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.
1,544
datasets available to search
ShareScore release 0.9.0
Dataset results
1,544 results for “spots”
Distribution. Most of Africa S of the Sahara Desert, except in lowland tropical rainforests. Spotted Hyenas have been extirpated from many areas of southern Africa. in Hyaenidae
Distribution. Most of Africa S of the Sahara Desert, except in lowland tropical rainforests. Spotted Hyenas have been extirpated from many areas of southern Africa.
Distribution. Angola, DR Congo, Malawi, Mozambique, Tanzania, and Zambia. Description. Head-body 46:5-47-8 cm (males), 44-45-5 cm (females), tail 40-43 cm (males), 38-39 cm (females), hindfoot 8:7-9-8 cm (males), 8-9 cm (females), ear 4-7-5-4 cm (males), 5-1-5-8 cm (females); weight 1-3-2 kg. The coat color is pale ocher, with brownish or grayish tones; melanistic individuals are quite common. The throat and chest are blackish, and the ventral pelage varies from creamy white to dirty white. The stripes and spots on the body vary from different hues of brown to black. The nuchal stripes run as two parallel lines from the nape to the shoulders, where they diverge and enlarge towards the elbows; they are not so conspicuously marked as in other genet species. Below them, a pair of thinner stripes and small spots are scattered on the shoulders and sides of the neck. A third pair of thinner, parallel stripes runs down the neck between the nuchal stripes, extending to about one fourth of the mid-dorsal line, where they vanish or diverge as the first row of flank spots. The black mid-dorsal line is continuous and is flanked on each side by four rows of oblong to squared spots, and by a few small-scattered spots below. There is a dorsal erectile crest. The face has a dark mask and a pair of white sub-ocular spots. The tail has seven to nine black rings, alternating with pale rings; the intervening white spaces are pigmented with a brownish tinge on the dorsal midline. The width of the pale rings relative to the dark rings in the middle of the tail is 50-75%; the tip of the tail is dark. The hindlimbs and forelimbs are black; there are white hairs on the metacarpals and metatarsals. [he posterior parts of the feet are dark. There are two pairs of teats. The posterior chamber of the auditory bulla is not ventrally inflated and has a continuous curve line on the external side. The ratio between the inter-orbital constriction and frontal width is 1-00 + 0-12. Dental formula: 13/3, C1/1,P 4/4, M 2/2 = 40. in Viverridae
Distribution. Angola, DR Congo, Malawi, Mozambique, Tanzania, and Zambia. Description. Head-body 46:5-47-8 cm (males), 44-45-5 cm (females), tail 40-43 cm (males), 38-39 cm (females), hindfoot 8:7-9-8 cm (males), 8-9 cm (females), ear 4-7-5-4 cm (males), 5-1-5-8 cm (females); weight 1-3-2 kg. The coat color is pale ocher, with brownish or grayish tones; melanistic individuals are quite common. The throat and chest are blackish, and the ventral pelage varies from creamy white to dirty white. The stripes and spots on the body vary from different hues of brown to black. The nuchal stripes run as two parallel lines from the nape to the shoulders, where they diverge and enlarge towards the elbows; they are not so conspicuously marked as in other genet species. Below them, a pair of thinner stripes and small spots are scattered on the shoulders and sides of the neck. A third pair of thinner, parallel stripes runs down the neck between the nuchal stripes, extending to about one fourth of the mid-dorsal line, where they vanish or diverge as the first row of flank spots. The black mid-dorsal line is continuous and is flanked on each side by four rows of oblong to squared spots, and by a few small-scattered spots below. There is a dorsal erectile crest. The face has a dark mask and a pair of white sub-ocular spots. The tail has seven to nine black rings, alternating with pale rings; the intervening white spaces are pigmented with a brownish tinge on the dorsal midline. The width of the pale rings relative to the dark rings in the middle of the tail is 50-75%; the tip of the tail is dark. The hindlimbs and forelimbs are black; there are white hairs on the metacarpals and metatarsals. [he posterior parts of the feet are dark. There are two pairs of teats. The posterior chamber of the auditory bulla is not ventrally inflated and has a continuous curve line on the external side. The ratio between the inter-orbital constriction and frontal width is 1-00 + 0-12. Dental formula: 13/3, C1/1,P 4/4, M 2/2 = 40.
FIGURE 1 in Pseudopestalotiopsis gilvanii sp. nov. and Neopestalotiopsis formicarum leaves spot pathogens from guarana plant: a new threat to global tropical hosts
FIGURE 1. Phylogenetic relationship in Pseudopestalotiopsis inferred with concatenated sequences of ITS, tub2 and tef1-α, showing the placement Pseudopestalotiopsis gilvanii. The tree topology was generated by the ML analysis and bootstrap values for maximum parsimony (MP), maximum likelihood (ML), and posterior probability (PP) analyses are presented at the branches (MP/ML/PP). Isolates from this study are highlighted in blue.
