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FIGURE 7 in A new cryptic species allied to Plestiodon japonicus (Peters, 1864) (Squamata: Scincidae) from eastern Japan, and diagnoses of the new species and two parapatric congeners based on morphology and DNA barcode
FIGURE 7. Head scutellation of the holotype of P. finitimus sp. nov. (KUZ R65128). Dorsal (A), lateral (B), and ventral (C) views.
FIGURES 5–6 in Dichrorampha dinarica, new species, a century of confusion in European lepidopterology (Lepidoptera: Tortricidae) resolved by combining morphology and DNA barcoding
FIGURES 5–6. Male genitalia of Dichrorampha. 5, D. rilana Drenowsky, slide P. Huemer TOR 455 ♂; 6, D. dinarica sp. n., paratype, slide P. Huemer TOR 452 ♂.
FIGURES 1–4 in Dichrorampha dinarica, new species, a century of confusion in European lepidopterology (Lepidoptera: Tortricidae) resolved by combining morphology and DNA barcoding
FIGURES 1–4. Adults of Dichrorampha. 1, D. ligulana (Herrich-Schäffer), ♂; 2, D. rilana Drenowsky, ♂; 3–4, D. dinarica sp. n., paratypes, 3, ♂, 4, ♀. Scale bar = 5 mm.
FIGURES FG6–FG10. Female genitalia, ventral aspect. Scale bar = 200µm. Genitalia slide numbers in parentheses. FG6, Caloptilia suberinella (MIC6609); FG7, Parornix betulae (MIC6207). FG8, Phyllonorycter maestingella (MIC6211, inset = magnification of signum; scale bar = 20µm); FG9, Paraswammerdamia albicapitella (YPO151PH); FG10, Paraswammerdamia conspersella (MIC6188). in Shared but overlooked: 30 species of Holarctic Microlepidoptera revealed by DNA barcodes and morphology
FIGURES FG6–FG10. Female genitalia, ventral aspect. Scale bar = 200µm. Genitalia slide numbers in parentheses. FG6, Caloptilia suberinella (MIC6609); FG7, Parornix betulae (MIC6207). FG8, Phyllonorycter maestingella (MIC6211, inset = magnification of signum; scale bar = 20µm); FG9, Paraswammerdamia albicapitella (YPO151PH); FG10, Paraswammerdamia conspersella (MIC6188).
FIGURES MG1–MG5. Male genitalia. Scale bar = 500µm. Genitalia slide numbers in parentheses. MG1a, Scardia amurensis (JFL1701); MG1b, Scardia anatomella (MIC6059); MG2, Triaxomera parasitella (MIC5366); MG3, Nemapogon cloacella (MIC5376); MG4, Elatobia montelliella (MIC6791); MG5, Tinea svenssoni (MIC5577, inset = magnification of internal phallic structures; scale bar = 50µm). in Shared but overlooked: 30 species of Holarctic Microlepidoptera revealed by DNA barcodes and morphology
FIGURES MG1–MG5. Male genitalia. Scale bar = 500µm. Genitalia slide numbers in parentheses. MG1a, Scardia amurensis (JFL1701); MG1b, Scardia anatomella (MIC6059); MG2, Triaxomera parasitella (MIC5366); MG3, Nemapogon cloacella (MIC5376); MG4, Elatobia montelliella (MIC6791); MG5, Tinea svenssoni (MIC5577, inset = magnification of internal phallic structures; scale bar = 50µm).
FIGURES AD1–AD8. Adults. Sample IDs in parentheses. Scale bar = 2 mm unless otherwise indicated. AD1a, Scardia amurensis (06-BLLOC-1332); AD1b, Scardia anatomella (USNMENT00657747); AD2, Triaxomera parasitella (CNCLEP00067773); AD3, Nemapogon cloacella male (CNCLEP00069166); AD4a, Elatobia montelliella male (JD7366); AD4b, Elatobia montelliella female (JD7368); AD5, Tinea svenssoni (CNCLEP00027522); AD6, Caloptilia suberinella (USNMENT00657745); AD7, Parornix betulae (MM03970); AD8, Phyllonorycter maestingella (USNMENT00657746). in Shared but overlooked: 30 species of Holarctic Microlepidoptera revealed by DNA barcodes and morphology
FIGURES AD1–AD8. Adults. Sample IDs in parentheses. Scale bar = 2 mm unless otherwise indicated. AD1a, Scardia amurensis (06-BLLOC-1332); AD1b, Scardia anatomella (USNMENT00657747); AD2, Triaxomera parasitella (CNCLEP00067773); AD3, Nemapogon cloacella male (CNCLEP00069166); AD4a, Elatobia montelliella male (JD7366); AD4b, Elatobia montelliella female (JD7368); AD5, Tinea svenssoni (CNCLEP00027522); AD6, Caloptilia suberinella (USNMENT00657745); AD7, Parornix betulae (MM03970); AD8, Phyllonorycter maestingella (USNMENT00657746).
