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FIGURE 15. A–E in Taxonomic updates on Pachyserica Brenske, 1898 and Serica MacLeay, 1819 reveal 38 new species and new challenges of Sericini systematics regarding DNA barcodes and genus-level diagnostic key characters (Coleoptera: Scarabaeidae: Sericinae)
FIGURE 15. A–E: Pachyerica yaonani new species (holotype); F–J: P. sunfengyii new species (holotype); A, H: aedeagus, left side lateral view; C, J: aedeagus, right side lateral view; B, I: parameres, dorsal view; D, F: habitus, dorsal view; E, G: habitus, lateral view. Scale bar: 0.5 mm. Habitus images not to scale.
FIGURE 6. A–F in Taxonomic updates on Pachyserica Brenske, 1898 and Serica MacLeay, 1819 reveal 38 new species and new challenges of Sericini systematics regarding DNA barcodes and genus-level diagnostic key characters (Coleoptera: Scarabaeidae: Sericinae)
FIGURE 6. A–F: Serica xizang new species (holotype); G–L: S. jiangda new species (holotype); A, I: aedeagus, left side lateral view; D, L: aedeagus, right side lateral view; C, K: parameres, dorsal view; B, J: aedeagus, dorsal view; E, G: habitus, dorsal view; F, H: habitus, lateral view. Scale bar: 0.5 mm. Habitus images not to scale.
FIGURE 1. A–E in Taxonomic updates on Pachyserica Brenske, 1898 and Serica MacLeay, 1819 reveal 38 new species and new challenges of Sericini systematics regarding DNA barcodes and genus-level diagnostic key characters (Coleoptera: Scarabaeidae: Sericinae)
FIGURE 1. A–E: Serica gwangjuensis new species (holotype); F–J: S. assingi new species (holotype); A, H: aedeagus, left side lateral view; C, J: aedeagus, right side lateral view; B, I: parameres, dorsal view; D, F: habitus, dorsal view; E, G: habitus, lateral view. Scale bar: 0.5 mm. Habitus images not to scale.
FIGURE 7 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 7. Left lateral view of head (left) and ventral view of genae showing spines (right): (a) Heliocypha biseriata, (b) Aristocypha fenestrella, (c) Sundacypha petiolata, (d) Libellago hyalina. Scale bars left side, 1 mm; right side 1.5 mm.
FIGURE 4 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 4. Habitus of (a) Heliocypha biseriata, (b) Aristocypha fenestrella, (c) Sundacypha petiolata, (d) Libellago hyalina. Markings shown only on legs and antennae. Scale bar 5 mm.
FIGURE 9 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 9. Prementum in dorsal view: (a) Heliocypha biseriata, (b) Aristocypha fenestrella, (c) Sundacypha petiolata, (d) Libellago hyalina, (e) Libellago lineata. Scale bars 1 mm.
FIGURE 6 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 6. (a) Frontal view of labrum of Heliocypha biseriata; (b, c) detail of scape showing short recurved and longer, mainly straighter setae on H. biseriata and Aristocypha fenestrella respectively; (d) Fore-tarsus in H. biseriata and (e) detail of pectinate setae on ventral side of same. Scale bars as indicated.
FIGURE 16 in Taxonomy and DNA barcoding of the dark-winged fungus gnat genus Zygoneura Meigen (Diptera: Sciaridae) from China, with revision of the type materials
FIGURE 16. Zygoneura (Zygoneura) sciarina Meigen. A: head, frontal view; B: fourth antennal flagellomere; C: apex of foretibia, prolateral view; D: hypopygium, ventral view; E: wing, dorsal view.
FIGURE 5 in Taxonomy and DNA barcoding of the dark-winged fungus gnat genus Zygoneura Meigen (Diptera: Sciaridae) from China, with revision of the type materials
FIGURE 5. Zygoneura (Pharetratula) disparilis Zhang & Wu. i: slide, front side; ii: slide, flip side; A: habitus, lateral view; B: hypopygium, ventral view; C: fourth antennal flagellomere.
FIGURES 73–77 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 73–77. Immature stages of South African Gracillariidae. 73, Amblyptila cynanchi, mines on Cynanchum obtusifolium (Asclepiadaceae), Western Cape, S. Mecenero leg. 74, Telamoptilia cordati sp. nov., mine on Syzygium cordatum (Myrtaceae), Limpopo Hoedspruit, A. & I. Sharp leg. 75, Leucocercops dasmophora, mine on Parinari capensis, (Chrysobalanaceae), Gauteng, Tshwane, A. Sharp leg. 76, Telamoptilia cordati sp. nov., larva on Syzygium cordatum (Myrtaceae), Limpopo Hoedspruit, A. & I. Sharp leg. 77, Leucocercops curatellifoliae sp. nov., larva on Parinari curatellifolia, Limpopo, Hoedspruit, A. & I. Sharp leg.
FIGURES 89–93 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 89–93. Habitats of Afrotropical Gracillariidae species. 89, Casketts farm, Limpopo, in spring. 90, Ian Sharp collecting leaf mines of the new species Phyllocnistis allisonae on Protea rubropilosa leaves at Mariepskop in the northern Drakensberg mountain range. 91, Casketts farm, Limpopo, in summer. 92, Mariepskop, type locality of Phyllocnistis allisonae. 93, Tshwane, the collecting area is situated in the Northern part of the Gauteng province at an altitude of about 1200 m.
