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2,477 results for “type species”
Figs 38–40. 38 in Calidolipeurus, new genus for Lipeurus megalops Piaget, 1880 (Phthiraptera: Ischnocera: Oxylipeurus-complex), with a redescription of the type species and a preliminary key to the Oxylipeurus-complex
Figs 38–40. 38. Outline of male head of Valimia polytrapezius (Burmeister, 1838), with post-antennal ventral carina and densely reticulated area marked with grey dots; other characters omitted. 39. Outline of ventral view of female terminalia of "Oxylipeurus polytrapezius" (Burmeister, 1838). Setae not illustrated. (38–39 redrawn from Gustafsson & Zou 2020b) 40. Outline of ventral view of female terminalia of Cataphractomimus impervius Gustafsson et al., 2020, redrawn and simplified from the original description. Antennae not included in any illustration. Abbreviations used: LAVP = lateral accessory vulval plates; SGP = subgenital plate; SMC = secondary marginal carina. Illustrations are not to scale.
Mating-type locus rearrangements and shifts in thallism states in Citrus-associated Phyllosticta species
<p>Files related to the manuscript published in to Fungal Genetics and Biology (<a href="https://doi.org/10.1016/j.fgb.2020.103444">https://doi.org/10.1016/j.fgb.2020.103444</a>), with preprint available in bioRxiv (https://doi.org/10.1101/2020.04.14.040725).</p> <p>Contains:</p> <p>- 03 genome assemblies: Phyllosticta capitalensis LGMF01, Phyllosticta citribraziliensis LGMF08 and Phyllosticta citricarpa LGMF06;</p> <p>- 14 protein-coding gene annotation based in 14 Phyllosticta genomes;</p> <p>- Mating-type locus annotation from the 14 Phyllosticta strains in GBK format, and related FASTA sequences;</p>
Figs 20-27 in On the Aleochara subgenera Ceranota and Xenochara. IV. A revision of types, a new species, and additional records (Coleoptera: Staphylinidae: Aleocharinae)
Figs 20-27: Aleochara citellorum (20) and A. jacobsoni (21-27): (20) posterior portion of tergite VIII; (21) forebody; (22) posterior portion of male abdomen; (23) median lobe of aedeagus in lateral view; (24) apical portion of median lobe in lateral view; (25) paramere; (26) female sternite VIII; (27) spermatheca. Scale bars: 21-22: 1.0 mm; 23, 25-26: 0.5 mm; 20, 24, 27: 0.1 mm.
Map 3 in On the Aleochara subgenera Ceranota and Xenochara. IV. A revision of types, a new species, and additional records (Coleoptera: Staphylinidae: Aleocharinae)
Map 3: Distributions of Aleochara caucasica (black circles) and A. claviculata (white circles), based on revised records.
Map 1 in On the Aleochara subgenera Ceranota and Xenochara. IV. A revision of types, a new species, and additional records (Coleoptera: Staphylinidae: Aleocharinae)
Map 1: Distribution of Aleochara erythroptera in the West Palaearctic region, based on revised records.
Figure 10 in Two new species of Bonnetina tarantulas (Theraphosidae: Theraphosinae) from Mexico: contributions to morphological nomenclature and molecular characterization of types
Figure 10. Bonnetina juxtantricola sp. n. Male holotype, left pedipalpal bulb, stereomicroscope images. (A) Prolateral view; (B) retrolateral view; (C); dorsal view; (D) ventral view Scale line: 1 mm.
Figure 9 in Two new species of Bonnetina tarantulas (Theraphosidae: Theraphosinae) from Mexico: contributions to morphological nomenclature and molecular characterization of types
Figure 9. Bonnetina juxtantricola sp. n. Male holotype. (A) Carapace; (B) posterior margin of carapace, showing thick erect setae; (C) ocular area, lateral view; (D) ocular area, dorsal view; (E) sternum; (F) labium and maxillae. Scale lines: 1 mm.
