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FIGURES 1–2 in Taxonomic revision of the monotypic genera of Siculodini (Lepidoptera, Thyridoidea, Thyrididae, Siculodinae)
FIGURES 1–2. Hepialodes and Iza species in dorsal (A and C) and ventral (B and D) views. 1. H. follicula, A–B: male from Brazil, Rio de Janeiro, Itatiaia (MZUSP); C–D: female from Brazil, Pará (NHMUK 010921585). 2. I. nubecula, A–B: male from Brazil, Bahia, Camacan (MWM); C–D: female from Brazil, Mato Grosso, Alto Paraguai (MWM 36.272). Scale bar 1cm.
FIGURE 8 in Taxonomic revision of the monotypic genera of Siculodini (Lepidoptera, Thyridoidea, Thyrididae, Siculodinae)
FIGURE 8. Male genitalia of Meskea dyspteraria from Costa Rica, Guanacaste (Santa Rosa National Park) (NHMUK 010921587) (valva and fultura inferior distorted due to preparation technique). A) ventral view. B) dorsal view of tegumen and uncus. C) lateral view of aedeagus. Scale bar 1mm.
FIGURES 3–4 in Taxonomic revision of the monotypic genera of Siculodini (Lepidoptera, Thyridoidea, Thyrididae, Siculodinae)
FIGURES 3–4. Loxiorhiza and Meskea species in dorsal (A and C) and ventral (B and D) views. 3. L. cervinalis, A–B: male from Bolivia, Santa Cruz, Buenavista (NHMUK 010921576); C–D: female from Brazil, Goiás, Leopoldo Bulhıes (NHMUK 010921560). 4. M. dyspteraria, A–B: male from USA, Texas, Hidalgo, Pharr (Bentsen-Rio Grande Valley State Park) (MGCL); C–D: female from El Salvador, San Salvador (ZSM). Scale bar 1cm.
FIGURE 7 in Taxonomic revision of the monotypic genera of Siculodini (Lepidoptera, Thyridoidea, Thyrididae, Siculodinae)
FIGURE 7. Male genitalia of Loxiorhiza cervinalis from Brazil, Mato Grosso do Sul, Miranda (Bodoquena mountain) (CEIOC 003). A) ventral view. B) lateral view. C) inner view of valva. D) dorsal view of tegumen and uncus. E) dorsal view of aedeagus. F) lateral view of aedeagus. Scale bar 1mm.
FIGURE 6 in Taxonomic revision of the monotypic genera of Siculodini (Lepidoptera, Thyridoidea, Thyrididae, Siculodinae)
FIGURE 6. Male genitalia of Iza nubecula from Brazil, Bahia, Camacan (Reserva Serra Bonita) (MVOB 145120). A) ventral view. B) lateral view. C) inner view of valva. D) dorsal view of tegumen and uncus. E) dorsal view of aedeagus. F) lateral view of aedeagus. G) ventral view of aedeagus. Scale bar 1mm.
FIGURES 13–14 in Taxonomic revision of the monotypic genera of Siculodini (Lepidoptera, Thyridoidea, Thyrididae, Siculodinae)
FIGURES 13–14. Signa of Hepialodes and Loxiorhiza species. 13. H. follicula from Brazil, Goiás, Campinaçu (Barra Mansa farm) (DZ 39.216). Scale bar 1mm. 14. L. cervinalis from Bolivia, Santa Cruz, Buenavista (NHMUK 010921618). Scale bar 0,5mm.
FIGURES 9–12 in Taxonomic revision of the monotypic genera of Siculodini (Lepidoptera, Thyridoidea, Thyrididae, Siculodinae)
FIGURES 9–12. Female genitalia of Hepialodes, Iza, Loxiorhiza and Meskea species in lateral view. 9. H. follicula from Brazil, Goiás, Campinaçu (Barra Mansa farm) (DZ 39.216). 10. I. nubecula from Brazil, S"o Paulo, Salesópolis (Boraceia) (DZ 39.288). 11. L. cervinalis from Bolivia, Santa Cruz, Buenavista (NHMUK 010921618). 12. M. dyspteraria from El Salvador, San Salvador (MSFR). Scale bar 1mm.
