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.
1,492
datasets available to search
ShareScore release 0.7.1
Dataset results
1,492 results for “species delimitation”
FIGURE 4 in Delimitation and description of three new species of Himalopsyche (Trichoptera: Rhyacophilidae) from the Hengduan Mountains, China
FIGURE 4. Male genitalia of Himalopsyche immodesta sp. n. 4A, left lateral; 4B, phallic apparatus, left lateral; 4C, phallic apparatus, ventral; 4D, dorsal; 4E, ventral. Abbreviations: IX = abdominal segment IX; X = tergum X; a.s. = anal sclerite; s.a. = superior appendages; i.a. = inferior appendages; a. = aedeagus; p. = paramere.
FIGURE 1 in Delimitation and description of three new species of Himalopsyche (Trichoptera: Rhyacophilidae) from the Hengduan Mountains, China
FIGURE 1. Species tree and species delimitation hypothesis generated with STACEY and SpeciesDelimitationAnalyser; delimited clusters are indicated by grey boxes. Thick branches indicate clades with a posterior probability of at least 97%; nodes with lower posterior probabilities are annotated. Posterior probabilities for nodes within clusters delimited with STACEY are not shown. The Figure shows a part of the complete topology, as indicated by the miniature tree; the complete topology can be found in Figure S1. Sexes/Life stages are denoted as follows. F = female; L = larva; M = male; P = pupa. Scale bar indicates number of substitutions per unit branch length. Asterisks denote holotypes.
FIGURE 7 in Delimitation and description of three new species of Himalopsyche (Trichoptera: Rhyacophilidae) from the Hengduan Mountains, China
FIGURE 7. Morphological variation of the superior appendages of male genitals within the H. martynovi-Complex and H. epikur. Asterisk denotes the holotype of H. epikur. The topology is an excerpt from the tree generated with STACEY, which can be found in its completeness in Figure S1. Depictions of superior appendages are scaled to the height of abdominal segment IX. Scale bar indicates number of substitutions per unit branch length.
FIGURE 3 in Delimitation and description of three new species of Himalopsyche (Trichoptera: Rhyacophilidae) from the Hengduan Mountains, China
FIGURE 3. Female genitalia of Himalopsyche viteceki sp. n. 3A, left lateral; 3B, dorsal; 3C, ventral. Abbreviations: VIII = abdominal segment VIII; IX = tergum IX; X = tergum X; b.c. = bursa copulatrix; vm.p. = ventromesal process of segment VIII.
FIGURE 6 in Delimitation and description of three new species of Himalopsyche (Trichoptera: Rhyacophilidae) from the Hengduan Mountains, China
FIGURE 6. Female genitalia of Himalopsyche velata sp. n. 6A, left lateral; 6B, bursa copulatrix, dorsal; 6C, bursa copulatrix, left lateral; 6D, dorsal; 6E, ventral. Abbreviations: VIII = abdominal segment VIII; X = tergum X; b.c. = bursa copulatrix; vm.p. = ventromesal process of segment VIII.
FIGURE 5 in Delimitation and description of three new species of Himalopsyche (Trichoptera: Rhyacophilidae) from the Hengduan Mountains, China
FIGURE 5. Male genitalia of Himalopsyche velata sp. n. 5A, left lateral; 5B, dorsal; 5C, ventral. Abbreviations: IX = abdominal segment IX; dm.p. = dorsomesal process; s.a. = superior appendages; i.a. = inferior appendages; a. = aedeagus; p. = paramere.
FIGURE 2 in Delimitation and description of three new species of Himalopsyche (Trichoptera: Rhyacophilidae) from the Hengduan Mountains, China
FIGURE 2. Male genitalia of Himalopsyche viteceki sp. n. 2A, left lateral; 2B, phallic apparatus, left lateral; 2C, phallic apparatus, ventral; 2D, dorsal; 2E, ventral. Abbreviations: IX = abdominal segment IX; X = tergum X; a.s. = anal sclerite; s.a. = superior appendages; i.a. = inferior appendages; a. = aedeagus; p. = paramere.
