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zenodo40/100

Figure 1c. from: Two new species of Scymnini (Coleoptera: Coccinellidae) from Karnataka, India - Biodiversity Data Journal 3: e5296 (22 June 2015) https://doi.org/10.3897/BDJ.3.e5296

Figure 1c. - Scymnus (Pullus) rajeshwariae sp. n.Figure 1a.Larva feeding on Pseudoregmabambusicola on bambooFigure 1b.Larva feeding on Pseudoregmabambusicola on bambooFigure 1c.Larva feeding on Pseudoregmabambusicola on bambooFigure 1d.Adult feeding on Pseudoregmabambusicola on bambooFigure 1e.Adult, dorsal viewFigure 1f.Female genitalia: Spermatheca <br> Larva feeding on Pseudoregmabambusicola on bamboo

opencc-by-4.0Feb 2017View details →
zenodo40/100

Figure 1f. from: Two new species of Scymnini (Coleoptera: Coccinellidae) from Karnataka, India - Biodiversity Data Journal 3: e5296 (22 June 2015) https://doi.org/10.3897/BDJ.3.e5296

Figure 1f. - Scymnus (Pullus) rajeshwariae sp. n.Figure 1a.Larva feeding on Pseudoregmabambusicola on bambooFigure 1b.Larva feeding on Pseudoregmabambusicola on bambooFigure 1c.Larva feeding on Pseudoregmabambusicola on bambooFigure 1d.Adult feeding on Pseudoregmabambusicola on bambooFigure 1e.Adult, dorsal viewFigure 1f.Female genitalia: Spermatheca <br> Female genitalia: Spermatheca

opencc-by-4.0Feb 2017View details →
zenodo40/100

Figure 4a. from: Two new species of Scymnini (Coleoptera: Coccinellidae) from Karnataka, India - Biodiversity Data Journal 3: e5296 (22 June 2015) https://doi.org/10.3897/BDJ.3.e5296

Figure 4a. - Diagnostic characters of Horniolussororius sp. n.Figure 4a.Abdominal postcoxal lineFigure 4b.Male genitalia: Tegmen, ventral viewFigure 4c.Male genitalia: Tegmen, ventral viewFigure 4d.Male genitalia: PenisFigure 4e.Male genitalia: Penis apexFigure 4f.Female genitalia: Spermatheca <br> Abdominal postcoxal line

opencc-by-4.0Feb 2017View details →
zenodo40/100

Figure 2e. from: Two new species of Scymnini (Coleoptera: Coccinellidae) from Karnataka, India - Biodiversity Data Journal 3: e5296 (22 June 2015) https://doi.org/10.3897/BDJ.3.e5296

Figure 2e. - Diagnostic characters of Scymnus (Pullus) rajeshwariae sp. n.Figure 2a.Prosternal processFigure 2b.Tarsal claw in female (left) and male (right)Figure 2c.Abdominal postcoxal lineFigure 2d.Male genitalia: Tegmen, lateral viewFigure 2e.Male genitalia: Tegmen, ventral viewFigure 2f.Male genitalia: Penis <br> Male genitalia: Tegmen, ventral view

opencc-by-4.0Feb 2017View details →
zenodo40/100

Figure 1e. from: Two new species of Scymnini (Coleoptera: Coccinellidae) from Karnataka, India - Biodiversity Data Journal 3: e5296 (22 June 2015) https://doi.org/10.3897/BDJ.3.e5296

Figure 1e. - Scymnus (Pullus) rajeshwariae sp. n.Figure 1a.Larva feeding on Pseudoregmabambusicola on bambooFigure 1b.Larva feeding on Pseudoregmabambusicola on bambooFigure 1c.Larva feeding on Pseudoregmabambusicola on bambooFigure 1d.Adult feeding on Pseudoregmabambusicola on bambooFigure 1e.Adult, dorsal viewFigure 1f.Female genitalia: Spermatheca <br> Adult, dorsal view

opencc-by-4.0Feb 2017View details →
zenodo40/100

Figure 4b. from: New records of two endemic troglobitic and threatened arachnids (Amblypygi and Opiliones) from limestone caves of Minas Gerais state, southeast Brazil - Biodiversity Data Journal 3: e5260 (10 November 2015) https://doi.org/10.3897/BDJ.3.e5260

Figure 4b. - Charinuseleonorae, female from Lapa do Cipó cave.Figure 4a.Carapace, dorsal view, showing mid-portion of carapace without median eyesFigure 4b.Habitus, dorsal viewFigure 4c.Lateral view of right pedipalp showing spines. <br> Habitus, dorsal view

opencc-by-4.0Feb 2017View details →
dryad40/100

Data from: What goes in must come out? The metabolic profile of plants and caterpillars, frass, and adults of Asota (Erebidae: Aganainae) feeding on Ficus (Moraceae) in New Guinea

