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Figure 3. A in Identity of the ailanthus webworm moth (Lepidoptera, Yponomeutidae), a complex of two species: evidence from DNA barcoding, morphology and ecology
Figure 3. A The original figure of Atteva punctella from Plate 372 in Stoll (1781). Th e illustration is 25 mm wide in the work B Phalaena Tinea punctella Stoll (= A. pustulella Fabricius), specimen USNCN- CLEP00056027 (USNM) C Atteva hysginiella, specimen CNCLEP00060122 (CNC) D A. zebra, specimen CNCLEP00056033 (USNM).
Figure 4. A in Identity of the ailanthus webworm moth (Lepidoptera, Yponomeutidae), a complex of two species: evidence from DNA barcoding, morphology and ecology
Figure 4. A Holotype of A. edithella, specimen USNMENT00656111 (USNM) B Holotype of A. exquisita from Coahuila, Mexico, specimen USNMENT00656112 (USNM) C Holotype of A. ergatica, specimen CNCLEP00060676 (BMNH); due to markedly drooped wings, two half-photos were joined to show both sides D Holotype of A. microsticta, specimen USNMENT00656110 (USNM).
Figure 2 in Identity of the ailanthus webworm moth (Lepidoptera, Yponomeutidae), a complex of two species: evidence from DNA barcoding, morphology and ecology
Figure 2. Map showing the distribution of Atteva specimens examined as part of this study. Notable specimens are highlighted in red.
Fig. 3. A. a in Untangling species identity in gastropods with polymorphic shells in the genus Bolma Risso, 1826 (Mollusca, Vetigastropoda)
Fig. 3. A. a, Bolma henica madagascarensis (Indian Ocean); b, Bo. henica abyssorum; c, Bo. henica henica, with type locality represented by a white star (Fiji Island, Southwest Pacific); d, Bo. cf. minutiradiosa. B. a–d, distinct shell morphs found in Bo. recens, with type locality represented by a white star (Kiwi seamount, Three Kings Ridge). C. a, Bo. mainbaza, with type locality (South Madagascar); b, Bo. pseudobathyraphis, with type locality (South New Caledonia); c, Bo. millegranosa; d, Bo. opaoana with type locality (South New Caledonia, Crypthélia Bank).
Fig. 4 in Untangling species identity in gastropods with polymorphic shells in the genus Bolma Risso, 1826 (Mollusca, Vetigastropoda)
Fig. 4. Shell diversity across the molecular phylogeny of the "deep-water" clade of the subfamily Turbininae (Williams 2007, i.e., the genera Astraea, Bellastraea , Bolma and Guildfordia). The phylogeny is based on Bayesian analyses of the concatenated sequences from cox1 and 28 S genes, incorporating an uncorrelated relaxed, log- normal clock produced using *BEAST. The tree is a maximum clade credibility tree with median node heights based in 9000 trees. Support values are posterior probabilities (PP); branches < 50% were collapsed. Species names are labelled on the right-hand side. Species hypotheses previously delineated by the integrative taxonomy approach are highlighted by the grey boxes.
Fig. 2 in Untangling species identity in gastropods with polymorphic shells in the genus Bolma Risso, 1826 (Mollusca, Vetigastropoda)
Fig. 2. [next page] Molecular based species delineation of the genus "Bolma". A. Ultrametric tree produced using BEAST based on cox1 sequences. B. PSHs derived from the GMYC model and labelled from 1 to 37. C. PSHs derived from the GMYC model using the lower limit of the equivalent of a 95% confidence interval, and labelled from A to ZD. D. SSHs drawn from congruency between cox1 and 28S. Boxes with a black outline indicate that the SSH was monophyletic in both cox1 and 28S trees. Boxes without a black outline highlight SSHs for which molecular data were either incomplete or non-informative. SSHs labelled from A to ZD (following step C) or with the species name when our sequences matched published data associated with the species names. E. PSHs derived from the Bayesian analysis based on 28S sequences. F. Bayesian, non-ultrametric tree produced using BEAST based on 28S sequences. G. Species names retained in the present study. For the SSH E-F-G-H, the name Bo. henica was retained; however, Bo. henica abyssorum, Bo. henica madagascarensis and Bo. henica henica are represented as sub-species separated by white dotted lines. For both trees, nodal support values are posterior probabilities (PP), shown only for PP> 50%. Branches with PP <50% were collapsed. Red and green branches correspond to monophyletic species hypotheses. Colour coded boxes: red corresponds to cox1 PSHs supported by PP> 95%; light red corresponds to cox1 PSH supported by PP <95%; light grey corresponds to cox1 and 28S singletons; a grey cross represents missing data; green corresponds to 28S species hypotheses supported by PP> 95%; light grey corresponds to groups of genotypes displaying diagnostic 28S sites. Specimen numbers are given in the Supplementary file.
Figs 198–207 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 198–207. Tituboea lefevrei (Pic, 1894): 198 – male (Algeria, 6.6 mm); 199 – head of male; 200 – female (Algeria, 6.5 mm); 201 – head of female; 202 – holotype of Melitonoma lefevrei (female, 5.5 mm); 203 – labels. 204–207 – syntype of Antipa arabica var. palaestina Pic, 1929, male, 6.2 mm: 204 – habitus; 205 – habitus in lateral view; 206 – head; 207 – labels.
Figs 214–222 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 214–222. Tituboea saadensis (Pic, 1894). 214–216 – Syntype of Melitonoma saadensis (female, 4.7 mm): 214 – habitus; 215 – head; 216 – labels. 217–219 – Holotype of Melitonoma saadensis var. sefrensisPic, 1897 (male, 4.2 mm): 217 – habitus; 218 – head; 219 – labels. 220–222 – Possible paratype of Antipa reymondi Kocher, 1956 (male, 5.5 mm): 220 – habitus; 221 – head; 222 – labels.
