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.
89
datasets available to search
ShareScore release 0.9.0
Dataset results
89 results for “rediscovered species”
FIGURE 3 in Melambyrsus hoplita Breddin rediscovered (Hemiptera: Pentatomidae: Discocephalinae): redescription of genus and species
FIGURE 3. Comparison between the head and pronotum of Melambyrsus hoplita Breddin and Orbatina fuligina Ruckes. A, B, head, lateral view, M. hoplita holotype female and O. fuligina holotype male respectively. C, D, head and pronotum, dorsal plane of the head, M. hoplita holotype female and O. fuligina allotype female respectively. Abbreviation: b, buccula. Scale bars = 1mm.
FIGURE 1. Melambyrsus hoplita Breddin, holotype female. A in Melambyrsus hoplita Breddin rediscovered (Hemiptera: Pentatomidae: Discocephalinae): redescription of genus and species
FIGURE 1. Melambyrsus hoplita Breddin, holotype female. A, dorsal; B, ventral; C, lateral views. Scale bar = 1mm.
FIGURE 2. Melambyrsus hoplita Breddin, holotype female. A, labels accompanying the specimen. B in Melambyrsus hoplita Breddin rediscovered (Hemiptera: Pentatomidae: Discocephalinae): redescription of genus and species
FIGURE 2. Melambyrsus hoplita Breddin, holotype female. A, labels accompanying the specimen. B, left evaporatorium and peritreme, ventrolateral view. C, D, genital plates, lateral and posterior views respectively. Abbreviations: g9, gonapophyses IX; gc8, gonocoxites VIII; gc9, gonocoxites IX; la8, laterotergites VIII; la9, laterotergites IX. Scale bars = 1mm.
Figure 6 in Rediscovering the overlooked genus Murphydoris (Nudibranchia: Goniodorididae): the first phylogeny and addition of four new species
Figure 6. Scanning electron microscope (SEM) photographs and light microscope photographs (LMP) of A–C, Murphydoris maracabranchia sp. nov. (CASIZ 224657) and D–H, Murphydoris puncticulata sp. nov. A, lateral view entire radula (SEM); B, detail of internal teeth (SEM); C, detail of external teeth (SEM). D, detail of labial cuticle elements (WAM S71785) (SEM); E, frontal view of half radula (WAM S71785) (SEM); F, detail of internal teeth (WAM S71785) (SEM); G, detail of external teeth, lateral view (MNCN 15.05/200150) (SEM); H, detail of penial spines (MNCN 15.05/200149) (LMP). Scale bars: A, 30µm; B, 10 µm; C, 20 µm; D, 5 µm; E, 30 µm; F, 10 µm; G, 20 µm; H, 10 µm.
Figure 5 in Rediscovering the overlooked genus Murphydoris (Nudibranchia: Goniodorididae): the first phylogeny and addition of four new species
Figure 5. Internal anatomy (A) and reproductive system (B) of Murphydoris cobbi sp. nov. (QMMO 85981) under µCT. Abbreviations: am, ampulla; bb, buccal bulb; bc, bursa copulatrix; dgm, digestive-hermaphroditic gland; st, stomach; fgm, female gland mass; h, heart; in, intestine; ns, nervous system; oe, oesophagus; p, penis; pr, prostate; ra, radular sac; rs, receptaculum seminis; ud, uterine duct; va, vagina; vd, vas deferens. Scale bars: 1 mm.
Figure 3. A–C in Rediscovering the overlooked genus Murphydoris (Nudibranchia: Goniodorididae): the first phylogeny and addition of four new species
Figure 3. A–C, drawings of Murphydoris adusta sp. nov.: A, gill branches; B, buccal bulb (MNCN 15.05/200144); C, reproductive system (MNCN 15.05/200144). D–F, drawings of Murphydoris cobbi sp. nov.: D, modification of gill branches; E, buccal bulb (QMMO 85983); F, reproductive system (QMMO 85982). G–H, drawings of Murphydoris maracabranchia sp. nov.: G, modification of gill branches; H, reproductive system (CASIZ 224657). I–K, drawings of Murphydoris puncticulata sp. nov.: I, gill branches; J, buccal bulb (WAM S72711); K, reproductive system (WAM S72711). Abbreviations: am, ampulla; bc, bursa copulatrix; bp, buccal pump; fgm, female gland mass; hd, hermaphroditic duct; oe, oesophagus; op, oesophagal pump; p, penis; pr, prostate; ra, radular sac; rs, receptaculum seminis; sgl, salivary gland; ud, uterine duct; va, vagina; vd, vas deferens. Scale bars: 1 mm.