<p>Insect herbivores have evolved a broad spectrum of adaptations in response to the diversity of chemical defences employed  by plants. Here we focus on two species of New Guinean Asota and determine how these specialist moths deal with the leaf alkaloids of their fig (Ficus) hosts. As each focal Asota species is restricted to one of three chemically distinct species of Ficus, we also test whether these specialized interactions lead to similar alkaloid profiles in both Asota species. We reared Asota caterpillars on their respective Ficus hosts in natural conditions and analyzed the alkaloid profiles of leaf, frass, caterpillar, and adult moth samples using UHPLC–MS/MS analyses. We identified 43 alkaloids in our samples. Leaf alkaloids showed various fates. Some were excreted in frass or found in caterpillars and adult moths. We also found two apparently novel indole alkaloids likely synthesized de novo by the moths or their microbiota—in both caterpillar and adult tissue but  not in leaves or frass. Overall, alkaloids unique or largely restricted to insect tissue were shared across moth species despite feeding on different hosts. This indicates that a limited number of plant compounds have a direct ecological function that is conserved among the studied species. Our results provide evidence for the importance of phytochemistry and metabolic strategies in the formation of plant–insect interactions and food webs in general. Furthermore, we provide a new potential example of insects acquiring chemicals for their benefit in an ecologically relevant insect genus.</p>

opencc-zeroOct 2023View details →
dryad40/100

Data for: Speciation in kleptoparasites of oak gall wasps often correlates with shifts into new tree habitats, tree organs, or gall morphospace

<p><span>Host shifts to new plants can drive speciation for plant-feeding insects, but how commonly do host shifts also drive diversification for the parasites of those same insects? Oak gall wasps induce galls on oak trees, and shifts to novel tree hosts and new tree organs have been implicated as drivers of oak gall wasp speciation. Gall wasps are themselves attacked by many insect parasites, which must find their hosts on the correct tree species and organ, but which also must navigate the morphologically variable galls with which they interact. Thus, we ask whether host shifts to new trees, organs, or gall morphologies correlate with gall parasite diversification. We delimit species and infer phylogenies for two genera of gall kleptoparasites, <em>Synergus</em> and <em>Ceroptres</em>, reared from a variety of North American oak galls. We find that most species were reared from galls induced by just one gall wasp species, and no parasite species was reared from galls of more than four species. Most kleptoparasite divergence events correlate with shifts to non-ancestral galls. These shifts often involved changes in tree habitat, gall location, and gall morphology. Host shifts are thus implicated in driving diversification for both oak gall wasps and their kleptoparasitic associates.</span></p>

opencc-zeroNov 2023View details →
zenodo40/100

Figs 45-50 in New data on the Oriental Xantholinini. XXIV. Nine new taxa of Paratesba from Danum Valley, Sabah, and dichotomic key of the bornean species (Coleoptera, Staphylinidae). 221° contribution to the knowledge of the Staphylinidae

Figs 45-50: Aedeagus, tergite and sternite of male genital segment of Paratesba fluvialis nov.sp. (45-47); P. lithocarpi nov.sp. (48-50).

opencc-by-4.0Jul 2011View details →
zenodo40/100

Figs 11-18 in New data on the Oriental Xantholinini. XXIV. Nine new taxa of Paratesba from Danum Valley, Sabah, and dichotomic key of the bornean species (Coleoptera, Staphylinidae). 221° contribution to the knowledge of the Staphylinidae

Figs 11-18: Head and pronotum (right half omitted) of Paratesba minuta nov.sp. (11-12); head (right half omitted) and anterior angle of pronotum of Paratesba rougemonti nov.sp. (13-14); P. rubescens nov.sp. (15-16); P. silvestris nov.sp. (17-18).

opencc-by-4.0Jul 2011View details →
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Figs 27-30 in New data on the Oriental Xantholinini. XXIV. Nine new taxa of Paratesba from Danum Valley, Sabah, and dichotomic key of the bornean species (Coleoptera, Staphylinidae). 221° contribution to the knowledge of the Staphylinidae

Figs 27-30: Head and pronotum (right half omitted) of Paratesba lithocarapi nov.sp. (27-28); head (right half omitted) and anterior angle of pronotum of Paratesba differens nov.sp. (29-30).

opencc-by-4.0Jul 2011View details →
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Figs 19-26 in New data on the Oriental Xantholinini. XXIV. Nine new taxa of Paratesba from Danum Valley, Sabah, and dichotomic key of the bornean species (Coleoptera, Staphylinidae). 221° contribution to the knowledge of the Staphylinidae