FIGURES 52–55 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 52–55. Male genitalia of South African Gracillariidae. 52-54, Phyllocnistis magalismontani sp. nov., holotype: 52, phallus (175 μm) (ae: aedeagus; an; anellus; be: bulbus ejaculatorius; de: ductus ejaculatorius; ma: manica; pb: phallobase; ve: vesica); 53, ventral view (175 μm); 54, segments VII and VIII in ventral view (190 μm); 55, Telamoptilia sp.: ventral view, phallus not visible, scale not available.
FIGURES 47–51 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 47–51. Male genitalia of South African Gracillariidae. 47-49, Telamoptilia cordati sp. nov., holotype (120 μm): 47, ventral view; 48, segment VIII in ventral view; 49, phallus with bulbus ejaculatorius. 50-51, Cameraria melhaniella sp. nov., holotype (190 μm): 50, phallus (ae: aedeagus; an; anellus; be: bulbus ejaculatorius; de: ductus ejaculatorius; ma: manica; pb: phallobase); 51, ventral view.
FIGURES 35–39 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 35–39. Male genitalia of South African Gracillariidae. 35-37, Ectropina spirostachydis sp. nov., holotype: 35, ventral view (240 μm); 36, tergum VIII detail (140 μm); 37, phallus (120 μm). 38, Cryptolectica capnodecta: ventral view (240 μm). 39, Conopobathra gravissima: valva detail (280 μm).
FIGURES 40–43 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 40–43. Male genitalia of South African Gracillariidae. 40, Amblyptila cynanchi: valva detail. 41-43, Leucocercops curatellifoliae sp. nov., holotype: 41, ventral view, anellus in situ; 42, segment VIII in ventral view; 43, phallus (ae: aedeagus; pb: phallobase; be: bulbus ejaculatorius; an: anellus). (All scale bars 190 μm).
FIGURES 19–24 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 19–24. Adults of South African Gracillariidae. 19, Leucocercops curatellifoliae, Limpopo, Hoedspruit, A. & I. Sharp leg. 20, Telamoptilia cordati, Limpopo, Hoedspruit, A. & I. Sharp leg. 21, Cameraria melhaniella sp. nov., Limpopo, Hoedspruit, A. & I. Sharp leg. 22, Phyllonorycter grewiella, Limpopo, Hoedspruit, A. & I. Sharp leg. 23, P. pseudogrewiella sp. nov., Limpopo, Hoedspruit, A. & I. Sharp leg. 24, Acrocercops loxias, Rajputana, Jodhpur (India), syntype.
FIGURE 5 in DNA barcodes: Evaluating the potential of COI to diffentiate closely related species of Elachista (Lepidoptera: Gelechioidea: Elachistidae) from Australia
FIGURE 5. External appearance of the taxa of the Elachista zigzagger complex. A: A1 male; B: A1 female; C: A2 male; D: A2 female; E: A3 male; F: A3 female; G: A4 male; H: A4 female; I: A5 male; J: A5 female; K: A6 male; L: A6 female; M: B1 male; N: B1 female; O: B2 male; P: B2 female; Q: B3 male; R: B3 female.
FIGURE 5. A in Are Bryodrilus parvus Nurminen, 1970 and Bryodrilus librus (Nielsen and Christensen, 1959) (Annelida: Enchytraeidae) really different species? A revision based on DNA barcodes and morphological data
FIGURE 5. A. Spermathecae (marked with black arrows) connecting with oesophagus in V/VI (phg. = pharyngeal glands). In vivo. Kapp Heuglin, Svalbard. B. Spermathecae (marked with black arrows) connecting with oesophagus. Unstained, on slide. Kapp Heuglin, Svalbard. C. Spermatheca (marked with black arrow) in free position, white arrows = oesophageal appendages. In vivo. Mezőföld, Hungary. D. Free spermathecae (marked with black arrows) with longer ectal duct in V (phg. = pharyngeal glands). Stained, on slide. Mezőföld, Hungary. E. Reduced form of a free spermathecae with shorter ectal ducts (marked with white arrows, phg. = pharyngeal glands). Stained, on slide. Kiskunság, Hungary.
FIGURE 3. A in Are Bryodrilus parvus Nurminen, 1970 and Bryodrilus librus (Nielsen and Christensen, 1959) (Annelida: Enchytraeidae) really different species? A revision based on DNA barcodes and morphological data
FIGURE 3. A. Brain. Stained, on slide. Mezőföld, Hungary. B. "Pars tumida" in XVIII–XIX (marked with black arrows). Stained, on slide. Bank Island, Canada. C. Segments III–VI (phg = pharyngeal glands, black arrows = oesophageal appendages in VI). In vivo. Russebukta, Svalbard. D. Segments VII–IX (i = intestine, black arrow shows the sudden widening in IX, white arrows = nephridia). In vivo. Mezőföld, Hungary.
FIGURE 1 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 1. Localities of the specimens examined in this study. Sites 1–18: Plestiodon finitimus; 19–24 and 39: P. latiscutatus; 25–38: P. japonicus; R1 and R2: Russian Far East specimens. The lines (a) and (b) represent boundaries between the geographic ranges of P. finitimus and P. japonicus, and P. finitimus and P. latiscutatus, respectively.
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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.