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FIGURE 11 in Unravelling cryptic species diversity in eastern Nearctic paper wasps, Polistes (Fuscopolistes), using male genitalia, morphometrics and DNA barcoding, with descriptions of two new species (Hymenoptera: Vespidae)
FIGURE 11. Neighbour-joining tree of Polistes COI sequence data. Bootstrap support values are indicated for major nodes. The tree was re-rooted on the outgroup taxon P. dominula. The number of identical sequences (if greater than 1) and geographic origin by state/province are given in parentheses behind the GenBank accession number.
FIGURE 12 in Unravelling cryptic species diversity in eastern Nearctic paper wasps, Polistes (Fuscopolistes), using male genitalia, morphometrics and DNA barcoding, with descriptions of two new species (Hymenoptera: Vespidae)
FIGURE 12. Cladistic analysis of Polistes COI sequence data: support tree. GC values are indicated for major nodes. The strict consensus tree is identical to the support tree except for the node marked * which is unresolved in the former. The number of identical sequences (if greater than 1) and geographic origin by state/province are given in parentheses behind the GenBank accession number.
FIGURES 30–34 in Unravelling cryptic species diversity in eastern Nearctic paper wasps, Polistes (Fuscopolistes), using male genitalia, morphometrics and DNA barcoding, with descriptions of two new species (Hymenoptera: Vespidae)
FIGURES 30–34. Anteroventral lobe of digitus, outer surface (30, 33, 34), and inner surface (31, 32): 30, 31. Polistes hirsuticornis sp. nov. (MD, Anne Arundel Co.), 32. P. bellicosus (MD, Worcester Co.), 33. ditto (MD, Anne Arundel Co.), 34. P. parametricus sp. nov. (MD, Prince George's Co.).
FIGURES 22–29 in Unravelling cryptic species diversity in eastern Nearctic paper wasps, Polistes (Fuscopolistes), using male genitalia, morphometrics and DNA barcoding, with descriptions of two new species (Hymenoptera: Vespidae)
FIGURES 22–29. Digitus, outer surface: 22. Polistes bellicosus (MD, Anne Arundel Co.), 23. P. carolina (TX, Bastrop Co.), 24. P. dorsalis (MD, Anne Arundel Co.), 25. P. f u s c a t u s (ON, Wellington Co.), 26. P. metricus (MD, Anne Arundel Co.), 27. P. rubiginosus (TX, Bastrop Co.), 28. P. hirsuticornis sp. nov. (MD, Anne Arundel Co.), 29. P. parametricus sp. nov. (MD, Prince George's Co.). ap: apical process; avl: anteroventral lobe; ba: basal articulation; sb: scale-like bristles.
FIGURES 3–4 in Unravelling cryptic species diversity in eastern Nearctic paper wasps, Polistes (Fuscopolistes), using male genitalia, morphometrics and DNA barcoding, with descriptions of two new species (Hymenoptera: Vespidae)
FIGURES 3–4. Male of Polistes parametricus sp. nov.; Duncannon, Pennsylvania, September 12, 2011 (Photos: Scott Nacko).
FIGURES 5–7 in Unravelling cryptic species diversity in eastern Nearctic paper wasps, Polistes (Fuscopolistes), using male genitalia, morphometrics and DNA barcoding, with descriptions of two new species (Hymenoptera: Vespidae)
FIGURES 5–7. Phenology of Polistes species: 5. P. hirsuticornis sp. nov., 6. P. parametricus sp. nov., 7. P. fuscatus. Data for P. hirsuticornis and P. parametricus based on all available material (see material examined under both species). Data for P. fuscatus based on random sample of specimens collected by E. Eaton in Cincinnati, Ohio, over several years.
FIGURE 1 in Unravelling cryptic species diversity in eastern Nearctic paper wasps, Polistes (Fuscopolistes), using male genitalia, morphometrics and DNA barcoding, with descriptions of two new species (Hymenoptera: Vespidae)
FIGURE 1. Locality records for Polistes hirsuticornis sp. nov. (triangles) and P. parametricus sp. nov. (circles).