FIGURE 4 in Pseudopestalotiopsis gilvanii sp. nov. and Neopestalotiopsis formicarum leaves spot pathogens from guarana plant: a new threat to global tropical hosts
FIGURE 4. Nucleotides differences in the ITS, tef1-α and tub2 sequences of Pseudopestalotiopsis gilvanii and closely related species. Ten nucleotides up and downstream to the nucleotide variation are in light green.
FIGURE 3 in Pseudopestalotiopsis gilvanii sp. nov. and Neopestalotiopsis formicarum leaves spot pathogens from guarana plant: a new threat to global tropical hosts
FIGURE 3. Pseudopestalotiopsis gilvanii (strain INPA 2913), aspects of colonies in PDA (A), aspects of conidia (B) and scanning electron microscopy of conidia (C). Neopestalotiopsis formicarum (strain INPA 2916), aspects of colonies in PDA (D), aspects of conidia (E) and scanning electron microscopy of conidia (F).
FIGURE 2 in Pseudopestalotiopsis gilvanii sp. nov. and Neopestalotiopsis formicarum leaves spot pathogens from guarana plant: a new threat to global tropical hosts
FIGURE 2. Phylogenetic relationship in Neopestalotiopsis inferred with concatenated sequences of ITS, tub2 and tef1- α. The tree topology was generated by the ML analysis and bootstrap values for maximum parsimony (MP), maximum likelihood (ML), and posterior probability (PP) analyses are presented at the branches (MP/ML/PP). Isolates from this study are highlighted in yellow.
FIGURE 6 in Pseudopestalotiopsis gilvanii sp. nov. and Neopestalotiopsis formicarum leaves spot pathogens from guarana plant: a new threat to global tropical hosts
FIGURE 6. Leaf spot symptoms on tropical plants inoculated with Pseudopestalotiopsis gilvanii and Neopestalotiopsis formicarum, under greenhouse conditions. Presence of symptoms noticed on açaí palms (Euterpe oleraceae and E. precatoria), oil palm (Elaeis guineenses). Banana (Musa paradisiaca) displayed symptoms for N. formicarum but not for Ps. gilvanii. Absence of symptoms on rubber trees (Hevea brasiliensis). Uninoculated plants were employed as control.
Supplementary material 2 from: Cook RT, Ward SF, Liebhold AM, Fei S (2021) Spatial dynamics of spotted lanternfly, Lycorma delicatula, invasion of the Northeastern United States. NeoBiota 70: 23-42. https://doi.org/10.3897/neobiota.70.67950
Figure S2. Distributions of anthropogenic predictor variables used in Cox proportional hazards moder development
On following pages: 2. Falanouc (Eupleres goudotii); 3. Spotted Fanaloka (Fossa fossana); 4. Ring-tailed Vontsira (Galidia elegans); 5. Broad-striped Vontsira (Galidictis fasciata); 6. Grandidier's Vontsira (Galidictis grandidier:; 7. Narrow-striped Boky (Mungotictis decemlineata); 8. Brown-tailed Vontsira (Salanoia concolor. in Eupleridae
On following pages: 2. Falanouc (Eupleres goudotii); 3. Spotted Fanaloka (Fossa fossana); 4. Ring-tailed Vontsira (Galidia elegans); 5. Broad-striped Vontsira (Galidictis fasciata); 6. Grandidier's Vontsira (Galidictis grandidier:; 7. Narrow-striped Boky (Mungotictis decemlineata); 8. Brown-tailed Vontsira (Salanoia concolor.
Screening coffee genotypes for brown eye spot resistance in Brazil
<p><span>Several researchers have attempted to develop coffee plants that are resistant to brown eye spot (BES); however, no coffee cultivars are resistant to the disease. In the present study, a blend of strains from <i>Cercospora coffeicola </i>was inoculated into 19 Brazilian commercial cultivars and 41 accessions from the Germplasm Collection of Minas Gerais to evaluate the genetic resistance ability within the population and select superior genotypes for the breeding program. After predicting the genotypic values of the studied material, the evaluations number necessary for selecting genotypes with accuracy and efficiency was determined based on the data of severity to BES. The action of defense mechanisms plant was also investigated by assessing the levels of total soluble phenolic compounds and soluble lignin in contrasting genotypes for disease susceptibility. Based on the results, the accession MG 1207 Sumatra, had an intrinsic genetic capacity to maintain low levels of severity to BES. The genotype MG 1207 Sumatra can substantially contribute to the development of new cultivars, which may lead to the reduced use of pesticides. According to the accuracy and efficiency results obtained, four evaluations BES severity are sufficient to achieve accuracy, providing expressive genetic gains. Finally, the levels of lignin and phenolic compounds were not found to be associated with the resistance of coffee genotypes to BES.</span></p>
Distribution. Most of Africa S of the Sahara Desert, except in lowland tropical rainforests. Spotted Hyenas have been extirpated from many areas of southern Africa. in Hyaenidae
Distribution. Most of Africa S of the Sahara Desert, except in lowland tropical rainforests. Spotted Hyenas have been extirpated from many areas of southern Africa.
