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.
200
datasets available to search
ShareScore release 0.7.1
Dataset results
200 results for “species delineation”
Figure 3 from: Fu Y, Fang X-L, Wang X-H, Shen M, Xiao Y-L (2022) Corynoneura Winnertz species from Hunan Province, Oriental China, delineated with morphological and 16S rDNA data (Diptera, Chironomidae). ZooKeys 1082: 87-102. https://doi.org/10.3897/zookeys.1082.73019
Figure 3 Corynoneura incuria sp. nov., male imago. A wing B tentorium and cibarial pump C antenna D legs E thorax F hypopygium, dorsal view G hypopygium, ventral view.
Figure 4 from: Fu Y, Fang X-L, Wang X-H, Shen M, Xiao Y-L (2022) Corynoneura Winnertz species from Hunan Province, Oriental China, delineated with morphological and 16S rDNA data (Diptera, Chironomidae). ZooKeys 1082: 87-102. https://doi.org/10.3897/zookeys.1082.73019
Figure 4 Corynoneura incuria sp. nov., female imago. A wing B hind tibial apex C thorax D genitalia.
Figure 2 from: Fu Y, Fang X-L, Wang X-H, Shen M, Xiao Y-L (2022) Corynoneura Winnertz species from Hunan Province, Oriental China, delineated with morphological and 16S rDNA data (Diptera, Chironomidae). ZooKeys 1082: 87-102. https://doi.org/10.3897/zookeys.1082.73019
Figure 2 Corynoneura gibbera sp. nov., male imago. A wing B tentorium and cibarial pump C antenna D thorax E hind tibial apex F hypopygium, dorsal view G, H hypopygium, ventral view.
Figure 1 from: Fu Y, Fang X-L, Wang X-H, Shen M, Xiao Y-L (2022) Corynoneura Winnertz species from Hunan Province, Oriental China, delineated with morphological and 16S rDNA data (Diptera, Chironomidae). ZooKeys 1082: 87-102. https://doi.org/10.3897/zookeys.1082.73019
Figure 1 Corynoneura enormis sp. nov., male imago. A wing B tentorium and cibarial pump C apex of antenna D legs E hypopygium, dorsal view F hypopygium, ventral view.
Fig. 2 in Comparative molecular and morphological species delineation of Halammohydra Remane, 1927 (Hydrozoa)-with the description of four new species
Fig. 2 Light microscopy images of Halammohydra species. a H. vermiformis with a 3 times longer tentacle (arrowhead) in the subaboral whorl. b Magnification of aboral cone in a showing a thickening at the tentacle bases of the subaboral tentacles (arrowhead). c H. octopodides with 2 times longer tentacle (arrowhead). d H. coronata with 1.5 times longer tentacle (arrowhead) in the subaboral whorl. ab, aboral tentacles; ac, aboral cone; ao, adhesive organ; gt, gastric tube; sub, subaboral tentacles
Fig. 3 in Comparative molecular and morphological species delineation of Halammohydra Remane, 1927 (Hydrozoa)-with the description of four new species
Fig. 3 Light microscopy images of Halammohydra adherens. a Smaller variant with less tentacles. b Larger variant with more tentacles. c Magnification of a tentacle of a with a few elongated nematocysts (arrowheads). d Magnification of the tentacle of c filled with elongated nematocysts (arrowheads). gt, gastric tube; mo, mouth opening
Supplementary material 2 from: Raupach MJ, Hannig K, Morinière J, Hendrich L (2019) About Notiophilus Duméril, 1806 (Coleoptera, Carabidae): Species delineation and phylogeny using DNA barcodes. Deutsche Entomologische Zeitschrift 66(1): 63-73. https://doi.org/10.3897/dez.66.34711
: Data type: Substitution saturation plot
