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Fig. 5 a,b Ecological niche models obtained for S. caeruleus populations. a Chihuahuan Desert, b in Molecular evidence for the origin and evolutionary history of the rare American desert monotypic family Setchellanthaceae
Fig. 5 a,b Ecological niche models obtained for S. caeruleus populations. a Chihuahuan Desert, b Tehuacán-Cuicatlán Valley
FIGURE 3 in Fulvifomes parviungulatus (Hymenochaetales, Basidiomycota), a new species from China based on morphological and molecular evidence
FIGURE 3. Microscopic structures of Fulvifomes parviungulatus (Holotype). a Basidiospores; b Hyphae from trama; c Hyphae from context. Scale bars = 10 μm.
FIGURE 2 in Polygonatum daminense (Asparagaceae), a new species from China based on morphological and molecular evidence
FIGURE 2. Polygonatum daminense drawn according to the holotype: A. Whole plant; B. Veinlets on the abaxial leaf blade; C. Peduncle; D. Flower; E. Perianth and stamens; F. Pistil.
Figure 9 in Nine new species of the subgenus Stegana (Oxyphortica) from the Oriental region, with morphological and molecular evidence based on Chinese species (Diptera: Drosophilidae)
Figure 9. Stegana (Oxyphortica) dainuo Wang and Chen, sp. nov., male terminalia. (a) epandrium, cercus and surstylus (lateral view); (b) surstylus (ventral view); (c, d) hypandrium, aedeagus and aedeagal apodeme (ventral and lateral views); (e) gonopods. Scale lines = 0.1 mm.
Figure 1 in Nine new species of the subgenus Stegana (Oxyphortica) from the Oriental region, with morphological and molecular evidence based on Chinese species (Diptera: Drosophilidae)
Figure 1. The Neighbour-joining (NJ) phylogenetic tree of the subgenus Oxyphortica species. The numbers around the nodes are bootstrap values (BP), which re-sample 1000 replicates. The bars indicate the estimated number of substitutions per site.
FIGURE 2 in The population of Ctenomys from the Ñacuñán Biosphere Reserve (Mendoza, Argentina) belongs to Ctenomys mendocinus Philippi, 1869 (Rodentia: Ctenomyidae): molecular and karyotypic evidence
FIGURE 2. Standard Giemsa-stained karyotype of Ctenomys mendocinus from Ñacuñán, karyomorph 2n = 50, FN = 80 (CMI 07226).
FIGURE 4 in Phylogenetics of the tribe Phalacropsyllini (Siphonaptera: Ctenophthalmidae: Neopsyllinae) based on molecular and morphological evidence
FIGURE 4. Phylogenetic relationship of tribe Phalacropsyllini based on the Bayesian analysis of 28S, and 18S genes, and morphological characters. Numbers above nodes indicate posterior probabilities.
FIGURES 4–6 in Discovery of the female of Protohermes niger Yang & Yang (Megaloptera: Corydalidae): Sexual dimorphism in coloration of a dobsonfly revealed by molecular evidence
FIGURES 4–6. Protohermes niger Yang & Yang, female. 4. Head and prothorax, dorsal view; 5. Genitalia, lateral view; 6. Eighth gonocoxite, ventral view. Scale bar =1.0 mm.
FIGURE 20 in Molecular and morphological evidence for short range endemism in the Kinnecaris solitaria complex (Copepoda: Parastenocarididae), with descriptions of seven new species 3026
FIGURE 20. Kinnecaris linesae sp. nov., A, holotype male; B-J, allotype female: A, anal somite and caudal rami, dorsal view; B, urosome, lateral view; C, antennula, ventral view; D, exopod of antenna, lateral view; E, mandibular palp, posterior view; F, maxilliped, anterior view; G, right second swimming leg, posterior view; H, endopod of left second swimming leg, anterior view; I, third swimming leg, anterior view; J, endopod of fourth swimming leg, posterior view. Arrows pointing numerous features different from previous species: shorter caudal rami (A & B), absence of any spinules on urosome (B), short easthetasc on antennula (C), additional row of spinules on second leg coxa (G), and shorter apical seta on third leg (I).
FIGURE 10 in Molecular and morphological evidence for short range endemism in the Kinnecaris solitaria complex (Copepoda: Parastenocarididae), with descriptions of seven new species 3026
FIGURE 10. Kinnecaris esbe sp. nov., paratype female: A, antennula, dorsal view; B, exopod of antenna, lateral view; C, second swimming leg, anterior view; D, third swimming leg, anterior view; E, fourth swimming leg, anterior view. Scale 50 µm for all figures. Arrow pointing smaller praecoxa and coxa of third swimming leg when compared to previous species.
FIGURE 9 in Molecular and morphological evidence for short range endemism in the Kinnecaris solitaria complex (Copepoda: Parastenocarididae), with descriptions of seven new species 3026
FIGURE 9. Kinnecaris esbe sp. nov., paratype female: A, habitus, dorsal view; B, urosome, lateral view; C, urosome, ventral view. Inset showing cuticular pits and fine ornamentation of urosome. Arrows pointing additional rows of large spinules on genital double-somite (B), extremely elongated caudal rami, and fewer large spinules on abdominal somites when compared to previous species (C).