Figure 8 in Two new species of Bonnetina tarantulas (Theraphosidae: Theraphosinae) from Mexico: contributions to morphological nomenclature and molecular characterization of types
Figure 8. Bonnetina tenuiverpis sp. n. (A) Type locality (near Zuluapan, State of Mexico, Mexico); (B) landscape surrounding type locality. Photos by Carlos E. Santibáñez.
Figure 13 in Two new species of Bonnetina tarantulas (Theraphosidae: Theraphosinae) from Mexico: contributions to morphological nomenclature and molecular characterization of types
Figure 13. Bonnetina juxtantricola sp. n. Female allotype. (A) Carapace; (B) posterior margin of carapace, showing thick erect setae; (C) ocular area, dorsal view; (D) sternum; (E) labium and maxillae; (F) spermatheca, dorsal view; (G) spermatheca, ventral view. Scale lines: 1 mm.
Figure 5 in Two new species of Bonnetina tarantulas (Theraphosidae: Theraphosinae) from Mexico: contributions to morphological nomenclature and molecular characterization of types
Figure 5. Bonnetina tenuiverpis sp. n. Male holotype. (A) Left tibia–metatarsus I joint, ventral view, showing prolateral (left) and retrolateral (right) apophyses; (B) left tibia–metatarsus I joint, retrolateral view, showing retrolateral (left) and accessory (front) apophyses and nodule of granules; (C) left metatarsus I, prolateral view. Arrow indicates nodule of granules. Scale lines: 0.5 mm.
Figure 4 in Two new species of Bonnetina tarantulas (Theraphosidae: Theraphosinae) from Mexico: contributions to morphological nomenclature and molecular characterization of types
Figure 4. Bonnetina tenuiverpis sp. n. Male holotype, left pedipalpal bulb, SEM images. (A) Embolus apical half, prolateral view; (B) embolus apex, ventral–frontal view; (C) apex, prolateral view; (D) apex, frontal view. Arrow colours represent keels: prolateral superior (black), sperm pore (white), dorsal (grey) and prolateral inferior (hatched). Chevron: sperm pore. Scale lines: 10 µm (except A: 100 µm).
Figure 12 in Two new species of Bonnetina tarantulas (Theraphosidae: Theraphosinae) from Mexico: contributions to morphological nomenclature and molecular characterization of types
Figure 12. Bonnetina juxtantricola sp. n. Male holotype. (A) Left tibia–metatarsus I joint, ventral view, showing prolateral (left) and retrolateral (right) apophyses; (B) left tibia–metatarsus I joint, retrolateral view, showing retrolateral (left) and accessory (front) apophyses and nodule of granules; (C) left metatarsus I, prolateral view. White arrows: nodule of granules; grey arrows: basal metatarsi I rounded structures. Scale lines: 1 mm.
Figure 11 in Two new species of Bonnetina tarantulas (Theraphosidae: Theraphosinae) from Mexico: contributions to morphological nomenclature and molecular characterization of types
Figure 11. Bonnetina juxtantricola sp. n. Male holotype, right pedipalpal bulb, SEM images. (A) Embolus, prolateral view; (B) sperm pore; (C) embolus, ventral–retrolateral view; (D) apex, frontal view. Arrow colours represent keels: prolateral superior (black), sperm pore (white), prolateral sub-apical (grey) and prolateral inferior (hatched). Chevron: sperm pore.
Figure 7 in Two new species of Bonnetina tarantulas (Theraphosidae: Theraphosinae) from Mexico: contributions to morphological nomenclature and molecular characterization of types
Figure 7. Bonnetina tenuiverpis sp. n. Spermathecae. (A) Female allotype, dorsal view; (B) female allotype, ventral view; (C) female paratype AMNH, dorsal view; (D) female paratype CNAN-T0757, dorsal view. Scale lines: 1 mm.