On following pages: 2. Spotted Hyena (Crocuta crocuta); 3. Striped Hyena (Hyaena hyaena); 4. Brown Hyena (Parahyaena brunnea). in Hyaenidae
On following pages: 2. Spotted Hyena (Crocuta crocuta); 3. Striped Hyena (Hyaena hyaena); 4. Brown Hyena (Parahyaena brunnea).
On following pages: 4. Molina's Hog-nosed Skunk (Conepatus chinga); 5. Striped Hog-nosed Skunk (Conepatus semistriatus Striped Skunk (Mephitis mephitis); 9. Pygmy Spotted Skunk (Spilogale pygmaea); 10. Eastern Spotted Skunk (Spilogale); 6. Humboldt's Hog-nosed Skunk (Conepatus humboldti); 7. Hooded Skunk (Mephitis macroura); 8. putorius); 11. Western Spotted Skunk (Spilogale gracilis); 12. Southern Spotted Skunk (Spilogale angustifrons). in Mephitidae
On following pages: 4. Molina's Hog-nosed Skunk (Conepatus chinga); 5. Striped Hog-nosed Skunk (Conepatus semistriatus Striped Skunk (Mephitis mephitis); 9. Pygmy Spotted Skunk (Spilogale pygmaea); 10. Eastern Spotted Skunk (Spilogale); 6. Humboldt's Hog-nosed Skunk (Conepatus humboldti); 7. Hooded Skunk (Mephitis macroura); 8. putorius); 11. Western Spotted Skunk (Spilogale gracilis); 12. Southern Spotted Skunk (Spilogale angustifrons).
On following pages: 29. Marine Otter (Lontra felina); 30. Neotropical Otter (Lontra longicaudis); 31. Southern River Otter (Lontra provocax); 32. Sea Otter (Enhydra lutris); 33. Spotted-necked Otter (Hydrictis maculicollis); 34. Eurasian Otter (Lutra lutra); 35. Hairy-nosed Otter (Lutra sumatrana); 36. African Clawless Otter (Aonyx capensis); 37. Asian Small-clawed Otter (Aonyx cinereus); 38. Smooth-coated Otter (Lutrogale perspicillata). in Mustelidae
On following pages: 29. Marine Otter (Lontra felina); 30. Neotropical Otter (Lontra longicaudis); 31. Southern River Otter (Lontra provocax); 32. Sea Otter (Enhydra lutris); 33. Spotted-necked Otter (Hydrictis maculicollis); 34. Eurasian Otter (Lutra lutra); 35. Hairy-nosed Otter (Lutra sumatrana); 36. African Clawless Otter (Aonyx capensis); 37. Asian Small-clawed Otter (Aonyx cinereus); 38. Smooth-coated Otter (Lutrogale perspicillata).
On following pages: 2 African Civet (Civettictis civetta); 3. Malabar Civet (Viverra civettina); 4. Large-spotted Civet (Viverra megaspila); 5. Malay Civet (Viverra tangalunga); 6. Large Indian Civet (Viverra zibetha). in Viverridae
On following pages: 2 African Civet (Civettictis civetta); 3. Malabar Civet (Viverra civettina); 4. Large-spotted Civet (Viverra megaspila); 5. Malay Civet (Viverra tangalunga); 6. Large Indian Civet (Viverra zibetha).
