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.
338
datasets available to search
ShareScore release 0.9.0
Dataset results
338 results for “Geographic ranges”
FIGURE 12 in A new species of nurse-frog (Aromobatidae, Allobates) from the Madeira River basin with a small geographic range
FIGURE 12. Cryptically colored Allobates species occurring in forested areas on the eastern bank of the middle and lower course of the Madeira River, in Amazonas State, Brazil. (A) Allobates bacurau photographed at the species type locality in Manicoré. Note golden yellow color of upper arm. (B) Calling male of A. bacurau photographed in the same area. (C) Male Allobates cearuleodactylus photographed in Borba, 280 km downstream of Manicoré. Note the sky-blue fingers. (D) Dorsolateral view of a male Allobates grillisimilis, photographed at the species type locality in Borba. Note olive brown color of upper arm. (E) Calling male of A. grillisimilis photographed in Nova Olinda do Norte, 370 km downstream of Manicoré. (F) Male and (G) female Allobates masniger, photographed at A. bacurau type locality in Manicoré. Color of throat and chest surfaces in A. masniger are gray to black in males and light yellow in females. (H) and (I) an undescribed species of Allobates, photographed in Nova Olinda do Norte and Borba, respectively. Note the bright yellow vocal-sac and conspicuous solid white ventrolateral stripe extending from groin to the upper lip. Photos by P.I. Simões, except (D), by A.P. Lima.
FIGURE 9 in A new species of nurse-frog (Aromobatidae, Allobates) from the Madeira River basin with a small geographic range
FIGURE 9. Waveforms (upper graphs) and sonograms (lower graphs) of advertisement calls of Allobates bacurau and three cryptically colored Allobates distributed in forests on the east bank of the middle and lower course of the Madeira River, Amazonas State, Brazil. In comparison with advertisement calls of A. bacurau, A. grillisimilis emits shorter (<0.5 s long) note trills; emission of notes by A. caeruleodactylus is continuous (i.e. notes are not arranged in discrete trills) and silent intervals between notes are longer than the ones in the calls of A. bacurau; A. masniger also emits notes continuously, but at a lower frequency bandwidth. Calls of A. grillisimilis, A. caeruleodactylus and A. masniger recorded in 2008 in Borba (04°26'03" S, 59°37'25" W), north of Manicoré.
FIGURE 8 in A new species of nurse-frog (Aromobatidae, Allobates) from the Madeira River basin with a small geographic range
FIGURE 8. Advertisement calls of Allobates bacurau´s holotype (INPA-H 35398), recorded at 25.2°C. Advertisement calls of A. bacurau are characterized by the emission of short notes is long trills. (A) Waveform (upper graph) and sonogram (lower graph) of a 12 s long note trill. (B) Detailed view of a 1 s long section of the same recording. Note ascending frequency modulation of notes.
FIGURE 7 in A new species of nurse-frog (Aromobatidae, Allobates) from the Madeira River basin with a small geographic range
FIGURE 7. (A) Dorsal and ventral views of a live female paratype of Allobates bacurau (INPA-H 35408). Note that throat is pigmented anteriorly and white posteriorly. (B) Dorsolateral view of a second live female paratype (INPA-H 35397). (C) Variation in throat pigmentation density among live male paratypes of A. bacurau (from left to right: INPA-H 35398, 35402, 35401).
FIGURE 10. Unrooted maximum likelihood phylogenetic tree reconstructed from a 481 in A new species of nurse-frog (Aromobatidae, Allobates) from the Madeira River basin with a small geographic range
FIGURE 10. Unrooted maximum likelihood phylogenetic tree reconstructed from a 481 bp fragment of the mitochondrial 16S rDNA sampled from six Allobates bacurau paratypes and other cryptically colored species of Allobates distributed in Brazil and across cis-Andean South America. Clade labels indicate bootstrap support values estimated from 5000 bootstrap replicates (only support values>80% are shown). Basal clades with low bootstrap support should not be considered to reflect the true evolutionary history between taxa. Locations described in parentheses indicate sequence samples obtained from voucher specimens that did not proceed from the species type locality.
FIGURE 6 in A new species of nurse-frog (Aromobatidae, Allobates) from the Madeira River basin with a small geographic range
FIGURE 6. Color in life of Allobates bacurau photographed at the species type locality in Manicoré, on the eastern bank of the Madeira River, in Amazonas State, Brazil. (A) Dorsolateral view of a male specimen. (B) Lateral view of a second male specimen. (C) Calling male. Note gray-colored vocal-sac. Also note variation in coverage of iridescent-white reticulation on the ventrolateral region among the three specimens.
FIGURE 5 in A new species of nurse-frog (Aromobatidae, Allobates) from the Madeira River basin with a small geographic range
FIGURE 5. Variation in dorsal color pattern among six male paratypes of Allobates bacurau. Clockwise from upper left: INPA-H 35405, 35403, 35406, 35409, 35401 and 35407. Note presence of a pale dorsolateral stripe and the absence of dark transverse bars on thighs of all specimens. Scratches on skin occurred post-preservation.
FIGURE 4 in A new species of nurse-frog (Aromobatidae, Allobates) from the Madeira River basin with a small geographic range
FIGURE 4. Foot of Allobates bacurau holotype (INPA-H 35398). White arrow indicates basal webbing between Toes III and IV.
FIGURE 3 in A new species of nurse-frog (Aromobatidae, Allobates) from the Madeira River basin with a small geographic range
FIGURE 3. (A) Hand of Allobates bacurau holotype (INPA-H 35398). (B) Hand of a female paratype (INPA-H 35397). Edges of some tubercles have been digitally highlighted for improved clarity. Variation in swelling of Finger III is not exclusively sexually dimorphic. Some male specimens have Finger III more similar to (B).
