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.
54
datasets available to search
ShareScore release 0.9.0
Dataset results
54 results for “Indo-Pacific Ocean”
FIGURE 3 in Revision of Hyalopale (Chrysopetalidae; Phyllodocida; Annelida): an amphi-Atlantic Hyalopale bispinosa species complex and five new species from reefs of the Caribbean Sea and Indo-Pacific Oceans
FIGURE 3. Hyalopale leslieae sp. nov. Florida Keys, Paratype USNM1490841, chaetal types of right and part left mid-body notopodia; inset: midline-most main palea.
FIGURE 13 in Revision of Hyalopale (Chrysopetalidae; Phyllodocida; Annelida): an amphi-Atlantic Hyalopale bispinosa species complex and five new species from reefs of the Caribbean Sea and Indo-Pacific Oceans
FIGURE 13. Maximum likelihood tree obtained with the molecular combined data (COI, 16S, 18S and H3) and with the hesionid Nereimyra punctata as outgroup. Values at nodes are shown as ML bootstrap then MP jackknife values. * =>90% values for ML bootstrap and MP jackknife values. The single MP tree was identical except that it recovered Paleanotus as the sistergroup to the remaining Chrysopetalinae, rather than to Hyalopale, though with only 53% jackknife support.
FIGURE 1 in Revision of Hyalopale (Chrysopetalidae; Phyllodocida; Annelida): an amphi-Atlantic Hyalopale bispinosa species complex and five new species from reefs of the Caribbean Sea and Indo-Pacific Oceans
FIGURE 1. Composite plate comparing notochaetal main paleae in Hyalopale species. A. Hyalopale bispinosa s.s. Florida, W. Atlantic; B. H. cf. bispinosa Crete, Mediterranean Sea; C. H. leslieae sp. nov. Florida Keys, W. Atlantic; D. H. furfuricula sp. nov. Mozambique, W. Indian Ocean; E. H. angeliensis sp. nov. Western Australia, E. Indian Ocean; F. H. zerofskii sp. nov. California, E. Pacific; G. H. sapphiriglancyorum sp. nov. E. Indonesia, W. Pacific. Note: correct number of raised and internal ribs figured.
FIGURE 10. H in Revision of Hyalopale (Chrysopetalidae; Phyllodocida; Annelida): an amphi-Atlantic Hyalopale bispinosa species complex and five new species from reefs of the Caribbean Sea and Indo-Pacific Oceans
FIGURE 10. H. furfuricula sp. nov. Red Sea, Holotype, NTM W.25602. A. anterior end, dorsal view; B. ventral view.
Niche variation in sympatric delphinids: Indo-Pacific bottlenose and Indian Ocean humpback dolphins on the south-east coast of South Africa
The ecological interactions and mechanisms that mediate coexistence among species are often poorly understood, despite its relevance to conservation management. A case in point is the Indo-Pacific bottlenose dolphin (Tursiops aduncus) and Indian Ocean humpback dolphin (Sousa plumbea) that occur sympatrically along the south-east coast of South Africa. To improve on our understanding of their coexistence, data on spatial distribution and habitat use were collected using boat-based surveys during 2014-15 along 145 km between Goukamma and Tsitsikamma MPAs. During 235 hours of survey effort, 55 and 42 encounters with T. aduncus and S. plumbea were recorded respectively. We investigated differences in their space use and habitat preferences. There was a strong overlap of the core areas used by both species, located mainly along Goukamma MPA and the eastern section of Plettenberg Bay. For both species, foraging was observed in mornings and travelling in afternoons. T. aduncus showed a preference for rocky areas in the afternoon while S. plumbea preferred estuarine and sandy habitats. We demonstrated that coexistence among dolphins with overlapping distributional patterns can be driven by fine-scale spatial segregation in feeding activities. Spatial conservation management measures such as the protection of sandy and estuarine habitats are recommended.
Niche variation in sympatric delphinids: Indo-Pacific bottlenose and Indian Ocean humpback dolphins on the south-east coast of South Africa
Open the record for dataset details and reuse information.
Description and classification of echolocation clicks of Indian Ocean humpback (Sousa plumbea) and Indo-Pacific bottlenose (Tursiops aduncus) dolphins from Menai Bay, Zanzibar, East Africa
Open the record for dataset details and reuse information.