FIGURE S1 in Delimitation and description of three new species of Himalopsyche (Trichoptera: Rhyacophilidae) from the Hengduan Mountains, China
FIGURE S1. Detailed species tree showing the complete topology with the BOLD Process IDs and sex/life stages of each sample. Branch thicknesses indicate posterior probabilities of clades, for those with a posterior probability value of at least 97%; nodes with lower posterior probabilities are annotated. Posterior probabilities for nodes within STACEY clusters are not shown. Sexes/life stages are denoted as follows. F = female; L = larva; M = male; P = pupa. Scale bar indicates number of substitutions per unit branch length. Asterisks denote holotypes.
FIGURE 36 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 36. Phortica (Phortica) tibeta Gong & Chen, sp. nov., male. A. Epandrium and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, aedeagus, gonopod, and aedeagal apodeme (lateral view); D. Paramere (lateral view). Scale bars = 0.1 mm.
FIGURE 35 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 35. Phortica (Phortica) liukuni Gong & Chen, sp. nov., male. A. Epandrium, surstylus, and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 32 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 32. Phortica (Phortica) archikappa Gong & Chen, sp. nov., male. A. Epandrium and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, aedeagus, gonopod, and aedeagal apodeme (lateral view); D. Paramere (lateral view). Scale bars = 0.1 mm.
FIGURE 30 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 30. Phortica (Phortica) subradiata (Okada, 1977) from Chiayi, Taiwan, China, male. A. Epandrium and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 8 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 8. Phortica (Phortica) chi (Toda & Sidorenko, 1996) from Yunmengshan, Beijing, China, male. A. Epandrium and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 5 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 5. Head, thorax, and abdomen of dorsal and lateral views in males: A, B. Phortica (Phortica) cardua (Okada, 1977); C, D. P. (P.) eugamma (Toda & Peng, 1990); E, F. P. (P.) gamma (Toda & Peng, 1990); G, H. P. (P.) glabtabula Chen & Gao, 2005; I, J. P. (P.) okadai (Máca, 1977). Scale bars = 1 mm.
FIGURE 28 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 28. Phortica (Phortica) psi (Zhang & Gan, 1986) from Weixi, Yunnan, China, male. A. Epandrium, surstylus, and cercus (lateral view); B. Surstylus (frontal view); C. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 3 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 3. Numbers of operational taxonomic units (OTUs) under different prior intraspecific divergences for 217 Phortica (s. str.) barcode sequences in the ABGD analysis.
FIGURE 1 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 1. Genetic distances of the barcode sequences within and between 54 Phortica (s. str.) species. Intraspecific distances and variability are not applicable to the following five species that each has only one sequence: Phortica fangae (Máca in Máca & Lin, 1993); P. mengda Zhu, Cao & Chen, 2018; P. perforcipata (Máca & Lin, 1993); P. psi (Zhang & Gan, 1986); P. yena Zhu, Cao & Chen, 2018.
FIGURE 7 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 7. Phortica (Phortica) cardua (Okada, 1977) from Jizushan, Yunnan, China, male. A. Arista; B. Sixth tergite (lateral view); C. Epandrium, surstylus, and cercus (lateral view); D. Surstylus (frontal view); E. Hypandrium, paramere, aedeagus, gonopod, and aedeagal apodeme (lateral view). Scale bars = 0.1 mm.
FIGURE 2. Pairwise K2P in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 2. Pairwise K2P distances of 217 Phortica (s. str.) barcode sequences generated from the Automatic Barcode Gap Discovery (ABGD) analysis.
FIGURE 4-1 in Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes
FIGURE 4-1. Neighbor-Joining (NJ) tree constructed in this study. Monophyletic clades of each putative morphospecies are compressed. Numbers around the nodes are bootstrap percentages (BPs). BPs lower than 50 are not shown. The bars indicate the estimated number of substitutions per site.
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.