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.
974
datasets available to search
ShareScore release 0.9.0
Dataset results
974 results for “new localities”
Fig. 5. Collection localities for Myloplus taphorni. a in New Myloplus from Essequibo River basin, Guyana, with discussion on the taxonomic status of Myleus pacu (Characiformes: Serrasalmidae)
Fig. 5. Collection localities for Myloplus taphorni. a. Eping Creek; b. Type locality, Lower Kurupung River near the mouth. Both streams are tributaries of the middle Mazaruni River, Guyana. Photos: HLF.
Figure 2 in Two new species of nematode (Oxyurida, Hystrignathidae) parasites of Passalus interstitialis Escholtz, 1829 (Coleoptera, Passalidae) from Cuba and a new locality for Longior similis Morffe, Garcia & Ventosa, 2009
Figure 2. Hystrignathus splendidus sp. n. female. A Esophageal region B Cephalic end, internal view C Last cervical spines D Unreflexed tip of the posterior ovary E Tail, lateral view. Scale bars: B–D 0.05 mm E 0.1 mm A 0.2 mm.
Figure 4 in Two new species of nematode (Oxyurida, Hystrignathidae) parasites of Passalus interstitialis Escholtz, 1829 (Coleoptera, Passalidae) from Cuba and a new locality for Longior similis Morffe, Garcia & Ventosa, 2009
Figure 4. Lepidonema magnum sp. n. female. A Habitus, lateral view B Cephalic end C Spines from the cephalic end D Last spines and commence of lateral alae (arrows show the end of spines and the commence of lateral alae, respectively) E Excretory pore (arrow shows the nuclei of the excretory cell) F Vulva, lateral view G Egg. Scale bars: B–G 0.05 mm A 0.1 mm.
Figure 3 in Two new species of nematode (Oxyurida, Hystrignathidae) parasites of Passalus interstitialis Escholtz, 1829 (Coleoptera, Passalidae) from Cuba and a new locality for Longior similis Morffe, Garcia & Ventosa, 2009
Figure 3. Lepidonema magnum sp. n. female. A Esophageal region, lateral view B Cephalic end, internal view C Cephalic end, external view D Spines at level of basal bulb E Tail, lateral view F Vulva, lateral view G Egg H Genital tract I Habitus, lateral view.
FIG. 6 in The hyaenodonts (Mammalia) from the French locality of Aumelas (Hérault), with possible new representatives from the late Ypresian
FIG. 6. — Comparison of the range of body masses (in LN) of the hyaenodonts from Aumelas with those recorded from the MP10 (Cuis, Grauves, Monthelon, Mancy), MP11 (Geiseltal-Untere Unterohle) and MP12 (Geiseltal- Untere Mittelkohle) reference-levels in a chronostratigraphic context. Two hypotheses are shown: Hypothesis 1, Aumelas is close to MP10 reference-level (Ypresian); Hypothesis 2, Aumelas is close to MP11 reference-level (Lutetian). The hypothesis 1 is based on the primitive features displayed by the fossils from Aumelas; the hypothesis 2 is based on the intermediate size of Matthodon peignei n. sp. between Matthodon menui (MP10) and Matthodon tritens (MP11). Note: the range of body masses provided for the MP10 level combines the data available from Grauves (reference-locality), Cuis, Chavot, Mancy, and Monthelon. Authorships of taxa are indicated in the Appendix 8.
FIG. 4 in The hyaenodonts (Mammalia) from the French locality of Aumelas (Hérault), with possible new representatives from the late Ypresian
FIG. 4. — Results of the phylogenetic analysis of Hyaenodonta character-taxon matrix. Results are visualized as an "all compact" (majority rule plus compatible groups) consensus tree. Major, named clades recovered or discussed in this analysis and recovered in other analyses are illustrated. In bold: new hyaenodonts species described herein.
FIG. 3. — Leonhardtina meridianum n in The hyaenodonts (Mammalia) from the French locality of Aumelas (Hérault), with possible new representatives from the late Ypresian
FIG. 3. — Leonhardtina meridianum n. sp. from Aumelas (MP10-MP11?): A, B, UM-AUM530, right maxillary fragment bearing M2 and M3; A, occlusal view; B, labial view; C-H, UM-AUM54 (Holotype), right mandible bearing p3 to m3; C, lingual view; D, labial view; E, occlusal view; F, occlusal close-up; G, lingual close-up; H, labial close-up. Abbreviations: me, metacone; pa, paracone; pr, protocone. Scale bars: 1 cm.
FIG. 1. — Matthodon peignei n in The hyaenodonts (Mammalia) from the French locality of Aumelas (Hérault), with possible new representatives from the late Ypresian
FIG. 1. — Matthodon peignei n. sp. from Aumelas (MP10-MP11?): A-C, UM-AUM694 (Holotype), left mandible bearing the p2-m3 and the alveoli of the canine and p1; A, occlusal view; B, lingual view; C, labial view; D-F, UM-AUM268, left mandible bearing the m2 and m3; D, occlusal view; E, lingual view; F, labial view. Scale bars: 1 cm.
