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.
88
datasets available to search
ShareScore release 0.7.1
Dataset results
88 results for “dragonflies and damselflies”
Figure 4 from: Kipping J, Clausnitzer V, Elizalde SRF, Dijkstra K-DB (2017) The dragonflies and damselflies (Odonata) of Angola. African Invertebrates 58(1): 65-91. https://doi.org/10.3897/AfrInvertebr.58.11382
Figure 4 - Distribution of the endemic crocea-group of Platycypha species and all congeneric taxa. Names of taxa that favour open habitats are in black, those tending toward forest in white (although P. rufitibia occurs on very open rivers); abbreviations: am — P. amboniensis, in — P. inyangae, la — form "lacus" of P. caligata which may represent a distinct species, pi — P. pinheyi. The rather dispersed forest species P. lacustris is shown with black squares (adapted from Dijkstra 2008).
Figure 2 from: Kipping J, Clausnitzer V, Elizalde SRF, Dijkstra K-DB (2017) The dragonflies and damselflies (Odonata) of Angola. African Invertebrates 58(1): 65-91. https://doi.org/10.3897/AfrInvertebr.58.11382
Figure 2 - Distribution of Odonata diversity in continental Africa. Mapped as the number of species per Hydro1K basin (adapted from Clausnitzer et al. 2012), Angola outlined in white.
Figure 3 from: Kipping J, Clausnitzer V, Elizalde SRF, Dijkstra K-DB (2017) The dragonflies and damselflies (Odonata) of Angola. African Invertebrates 58(1): 65-91. https://doi.org/10.3897/AfrInvertebr.58.11382
Figure 3 - Records of 16 endemic Odonata species in Angola relative to altitude. White dots: endemic species (marked ** in Table 1); grey triangles: other species. Elevation follows the GTOPO30 model of the U.S. Geological Center for Earth Resources Observation and Science (EROS).
Supplementary material 1 from: Ball-Damerow JE, Oboyski PT, Resh VH (2015) California dragonfly and damselfly (Odonata) database: temporal and spatial distribution of species records collected over the past century. ZooKeys 482: 67-89. https://doi.org/10.3897/zookeys.482.8453
California Odonata database records after data processing, as described in methods.:
FIGURE 12 in New dragonflies and damselflies (Odonata) from the late Oligocene of Enspel (Rhineland-Palatinate, SW Germany)
FIGURE 12. Naiads of Odonata from paleolake Enspel. 1–3, Naiads attributable to the libelluloid clade. 1, PE 2006/ 5022-LS; 2, PE 2010/5637-LS; 3, PE 2010/5657-LS; 4, PE 2010/5637-LS, a zygopteran naiad. Scale bars are 5 mm (1–3), 2 mm (4).
FIGURE 11 in New dragonflies and damselflies (Odonata) from the late Oligocene of Enspel (Rhineland-Palatinate, SW Germany)
FIGURE 11. Oligolestes stoeffelensis sp. nov., holotype PE 1995/9164-LS. 1, Photograph of habitus; 2, Hind wing, Arc arculus, d discoidal cell, N nodus, Sn subnodus. Scale bar is 10 mm.
FIGURE 10 in New dragonflies and damselflies (Odonata) from the late Oligocene of Enspel (Rhineland-Palatinate, SW Germany)
FIGURE 10. Ictinogomphus engelorum sp. nov., interpretative drawings of wings. 1, Holotype PE 2000/5006-LS a, hind wing; 2, Paratype, PE 2003/5039-LS a, distal part of wing; 3, Paratype, PE 2003/5040-LS, part of forewing. Scale bars are 10 mm.
FIGURE 6 in New dragonflies and damselflies (Odonata) from the late Oligocene of Enspel (Rhineland-Palatinate, SW Germany)
FIGURE 6. Epiaeschna wisseri sp. nov., interpretative drawings of hind wings. 1, holotype, PE 2000/5355-LS a; 2, putative conspecific specimen, PE 1997/6211-LS a, female hind wing. Scale bars are 10 mm.
FIGURE 3 in New dragonflies and damselflies (Odonata) from the late Oligocene of Enspel (Rhineland-Palatinate, SW Germany)
FIGURE 3. Oligaeschna cf. jungi, interpretative drawings of wings. 1, PE 2005/5032-LS a, left forewing; 2, PE 2005/ 5032-LS a, right forewing; 3, PE 2000/5000-LS a, forewing; 4, PE 1995/7217-LS, forewing. Scale bars are 10 mm.