On following pages: 147 Pied Butterfly Bat (Glauconycteris superba); 148. Common Butterfly Bat (Glauconycteris argentata); 149. Bibundi Butterfly Bat (Glauconycteris egeria): 150. Abo Butterfly Bat (Glauconycteris poensis); 151. Striped Butterfly Bat (Glauconycteris alboguttata); 152. Beatrix's Butterfly Bat (Glauconycteris beatrix); 163. Curry's Butterfly Bat (Glauconycteris curryae); 154. Spotted Butterfly Bat (Glauconycteris humeralis): 155. Blackish Butterfly Bat (Glauconycteris atra); 156. Kenyan Butterfly Bat (Glauconycteris kenyacola); 157. Doria's False Serotine (Hesperoptenus doriae): 158. Tickell's False Serotine (Hesperoptenus tickell); 159. Blanford's False Serotine (Hesperoptenus blanford): 160. Large False Serotine (Hesperoptenus tomesi); 161. Gaskell's False Serotine (Hesperoptenus gaskell): 162. Great Evening Bat (/a io); 163. Harlequin Bat (Scotomanes ornatus); 164. Riippell's Broad-nosed Bat (Scoteanax rueppelli); 165. Northern Broadnosed Bat (Scotorepens sanborni); 166. Little Broad-nosed Bat (Scotorepens greyi); 167. Inland Broad-nosed Bat (Scotorepens balstoni); 168. Eastern Broad-nosed Bat (Scotorepens orion): 169. Silverhaired Bat (Lasionycteris noctivagans). in Vespertilionidae
On following pages: 147 Pied Butterfly Bat (Glauconycteris superba); 148. Common Butterfly Bat (Glauconycteris argentata); 149. Bibundi Butterfly Bat (Glauconycteris egeria): 150. Abo Butterfly Bat (Glauconycteris poensis); 151. Striped Butterfly Bat (Glauconycteris alboguttata); 152. Beatrix's Butterfly Bat (Glauconycteris beatrix); 163. Curry's Butterfly Bat (Glauconycteris curryae); 154. Spotted Butterfly Bat (Glauconycteris humeralis): 155. Blackish Butterfly Bat (Glauconycteris atra); 156. Kenyan Butterfly Bat (Glauconycteris kenyacola); 157. Doria's False Serotine (Hesperoptenus doriae): 158. Tickell's False Serotine (Hesperoptenus tickell); 159. Blanford's False Serotine (Hesperoptenus blanford): 160. Large False Serotine (Hesperoptenus tomesi); 161. Gaskell's False Serotine (Hesperoptenus gaskell): 162. Great Evening Bat (/a io); 163. Harlequin Bat (Scotomanes ornatus); 164. Riippell's Broad-nosed Bat (Scoteanax rueppelli); 165. Northern Broadnosed Bat (Scotorepens sanborni); 166. Little Broad-nosed Bat (Scotorepens greyi); 167. Inland Broad-nosed Bat (Scotorepens balstoni); 168. Eastern Broad-nosed Bat (Scotorepens orion): 169. Silverhaired Bat (Lasionycteris noctivagans).
Distribution. Confirmed from NW Africa, the Sahel, and Nile Valley, E through the Middle East and WArabia to NW& C India (E to E Madhya Pradesh, 80° E); with possible distribution spots in E & SE India (indicated byfour mostlyhistorical records). Reportedly common in Bangladesh (yet disproved by recent reports) and retained on species lists of Myanmar, Thailand, and Sumatra without being supported by anyrecent record. in Rhinopomatidae
Distribution. Confirmed from NW Africa, the Sahel, and Nile Valley, E through the Middle East and WArabia to NW& C India (E to E Madhya Pradesh, 80° E); with possible distribution spots in E & SE India (indicated byfour mostlyhistorical records). Reportedly common in Bangladesh (yet disproved by recent reports) and retained on species lists of Myanmar, Thailand, and Sumatra without being supported by anyrecent record.
FIGURE 2 in Spotted beauty-Gedanochila museisucini gen. et sp. nov.-a new Achilidae from Eocene Baltic amber (Hemiptera: Fulgoromorpha) and its relation to Achilini
FIGURE 2. Gedanochila museisucini gen. et sp. nov. Holotype. A, left tegmen; B, right tegmen; C, right hind wing ventral view. D, left hind wing, dorsal view. Scale bar 2 mm
FIGURE 3 in Spotted beauty-Gedanochila museisucini gen. et sp. nov.-a new Achilidae from Eocene Baltic amber (Hemiptera: Fulgoromorpha) and its relation to Achilini
FIGURE 3. Gedanochila museisucini gen. et sp. nov. Holotype. A, General dorsal view; B, General ventral view. Scale bar: 2 mm.
FIGURE 5 in Spotted beauty-Gedanochila museisucini gen. et sp. nov.-a new Achilidae from Eocene Baltic amber (Hemiptera: Fulgoromorpha) and its relation to Achilini
FIGURE 5. Gedanochila museisucini gen. et sp. nov. Paratype. A, General dorsal view. B, Anterior portion of body, laterodorsal view; C, Ventral view; D, Face and rostrum; E, Metatarsi. Scale bar 2 mm for A, C, 1 mm for B, D, E.
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.