FIGURE 2 in A new species of nurse-frog (Aromobatidae, Allobates) from the Madeira River basin with a small geographic range
FIGURE 2. (A) Lateral view of Allobates bacurau holotype (INPA-H 35398). (B) Lateral view of a female paratype (INPA-H 35397).
Supplementary material 4 from: Boenigk J, Wodniok S, Bock C, Beisser D, Hempel C, Grossmann L, Lange A, Jensen M (2018) Geographic distance and mountain ranges structure freshwater protist communities on a European scalе. Metabarcoding and Metagenomics 2: e21519. https://doi.org/10.3897/mbmg.2.21519
Richness is shown for different elevations. The number of lakes within this elevation range is indicated. While mean richness ranges around 750 OTUs it drops to around 400 OTUs at high elevations. The transition seems to be around or slightly below 1400m.
FIGURE 1 in Inventory of the eastern Bering Sea sponge fauna, geographic range extensions and description of Antho ridgwayi sp. nov.
FIGURE 1. Map of the eastern Bering Sea showing the location of shelf (crosses) and slope (circles) survey stations. Dark green crosses indicate shelf stations where sponges were recorded as bycatch during both years (2013 and 2015), light green crosses indicate shelf stations were sponges were recorded during one year only, and red crosses indicate shelf stations where sponges were not recorded as bycatch during either year. Green and red circles indicate stations where sponges were and were not recorded as bycatch during the 2016 survey, respectively. (1) western Bering Sea, (2) southern Chukchi Sea, and (3) the island arc slope of the eastern Aleutian Islands where it joins with the Bering Sea continental shelf.
FIGURE 3. SEM images. A, a in Inventory of the eastern Bering Sea sponge fauna, geographic range extensions and description of Antho ridgwayi sp. nov.
FIGURE 3. SEM images. A, a section through the complete blade of the sponge perpendicular to the surface. In the center of the sponge blade, the reticulation of acanthostrongyles is visible, towards both surfaces of the sponge blade plumose tracts of styles run towards the two surfaces ending at the ectosome. B, Large and small style, acanthostrongyles and ectosomal tylotes. C, Ectosomal tylote with microspined head detail in inset at upper right. D, Acanthostrongyle. E, Small category of toxon. F, Isochelae.
FIGURE 2. Antho ridgwayi n in Inventory of the eastern Bering Sea sponge fauna, geographic range extensions and description of Antho ridgwayi sp. nov.
FIGURE 2. Antho ridgwayi n. sp. A, Holotype. Grid marks are 1 cm. B, Light microscopic section perpendicular to the surface. Ectosome visible as dark band on upper right. Ascending tracts of styles and reticulation of acanthostrongyles visible below, appearing as darker area. C, Close-up view of section perpendicular to surface. Ectosomal veneer with numerous isochelae (upper right) and ascending tracts of styles (below). Reticulation of acanthostrongyles visible at the right. D, Small and large toxa within the ectosomal organic veneer.
FIGURE 3 in Further examination of the geographic range of Eriogonum corymbosum var. nilesii (Polygonaceae, Eriogoneae)
FIGURE 3. Principle Coordinates Analysis showing populations in two clusters, with those most closely associated with (and including) the reference population for Eriogonum corymbosum var. nilesii on the left, and those most closely associated with (and including) the reference population for E. corymbosum var. aureum on the right.
FIGURE 4. STRUCTURE 2.3.4 in Further examination of the geographic range of Eriogonum corymbosum var. nilesii (Polygonaceae, Eriogoneae)
FIGURE 4. STRUCTURE 2.3.4 bar graph of 14 populations with color-coded assignments to four clusters. The inferred taxonomic assignments (based on predominant color coding) are listed above each population set. Blue corresponds to Eriogonum corymbosum var. nilesii, yellow to E. corymbosum var. aureum, green for E. thompsoniae, and red (the Badlands population) is not clearly associated with the other taxa. Each vertical bar represents an individual, with proportions of the 4 colors in each based on AFLP profiles.
FIGURE 2 in Further examination of the geographic range of Eriogonum corymbosum var. nilesii (Polygonaceae, Eriogoneae)
FIGURE 2. Principle Coordinates Analysis of all populations. Those circled compose a cluster of samples closely associated with (and including) the reference populations for Eriogonum corymbosum vars. nilesii and aureum.
FIGURE 1 in Further examination of the geographic range of Eriogonum corymbosum var. nilesii (Polygonaceae, Eriogoneae)
FIGURE 1. Sample-site locations (see Table 2). Taxonomic designations are based on our findings: yellow = Eriogonum corymbosum var. nilesii, turquoise = var. aureum, green = var. glutinosum, white = var. orbiculatum, gray = var. corymbosum, blue = admixed population involving vars. aureum and nilesii, red = E. thompsoniae, and pink = Badlands population. Each site icon with a black dot is a reference population.
FIGURE 1 in Host and geographic range extensions of Melanconiella, with a new species M. cornuta in China
FIGURE 1. Phylogram of Melanconiella based on combined ITS, LSU, rpb2 and tef1-α genes. MP and ML bootstrap support values above 75 % are shown at the first and second position. Thickened branches represent posterior probabilities above 0.95 from BI. Scale bar = 30 nucleotide substitutions. Ex-type strains are in bold. Strains in current study are in blue.
FIGURE 2 in Host and geographic range extensions of Melanconiella, with a new species M. cornuta in China
FIGURE 2. Morphology of Melanconiella cornuta from Cornus controversa (BJFC-S1375). A, B: Habit of conidiomata on twig. C: Transverse section of conidioma. D: Longitudinal section through conidioma. E: Conidiogenous cells. F, G: Conidia. Scale bars: A=1 cm; B–D = 300 μm; E–G = 10 μm.
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.