Figure 1. A in Taxonomy, biogeography and DNA barcodes of Geodia species (Porifera, Demospongiae, Tetractinellida) in the Atlantic boreo-arctic region
Figure 1. A, sponge ground on sand-bottom, Flemish Cap, 1581 m. HUD2010-029 campaign, dive 1339 of ROV ROPOS, 48°12.2′N, 43°56.7′W, each sponge is about 10–20 cm large; frame grab obtained with the software Topaz Moment (http://www.topazlabs.com/moment/) (Canadian DFO/ROPOS 2010). The G. barretti specimen R1339-10 was collected at this locality. B, Geodia barretti and gorgonians (Paragorgia arborea) on hard-bottom off Nova Scotia, HUD2007-025 campaign, 43°58′7″N, 59°0′46″W, c. 700 m depth. Scale: 10 cm. (Canadian DFO/ ROPOS 2007).
FIGURE 6 in DNA barcoding and integrative taxonomy of Macrobiotus hufelandi C.A.S. Schultze 1834, the first tardigrade species to be described, and some related species
FIGURE 6. Minimum spanning and parsimony network. Haplotypes are represented by circles with the area being proportional to their frequency of occurrence. Lines show single mutational events, while small filled circle denote missing/ideal haplotypes. Haplotypes encompassed in grey squares are supported by parsimony values> 95%. Haplotype acronyms as in Tables 2 and 3.
FIGURE 1 in DNA barcoding and integrative taxonomy of Macrobiotus hufelandi C.A.S. Schultze 1834, the first tardigrade species to be described, and some related species
FIGURE 1. Animal and egg morphology by LM of paragenophores and hologenophores from St. Ulrich (Germany). A–C: Macrobiotus hufelandi (Faure-Berlese fluid, phase contrast); D–F: Macrobiotus sandrae. A: Macroplacoids; B: egg shell (paragenophore); C: egg shell (hologenophore, HQ876584); D: placoids (Faure-Berlese fluid, phase contrast); E: egg shell reticulation in a hologenophore (HQ876582, Faure-Berlese fluid, phase contrast); F: egg shell distal dishes in the same hologenophore (Faure-Berlese, DIC). Scale = 10 µm.
FIGURE 4 in DNA barcoding and integrative taxonomy of Macrobiotus hufelandi C.A.S. Schultze 1834, the first tardigrade species to be described, and some related species
FIGURE 4. Chromosomes (orcein, LM) in specimens from St. Ulrich (Germany). A-C: Macrobiotus sandrae. D: Macrobiotus vladimiri. A: Spindle with bivalents in late metaphase (DIC); B: two oocytes in diplotene, with chiasmata (phase contrast); C: male metaphase I (arrow; phase contrast); D: univalents irregularly dispersed within the spindle (phase contrast). Scale = 10 µm.
FIGURE 3. Male genitalia. Scopula drenowskii Sterneck, 1941 in DNA barcoding confirms species rank for a cryptic geometrid species from Turkey and Bulgaria (Lepidoptera: Geometridae: Sterrhinae)
FIGURE 3. Male genitalia. Scopula drenowskii Sterneck, 1941: a, genitalia; b, aedeagus; c, cerata and mappa. Scopula decorata (Denis & Schiffermüller, 1775): d, genitalia; e, aedeagus; f, cerata and mappa. Figures not to scale.
FIGURE 4 in DNA barcoding confirms species rank for a cryptic geometrid species from Turkey and Bulgaria (Lepidoptera: Geometridae: Sterrhinae)
FIGURE 4. Scopula ornata species-group: UPGMA tree of 658 bp nucleotide sequences of COI5 gene. numbers near nodes refer to bootstrap values (100 replicates), presented only when higher than 50 percent. Number after species name refers to ID number in Barcode of Life Data Systems.