FIGURE 5 in Molecular and morphological evidence for short range endemism in the Kinnecaris solitaria complex (Copepoda: Parastenocarididae), with descriptions of seven new species 3026
FIGURE 5. Kinnecaris barrambie sp. nov., SEM photographs, A-D, holotype male; E, allotype female: A, habitus lateral view; B, fifth and sixth legs, lateral view; C, anal somite and caudal rami, lateral view; D, distal part of third swimming legs, lateral view; E, anal somite and caudal rami, ventral view.
FIGURE 32 in The genus Leucophenga (Diptera, Drosophilidae), part VIII: twenty-one species from the Oriental region, with morphological and molecular evidence
FIGURE 32. Leucophenga hyaloptera Huang & Chen, sp. nov., male terminalia in lateral view. A. Epandrium, surstylus, and cercus; B. Hypandrium, paramere, gonopods, and aedeagus; C. Paramere; D. Aedeagus. Scale bars = 0.1 mm.
FIGURE 28 in The genus Leucophenga (Diptera, Drosophilidae), part VIII: twenty-one species from the Oriental region, with morphological and molecular evidence
FIGURE 28. Leucophenga forcipula Huang & Chen, sp. nov., male terminalia in lateral view. A. Epandrium, surstylus, and cercus; B. Hypandrium, paramere, gonopods, aedeagus, and aedeagal apodeme; C. Paramere; D. Aedeagus. Scale bars = 0.1 mm.
FIGURE 36 in The genus Leucophenga (Diptera, Drosophilidae), part VIII: twenty-one species from the Oriental region, with morphological and molecular evidence
FIGURE 36. Leucophenga valvata Huang & Chen, sp. nov., male terminalia in lateral view. A. Epandrium, surstylus, and cercus; B. Hypandrium, paramere, gonopods, aedeagus, and aedeagal apodeme; C. Paramere; D. Aedeagus. Scale bars = 0.1 mm.
FIGURE 30 in The genus Leucophenga (Diptera, Drosophilidae), part VIII: twenty-one species from the Oriental region, with morphological and molecular evidence
FIGURE 30. Leucophenga glabtabulata Huang & Chen, sp. nov., male terminalia in lateral view. A. Epandrium, surstylus, and cercus; B. Hypandrium, paramere, gonopods, aedeagus, and aedeagal apodeme; C. Paramere; D. Aedeagus. Scale bars = 0.1 mm.
FIGURE 16 in The genus Leucophenga (Diptera, Drosophilidae), part VIII: twenty-one species from the Oriental region, with morphological and molecular evidence
FIGURE 16. Male terminalia: A, B. Leucophenga hyaloptera Huang & Chen, sp. nov.; C, D. L. oxyptera Huang & Chen, sp. nov.; E, F. L. platypyga Huang & Chen, sp. nov.; G, H. L. serrateiceps Huang & Chen, sp. nov.; I, J. L. valvata Huang & Chen, sp. nov.; K, L. L. zebrina Huang & Chen, sp. nov.
FIGURE 3 in Phylogenetic relationships in the genus Astropecten Gray (Paxillosida: Astropectinidae) on a global scale: molecular evidence for morphological convergence, species-complexes and possible cryptic speciation
FIGURE 3. Total evidence molecular phylogeny of 117 specimens of Astropecten and seven outgroup taxa based on combined 12S, 16S and COI sequences of the mitochondrial DNA. (a) Maximum parsimony strict consensus tree of 2600 most parsimonious trees (length = 3447). Above nodes: bootstrap support values above 50% from 1,000 replicates. Below nodes: decay indices. (b) Bayesian inference tree resulting from 9,500 trees based on the GTR+I+Γ model. Posterior probabilities are indicated above nodes. See Table 1 for collection locality of specimens. EP = East Pacific, WA = West Atlantic; CP = Central Pacific; WP = West Pacific; IP = Indo-Pacific; IO = Indian Ocean; EA = East Atlantic, EM = East Mediterranean, WM = West Mediterranean
FIGURE 2. Cymbidium motuoense. A. Flowering plant. B. Inflorescence. C in Cymbidium motuoense (Orchidaceae; Epidendroideae), a new species from China: evidence from morphological and molecular data
FIGURE 2. Cymbidium motuoense. A. Flowering plant. B. Inflorescence. C. Lip and column, front view. D. Flower, front view. E. Pseudobulb and base of leaves. F. Sepals and petals, front view. G. Flower of C. tracyanum. H. Flower of C. iridioides.
FIGURE 1 in Pogostemon jaitapurensis (Lamiaceae), a new species from India based on morphological and molecular evidence
FIGURE 1. Habitat and habit comparison between Pogostemon jaitapurensis Chandore & S.R.Yadav, sp. nov., P. deccanensis (Panigrahi) Press, and P. erectus (Dalzell) Kuntze. A & B P. jaitapurensis habitat; C & D P. deccanensis habitat; E & F P. erectus habitat. Photos by A.N. Chandore & S.R. Yadav.
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.