FIGURE 2 in Unravelling cryptic species diversity in eastern Nearctic paper wasps, Polistes (Fuscopolistes), using male genitalia, morphometrics and DNA barcoding, with descriptions of two new species (Hymenoptera: Vespidae)
FIGURE 2. Female of Polistes parametricus sp. nov. on goldenrod; Smithburg, Doddridge Co., West Virginia, October 4, 2006 (Photo: Donna Race).
FIGURES 1–3 in Redescription of Leptus kattikus Haitlinger, 2009 (Actinotrichida, Parasitengona, Erythraeidae) and molecular identification of its host from DNA barcoding
FIGURES 1–3. Leptus kattikus: 1. Chelicera; 2. Details of palp tibia and palp tarsus; 3. Details of scutum.
FIGURES 9–11. Leptus kattikus. 9. Leg I in Redescription of Leptus kattikus Haitlinger, 2009 (Actinotrichida, Parasitengona, Erythraeidae) and molecular identification of its host from DNA barcoding
FIGURES 9–11. Leptus kattikus. 9. Leg I (trochanter–tarsus); 10. Leg II (trochanter–tarsus); 11. Leg III (trochanter–tarsus).
FIGURES 5A–5B. Cochylis notulana Zeller, 1847 lectotype male genitalia. Fig. 5A in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURES 5A–5B. Cochylis notulana Zeller, 1847 lectotype male genitalia. Fig. 5A: male genitalia (phallus removed). Fig. 5B: Phallus.
FIGURE 9 in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURE 9. Neighbor-Joining tree (Kimura 2 Parameter model) of Phalonidia and Gynnidomorpha COI (DNA barcode) sequences. The scale bar indicates 1% sequence difference.
FIGURES 6A–6B in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURES 6A–6B. Cochylis udana Guenée, 1845 lectotype male genitalia. Fig. 6A: male genitalia (phallus removed). Fig. 6B: Phallus.
FIGURES 1A–1F. Adult specimens. Fig. 1A in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURES 1A–1F. Adult specimens. Fig. 1A: Phalonidia udana male (Finland). Fig. 1B: Phalonidia udana male (Finland), Fig. 1C: P. m a n n i a n a male (Finland), Fig. 1D: P. m a n n i a n a male (Austria), Fig. 1E: P. m a n n i a n a male (Germany), Fig. 1F: P. manniana male (Germany).
FIGURES 8A–8C in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURES 8A–8C. Holotype of Phalonidia tolli Razowski, 1960. Fig. 8A: adult male. Fig. 8B: male genitalia (phallus removed). Fig. 8C: Phallus.
FIGURES 3A-3C. Female genitalia. Fig. 3A, 3B in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURES 3A-3C. Female genitalia. Fig. 3A, 3B: Phalonidia udana. Fig. 3C: P. manniana. 3A, genitalia slide NHMO 2065; 3B, genitalia slide NHMO 2066; 3C, genitalia slide LAA 2011.015.
FIGURE 10 in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURE 10. Maximum Likelihood phylogenetic tree of Cochylini, based on COI sequences. The tree is rooted to Tortrix viridana (Tortricidae, Tortricini). Node bootstrap support values are indicated by the nodes.
FIGURE 7 in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURE 7. Comparison of valvae of Phalonidia manniana and P. udana with C. notulana lectotype, C. udana lectotype and P. tolli holotype included.
FIGURES 2A-2G. Male genitalia. Fig. 2A–2D in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURES 2A-2G. Male genitalia. Fig. 2A–2D: Phalonidia udana. Fig. 2E–2H: P. m a n n i a n a. 2A–2B, genitalia slide NHMO 2063; 2C–2D, genitalia slide NHMO 2068; 2E–2F, genitalia slide NISK 20003; 2G–2H, genitalia slide NHMO 2064. 2B, 2D, 2F, 2H show the phallus of the preparations.
FIGURE 1 in Epinotia cinereana (Haworth, 1811) bona sp., a Holarctic tortricid distinct from E. nisella (Clerck, 1759) (Lepidoptera: Tortricidae: Eucosmini) as evidenced by DNA barcodes, morphology and life history
FIGURE 1. Neighbor-joining tree (implemented under K2P model) of 61 barcoded specimens of E. cinereana and 45 barcoded specimens of E. nisella. The height of the terminal triangles is proportional to the number of individuals, the depth of the triangles to variation within the lineage. The scale bar indicates 1% change in nucleotide composition.
ScienceDex guides
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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.