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.
59
datasets available to search
ShareScore release 0.9.0
Dataset results
59 results for “Hynobius”
Fig. 5 in Molecular Phylogenetic and Morphological Problems of the Aki Salamander Hynobius akiensis: Description of Two New Species from Chugoku, Japan
Fig. 5. Larvae, egg sacs, and habitat at the type locality of Hynobius geiyoensis sp. nov. (A, C, and E, respectively) and H. sumidai sp. nov. (B, D, and F, respectively).
Fig. 1 in Molecular Phylogenetic and Morphological Problems of the Aki Salamander Hynobius akiensis: Description of Two New Species from Chugoku, Japan
Fig. 1. Sampling map of the three Hynobius species used in this study. The enlarged area includes the central to the western part of Hiroshima Prefecture and the northernmost part of Ehime Prefecture. Closed symbols correspond to each of the three species sequenced in the current study. Open symbols correspond to each of the three species sequenced by other studies. The underlined localities show the sampling points of individuals for morphological comparisons: Pops. 1 (18 males) and 2 (1 male) for H. geiyoensis sp. nov.; Pop. 8 (7 males) for H. sumidai sp. nov.; Pops. 14 (3 males), 15 (7 males), 20 (6 males), 29 (3 males), 30 (1 male), 34 (6 males), 39 (1 male), 54 (1 male) for H. akiensis.
Fig. 4 in Molecular Phylogenetic and Morphological Problems of the Aki Salamander Hynobius akiensis: Description of Two New Species from Chugoku, Japan
Fig. 4. Holotype of Hynobius geiyoensis sp. nov. (HMNH-AM-101, adult male, 58.4 mm SVL) from the (A) dorsal and (B) ventral perspective; holotype of H. sumidai sp. nov. (HMNH-AM-102, adult male, 48.2 mm SVL) from the (C) dorsal and (D) ventral perspective; and a specimen from the type locality (topotype) of H. akiensis (KPM-NFA 946, adult male, 55.3 mm) from the (E) dorsal and (F) ventral perspective.
Fig. 3 in Molecular Phylogenetic and Morphological Problems of the Aki Salamander Hynobius akiensis: Description of Two New Species from Chugoku, Japan
Fig. 3. Two-dimensional plots of canonical discriminant analysis in males. The x and y axes show discriminant score 1 (DS1) and discriminant score 2 (DS2), respectively. The contribution ratios of DS1 and DS2 were 88.03 % and 11.97 %, respectively.
Fig. 2 in Molecular Phylogenetic and Morphological Problems of the Aki Salamander Hynobius akiensis: Description of Two New Species from Chugoku, Japan
Fig. 2. Phylogenetic tree produced by Bayesian inference using 630-bp cytochrome b genes. Salamandrella keyserlingii was used as an outgroup. Scale bar shows genetic distance (expected changes per site). Numbers located near the nodes are posterior probabilities (PP) for Bayesian inference and bootstrap (BS) values for maximum likelihood estimation. Values appearing in parentheses after the haplotype names correspond to population localities as indicated in Table 1 and Fig. 1. Asterisks after the parentheses (Pops. 1, 8, and 54) indicate the type locality of the three species. The labels covered by shaded boxes indicate the transition type of Hynobius akiensis.
Fig. 5 in Taxonomic Re-examination of the Yamato Salamander Hynobius vandenburghi: Description of a New Species from Central Honshu, Japan
Fig. 5. (A) Live holotype of Hynobius owariensis sp. nov. (TMNH-AM-78), and the (B) larva, (C) banana-shaped egg sacs, and (D) type locality of the new species.
Fig. 4 in Taxonomic Re-examination of the Yamato Salamander Hynobius vandenburghi: Description of a New Species from Central Honshu, Japan
Fig. 4. Holotype of Hynobius owariensis sp. nov. (TMNH- AM-78, adult male, 58.2 mm SVL): (A) dorsal and (B) ventral views.
Fig. 3 in Taxonomic Re-examination of the Yamato Salamander Hynobius vandenburghi: Description of a New Species from Central Honshu, Japan
Fig. 3. Results of discriminant analyses of two species for (A) males and (B) females. The x axis indicates"discriminant score 1"(DS1).
