Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
228
datasets available to search
ShareScore release 0.9.0
Dataset results
228 results for “Cold seep”
FIGURE 8 in New genus and two new species of the family Ethmolaimidae (Nematoda: Chromadorida), found in two different cold-seep environments
FIGURE 8. Dystomanema brandtae gen. nov., sp. nov. Male. A: entire body; B: pharynx; C: mouth, pharynx, detail nerve ring; D: end of anterior testis; E: end of posterior reflexed testis; F: supplements, spicules. (Scale bars: A= 200 µm; B, E, F= 20 µm; C,D= 50 µm).
FIGURE 7 in New genus and two new species of the family Ethmolaimidae (Nematoda: Chromadorida), found in two different cold-seep environments
FIGURE 7. Dystomanema brandtae gen. nov., sp. nov. (Holotype male). A: entire body; B: anterior end surface view; C: anterior end median section; D: posterior end; E: female reproductive system; F: Female tail. (Scale bars: A= 100 µm; E, F= 50 µm; B, C, D= 20 µm).
FIGURE 2 in New genus and two new species of the family Ethmolaimidae (Nematoda: Chromadorida), found in two different cold-seep environments
FIGURE 2. (A) location of the Larsen B area (B) and the stations sampled during ANT-XXIII/8. For this study, only Larsen B Seep is of interest, indicated with the red dot (map modified after Gutt 2008).
FIGURE 4 in New genus and two new species of the family Ethmolaimidae (Nematoda: Chromadorida), found in two different cold-seep environments
FIGURE 4. Dystomanema cadizensis gen. nov., sp. nov. (Holotype male). A: entire body; B: anterior end surface view; C: anterior end median section; D: posterior end; E: female reproductive system; F: female tail (Scale bars: A, E = 50 µm; B, C, D, F= 20 µm).
FIGURE 6 in New genus and two new species of the family Ethmolaimidae (Nematoda: Chromadorida), found in two different cold-seep environments
FIGURE 6. Females of Dystomanema cadizensis gen. nov., sp. nov. A: entire body; B: head; C: anterior end, median section; D: reproductive system, vulva; E: vulva and perivulvar glands; F: tail. (Scale bars: A= 200 µm; B, C, D= 50 µm; E, F= 20 µm).
FIGURE 1 in New genus and two new species of the family Ethmolaimidae (Nematoda: Chromadorida), found in two different cold-seep environments
FIGURE 1. (A) Bathymetric map of the Darwin MV with the core locations on the MV indicated (adapted from Vanneste et al. 2011) (B) Schematic representation of the sampling strategy. PUC: push core, sampled for pore-water geochemistry and meiofaunal community analyses; MC: megacorer, sampled for meiofaunal community analyses (Pape et al. 2011).
FIGURE 3 in New genus and two new species of the family Ethmolaimidae (Nematoda: Chromadorida), found in two different cold-seep environments
FIGURE 3. Genera of the family Ethmolaimidae. Adapted from Warwick et.al. (1998), Jensen (1985, 1994). Subfamily Ethmolaiminae: A—Ethmolaimus, B—Paraethmolaimus; Subfamily Neotonchinae: C—Comesa, D— Dystomanema, E— Filitonchoides, F—Filitonchus, G—Gomphionchus, H—Gomphionema, I—Nannolaimus, J—Neotonchus.
FIGURE 5 in New genus and two new species of the family Ethmolaimidae (Nematoda: Chromadorida), found in two different cold-seep environments
FIGURE 5. Dystomanema cadizensis gen. nov., sp. nov. Holotype Male. A: entire body; B–C: head; D: pharynx, detail ventral gland; E: supplements, spicules, caudal glands; F: supplements, detail clear patch. Paratype Male. G: upper view of supplements; H: clear patch (Scale bars: A= 200 µm; B, C, F, G, H= 20 µm; D, E= 50 µm).
Data from: Restriction to large-scale gene flow versus regional panmixia among cold seep Escarpia spp. (Polychaeta, Siboglinidae)
Open the record for dataset details and reuse information.
Data from: Quantifying successional change and ecological similarity among cretaceous and modern cold-seep faunas
Open the record for dataset details and reuse information.
Data from: A molecular gut content study of Themisto abyssorum (Amphipoda) from Arctic hydrothermal vent and cold seep systems
Open the record for dataset details and reuse information.
FIGURE 1 in Galatheid and chirostylid crustaceans (Decapoda: Anomura) from a cold seep environment in the northeastern South China Sea
FIGURE 1. Location of the cold seep field, where the specimens were collected.
