Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
54
datasets available to search
ShareScore release 0.9.0
Dataset results
54 results for “subsocial”
Figure 3 in Natural history and population dynamics of the subsocial tortoise beetle Omaspides (Paromaspides) brunneosignata Boheman 1854 (Coleoptera: Chrysomelidae: Cassidinae)
Figure 3. Omaspides (Paromaspides) brunneosignata Boheman 1854 (A) Female on newly oviposited egg mass; (B) pedunculated egg mass on the abaxial surface of the Ipomoea syringifolia Meisn (Convolvulaceae); (C) female defensive behaviour against Crematogaster sp. Natural enemies at the egg stage. The hymenopterans (D) Emersonella pubipennis Hansson 2002 (Eulophidae: Entedoninae); (E) predation by Crematogaster sp. (Formicidae); and by (F) Pseudomyrmex phyllophylus (Smith, 1858) (Formicidae).
Figure 1 in Natural history and population dynamics of the subsocial tortoise beetle Omaspides (Paromaspides) brunneosignata Boheman 1854 (Coleoptera: Chrysomelidae: Cassidinae)
Figure 1. Geographic location of Floresta Nacional de Passa Quatro, Passa Quatro, Minas Gerais/Brazil. Source: ICMBio 2009.
Figure 8 in Origins and diversification of subsociality in leaf beetles (Coleoptera: Chrysomelidae: Cassidinae: Chrysomelinae)
Figure 8. Phylogenetic hypothesis of Cassidinae, based on morphology (redrawn from Chaboo 2007), showing genera with subsocial species (bold text) and major evolutionary steps in more complex defense behaviours.
Figure 5 in Origins and diversification of subsociality in leaf beetles (Coleoptera: Chrysomelidae: Cassidinae: Chrysomelinae)
Figure 5. (A) Doryphora reticulata Fabricius (Chrysomelinae) on Prestonia tomentosa (Apocynaceae), January, Brazil. Oviposition on dorsal surface of leaf (photograph, F. Frieiro-Costa); (B) female guarding larval group (photograph, F. Frieiro-Costa); (C) Proseicela sp. female guarding four larvae, with ants and Diptera enemies nearby, on Acanthaceae host, May, Peru (photograph, R. Westerduijn).
Figure 2 in Origins and diversification of subsociality in leaf beetles (Coleoptera: Chrysomelidae: Cassidinae: Chrysomelinae)
Figure 2. Subsociality in Omaspides species (Cassidinae), Peru (photographs, R. Westerduijn). A–B Omaspides (O.) abbreviata, female guarding clustered eggs (A); larvae (B); C–E Omaspides (O.) augusta, with males scrambling to mate with female (C); female guarding pendant egg cluster (D); unguarded larval brood in cycloalexic arrangement (E; mother lost).
Figure 1 in Origins and diversification of subsociality in leaf beetles (Coleoptera: Chrysomelidae: Cassidinae: Chrysomelinae)
Figure 1. Subsocial Cassidinae (tortoise beetles). (A) Agenysa peruviana Spaeth, Peru (photograph, R. Westerduijn); (B) Eugenysa columbiana (Boheman) female with pupal group, June, Costa Rica (photograph, M. Schlaepfer); (C) Acromis sparsa Boheman female guarding her larval group, June, Panama, with parasitoid wasps on her back (photograph, A. Trillo); (D) Acromis spinifex (L.), male courting female who is guarding eggs, July, Trinidad (photograph, W. Shepard); (E) Acromis venosa Erichson several individuals on same leaf, including female guarding eggs, January, Peru (photograph, R. Westerduijn); (F) Acromis new species 2, female guarding eggs, January, Brazil, (photograph, F. Frieiro-Costa).
Figure 4 in Origins and diversification of subsociality in leaf beetles (Coleoptera: Chrysomelidae: Cassidinae: Chrysomelinae)
Figure 4. Biotic enemies of subsocial Omaspides (O.) tricolorata, Brazil (photos F. Frieiro- Costa). (A) Pseudomyrmex ant (Formicidae) attacking eggs; (B) Crematogaster ant group (Formicidae) attacking eggs; (C) Stiretrus bug (Pentatomidae) attacking larva; (D) Katydid female (Orthoptera) eating pupal group; (E) Eupoca Warren moth (Lepidoptera: Pyralidae) eating pupae.
Figure 7 in Origins and diversification of subsociality in leaf beetles (Coleoptera: Chrysomelidae: Cassidinae: Chrysomelinae)
Figure 7. Pterodunga mirabile Daccordi on Proteaceae, September, Australia (photographs, J. Hasenpusch). (A,B) mother guarding nine larvae; (C) larva produces anal exudates when disturbed; (D) spider eating a larva.
Figure 9 in Origins and diversification of subsociality in leaf beetles (Coleoptera: Chrysomelidae: Cassidinae: Chrysomelinae)
Figure 9. Phylogeny of Chrysomelinae based on molecular data showing subsocial genera (bold text). Doryphora, Platyphora and Proseicla are in a monophyletic basal clade with other solitary genera; Gonioctena is resolved among more recent chrysomelines. Pterodunga has not been sampled.