Supplementary material 1 from: Raupach MJ, Hannig K, Morinière J, Hendrich L (2019) About Notiophilus Duméril, 1806 (Coleoptera, Carabidae): Species delineation and phylogeny using DNA barcodes. Deutsche Entomologische Zeitschrift 66(1): 63-73. https://doi.org/10.3897/dez.66.34711
: Data type: Neighbour Joining topology
Figure 5 from: Raupach MJ, Hannig K, Morinière J, Hendrich L (2019) About Notiophilus Duméril, 1806 (Coleoptera, Carabidae): Species delineation and phylogeny using DNA barcodes. Deutsche Entomologische Zeitschrift 66(1): 63-73. https://doi.org/10.3897/dez.66.34711
Figure 5 Maximum likelihood phylogeny inferred in IQ-TREE, based on the CO1 barcode fragment for the genus Notiophilus. The model of nucleotide substitution used was selected with Modelfinder as part of the IQ-TREE work package. The tree was rooted with five Nebria species as outgroup. Nodal support was calculated with SH-aLRT (above) and UFBoot (below) values. Black dots indicate very robust nodes with very high values (SH-aLRT ≥ 90%, UFBoot ≥ 95%), grey dots indicate moderately robust nodes (SH-aLRT ≥ 80%, UFBoot ≥ 80%) and white dots indicate weak nodes (SH-aLRT < 80%, UFBoot < 80%) (see Material and Methods for details). Continent silhouettes indicate the biogeographic distribution of the analysed taxa (from left to right: Africa, Europe, Asia and North America).
Figure 3 from: Raupach MJ, Hannig K, Morinière J, Hendrich L (2019) About Notiophilus Duméril, 1806 (Coleoptera, Carabidae): Species delineation and phylogeny using DNA barcodes. Deutsche Entomologische Zeitschrift 66(1): 63-73. https://doi.org/10.3897/dez.66.34711
Figure 3 Maximum statistical parsimony network of Notiophilusbiguttatus (Fabricius, 1779) and Notiophilusquadripunctatus Dejean, 1828. Parameters used included default settings for connection steps, gaps being treated as fifth state. Each line represents a single mutational change, whereas small black dots indicate missing haplotypes. The numbers of analysed specimens (n) are listed and the diameter of the circles is proportional to the number of specimens for each haplotypes (see given open half circles with numbers). Scale bars = 1 mm. Source of photos: http://www.eurocarabidae.de/ (access date: 2019–01–15).
Figure 1 from: Raupach MJ, Hannig K, Morinière J, Hendrich L (2019) About Notiophilus Duméril, 1806 (Coleoptera, Carabidae): Species delineation and phylogeny using DNA barcodes. Deutsche Entomologische Zeitschrift 66(1): 63-73. https://doi.org/10.3897/dez.66.34711
Figure 1 Two representative species of the genus Notiophilus amongst those analysed in this study: A: Notiophilusgerminyi Fauvel in Grenier, 1863 and B: Notiophilusrufipes Curtis, 1829. Note the characteristic different size of the second elytral intervals ("Spiegelfeld") for both beetle species. Scale bars = 1 mm. Source of photos: http://www.eurocarabidae.de/ (access date: 2019–01–15).
Figure 2 from: Raupach MJ, Hannig K, Morinière J, Hendrich L (2019) About Notiophilus Duméril, 1806 (Coleoptera, Carabidae): Species delineation and phylogeny using DNA barcodes. Deutsche Entomologische Zeitschrift 66(1): 63-73. https://doi.org/10.3897/dez.66.34711
Figure 2 Neighbour joining (NJ) topology of the analysed ground beetle species of Notiophilus, based on Kimura 2-parameter distances. Numbers next to nodes represent non-parametric bootstrap values > 90% (1,000 replicates). Source of photos: http://www.eurocarabidae.de/ (access date: 2019–01–15).