Fig. 10. Lucinid bivalves from Calcari a in Mollusks (Gastropoda, Bivalvia) from Miocene cold-seep deposits in northern Italy: revisions and additions
Fig. 10. Lucinid bivalves from Calcari a Lucina seep deposits in northern Italy. A–D. Lucinoma perusina (Sacco, 1901). A–B. Articulated specimen showing lunule and anterior adductor muscle scar, from Castel di Casio (MGGC 22316). C. Internal mold from Castel di Casio (MGGC 22317). D. Specimen with preserved shell sculpture from Castiglion dei Pepoli (MGGC 22319). E–G. Meganodontia hoernea (Des Moulins, 1868). E–F. Complete specimen with some shell remains from Castel di Casio (MGGC 22321). G. Incomplete internal mold showing long and curved anterior adductor muscle scar, from Guzzano (MGGC 22320).
Supplementary material 1 from: Yang M, Li B, Gan Z, Dong D, Li X (2024) A new chemosymbiotic bivalve species of the genus Acharax Dall, 1908 (Bivalvia, Solemyida, Solemyidae) from the Haima cold seep of the South China Sea. ZooKeys 1198: 185-192. https://doi.org/10.3897/zookeys.1198.112618
The mitochondrial gene sequences used in this study
Figure 3 from: Yang M, Li B, Gan Z, Dong D, Li X (2024) A new chemosymbiotic bivalve species of the genus Acharax Dall, 1908 (Bivalvia, Solemyida, Solemyidae) from the Haima cold seep of the South China Sea. ZooKeys 1198: 185-192. https://doi.org/10.3897/zookeys.1198.112618
Figure 3 Phylogenetic relationships of Solemyida by the ML analysis of mitochondrial (COI+16S rRNA+18S rRNA) sequences. The black triangles demonstrate bootstrap values ≥95% for the node.
FIGURE 16 in Species of the genus Munidopsis (Crustacea, Decapoda, Galatheidae) from the deep Atlantic Ocean, including cold-seep and hydrothermal vent areas
FIGURE 16. Depth distribution for the specimens of Munidopsis considered in the study.
FIGURE 15 in Species of the genus Munidopsis (Crustacea, Decapoda, Galatheidae) from the deep Atlantic Ocean, including cold-seep and hydrothermal vent areas
FIGURE 15. Geographic distribution for the specimens of Munidopsis considered in the study.
Data from: Environmental switching during biofilm development in a cold seep system and functional determinants of species sorting
The functional basis for species sorting theory remains elusive, especially for microbial community assembly in deep-sea environments. Using artificial surface-based biofilm models, our recent work revealed taxonomic succession during biofilm development in a newly defined cold seep system, the Thuwal cold seeps II, which comprises a brine pool and the adjacent normal bottom water (NBW) to form a metacommunity via the potential immigration of organisms from one patch to another. Here, we designed an experiment to investigate the effects of environmental switching between the brine pool and the NBW on biofilm assembly, which could reflect environmental filtering effects during bacterial immigration to new environments. Analyses of 16S rRNA genes of 71 biofilm samples suggested that the microbial composition of biofilms established in new environments was determined by both the source community and the incubation conditions. Moreover, a comparison of 18 metagenomes provided evidence for biofilm community assembly that was based primarily on functional features rather than taxonomic identities; metal ion resistance and amino acid metabolism were the major species sorting determinants for the succession of biofilm communities. Genome binning and pathway reconstruction of two bacterial species (Marinobacter sp. and Oleispira sp.) further demonstrated metal ion resistance and amino acid metabolism as functional traits conferring the survival of habitat generalists in both the brine pool and NBW. The results of this study shed new light on microbial community assembly in special habitats and bridge a gap in species sorting theory.
Fig. 16 in New nematode species and genera (Nematoda: Chromadorea) from cold seeps on Hikurangi Margin, New Zealand
Fig. 16. Desmodora parapilosa sp. nov. A, E. Holotype (NIWA154921). B–C, F–G. Paratype (NIWA 154923). D. Paratype (NIWA154922). A. Male cephalic region. B. Female cephalic region. C. Female anterior body region. D–E. Male posterior body region. F–G. Female posterior body region. Scale bar: A = 50 µm; B = 40 µm; C = 75 µm; D–E = 70 µm; F = 60 µm; G = 100 µm.
Fig. 8 in New nematode species and genera (Nematoda: Chromadorea) from cold seeps on Hikurangi Margin, New Zealand
Fig. 8. Aulostomonema abyssum gen. et sp. nov. Light micrographs of male, holotype (NIWA154911). A. Cephalic region showing amphid. B. Cephalic region showing anterior sensilla. C. Cephalic region showing pharynx. D. Cephalic region showing buccal cavity. E. Copulatory apparatus and precloacal supplements. Scale bar: A–D = 20 µm; E = 18 µm.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.