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.
1,696
datasets available to search
ShareScore release 0.9.0
Dataset results
1,696 results for “DNA sequence”
FIGURE 7 in A new Nactus gecko (Gekkonidae) and a new Leiolopisma skink (Scincidae) from La Réunion, Indian Ocean, based on recent fossil remains and ancient DNA sequence
FIGURE 7. Variation in number of teeth with size of maxillae (above) and dentary bones (below) in different species of the Mascarene skink genus Leiolopisma. Stars: L. ceciliae n. sp. from La Réunion. Assemblage to left: L. telfairii from Mauritius (triangles: living animals from Round Island, dots: subfossil material from mainland of Mauritius). Assemblage to right: subfossil L. mauritiana from mainland of Mauritius. Some symbols indicate more than one specimen.
FIGURE 2. Nactus soniae n in A new Nactus gecko (Gekkonidae) and a new Leiolopisma skink (Scincidae) from La Réunion, Indian Ocean, based on recent fossil remains and ancient DNA sequence
FIGURE 2. Nactus soniae n. sp., material from Grotte au Sable, St-Gilles, La Réunion. c. Paratypes. Left maxilla and right dentary (medial views). Scales in mm.
FIGURE 3. Nactus soniae n in A new Nactus gecko (Gekkonidae) and a new Leiolopisma skink (Scincidae) from La Réunion, Indian Ocean, based on recent fossil remains and ancient DNA sequence
FIGURE 3. Nactus soniae n. sp. Scanning electron microscope photograph of holotype frontal bone (dorsal view).
FIGURE 2a, 2b. Nactus soniae n in A new Nactus gecko (Gekkonidae) and a new Leiolopisma skink (Scincidae) from La Réunion, Indian Ocean, based on recent fossil remains and ancient DNA sequence
FIGURE 2a, 2b. Nactus soniae n. sp., material from Grotte au Sable, St-Gilles, La Réunion. a. Holotype. Frontal bone (dorsal and ventral views). Scale in mm. b. Paratypes. Left maxilla and right dentary (lateral views). Scales in mm.
FIGURE 1 in A new Nactus gecko (Gekkonidae) and a new Leiolopisma skink (Scincidae) from La Réunion, Indian Ocean, based on recent fossil remains and ancient DNA sequence
FIGURE 1. Phelsuma sp., material from Grotte au Sable, St-Gilles, La Réunion. Above: frontals (dorsal and ventral views). Below: left maxilla (medial view). Scale in mm.
FIGURE 1. Bayesian tree inferred from SSU gene DNA sequences. Posterior probabilities exceeding 50 in A review of the genus Tripylina Brzeski, 1963 (Nematoda: Triplonchida), with descriptions of five new species from New Zealand
FIGURE 1. Bayesian tree inferred from SSU gene DNA sequences. Posterior probabilities exceeding 50% are given on appropriate clades. Nematode species, GenBank numbers, locations are listed for each taxon if known.
FIGURE 2. Bayesian tree inferred from LSU gene DNA sequences. Posterior probabilities exceeding 50 in A review of the genus Tripylina Brzeski, 1963 (Nematoda: Triplonchida), with descriptions of five new species from New Zealand
FIGURE 2. Bayesian tree inferred from LSU gene DNA sequences. Posterior probabilities exceeding 50% are given on appropriate clades. Nematode species, GenBank numbers, locations are listed for each taxon if known.
FIGURE 5 Bayesian phylogenetic tree inferred from SSU gene DNA sequences. Posterior probabilities great than 50 in New Zealand species of the genus Tripyla Bastian, 1865 (Nematoda: Triplonchida: Tripylidae). I: A new species, a new record and key to long-tailed species
FIGURE 5 Bayesian phylogenetic tree inferred from SSU gene DNA sequences. Posterior probabilities great than 50% are given on appropriate clades. Nematode species, GenBank numbers, locations are listed for each taxon if known.
FIGURE 6 Bayesian phylogenetic tree inferred from LSU gene DNA sequences. Posterior probabilities greater than 50 in New Zealand species of the genus Tripyla Bastian, 1865 (Nematoda: Triplonchida: Tripylidae). I: A new species, a new record and key to long-tailed species
FIGURE 6 Bayesian phylogenetic tree inferred from LSU gene DNA sequences. Posterior probabilities greater than 50% are given on appropriate clades. Nematode species, GenBank numbers, locations are listed for each taxon if known.
FIGURE 4 in Bothaella manhi, a new species of tribe Aedini (Diptera: Culicidae) from the Cuc Phuong National Park of Vietnam based on morphology and DNA sequence
FIGURE 4. Bayesian phylogeny of the COII nucleotide dataset of the Culicidae collected in Vietnam and Thailand. Posterior probabilities (percent) of 80 or higher are shown for main clades only. See Table 3 for specimen collection data and accession numbers. All horizontal branch lengths are drawn to a scale of substitutions per site. The tree is rooted on An. minimus.
FIGURE 5 in Bothaella manhi, a new species of tribe Aedini (Diptera: Culicidae) from the Cuc Phuong National Park of Vietnam based on morphology and DNA sequence
FIGURE 5. Left: Dr Nguyen Duc Manh examining a rock-hole habitat of Bothaella larvae during mosquito surveys conducted in the Cuc Phuong National Park in July 2000. Right: Dr Manh (second from right) with field assistant Nguyen Hong Hanh (far left), Shelley Cook and Ralph Harbach outside the Molecular Biology Laboratory of the National Institute of Malariology, Parasitology and Entomology prior to field studies conducted in the same park in August 2008.