Figure 4 from: Raupach MJ, Hannig K, Morinière J, Hendrich L (2019) About Notiophilus Duméril, 1806 (Coleoptera, Carabidae): Species delineation and phylogeny using DNA barcodes. Deutsche Entomologische Zeitschrift 66(1): 63-73. https://doi.org/10.3897/dez.66.34711
Figure 4 Subtree of the neighbour joining topology, based on Kimura 2-parameter distances of all analysed specimens of Notiophilusrufipes Curtis, 1829. Branches with specimen ID-number from BOLD, species names and sample localities. Numbers next to internal nodes are non-parametric bootstrap values (in %). Source of photo: http://www.eurocarabidae.de/ (access date: 2019–01–15).
Supplementary material 2 from: Chou M-H, Yeh W-B (2019) Delineation of two new, highly similar species of Taiwanese Cylindera tiger beetles (Coleoptera, Carabidae, Cicindelinae) based on morphological and molecular evidence. ZooKeys 875: 31-62. https://doi.org/10.3897/zookeys.875.37856
: Data type: phylogenetic data
Supplementary material 1 from: Chou M-H, Yeh W-B (2019) Delineation of two new, highly similar species of Taiwanese Cylindera tiger beetles (Coleoptera, Carabidae, Cicindelinae) based on morphological and molecular evidence. ZooKeys 875: 31-62. https://doi.org/10.3897/zookeys.875.37856
: Data type: phylogenetic data
Figures 7- 8 from: Chou M-H, Yeh W-B (2019) Delineation of two new, highly similar species of Taiwanese Cylindera tiger beetles (Coleoptera, Carabidae, Cicindelinae) based on morphological and molecular evidence. ZooKeys 875: 31-62. https://doi.org/10.3897/zookeys.875.37856
Figures 7- 8 The elytral maculations (left elytron). 7 Kosempo form lacks any spot on the middle elytral edge and has one spot near suture (a) and one subapical spot (b) 8Cylindera sauteri has one spot near suture (c), one subapical spot (d), and one triangular spot on the elytral middle edge (e).
Figures 33-36 from: Chou M-H, Yeh W-B (2019) Delineation of two new, highly similar species of Taiwanese Cylindera tiger beetles (Coleoptera, Carabidae, Cicindelinae) based on morphological and molecular evidence. ZooKeys 875: 31-62. https://doi.org/10.3897/zookeys.875.37856
Figures 33-36 Digital images (left) and line drawings (right) of labra of Cylindera pseudocylindriformis33, 34 male 35, 36 female.
Figures 3- 4 from: Chou M-H, Yeh W-B (2019) Delineation of two new, highly similar species of Taiwanese Cylindera tiger beetles (Coleoptera, Carabidae, Cicindelinae) based on morphological and molecular evidence. ZooKeys 875: 31-62. https://doi.org/10.3897/zookeys.875.37856
Figures 3- 4 Frequency distributions of COI pairwise distance of the sauteri group (3) and the pseudocylindriformis group (4), showing the barcoding gaps.
Figures 29-32 from: Chou M-H, Yeh W-B (2019) Delineation of two new, highly similar species of Taiwanese Cylindera tiger beetles (Coleoptera, Carabidae, Cicindelinae) based on morphological and molecular evidence. ZooKeys 875: 31-62. https://doi.org/10.3897/zookeys.875.37856
Figures 29-32 Digital images (left) and line drawings (right) of labra of Cylindera autumnalis sp. nov. 29, 30 male (holotype, AdeC84-3) 31, 32 female (paratype, AdeC78-2).
Figures 37-39 from: Chou M-H, Yeh W-B (2019) Delineation of two new, highly similar species of Taiwanese Cylindera tiger beetles (Coleoptera, Carabidae, Cicindelinae) based on morphological and molecular evidence. ZooKeys 875: 31-62. https://doi.org/10.3897/zookeys.875.37856
Figures 37-39 Line drawings of labra of Taiwanese Cylindera (female) 37C. kaleea38C. elisae reductelineata39C. shirakii.
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.