FIGURE 1 in New dragonflies and damselflies (Odonata) from the late Oligocene of Enspel (Rhineland-Palatinate, SW Germany)
FIGURE 1. Oligaeschna cf. jungi, specimen PE 2005/5032-LS a. 1, Overall view of fossil with two forewings, remains of the thorax, and one leg; 2, Left forewing enlarged; 3, Right forewing enlarged. Scale bars are 10 mm.
Deep ancestral introgression shapes evolutionary history of dragonflies and damselflies
<p>Introgression is arguably one of the most important biological processes in the evolution of groups of related species, affecting at least 10% of the extant species in the animal kingdom. Introgression reduces genetic divergence between species, and in some cases can be highly beneficial, facilitating rapid adaptation to ever-changing environmental pressures. Introgression also significantly impacts inference of phylogenetic species relationships where a strictly binary tree model cannot adequately explain reticulate net-like species relationships. Here we use phylogenomic approaches to understand patterns of introgression along the evolutionary history of a unique, non-model insect system: dragonflies and damselflies (Odonata). We demonstrate that introgression is a pervasive evolutionary force across various taxonomic levels within Odonata. In particular, we show that the morphologically "intermediate" species of Anisozygoptera (one of the three primary suborders within Odonata besides Zygoptera and Anisoptera), which retain phenotypic characteristics of the other two suborders, experienced high levels of introgression likely coming from zygopteran genomes. Additionally, we find evidence for multiple cases of deep inter-superfamilial ancestral introgression.</p>
Figure 3 from: Ball-Damerow JE, Oboyski PT, Resh VH (2015) California dragonfly and damselfly (Odonata) database: temporal and spatial distribution of species records collected over the past century. ZooKeys 482: 67-89. https://doi.org/10.3897/zookeys.482.8453
Figure 3 - Relationship between species richness and total number of records by county, where each point represents a California county.
Figure 5 from: Ball-Damerow JE, Oboyski PT, Resh VH (2015) California dragonfly and damselfly (Odonata) database: temporal and spatial distribution of species records collected over the past century. ZooKeys 482: 67-89. https://doi.org/10.3897/zookeys.482.8453
Figure 5 - Number of unique county records for each collection type (Calbug collaborating institutions, non-Calbug institutions, observations - Cal Odes and Odonata Central, and private collections), and number of unique county records with two, three, and four shared data types.
Figure 1 in Dragonflies and damselflies (Odonata) from Flores Island, Lesser Sunda Archipelago: New occurrences in extreme environments and an island-level checklist of this group
Figure 1. Map of the localities with extreme habitats on Flores and Kanawa islands (Lesser Sunda Archipelago, Indonesia), from which available museum lots were sampled: Sano Nggoang Lake (1); coastal marsh near Labuan Bajo on Flores Island (2); and Kanawa Island (3).
Figure 9 in Dragonflies and damselflies (Odonata) from Flores Island, Lesser Sunda Archipelago: New occurrences in extreme environments and an island-level checklist of this group
Figure 9. Pantala flavescens from Flores and Kanawa islands, Lesser Sunda Archipelago, Indonesia: (A) male from dry seasonal marsh site on Kanawa Island near the western edge of Flores Island (RMBH: dried specimen; scale bar = 5 mm); (B) its anal appendages (lateral view); (C) male from coastal marsh near Labuan Bajo on Flores Island (RMBH: dried specimen; scale bar = 5 mm); and (D) its anal appendages (lateral view).
Data for: Winners and losers over 35 years of dragonfly and damselfly distributional change in Germany
Open the record for dataset details and reuse information.
Deep ancestral introgression shapes evolutionary history of dragonflies and damselflies
Open the record for dataset details and reuse information.
Figure 1 from: Kipping J, Clausnitzer V, Elizalde SRF, Dijkstra K-DB (2017) The dragonflies and damselflies (Odonata) of Angola. African Invertebrates 58(1): 65-91. https://doi.org/10.3897/AfrInvertebr.58.11382
Figure 1 - Records of Odonata from Angola before 1950, before 2000 and up to 2016.
Figure 4 from: Ball-Damerow JE, Oboyski PT, Resh VH (2015) California dragonfly and damselfly (Odonata) database: temporal and spatial distribution of species records collected over the past century. ZooKeys 482: 67-89. https://doi.org/10.3897/zookeys.482.8453
Figure 4 - Spatial distribution of California records before 1976, and after 1979.
Figure 2 from: Ball-Damerow JE, Oboyski PT, Resh VH (2015) California dragonfly and damselfly (Odonata) database: temporal and spatial distribution of species records collected over the past century. ZooKeys 482: 67-89. https://doi.org/10.3897/zookeys.482.8453
Figure 2 - Total number of records and number of species by decade.
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.