203; DW21; DW241; DW242; DW246; DW247; DW25; DW254; DW258; DW263; DW265; DW27; DW274; DW277; DW279; DW281; DW63; EBS; Epibenthic sledge; Event label; Latitude of event; Le Noroit; Le Suroît; Longitude of event; marine sponges; Nor_CP11; Nor_CP20; Nor_CP28-1; Nor_CP28-2; Nor_CP99; Nor_DW16; Nor_DW21; Nor_DW25; Nor_DW27; Nor_DW63; Noroit_1988-09; Number of individuals; Species; Sponges; SponGES; Station label; Sur_CP138; Sur_CP144; Sur_CP156; Sur_CP257; Sur_DE140; Sur_DW128; Sur_DW129; Sur_DW130; Sur_DW139; Sur_DW148; Sur_DW159; Sur_DW182; Sur_DW184-2; Sur_DW188; Sur_DW202; Sur_DW203; Sur_DW241; Sur_DW242; Sur_DW246; Sur_DW247; Sur_DW254; Sur_DW258-1; Sur_DW258-2; Sur_DW263; Sur_DW265; Sur_DW274; Sur_DW277; Sur_DW279; Sur_DW281; Suroit_1993-01; Vessel
    Type: Dataset
    Format: text/tab-separated-values, 628 data points
    Location Call Number Expected Availability
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  • 7
    Publication Date: 2023-02-24
    Description: Sponges are commonly known as general nutrient providers for the marine ecosystem, recycling organic matter into various forms of bio-available nutrients such as ammonium and nitrate. In this study we challenge this view. We show that nutrient removal through microbial denitrification is a common feature in six cold-water sponge species from boreal and Arctic sponge grounds. Denitrification rates were quantified by incubating sponge tissue sections with 15NO3- - amended oxygen saturated seawater, mimicking conditions in pumping sponges, and de-oxygenated seawater, mimicking non-pumping sponges. Rates of anaerobic ammonium oxidation (anammox) using incubations with 15NH4+ could not be detected. Denitrification rates of the different sponge species ranged from 0 to 97 nmol N cm-3 sponge day-1 under oxic conditions, and from 24 to 279 nmol N cm-3 sponge day-1 under anoxic conditions. A positive relationship between the highest potential rates of denitrification (in the absence of oxygen) and the species-specific abundances of nirS and nirK genes encoding nitrite reductase, a key enzyme for denitrification, suggests that the denitrifying community in these sponge species is active and prepared for denitrification. The lack of a lag phase in the linear accumulation of the 15N labelled N2 gas in any of our tissue incubations is another indicator for an active community of denitrifiers in the investigated sponge species. Low rates for coupled nitrification-denitrification indicate that also under oxic conditions, nitrate to fuel denitrification rates was derived rather from the ambient sea-water than from sponge nitrification. The lack of nifH genes encoding nitrogenase, the key enzyme for nitrogen fixation, shows that the nitrogen cycle is not closed in the sponge grounds. The denitrified nitrogen, no matter of its origin, is then no longer available as a nutrient for the marine ecosystem. These results reveal the following scenario for the potential denitrification capacity of sponge grounds based on typical sponge biomass on boreal and Arctic sponge grounds:, Areal denitrification rates of 0.6 mmol N m-2 day-1 assuming non-pumping sponges and still 0.3 mmol N m-2 day-1 assuming pumping sponges may be possible. This is well within the range of denitrification rates of continental shelf sediments. For the most densely populated boreal sponge grounds we calculated potential denitrification rates of up to 1,7 mmol N m-2 day-1, which is higher than typical rates in continental shelf sediments. Increased future impact of sponge grounds by anthropogenic stressors reducing sponge pumping activity and further stimulating sponge anaerobic processes may thus lead to that deep-sea sponge grounds change their role in the marine ecosystem from being mainly nutrient sources to becoming mainly nutrient sinks.