Figure 6 in Origins and diversification of subsociality in leaf beetles (Coleoptera: Chrysomelidae: Cassidinae: Chrysomelinae)
Figure 6. Subsociality in Gonioctena spp. (photographs, S.-I. Kudo). (A–D) female positioned on petiole, guarding against non-flying enemies, while larvae eat.
Figure 7 in The morphology and biology of Pterodunga mirabile Daccordi, an unusual subsocial Chrysomeline (Coleoptera: Chrysomelidae)
Figure 7. Pupa of Pterodunga mirabile Daccordi: (A) dorsal; (B) head; (C) ventral apex abdomen; (D) ventral apex abdomen, second specimen; scale bar represents 2 mm.
Figure 8 in The morphology and biology of Pterodunga mirabile Daccordi, an unusual subsocial Chrysomeline (Coleoptera: Chrysomelidae)
Figure 8. Embryonic larva of Hysmatodon aenea (Weise) dissected from egg in oviduct: (A) head capsule; (B) mandible; (C) tarsungulus.
Figure 5 in The morphology and biology of Pterodunga mirabile Daccordi, an unusual subsocial Chrysomeline (Coleoptera: Chrysomelidae)
Figure 5. First-instar larva of Pterodunga mirabile Daccordi: (A) head; (B) labrum; (C) mandible; (D) labio-maxilla; (E) tarsungulus.
Figure 2 in The morphology and biology of Pterodunga mirabile Daccordi, an unusual subsocial Chrysomeline (Coleoptera: Chrysomelidae)
Figure 2. Habitus of adult Pterodunga mirabile Daccordi (reproduced from Zootaxa 1292 with kind permission of Magnolia Press); scale bar represents 2 mm.
Figure 4 in The morphology and biology of Pterodunga mirabile Daccordi, an unusual subsocial Chrysomeline (Coleoptera: Chrysomelidae)
Figure 4. First-instar larva of Pterodunga mirabile Daccordi: (A) lateral; (B) dorsal, apex of abdomen; ps5pseudopoda; scale bar represents 1 mm.
Figure 1 in The morphology and biology of Pterodunga mirabile Daccordi, an unusual subsocial Chrysomeline (Coleoptera: Chrysomelidae)
Figure 1. Female Pterodunga mirabile Daccordi guarding her offspring, one second-instar and eight third-instar larvae, on Buckinghamia celsissima (Proteaceae) sapling in greenhouse (shed second-instar larval skin behind adult).
Data from: Transcriptomes of parents identify parenting strategies and sexual conflict in a subsocial beetle
Parenting in the burying beetle Nicrophorus vespilloides is complex and, unusually, the sex and number of parents that can be present is flexible. Such flexibility is expected to involve specialized behaviour by the two sexes under biparental conditions. Here, we show that offspring fare equally well regardless of the sex or number of parents present. Comparing transcriptomes, we find a largely overlapping set of differentially expressed genes in both uniparental and biparental females and in uniparental males including vitellogenin, associated with reproduction, and takeout, influencing sex-specific mating and feeding behaviour. Gene expression in biparental males is similar to that in non-caring states. Thus, being 'biparental' in N. vespilloides describes the family social organization rather than the number of directly parenting individuals. There was no specialization; instead, in biparental families, direct male parental care appears to be limited with female behaviour unchanged. This should lead to strong sexual conflict.
Figure 6 in The morphology and biology of Pterodunga mirabile Daccordi, an unusual subsocial Chrysomeline (Coleoptera: Chrysomelidae)
Figure 6. Second-instar larva of Pterodunga mirabile Daccordi, lateral; scale bar represents 1 mm.
Figure 3 in The morphology and biology of Pterodunga mirabile Daccordi, an unusual subsocial Chrysomeline (Coleoptera: Chrysomelidae)
Figure 3. Ovipositor and oviduct of Pterodunga mirabile Daccordi.
Figure 1 from: Windsor D, Dury G, Frieiro-Costa F, Lanckowsky S, Pasteels J (2013) Subsocial Neotropical Doryphorini (Chrysomelidae, Chrysomelinae): new observations on behavior, host plants and systematics. ZooKeys 332: 71-93. https://doi.org/10.3897/zookeys.332.5199
Figure 1 - Maternal care providing Doryphora species, a Doryphora paykulli female with eggs and first instar larvae under an apical leaf of Prestonia seemanii (photo by S.L.) b female straddling a mix of first and second instar larvae (photo by S.L.) c Doryphora paykulli larvae moving to a new leaf followed by their mother (photo by S. Van Bael) d Doryphora paykulli larvae stripping the cortex of their host while descending in pairs to pupate, (photo by D.W.) e Doryphora reticulata ovipositing under apical leaf of Prestonia tomentosa in Central Brazil (photo by F.F.) f Doryphora reticulata larvae on the natal leaf (photo by F.F.) g female Doryphora reticulata stradding first instar larvae (photo by F.F.) h Doryphora reticulata female tending fully-developed larvae at the base of the food plant just prior to pupating underground (photo by F.F.).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.