FIG. 2. — Oxyaenoides aumelasiensis n in The hyaenodonts (Mammalia) from the French locality of Aumelas (Hérault), with possible new representatives from the late Ypresian
FIG. 2. — Oxyaenoides aumelasiensis n. sp. from Aumelas (MP10-MP11?): A-C, UM-AUM693 (Holotype), left mandible bearing m3, the anterior root and talonid of the m1, and the posterior alveolus of the p4, and the alveoli of m2; A, occlusal view; B, lingual view; C, labial view; D-G, UM-AUM692, combination of a left maxillary fragment bearing the P2-M1, a right maxillary fragment bearing the P3-P4, the protocone of the M1 and the alveoli of the P2; D, occlusal view of left maxillary; E, labial view of the left maxillary; F, occlusal view of the right maxillary; G, labial view of the right maxillary (reversed view); H-I, UM-AUM686, right M2; H, occlusal view; I, labial view. Scale bars: A-G, 1 cm; H, I, 50 mm.
Data from: The red coral (Corallium rubrum) transcriptome: a new resource for population genetics and local adaptation studies
The question of species survival and evolution in heterogeneous environments has long been a subject for study. Indeed, it is often difficult to identify the molecular basis of adaptation to contrasted environments, and nongenetic effects increase the difficulty to disentangle fixed effects, such as genetic adaptation, from variable effects, such as individual phenotypic plasticity, in adaptation. Nevertheless, this question is also of great importance for understanding the evolution of species in a context of climate change. The red coral (Corallium rubrum) lives in the Mediterranean Sea, where at depths ranging from 5 to 600 m, it meets very contrasted thermal conditions. The shallowest populations of this species suffered from mortality events linked with thermal anomalies that have highlighted thermotolerance differences between individuals. We provide here a new transcriptomic resource, as well as candidate markers for the study of local adaptation. We sequenced the transcriptome of six individuals from 5 m and six individuals from 40 m depth at the same site of the Marseilles bay, after a period of common garden acclimatization. We found differential expression maintained between the two depths even after common garden acclimatization, and we analysed the polymorphism pattern of these samples. We highlighted contigs potentially implicated in the response to thermal stress, which could be good candidates for the study of thermal adaptation for the red coral. Some of these genes are also involved in the response to thermal stress in other corals. Our method enables the identification of candidate loci of local adaptation useful for other nonmodel organisms.
FIGURE 6. Betadevario ramachandrani. Type locality. Photo P. K in Betadevario ramachandrani, a new danionine genus and species from the Western Ghats of India (Teleostei: Cyprinidae: Danioninae)
FIGURE 6. Betadevario ramachandrani. Type locality. Photo P. K. Pramod.
FIGURE 3. Collection localities for M in Microgobius urraca (Teleostei: Gobiidae), a new species of goby from the tropical eastern Pacific
FIGURE 3. Collection localities for M. urraca holotype and paratypes.
FIGURE 4 in Ichneumons in Reunion Island: a catalogue of the local Ichneumonidae (Hymenoptera) species, including 15 new taxa and a key to species
FIGURE 4. Key to subfamilies illustrations (adapted after Wahl & Sharkey 1993).
FIGURE 3 in Ichneumons in Reunion Island: a catalogue of the local Ichneumonidae (Hymenoptera) species, including 15 new taxa and a key to species
FIGURE 3. Wing venation nomenclature (Gauld 1991).
FIGURE 1 in Ichneumons in Reunion Island: a catalogue of the local Ichneumonidae (Hymenoptera) species, including 15 new taxa and a key to species
FIGURE 1. Nomenclature of body parts (adapted after Baltazar 1964 and Wahl & Sharkey 1993).
FIGURE 16 in Ichneumons in Reunion Island: a catalogue of the local Ichneumonidae (Hymenoptera) species, including 15 new taxa and a key to species
FIGURE 16. Enicospilus vitry sp. nov., habitus in vivo. (photo J. Rochat, IDR).
FIGURE 14 in Microgastrinae (Hymenoptera: Braconidae) of Reunion Island: a catalogue of the local species, including 18 new taxa and a key to species
FIGURE 14. Exoryza safranum sp. nov. a: female, habitus; b: fore wing; c: mesonotum; d: terga 1–2.
FIGURE 9 in Microgastrinae (Hymenoptera: Braconidae) of Reunion Island: a catalogue of the local species, including 18 new taxa and a key to species
FIGURE 9. Diolcogaster curticornis (Granger). a: female, habitus; b: tergum 2; c: fore wing.
FIGURES 1–2 in Second highly modified hypogean species of the genus Morimotoidius Habu from western Jiangxi Province, China, with a new locality for M. zhushandong (Coleoptera: Carabidae: Platynini)
FIGURES 1–2. Hatibus of Morimotoidius cavicola sp. n. 1. holotype, male; 2. a paratype, female
FIGURES 12–13. Anacroneuria singularis adult. 12 in Description of the nymph of Anacroneuria singularis Righi-Cavallaro & Lecci (Plecoptera: Perlidae) and a new locality record for northern Brazil
FIGURES 12–13. Anacroneuria singularis adult. 12. Female; 13. Male (Photos: J.M.F. Ribeiro).
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.