FIGURE 13 in Taxonomic revision of Australasian diving beetles in the genus Leiodytes Guignot 1936 (Coleoptera: Dytiscidae, Bidessini)
FIGURE 13. (A) Shallow and exposed pools on a forest clearing near Kali Bumi, Wanggar, Nabire, W New Guinea, habitat of L. migrator; (B) Rest pool, bottom with very thick layer of leaves (up to 70 cm), and margins with area of wet leaves that form small open water once stepped on, open savanna forest in Wasur, S New Guinea, habitat of L. migrator and L. wattsi sp. nov.
FIGURE 12 in Taxonomic revision of Australasian diving beetles in the genus Leiodytes Guignot 1936 (Coleoptera: Dytiscidae, Bidessini)
FIGURE 12. (A) Creek at Manton Dam, Northern Territory (NT 1), habitat of L. wattsi sp. nov. and L. migrator; (B) Queensland, Forest swamp near Cape Tribulation Road, south of Daintree ferry station (QLD 35), habitat of L. surianiae sp. nov., L. wattsi sp. nov. and L. migrator (B).
FIGURE 11 in Taxonomic revision of Australasian diving beetles in the genus Leiodytes Guignot 1936 (Coleoptera: Dytiscidae, Bidessini)
FIGURE 11. Habitat of L. migrator: (A) Northern Territory, Kakadu NP, Old Jim Jim Road, rest pool of Barramundi Creek (NT 19); (B) Queensland, Cardwell, sandy and exposed pool, without emergent vegetation near Ellerbeck Road (QLD 38).
FIGURE 10 in Taxonomic revision of Australasian diving beetles in the genus Leiodytes Guignot 1936 (Coleoptera: Dytiscidae, Bidessini)
FIGURE 10. Maximum likelihood tree for Australasian Leiodytes. Neighbour joining tree (p-distances) calculated with Geneious (11.0.4.) software. The stars mark those specimens distributed over two divergent clades of L. migrator, which, however, occur syntopically.
FIGURE 7 in Taxonomic revision of Australasian diving beetles in the genus Leiodytes Guignot 1936 (Coleoptera: Dytiscidae, Bidessini)
FIGURE 7. Leiodytes wattsi sp. nov.: Median lobe of aedeagus: (A) ventral view, (B) lateral view; right paramere (inner surface): (C) lateral view. (Scale bar = 0.15 mm)
FIGURE 5 in Taxonomic revision of Australasian diving beetles in the genus Leiodytes Guignot 1936 (Coleoptera: Dytiscidae, Bidessini)
FIGURE 5. Leiodytes migrator: Median lobe of aedeagus: (A) ventral view, (B) lateral view; right paramere (inner surface): (C) lateral view. (Scale bar = 0.15 mm)
FIGURE 6 in Taxonomic revision of Australasian diving beetles in the genus Leiodytes Guignot 1936 (Coleoptera: Dytiscidae, Bidessini)
FIGURE 6. Leiodytes surianiae sp. nov.: Median lobe of aedeagus: (A) ventral view, (B) lateral view; right paramere (inner surface): (C) lateral view. (Scale bar = 0.15 mm)
FIGURE 1 in Taxonomic revision of Australasian diving beetles in the genus Leiodytes Guignot 1936 (Coleoptera: Dytiscidae, Bidessini)
FIGURE 1. Body outline and colour pattern of: (A) L. migrator from North Queensland, near Cardwell; (B) L. migrator from Ubirr Rock, Kakadu NP, Northern Territory; (C) L. surianiae sp. nov.; (D) L. wattsi sp. nov. (Scale bar = 1 mm)
FIGURE 2 in Taxonomic revision of Australasian diving beetles in the genus Leiodytes Guignot 1936 (Coleoptera: Dytiscidae, Bidessini)
FIGURE 2. Ventral surface of: (A) L. migrator; (B) L. surianiae sp. nov.; (C) L. wattsi sp. nov. (Scale bar = 1 mm)
FIGURE 3 in Taxonomic revision of Australasian diving beetles in the genus Leiodytes Guignot 1936 (Coleoptera: Dytiscidae, Bidessini)
FIGURE 3. Dorsal surface of head of: (A) L. migrator; (B) L. surianiae sp. nov.; (C) L. wattsi sp. nov. (Scale bar = 0.5 mm)