Figs 19-26: Head (right half omitted) and anterior angle of pronotum of Paratesba danum BORDONI (19-20); P. sabahensis nov.sp. (21-22); P. confusa nov.sp. (23-24); P. fluvialis nov.sp. (25-26).

opencc-by-4.0Jul 2011View details →
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Figs 39-44 in New data on the Oriental Xantholinini. XXIV. Nine new taxa of Paratesba from Danum Valley, Sabah, and dichotomic key of the bornean species (Coleoptera, Staphylinidae). 221° contribution to the knowledge of the Staphylinidae

Figs 39-44: Aedeagus, tergite and sternite of male genital segment of Paratesba sabahensis nov.sp. (39-41); P. confusa nov.sp. (42-44).

opencc-by-4.0Jul 2011View details →
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Figs 25–28 in ON SPLITTING OF THE GENUS NOTOCUPES (COLEOPTERA: ARCHOSTEMATA): NEW DATA ON MORPHOLOGY AND TAXONOMY

Figs 25–28. Elytron venation types of five investigated genera of Archostemata. 25, 26 – Zygadenia alexrasnitsyni Strelnikova et Yan, 2021: 25 – photograph; 26 – interpretative

opencc-by-4.0Nov 2023View details →
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Figs 14–23 in ON SPLITTING OF THE GENUS NOTOCUPES (COLEOPTERA: ARCHOSTEMATA): NEW DATA ON MORPHOLOGY AND TAXONOMY

Figs 14–23. Integuments of extant Archostemata. 14, 16, 19, 20, 22 – Omma stanleyi Newman, 1839: 14 – abdominal sternite, tomography image; 16 – SEM–micrography of

opencc-by-4.0Nov 2023View details →
zenodo40/100

Fig. 13 in ON SPLITTING OF THE GENUS NOTOCUPES (COLEOPTERA: ARCHOSTEMATA): NEW DATA ON MORPHOLOGY AND TAXONOMY

Fig. 13. Size and density of cuticular tubercles in species studied of ancient Rhabdocupes, Conеxicoxa, Notocupes, Brachilatus, Odontomma, Zygadenia and some extant Omma and Distocupes. Tubercles of Odontomma sulcatum were examined from photographs in Kirejtshuk (2020). Yellow – Triassic species; Red – Early Jurassic; Blue – Middle to Late Jurassic; Green – Cretaceous. Here and further orange columns represent density of small

opencc-by-4.0Nov 2023View details →
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Figs 9–12 in ON SPLITTING OF THE GENUS NOTOCUPES (COLEOPTERA: ARCHOSTEMATA): NEW DATA ON MORPHOLOGY AND TAXONOMY

Figs 9–12. Odontomma patula (Ponomarenko, 1985). 9 – photograph of the print; 10 – photograph of the counterprint; 11 – interpretative linedrawing of the print; 12 – interpretative linedrawing of the counterprint. Cuticular tubercles depicted in a square frame. Scale bar = 1 mm.

opencc-by-4.0Nov 2023View details →
zenodo40/100

Figs 15–21 in New data on the fungus gnats (Diptera: Keroplatidae, Mycetophilidae) of Yakutia with description of three new species

Figs 15–21. Male terminalia of Docosia spp.: D. fasciculata sp. n. (15–20) and D. mulleri Plassmann (21). 15 – ventral view; 16 – dorsal view; 17 – lateral view; 18 – caudal view; 19

opencc-by-4.0Jul 2023View details →
zenodo40/100

FIG. 31 in Shedding light into Brazilian subterranean isopods (Isopoda, Oniscidea): expanding distribution data and describing new taxa

FIG. 31. — Gabunillo enfurnado Campos-Filho, Sfenthourakis &amp; Bichuette, n. sp., female paratype, LES 6416: A, lateral habitus; B, scale-seta; C, cephalon and pereonites 1 and 2, frontal view; D, cephalon, dorsal view; E, pereonite 1 epimeron, dorsal view; F, pereonite 1 epimeron, ventral view; G, pereonite 2 epimeron, dorsal view; H, pereonite 2 epimeron, ventral view; I, pleonites 3-5, telson, and uropods, dorsal view; J, antenulla; K, antenna. Scale bar: A, 1 mm.

opencc-zeroOct 2023View details →
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FIG. 29 in Shedding light into Brazilian subterranean isopods (Isopoda, Oniscidea): expanding distribution data and describing new taxa

FIG. 29. — Diploexochus exu Campos-Filho, Sfenthourakis &amp; Bichuette, n. sp., female paratype LES 28003: A, uropod, frontal view; B, uropod; C, pereopod 1; D, pereopod 7; E, pleopod 2 exopod; F, pleopod 3 exopod; G, pleopod 4 exopod; H, pleopod 5 exopod.

opencc-zeroOct 2023View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record