Figure 4 in Rediscovering the overlooked genus Murphydoris (Nudibranchia: Goniodorididae): the first phylogeny and addition of four new species
Figure 4. Scanning electron microscope (SEM) photographs and light microscope photographs (LMP) of A–D, Murphydoris adusta sp. nov. and E–H, Murphydoris cobbi sp. nov. A, frontal view of radula (QMMO 85995) (SEM); B, lateral view of teeth (CASIZ 181290) (SEM); C, detail of masticatory margin of teeth (QMMO 85995) (SEM); D, detail of penial spines (QMMO 85986) (SEM); E, detail of labial cuticle elements (QMMO 85984) (SEM); F, frontal view of radula – detail of rachis, internal and external teeth (QMMO 85983) (SEM); G, detail of internal teeth (QMMO 85983) (SEM); H, detail of penial spines (LMP) (QMMO 85983). Scale bars: A, 50 µm; B, 40 µm; C, 10 µm; D, 10 µm; E, 5µm; F, 30 µm; G, 20 µm; H, 10 µm.
Figure 2 in Rediscovering the overlooked genus Murphydoris (Nudibranchia: Goniodorididae): the first phylogeny and addition of four new species
Figure 2. Photographs of living animals. A, B, Murphydoris adusta sp. nov., photographed by G. Cobb: A, (WAM S72660); B, (QMMO 85995). C, Murphydoris cobbi sp. nov. (CASIZ 206795), photographed by T. M. Gosliner. D, M. cobbi sp. nov. (QMMO 85979), photographed by G. Cobb. E, Murphydoris maracabranchia sp. nov. (CASIZ 186120), photographed by P. Paleracio. F, G, M. puncticulata sp. nov. photographed by G. Cobb. F, (WAM S72711), G, (WAM S72710).
Figure 1 in Rediscovering the overlooked genus Murphydoris (Nudibranchia: Goniodorididae): the first phylogeny and addition of four new species
Figure 1. Phylogenetic relationships (BI/ML) based on the concatenated mitochondrial (COI and 16S) and nuclear (H3) genes. Purple branches indicate the node supporting the Goniodorididae family. Blue shading represents the genus Murphydoris. Murphydoris species newly sequenced in bold. Colours highlighted in ABGD and bPTP species delimitation analyses represent potential different taxa. Photographs of species from top to bottom: Murphydoris maracabranchia (CASIZ 186120), photographed by P. Palereacio; Murphydoris adusta (WAM S72660), photographed by G. Cobb; Murphydoris puncticulata (WAM S72711), photographed by G. Cobb; Murphydoris cobbi (CASIZ 206795), photographed by T. M. Gosliner.
FIGURE 6. A in Rediscover of the Iranian endemic alpine Arenaria bulica after 139 years and note of the related species (Caryophyllaceae)
FIGURE 6. A: sepal & petal (Pahlevani 78477); B: Flower, bracts, leaves, petal & capsule (Pahlevani 78477); C: capsule (Behboudi 1306 E); D: petal (Behboudi 1306 E); E: sepals (Behboudi 1306 E); F: Scanning electron micrographs (SEM) of seed (Assadi & Mozaffarian 31703); G: close view of the seed surface (Assadi & Mozaffarian 31703); H: Scanning electron micrographs (SEM) of seed (Pahlevani 78477); I: close view of the seed surface (Pahlevani 78477). – Scale bars: A-E = 1 mm; F, H = 500 μm; G, I = 100 μm.
FIGURE 5. A in Rediscover of the Iranian endemic alpine Arenaria bulica after 139 years and note of the related species (Caryophyllaceae)
FIGURE 5. A: Bol peak & habitat of Arenaria bulica; B, C, D, E: Arenaria bulica on rocks and boulders in natural habitat; B, C: Pahlevani 78477 (IRAN78477); D, E: Pahlevani & Ghamghami 78123 (IRAN78123). Photos by A. Pahlevani.
FIGURE 7 in Rediscover of the Iranian endemic alpine Arenaria bulica after 139 years and note of the related species (Caryophyllaceae)
FIGURE 7. Distribution map of Arenaria bulica in Zagros Mts. of Iran. (Generated by GeoCat tool at http://geocat.kew.org)
FIGURE 2 in Waltillia, a new monotypic genus in Tillandsioideae (Bromeliaceae) arises from a rediscovered, allegedly extinct species from Brazil
FIGURE 2. Core Tillandsioideae. Maximum likelihood phylogram based on plastid rpoB-trnC-petN, trnK-matK-trnK, ycf1, and nuclear PHYC DNA sequence data. Branch lengths are proportional to the inferred number of nucleotide changes along each branch. Numbers above branches indicate likelihood bootstrap support (LBS); missing values indicate support less than 50% LBS. Waltillia is highlighted in grey letters with the two subclades corresponding to the areas (Gouveia and Santana do Pirapama county) in Minas Gerais state, Brazil, indicated.
FIGURE 10 in Waltillia, a new monotypic genus in Tillandsioideae (Bromeliaceae) arises from a rediscovered, allegedly extinct species from Brazil
FIGURE 10. Plumose seeds in subtribe Vrieseinae: A. Waltillia hatschbachii (Leme 8415) from Gouveia county. B. Nearly matured seeds of Waltillia hatschbachii (Leme 8475) from Santana do Pirapama county. C. Alcantarea duarteana (Leme 2891). D. Alcantarea robertokautskyi (Leme 3866). E. Vriesea diamantinensis (Leme 1817). F. Vriesea oligantha (Leme 7224). G. Plantlets of Waltillia hatschbachii in cultivation by means of propagation from field collected seeds. Bars = 5 mm.