FIGURE 4 in Taxonomic revision of Australasian diving beetles in the genus Leiodytes Guignot 1936 (Coleoptera: Dytiscidae, Bidessini)
FIGURE 4. Morphological details of: L. migrator (A–C): (A) Head, pronotum and basal part of elytra with striae und punctation; (B) Prosternal process; (C) Metacoxae and metacoxal lines with metacoxal processes. L. wattsi sp. nov. (D): Metacoxae with numerous quite strong punctures, and metacoxal lines with metacoxal processes. Clypeodytes larsoni (E): Epipleuron anteriorly with a basal cavity posteriorly limited by a transverse carina (yellow arrows). L. migrator (F): Epipleuron anteriorly lacking a basal cavity posteriorly limited by a transverse carina (yellow arrows).
Data from: Morphometric analysis and taxonomic revision of Anisopteromalus Ruschka (Hymenoptera: Chalcidoidea: Pteromalidae) – an integrative approach
We use an integrative taxonomic approach to revise the genus Anisopteromalus. In particular, we apply multivariate ratio analysis (MRA), a rather new statistical method based on principal component analysis (PCA) and linear discriminant analysis (LDA), to numerous body measurements and combine the data with those from our molecular analysis of Cytb and ITS2 genetic markers (on a subset of species) and all available published data on morphology, karyology, behavior, host associations, and geographic distribution. We demonstrate that the analysis of quantitative characters using MRA plays a major role for the integration of name-bearing types and thus for the association of taxa with names. Six species are recognized, of which two are new: A. cornis Baur sp. n. and A. quinarius Gokhman & Baur sp. n. For Anisopteromalus calandrae (Howard), a well-known, cosmopolitan parasitoid of stored-product pests, we have selected a neotype to foster continuity and stability in the application of this important name. The species was sometimes confused with the related A. quinarius sp. n., another cosmopolitan species that is frequently encountered in similar environments. We also show that several species originally described or later put under Anisopteromalus actually belong to different genera: Cyrtoptyx camerunus (Risbec) comb. n.; Meraporus glaber (Szelényi) comb. n.; Dinarmus schwenkei (Roomi, Khan & Khan) comb. n. Neocatolaccus indicus Ayyar & Mani is confirmed as a junior synonym of Oxysychus sphenopterae (Ferrière) syn. n. and Anisopteromalus calandrae brasiliensis (Domenichini) stat. rev. must be considered as a valid but doubtful taxon.
Data from: Taxonomic revision of Dasyphyllum sect. Macrocephala (Asteraceae: Barnadesioideae)
Dasyphyllum sect. Macrocephala is restricted to the Cerrado, Caatinga, and Atlantic Forest biomes of Brazil, spreading into similar areas in Bolivia and Paraguay. The six recognized species in this section are monoecious shrubs with erect or decumbent branches, single or paired, rarely fasciculate, straight or curved axillary spines, leaves with apiculate or aristate apices, 5–7 basally or suprabasally acrodromous veins, sessile capitula, usually solitary or in groups of two to four, a campanulate or infundibuliform involucre generally longer than 20 mm, and with hermaphroditic florets usually with liguliform corollas and externally sericeous lobes. An identification key, descriptions, comments regarding morphology and taxonomy, maps showing geographical distribution, and illustrations are presented, together with 17 new synonyms and 18 typifications.
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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.