Figs 165–172. 165–168 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 165–172. 165–168 – Tituboea chobauti (Pic, 1896): 165 – habitus of male (Algeria, 6.1 mm); 166 – habitus of female (Morocco, 5.8 mm); 167 – head of male; 168 – head of female. 169–172 – Tituboea cingulata (Lefèvre, 1883) (syntype, male, 6.7 mm): 169 – habitus; 170 – habitus in lateral view; 171– head; 172 – labels.
Figs 103–111. 103–107 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 103–111. 103–107 – Coptocephala sefrensis Pic, 1897: 103 – habitus of male (6.4 mm); 104 – head of male; 105 – habitus of male (holotype, 5.4 mm); 106 – head of male (holotype); 107 – labels of holotype. 108–111 – Labidostomis centrisculpta Pic, 1920 (syntype of L. alaiensis Pic, 1920, male, 9.9 mm): 108 – habitus; 109 – head; 110 – head in lateral view; 111 – labels.
Figs 46–50 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 46–50. Tituboealefevrei (Pic, 1894): 46 – aedeagus (dorsal and lateral views, from Algeria); 47 – aedeagus (dorsal and lateral views, from Israel); 48 – spermatheca (from Algeria), 49 – spermatheca (from Jordan); 50 – right male protarsus. Scale bars: 1 mm for Fig. 50, 0.5 mm for Figs 46–47, 0.25 mm for Figs 48–49.
Figs 15–18. 15–17 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 15–18. 15–17 – Variability of outline of male head in Lachnaia (Barathraea) straminipennis (Lucas, 1845): 15 straminipennis type; 16 – octomaculata type; 17 – separata type. 18 – aedeagus of Otiothraea rotroui (Kocher, 1961) (dorsal, dorsal with internal sclerites, lateral and ventral views). Scale bars: 2 mmfor Figs 15–17, 0.5 mm for Fig. 18.
Figs 4–6. 4–5 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 4–6. 4–5 – Coptocephala dilatipes Pic, 1923: 4 – aedeagus (dorsal, lateral and ventral views); 5 – spermatheca. 6 – aedeagus of Coptocephala massiliensis Pic, 1914 (dorsal, lateral and ventral views). Scale bars: 0.5 mm for Figs 4 and 6, 0.25 mm for Fig. 5.
Figs 11–14. 11 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 11–14. 11 – Coptocephala sefrensis Pic, 1897: aedeagus (dorsal, lateral and ventral views). 12–14 – spermatheca and ductus spermathecae: 12 – Labidostomis luristanica WarchaŁowski, 2004; 13 – L. kantneri WarchaŁowski, 2004; 14 – L. shirazica Lopatin, 1979. Scale bars: 0.5 mm.
Figs 1–3. 1–2 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 1–3. 1–2 – Coptocephala aeneopicta (Fairmaire, 1864): 1 – aedeagus (dorsal, lateral and ventral views); 2 – spermatheca. 3 – aedeagus of Coptocephala arcasi Báguena, 1960 (dorsal, lateral and ventral views). Scale bars: 0.5 mm for Figs 1 and 3, 0.25 mm for Fig. 2.
Figs 187–197 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 187–197. Tituboea lacordairei (Pic, 1929): 187– male (Jordan: Wadi Rum, 6.9 mm); 188 – its head; 189 male (Jordan: At Taħla, 8.0 mm); 190 – its head; 191 – male (Oman, 6.7 mm); 192 – its head; 193 – male (Yemen, 5.8 mm); 194 – its head; 195 – female (Jordan: Wadi Rum, 6.4 mm); 196–197 – Syntype of Antipa arabica var. lacordairei (male, 5.8 mm): 196 – habitus; 197 – labels.
Figs 179–186 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 179–186. Tituboea paykullii species group, head of males. 179–182 – frontal view: 179 – Tituboea fasciata Lefèvre, 1872; 180 – T. femoralis Medvedev, 1962; 181 – T. laticollis (Olivier, 1808); 182 – T. paykullii (Lacordaire, 1848). 183–186 – lateral view: 183 – Tituboea fasciata; 184 – T. femoralis; 185 – T. laticollis; 186 – T. paykullii.
Figs 35–39. 35–37 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 35–39. 35–37 – Tituboea fasciata Lefèvre, 1872: 35 – aedeagus (dorsal, lateral and ventral views); 36 – spermatheca; 37 – right male protarsus. 38–39 – Tituboea paykullii (Lacordaire, 1848): 38 – aedeagus (dorsal, lateral and ventral views); 39 – right male protarsus. Scale bars: 1 mm for Figs 37 and 39; 0.5 mm for Figs 35, 36 and 38.
Figs 173–178 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 173–178. Tituboea paykullii species group, habitus: 173 – Tituboeafasciata Lefèvre, 1872 (male, 9.5 mm); 174 – T. femoralis Medvedev, 1962 (male, 11.5 mm); 175 – T. laticollis (Olivier, 1808) (male, 11.9 mm); 176–178 – males of T. paykullii (Lacordaire, 1848) from Morocco, illustrating the color variability (lengths: 176 – 9.5 mm, 177 – 7.8 mm, 178 – 8.8 mm).
Figs 7–10. 7–8 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 7–10. 7–8 – Coptocephala normandi Pic, 1914: 7 – aedeagus (dorsal, lateral and ventral views); 8 – spermatheca. 9–10 – Coptocephala perrisi (Desbrochers des Loges, 1870): 9 – aedeagus (dorsal, lateral and ventral views); 10 – spermatheca. Scale bars: 1 mm for Fig. 9, 0.5 mm for Fig. 7, 0.25 mm for Figs 8 and 10.
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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.