FIGURE 3 in Waltillia, a new monotypic genus in Tillandsioideae (Bromeliaceae) arises from a rediscovered, allegedly extinct species from Brazil
FIGURE 3. Vrieseinae. Maximum likelihood phylogram based on nuclear PRK DNA sequence data. Branch lengths are proportional to the inferred number of nucleotide changes along each branch. Numbers above branches indicate likelihood bootstrap support (LBS); missing values indicate support less than 50% LBS. Waltillia is highlighted in grey letters.
FIGURE 1 in Waltillia, a new monotypic genus in Tillandsioideae (Bromeliaceae) arises from a rediscovered, allegedly extinct species from Brazil
FIGURE 1. Tillandsioideae. Maximum parsimony strict consensus tree based on plastid rpoB-trnC-petN, trnK-matK-trnK, ycf1, and nuclear PHYC DNA sequence data. Numbers above branches indicate likelihood bootstrap support and Bayesian posterior probabiltities (LBS/BPP), numbers below branches indicate parsimony bootstrap support (PBS); missing values indicate support less than 50% LBS/ PBS or 0.95 BPP, respectively. Waltillia is highlighted in grey letters with the two subclades corresponding to the areas (Gouveia and Santana do Pirapama county) in Minas Gerais state, Brazil, indicated.
FIGURE 6. A in Waltillia, a new monotypic genus in Tillandsioideae (Bromeliaceae) arises from a rediscovered, allegedly extinct species from Brazil
FIGURE 6. A. Flowering individulas of Waltillia hatschbachii in its Campos Rupestres habitat, along a spring, in Santana do Pirapama county. B. General view of Campos Rupestres vegetation in the habitat of Waltillia hatschbachii at the type locality near Gouveia, Minas Gerais state. C, D. Detail of a simple inflorescences of Waltillia hatschbachii from Gouveia county.
FIGURE 7. A in Waltillia, a new monotypic genus in Tillandsioideae (Bromeliaceae) arises from a rediscovered, allegedly extinct species from Brazil
FIGURE 7. A. Side view of the flower of Waltillia hatschbachii from Gouveia county. B. Frontal view of the flower of Waltillia hatschbachii from Gouveia county. C. Side view of the flower of Waltillia hatschbachii from Santana do Pirapama county at anthesis and an erect corolla after anthesis. D–G. Flowers of Alcantarea species: D. Alcantarea benzingii (Leme 350). E. Alcantarea glaziouana (Leme 8096). F. Alcantarea burle-marxii (Leme 7427). G. Alcantarea cerosa (Leme 8551). H–K. Flowers of the night-blooming species of Vriesea: H. Vriesea saxicola (Leme 5236); I. Vriesea clausseniana (Leme 1549); J. Vriesea santaleopoldinensis (Kollmann 11840); K. Vriesea fosteriana (Leme s.n).
FIGURE 9 in Waltillia, a new monotypic genus in Tillandsioideae (Bromeliaceae) arises from a rediscovered, allegedly extinct species from Brazil
FIGURE 9. SEM-micrographs of pollen. A–E. Waltillia hatschbachii (Leme 8486): A. Polar distal view; B. Polar proximal view; C. Equatorial view; D. Sulcus detail, operculum; E. Pollen ornamentation, reticulum with a few free standing columellae. F–O. Polar distal view: F. Alcantarea longibracteata (Leme 7346); G. Alcantarea geniculata (Leme 3874); H. Alcantarea roberto-kautskyi (Leme 3866); I. Vriesea saxicola (Leme 5236); J. Vriesea gigantea (Leme 7031); K. Vriesea hieroglyphica (Leme 6415); L. Vriesea delicatula (Leme 321); M. Stigmatodon apparicianum (Leme 7379); N. Tillandsia tenuifolia (Leme 7730); O. Catopsis hahnii (Leme 2487). Bars = 10 μm.
FIGURE 8. A. Convolute-blade II in Waltillia, a new monotypic genus in Tillandsioideae (Bromeliaceae) arises from a rediscovered, allegedly extinct species from Brazil
FIGURE 8. A. Convolute-blade II stigma type of Waltillia hatschbachii. B. Details of the stigma of Waltillia hatschbachii. C. Conduplicatepatent stigma type of Alcantarea tortuosa (Leme 7592). D. Conduplicate-patent stigma type of Alcantarea vasconcelosiana (Leme 8055). E. Conduplicate-erect stigma type of Alcantarea nana (Leme 8677). F, G. Conduplicate-erect stigma type of Alcantarea cerosa (Leme 7781): F. Early anthesis; G. Late anthesis. H. Convolute-blade II stigma type of Vriesea platynema (Leme 1644). I. Convolute-blade II stigma type of Vriesea roethii (Leme 2667). J. Convolute-blade II stigma type of Vriesea warmingii (Leme 1869). K. Convolute-blade II stigma type of Vriesea ensiformis (Leme 8077). Bars = 1 mm.
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.