    Keywords: Arctic Ocean; Deep-sea Sponge Grounds Ecosystems of the North Atlantic; Event label; File content; File type; Korsfjord; Latitude of event; Longitude of event; MULT; Multiple investigations; Norway; Schulz_bank; SponGES; Uniform resource locator/link to file
    Type: Dataset
    Format: text/tab-separated-values, 6 data points
    Location Call Number Expected Availability
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  • 8
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Beazley, Lindsay; Wang, Z; Kenchington, Ellen L; Yashayaev, Igor M; Rapp, Hans Tore; Xavier, Joana R; Murillo, Francisco Javier; Fenton, Derek; Fuller, Susanna (2018): Predicted distribution of the glass sponge Vazella pourtalesi on the Scotian Shelf and its persistence in the face of climatic variability. PLoS ONE, 13(10), e0205505, https://doi.org/10.1371/journal.pone.0205505
    Publication Date: 2023-02-24
    Description: Vazella pourtalesi presence and absence data were obtained from several different sources: DFO's multispecies trawl survey conducted in the Maritimes Region between 2007 to 2017 (presences and absences), DFO optical (in-house camera/video and remotely operated vehicle) benthic surveys conducted between 2001 and 2017 (presences only), and commercial bycatch records from the Fisheries Observer Program (FOP) from 1997 to 2007, and 2010 to 2015 (presences only). The DFO multispecies trawl survey is stratified random (by depth) and conducted using primarily Western IIA trawl gear. The average distance of these tows is ~ 3.17 km. Absence records were created from null (zero) catches that occurred in the same surveys. Commercial bycatch data between 1997 to 2007 from the Fisheries Observer Program was further post-processed and validated for accuracy, while the data from 2010 to 2015 was extracted directly from the Maritimes Fishery Science Database managed by DFO. Commercial trawls are much longer in duration and may follow bottom contours and/or retrace their footprint through the course of a 10+ km tow. For both the DFO multispecies trawl survey and FOP data, start coordinates were used to represent the tow, whereas for the DFO benthic imagery survey data the actual location of the V. pourtalesi record in situ was used. A 1 x 1 km grid matching that of the environmental data was placed over the study area and the presence-absence data were reduced to one record per cell, with a presence taking precedence over an absence if both occurred in the same cell. This gave a total of 215 presences (102 from the DFO trawl surveys, 47 from DFO benthic science surveys, and 66 from the FOP) and 2867 absences for the model.
    Keywords: Campaign; DATE/TIME; Deep-sea Sponge Grounds Ecosystems of the North Atlantic; LATITUDE; LONGITUDE; MULT; Multiple investigations; NovaScotia_shelf; Number; off Nova Scotia; Presence/absence; Provenance/source; SponGES
    Type: Dataset
    Format: text/tab-separated-values, 12328 data points
    Location Call Number Expected Availability
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  • 9
    Publication Date: 2023-02-24
    Keywords: Areal density; Date/Time of event; Deep-sea Sponge Grounds Ecosystems of the North Atlantic; Depth, bathymetric; Event label; Grid; HUD2011-010; HUD-2011-010_CON05; HUD-2011-010_CON18; HUD-2011-010_CON19; HUD-2011-010_CON20; HUD-2011-010_CON21; Hudson; Identification; LATITUDE; LONGITUDE; Number of individuals; ORDINAL NUMBER; Phylum; SponGES; Taxon/taxa; Uniform resource locator/link to image
    Type: Dataset
    Format: text/tab-separated-values, 41424 data points
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  • 10
    Publication Date: 2023-07-15
    Keywords: B09-11; B09-12; B09-13; B0914c/59; B0914c/60; B0914c/62; Bay of Biscay; Belgica; BG09/14c; DATE/TIME; Event label; HERMIONE; Hotspot Ecosystem Research and Mans Impact On European Seas; LATITUDE; LONGITUDE; Remote operated vehicle; ROV; Uniform resource locator/link to image; Uniform resource locator/link to raw data file
    Type: Dataset
    Format: text/tab-separated-values, 80 data points
    Location Call Number Expected Availability
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