Genomics of population differentiation in humpback dolphins, Sousa spp. in the Indo-Pacific Ocean
<p><span>Speciation is a fundamental process in evolution and crucial to the formation of biodiversity. It is a continuous and complex process, which can involve multiple interacting barriers leading to heterogeneous genomic landscapes with various peaks of divergence among populations. In this study, we used a population genomics approach to gain insights on the speciation process and to understand the population structure within the genus <i>Sousa </i>across its distribution in the Indo-Pacifc region. We found 5 distinct clusters, corresponding to <i>S. plumbea</i> along the eastern African coast and the Arabian Sea, the Bangladesh population, <i>S. chinensis</i> off Thailand<i> </i>and <i>S. sahulensis</i> off Australian waters. We suggest that the high level of differentiation found, even across geographically close areas, is likely determined by different oceanographic features such as sea surface temperature and primary productivity. </span></p>
Figure 5 from: Kise H, Fujii T, Masucci GD, Biondi P, Reimer JD (2017) Three new species and the molecular phylogeny of Antipathozoanthus from the Indo-Pacific Ocean (Anthozoa, Hexacorallia, Zoantharia). ZooKeys 725: 97-122. https://doi.org/10.3897/zookeys.725.21006
Figure 5 Maximum likelihood (ML) tree based on concatenated alignments of 16S-rDNA, COI and ITS-rDNA. Numbers on nodes represent ML bootstrap values (> 50% are shown). Bold branches indicate high supports of Bayesian posterior probabilities (> 0.95).
Figure 2 from: Kise H, Fujii T, Masucci GD, Biondi P, Reimer JD (2017) Three new species and the molecular phylogeny of Antipathozoanthus from the Indo-Pacific Ocean (Anthozoa, Hexacorallia, Zoantharia). ZooKeys 725: 97-122. https://doi.org/10.3897/zookeys.725.21006
Figure 2 Polyp images of Antipathozoanthus obscurus sp. n., A. remengesaui sp. n. and A. cavernus sp. n. in situ. a A. obscurus sp. n. . NSMT-Co1602 (MISE-BISE1), Collected from Cape Bise, Motobu, Okinawa-jima Island, Japan (26°42'34.4"N, 127°52'49.2"E) at a depth of 5 m by JDR, 14 August 2014. b A. obscurus sp. n., closed polyp with heavy encrustion by various fine sand particles. MISE-TF54, collected from Cape Zanpa, Yomitan, Okinawa-jima Island, Japan (26°26'26.5"N, 127°42'43.7"E) at a depth of 3 m by TF, 6 April 2009. c A. remengesaui sp. n., colony connected by poorly developed coenenchyme with white polyps on Antipathes sp. NSMT-Co1603 (MISE-PALAU2) collected from Blue Hole, Palau (7°8'29.4"N, 134°13'23.3"E) at a depth of 23 m by JDR, 15 September 2014 d A. cavernus sp. n., polyp connected by highly developed coenenchyme with orange ring around oral disk. RMNH.Coel.42322 (MISE-PALAU5) collected from Siaes Tunnel, Palau (7°18'54.8"N, 134°13'13.3"E) at a depth of 39 m by JDR, 1 September 2014.
Figure 1 from: Kise H, Fujii T, Masucci GD, Biondi P, Reimer JD (2017) Three new species and the molecular phylogeny of Antipathozoanthus from the Indo-Pacific Ocean (Anthozoa, Hexacorallia, Zoantharia). ZooKeys 725: 97-122. https://doi.org/10.3897/zookeys.725.21006
Figure 1 Sampling location in the Indian Ocean and Pacific Ocean of specimens used in this study. Location of specimens collected in this study represented by closed symbols. Species abbreviations after locations: (Ao) Antipathozoanthus obscurus sp. n.; (Ar) A. remengesaui sp. n.; (Ac) A. cavernus sp. n.
Figure 4 from: Kise H, Fujii T, Masucci GD, Biondi P, Reimer JD (2017) Three new species and the molecular phylogeny of Antipathozoanthus from the Indo-Pacific Ocean (Anthozoa, Hexacorallia, Zoantharia). ZooKeys 725: 97-122. https://doi.org/10.3897/zookeys.725.21006
Figure 4 Images of histological section of Antipathozoanthus species. a longitudinal section of A. remengesaui sp. n. b longitudinal section of A. cavernus sp. n.. Abbreviations: (CEMM) cteniform endodermal marginal muscle, (OD) oral disk, (A) actinopharynx. Scale bars: a 200 µm, b 50 µm.
Figure 3 from: Kise H, Fujii T, Masucci GD, Biondi P, Reimer JD (2017) Three new species and the molecular phylogeny of Antipathozoanthus from the Indo-Pacific Ocean (Anthozoa, Hexacorallia, Zoantharia). ZooKeys 725: 97-122. https://doi.org/10.3897/zookeys.725.21006
Figure 3 Cnidae in the tentacles, column, pharynx, and filament of Antipathozoanthus obscurus sp. n., A. remengesaui sp. n. and A. cavernus sp. n., respectively. Abbreviations: (HL) holotrich large, (HM) holotrich medium, (O) bastrichs or mastigophores, (S) spriocysts.
Genomics of population differentiation in humpback dolphins, Sousa spp. in the Indo-Pacific Ocean
Open the record for dataset details and reuse information.
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.