Figure 3 in Wolbachia endosymbionts distort DNA barcoding in the parasitoid wasp genus Diplazon (Hymenoptera: Ichneumonidae)
Figure 3. Intra- and interspecific uncorrected p distances for each species. The minimum interspecific distances are shown (i.e., those to the closest species included in our dataset; species identities are indicated above the respective boxplot). Grey bars indicate species that do not show any barcoding gap (i.e., for which intra- and interspecific distances overlap).
Figures 101, 102 in The bumblebees of the subgenus Subterraneobombus: integrating evidence from morphology and DNA barcodes (Hymenoptera, Apidae, Bombus)
Figures 101, 102. Photographs of Bombus mongolensis sp. nov. from the left lateral aspect with scale bars in mm: 101, worker (DB#1934, BOLD 1550B04-1934-MON), body length 15 mm; 102, holotype male (DB#0169, BOLD B3262-D05), body length 19 mm.
Figures 84–98 in The bumblebees of the subgenus Subterraneobombus: integrating evidence from morphology and DNA barcodes (Hymenoptera, Apidae, Bombus)
Figures 84–98. Simplified colour pattern diagrams for the dorsal pubescence of males (*most frequent pattern). Dark grey indicates black; light grey indicates yellow or brown; white indicates white or pale cream. Figure (DB#) country: 84 (0207) Mongolia; 85 (0193) UK; 86 (1816) UK; 87 (3062) UK; 88 (3065) UK; 89 (1838) Russia; 90 (1831) Russia; 91 (0226) Mongolia; 92 (3362) Sweden; 93 (3081) USA; 94 (0243) USA; 95 (0245) USA; 96 (0261) USA; 97 (0259) Canada; 98 (3373) USA.
Figures 14–17 in The bumblebees of the subgenus Subterraneobombus: integrating evidence from morphology and DNA barcodes (Hymenoptera, Apidae, Bombus)
Figures 14–17. Global distribution of material examined (grey spots) and successfully sequenced (black spots) for species of the subterraneus group. The inset scatter plots show activity by phenology (x-axis: day of the year, letters refer to months) and elevation (y-axis: metres).
Figure 100 in The bumblebees of the subgenus Subterraneobombus: integrating evidence from morphology and DNA barcodes (Hymenoptera, Apidae, Bombus)
Figure 100. Distribution of the principal colour patterns of Bombus melanurus. Grey spots show specimens without an obvious spot or band of black hair between the wing bases on the thoracic dorsum (Figs 23, 24, 65–68; melanurus s.s.); black spots show specimens with an obvious spot or band of black hair between the wing bases on the thoracic dorsum (Figs 25, 26, 69; tschitscherini).
Figures 104, 105 in The bumblebees of the subgenus Subterraneobombus: integrating evidence from morphology and DNA barcodes (Hymenoptera, Apidae, Bombus)
Figures 104, 105. Global distribution of (104) numbers of specimens examined and (105) numbers of species recognized for Subterraneobombus among equal-area grid cells (grey scale at right; from georeferenced specimens in the database). The grid is based on longitudinal intervals of 10°, which are used to calculate graduated latitudinal intervals to provide equal-area cells (each cell approximately represents 611 000 km2). The grey scale is used to group the counts (numbers on map) into six classes. The maximum count is shown in black, and otherwise counts are divided into five classes of approximately equal size by numbers of grid cells. Cylindrical equal-area projection, with north at the top of the map.
FIGURE 16 in A new species of Lasioseius (Acari: Blattisociidae) from Brazil with morphological and DNA barcode data
FIGURE 16. Maximum Likelihood analysis showing position of the Lasioseius foliatisetus n. sp. and its relationships with other Mesostigmata species based on sequences of the ITSS gene. Numbers above the branches indicate bootstrap values based on 1000 replications
FIGURE 1 in New record of Epermenia (Calotripis) sinjovi Gaedike (Lepidoptera: Epermeniidae) in China: DNA barcode, adult, immature stages, host plant and biology
FIGURE 1. Neighbor-joining tree estimated from DNA barcodes of E. sinjovi and available DNA barcodes of other species in Epermenia from BOLD, presented by using Kimura 2-Parameter model.
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.