Fig. 1 in Taxonomic Re-examination of the Yamato Salamander Hynobius vandenburghi: Description of a New Species from Central Honshu, Japan
Fig. 1. Localities for populations of two species of Hynobius sampled in their distribution areas. Population numbers match those used for molecular analyses (see Table 1 and Fig. 2). The left and right enlarged areas include the central part of Kinki and central part of Tokai, respectively. The closed symbols correspond to each of three species sequenced in this study. The open symbols correspond to each of three species cited from other studies. For the morphological comparisons, individuals of the two species were sampled from the localities that are underlined: Pops. 1 (type locality of H. owariensis sp. nov.: 2 males and 1 female), 3 (18 males and 6 females), and 8 (2 males and 3 females) for H. owariensis sp. nov.; Pops. 19 (6 males and 3 females), 20 (7 males), 25 (3 females), and 28 (4 males) for H. vandenburghi.
Data from: Transcriptome analysis of predator- and prey-induced phenotypic plasticity in the Hokkaido salamander (Hynobius retardatus)
Open the record for dataset details and reuse information.
FIGURE 1. Bayesian tree derived from cyt b in Invalidity of Hynobius yunanicus and molecular phylogeny of Hynobius salamander from continental China (Urodela, Hynobiidae)
FIGURE 1. Bayesian tree derived from cyt b data for hynobiid salamanders (sample number at the top of species name). Onychodactylus japonicus was used as outgroup. Nodal values indicate Bayesian posterior probability and bootstrap supports for ML inferences (1000 replicates). Numbers in shaded circles show samples from China.
FIGURE 7 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 7. Breeding habitats of Hynobius unisacculus sp. nov., salamanders and egg sacs were found in water-filled ditches and puddles on the fields: (A) typical breeding habitat in environs of the type locality, Naro Islands, Goheung-gun, Jeollanamdo, environs of Dongil-myeon village; (B) breeding habitat at environs of Podu-myeon village, Naro Islands, Goheung-gun, Jeollanam-do.
FIGURE 6 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 6. Holotype of Hynobius unisacculus sp. nov. (CGRB-15401, male) showing coloration in life: (A) dorsolateral view; (B) lateral view.
FIGURE 9 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 9. Known distribution of Hynobius unisacculus sp. nov. (genetically confirmed localities—red dots) and other known localities of H. leechii complex (species assignation requires further studies—grey dots) in offshore islands of southern part of Jeollanam-do, southern Korea. Locality information (all in Jeollanam-do), confirmed localities (this study): 1—Oenarodo Island, Goheung-gun (type locality); 2—Naenaro-do Island, Goheung-gun; 3—Podu-myeon, Goheung-gun; 4—Boseunggun [Boseong]; 5—Suncheon-si; 6—Yeosu-si; unconfirmed localities (data from Chang et al. 2011): 7—Geomun-do (Dongdo) Island; 8—Geomun-do (Seodo) Island; 9—Gogeum-do Island; 10—Saengil-do Island; 11—Sinji-do Island; 12—Cheongsando Island.
FIGURE 8 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 8. Egg sacs of Hynobius unisacculus sp. nov. in environs of the type locality (Naro Islands, Goheung-gun, Jeollanam-do): (A) a single egg sac in situ showing the folded texture of the envelope; (B) a group of egg sacs in situ laid in a roadside ditch; (C) a single egg sac compared with a 500 Korean won coin showing two rows of eggs within the egg sac.
FIGURE 3 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 3. Holotype of Hynobius unisacculus sp. nov. (CGRB-15401, male; filed number MMS-1962) in preservative: (A) dorsal view, (B) ventral view (C) volar view of the left hand, (D) plantar view of the left foot, (E) ventral view of vent.
FIGURE 5 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 5. Mouth cavity of the Hynobius unisacculus sp. nov. holotype (CGRB-15401, male; filed number MMS-1962): (A) photo of mouth cavity in palatal view, (B) schematic drawing of the same mouth showing shape of vomerine tooth series and number of vomerine teeth. Scale bar 1 mm.
FIGURE 4 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 4. Holotype of Hynobius unisacculus sp. nov. (CGRB-15401, male; filed number MMS-1962) in preservative: (A) head in dorsal view, (B) head in ventral view (C) head in lateral view. Scale bar 2 mm.
FIGURE 1 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 1. Distribution of Hynobius salamanders in the Korean Peninsula and phylogenetic position of Hynobius unisacculus sp. nov. The ML tree, modified from Baek et al. (2011), is based on the analyses of 1,706 bp of the concatenated mitochondrial genes (cyt b + 12S rRNA). Nodal values indicate ML bootstrap value and BI posterior probability. Color circles indicate sampling localities from Baek et al. (2011a); black dot in the center indicate type locality.
FIGURE 2 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 2. Two-dimensional plots of (A, C) the first two factors of PCA and (B, D) the first and third factors of morphological characters for the Hynobius specimens examined. Data are given separately for males (A, B) and both sexes (C, D). Distribution of Hynobius populations studied morphologically is shown (E). Circle color correspond to that in Figure 1.
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.