Figure 6 in Two new species of Bonnetina tarantulas (Theraphosidae: Theraphosinae) from Mexico: contributions to morphological nomenclature and molecular characterization of types
Figure 6. Bonnetina tenuiverpis sp. n. Female allotype. (A) Carapace; (B) posterior margin of carapace, showing thin setae; (C) ocular area, dorsal view; (D) sternum; (E) labium and maxillae; (F) ventral view of metatarsus and tarsus of left leg III. Scale lines: 1 mm.
Figure 1 in Two new species of Bonnetina tarantulas (Theraphosidae: Theraphosinae) from Mexico: contributions to morphological nomenclature and molecular characterization of types
Figure 1. Bonnetina tenuiverpis sp. n. Habitus. (A) Male holotype; (B) female allotype. Scale line: 10 mm. Photos by David Ortiz.
Figure 1 from: Albano PG, Schnedl S-M, Eschner A (2020) An illustrated catalogue of Rudolf Sturany's type specimens in the Naturhistorisches Museum Wien, Austria (NHMW): more Red Sea species. Zoosystematics and Evolution 96(2): 571-576. https://doi.org/10.3897/zse.96.54707
Figure 1 Drillia levanderi Sturany, 1905, Massaua, Eritrea. A, C. Original figures in Sturany, 1905; B, D, E. Holotype NHMW-Mollusca 39903: front (B), side (D), apex detail (E); F. Original label. Scale bars: B, D: 3 mm, E: 0.5 mm.
Figure 9 from: Spiridonov VA, Simakova UV, Anosov SE, Zalota AK, Timofeev VA (2020) Review of Macropodia in the Black Sea supported by molecular barcoding data; with the redescription of the type material, observations on ecology and epibiosis of Macropodia czernjawskii (Brandt, 1880) and notes on other Atlanto-Mediterranean species of Macropodia Leach, 1814 (Crustacea, Decapoda, Inachidae). Zoosystematics and Evolution 96(2): 609-635. https://doi.org/10.3897/zse.96.48342
Figure 9 Morphometric relationships and fecundity characteristics of Macropodia czernjawskii. a. Relationships between carapace width (CW) and the geometric mean of chela length, height and thickness (ChGM). b. Relationships between CW and decimal logarithm of the number of developing eggs (I or II stage of development) on pleopods (F). For statistical data see Table 2.
Figure 7 from: Spiridonov VA, Simakova UV, Anosov SE, Zalota AK, Timofeev VA (2020) Review of Macropodia in the Black Sea supported by molecular barcoding data; with the redescription of the type material, observations on ecology and epibiosis of Macropodia czernjawskii (Brandt, 1880) and notes on other Atlanto-Mediterranean species of Macropodia Leach, 1814 (Crustacea, Decapoda, Inachidae). Zoosystematics and Evolution 96(2): 609-635. https://doi.org/10.3897/zse.96.48342
Figure 7 Macropodia czernjawskii. a. Right chela, male, CW 11.0 (ZMMU Ma 3547); b. Right chela, male. CW 6.0 mm (ZMMU Ma 3544) c. Malformed right chela, male, CW 8.0 mm (ZMMU Ma 3543); d, e. Same specimen as c. dactylus and propodus of P 5. Scale bars: 1 mm (a–c, e), 0.5 mm (d).
Figure 6 from: Spiridonov VA, Simakova UV, Anosov SE, Zalota AK, Timofeev VA (2020) Review of Macropodia in the Black Sea supported by molecular barcoding data; with the redescription of the type material, observations on ecology and epibiosis of Macropodia czernjawskii (Brandt, 1880) and notes on other Atlanto-Mediterranean species of Macropodia Leach, 1814 (Crustacea, Decapoda, Inachidae). Zoosystematics and Evolution 96(2): 609-635. https://doi.org/10.3897/zse.96.48342
Figure 6 Macropodia czernjawskii. a. Anterior part of the body with basal antennal segment (ZMMU Ma 3543); b. Anterior part of the body with basal antennal segments, male (ZMMU Ma 3547). c. Male pleon (ZMMU Ma 3547); d. Female sterno-pleonal cavity with exposed genital segment (ZMMU Ma 3538). Scale bar: 1 mm.
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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.