FIGURE 3 in Bothaella manhi, a new species of tribe Aedini (Diptera: Culicidae) from the Cuc Phuong National Park of Vietnam based on morphology and DNA sequence
FIGURE 3. Bayesian phylogeny of the "barcode" region of the COI nucleotide dataset of the Culicidae collected in Vietnam and Thailand. Posterior probabilities (percent) of 80 or higher are shown for main clades only. See Table 3 for specimen collection data and accession numbers. All horizontal branch lengths are drawn to a scale of substitutions per site. The tree is rooted on Anopheles minimus Theobald.
FIGURE 2 in Bothaella manhi, a new species of tribe Aedini (Diptera: Culicidae) from the Cuc Phuong National Park of Vietnam based on morphology and DNA sequence
FIGURE 2. Fourth-instar larva of Bothaella manhi: A, head, dorsal (left) and ventral (right) aspects of left side; B, thorax and abdominal segments I–VI, dorsal (left) and ventral (right) aspects of left side; C, abdominal segments VII–X, left side. A, antenna; C, cranium; CS, comb scale; P, prothorax; PS, pecten spine; M, mesothorax; S, siphon; T, metathorax; I–VIII and X, abdominal segments I–VIII and X; 1–15, setal numbers for specified areas, e.g. seta 5-C.
FIGURE 1 in Bothaella manhi, a new species of tribe Aedini (Diptera: Culicidae) from the Cuc Phuong National Park of Vietnam based on morphology and DNA sequence
FIGURE 1. Pupa and male genitalia of Bothaella manhi: A, pupa, left side of cephalothorax, dorsal to right; B, pupa, dorsal (left) and ventral (right) aspects of metathorax and abdomen; C, male genitalia, dorsal aspect (the sigmoidal seta, arrow, is diagnostic for the species). BML, basal mesal lobe; CT, cephalothorax; Gc, gonocoxite; Gs, gonostylus; Pa, paddle; Pr, proctiger; I–VIII, abdominal segments I–VIII; 1–14, setal numbers for specified areas, e.g. seta 3-I.
FIGURE 4. Bayesian tree inferred from LSU gene DNA sequences. Posterior probabilities exceeding 50 in Laimaphelenchus persicus n. sp. (Nematoda: Aphelenchoididae) from Iran
FIGURE 4. Bayesian tree inferred from LSU gene DNA sequences. Posterior probabilities exceeding 50% are given on appropriate clades. Nematode species and GenBank numbers are listed for each taxon.
FIGURES 14–22 in Revision of Australian jumping spider genus Servaea Simon 1887 (Aranaea: Salticidae) including use of DNA sequence data and predicted distributions
FIGURES 14–22. Servaea incana (cont.) 14 known and predicted distribution; 15–20 male palp (15–17 'light' male and 19–20 'dark' male; 21 anterior view of geniculate male chelicera; 22 anterior view of rounded female chelicera. Scale: 0.2 mm
FIGURES 39–46. Servaea spinibarbis. 39–40 in Revision of Australian jumping spider genus Servaea Simon 1887 (Aranaea: Salticidae) including use of DNA sequence data and predicted distributions
FIGURES 39–46. Servaea spinibarbis. 39–40 dorsal view (39 female, 40 male); 41–42 female genitalia (41 dorsal view of cleared specimen, 42 ventral view of external characteristics); 43–45 male palp (43 ventral view, 44 anterior lateral view, 45 posterior lateral view); 46 known and predicted distribution. Scale: total body 1 mm; remainder 0.2 mm.
FIGURES 23–30. Servaea melaina n in Revision of Australian jumping spider genus Servaea Simon 1887 (Aranaea: Salticidae) including use of DNA sequence data and predicted distributions
FIGURES 23–30. Servaea melaina n. sp. 23–24 dorsal view (23 female, 24 male); 25–26 female genitalia (25 dorsal view of cleared specimen, 26 ventral view of external characteristics); 27–29 male palp (27 ventral view, 28 anterior lateral view, 29 posterior lateral view); 30 known and predicted distribution. Scale: total body 1 mm; remainder 0.2 mm
FIGURES 47–54. Servaea villosa. 47–48 in Revision of Australian jumping spider genus Servaea Simon 1887 (Aranaea: Salticidae) including use of DNA sequence data and predicted distributions
FIGURES 47–54. Servaea villosa. 47–48 dorsal view (47 female, 48 male); 49–50 female genitalia (49 dorsal view of cleared specimen, 50 ventral view of external characteristics); 51–53 male palp (51 ventral view, 52 anterior lateral view, 53 posterior lateral view); 54 known and predicted distribution. Scale: total body 1 mm; remainder 0.2 mm.
FIGURE 5 in Revision of Australian jumping spider genus Servaea Simon 1887 (Aranaea: Salticidae) including use of DNA sequence data and predicted distributions
FIGURE 5. Phenetic tree resulting from Neighbour Joining analysis inferred from the COI data-set. Branch lengths are proportional to genetic differences (see scale bar).
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.