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.
2,120
datasets available to search
ShareScore release 0.9.0
Dataset results
2,120 results for “fly species”
Data and scripts for the analysis of fruit flies' species distributions in Reunion island
<p>Data and scripts supporting the analyses of the joint species distributions of eight Tephritids species in La Réunion island.</p>
FIGURES 27 – 28 in Review of unreported shorefly genera of the tribe Scatellini from the New Zealand subregion (Diptera: Ephydridae) with description of three new species
FIGURES 27 – 28. Wings of Limnellia species. 27, L. abbreviata (New Zealand. Snares Islands: Sinkhole). 28, L. maculipennis (New Zealand. Hamilton, McKenzies Bush, Dinsdale).
FIGURES 13 – 15 in Review of unreported shorefly genera of the tribe Scatellini from the New Zealand subregion (Diptera: Ephydridae) with description of three new species
FIGURES 13 – 15. Wings of Haloscatella species. 13, H. balioptera (New Zealand. Chatham Island: Tennants Lake). 14, H. harrisoni (New Zealand. Bounty Islands. Depot Island). 15, H. karekare (New Zealand. AK: Karekare).
Fig. 6 in The Taxonomy And Phylogenetic Relationships Of Species In The Bactrocera Musae Complex Of Fruit Flies (Diptera: Tephritidae: Dacinae) In Papua New Guinea
Fig. 6. Neighbour joining tree showing relationships between CO1 haplotypes from species in the Bactrocera musae complex. Values at nodes are for 1000 bootstrap replicates of the maximum likelihood calculations using the Kimura two-parameter model of sequence evolution (left) and Bayesian posterior probability (right). Clade A = B. musae, Clade B = B. rufivitta, Clade C = B. contermina. Note: the numbers at the branch tips represent the field collection codes given to individual specimens.
Fig. 7 in The Taxonomy And Phylogenetic Relationships Of Species In The Bactrocera Musae Complex Of Fruit Flies (Diptera: Tephritidae: Dacinae) In Papua New Guinea
Fig. 7. Diagram showing clustering of individuals at (A) the highest hierarchical level of structuring in the Bactrocera musae complex using STRUCTURE, and (B) the sub-group structuring into two further clusters of the individuals from the red cluster in A. Vertical bars represent individuals and colours denote the proportion of ancestry from each cluster based on eight microsatellite loci. Note at the highest level (A), individuals are clearly assigned to either the B. musae or the 'others' cluster. At the next level (B), individuals from the 'others' cluster are assigned to either the B. rufivitta cluster (red) or the B. contermina cluster (green). Note: The numbers below the vertical bars represent the field collection codes given to individual specimens.
Figs 40–47 in New records of flies of the genus Tephritis (Diptera: Tephritidae) from the Caucasus and Transcaucasia, with notes on other tephritid species
Figs 40–47. Sphenella marginata (40–43) and Ensina sonchi (44–47), details of female (40–42, 45–46) and male (43, 44, 47). 40, female wing; 41, 45, aculeus; 42, 46, distal part of aculeus (magnified); 43, 47, glans of phallus; 44, male wing.
Figs 32–39 in New records of flies of the genus Tephritis (Diptera: Tephritidae) from the Caucasus and Transcaucasia, with notes on other tephritid species
Figs 32–39. Tephritis valida from Armenia (32, 34, 38) and North Ossetia–Alania (33, 35–37, 39), details of female (32–33, 35–39) and male (34). 32, female habitus (in lateral view); 33, female wing; 34, glans of phallus; 35, female abdomen (in lateral view); 36, aculeus; 37, distal part of aculeus (magnified); 38–39, spermatheca.
Figs 15–23 in New records of flies of the genus Tephritis (Diptera: Tephritidae) from the Caucasus and Transcaucasia, with notes on other tephritid species
Figs 15–23. Tephritis mutabilis from Armenia, details of female (15–22) and male (23). 15, female habitus (in lateral view); 16, female wing; 17, female abdomen (in dorsal view); 18, female abdomen (in lateral view); 19, aculeus; 20, distal part of aculeus (magnified); 21, apex of aculeus (at large magnification); 22, spermatheca; 23, glans of phallus.
Figs 8–14 in New records of flies of the genus Tephritis (Diptera: Tephritidae) from the Caucasus and Transcaucasia, with notes on other tephritid species
Figs 8–14. Tephritis conura from European Russia (Ulyanovsk Prov.), details of female (8–13) and male (14). 8–9, female wing; 10, female habitus (in lateral view); 11, aculeus; 12, apex of aculeus (at large magnification); 13, spermatheca; 14, glans of phallus. 8–9, 11–14, reared from Cirsium heterophyllum, 10, reared from C. oleraceum.
Figs. 20–23 in Atherigona culicivora, new species (Insecta: Diptera: Muscidae), a bamboo shoot-fly feeding on mosquito larvae
Figs. 20–23. Atherigona culicivora, new species. Third instar larva (20, 21) and puparium (22, 23): 20, right hand side of anal plate; 21, creeping welt spicules; 22, puparium, outline in dorsal view; 23, first thoracic segment in dorsolateral view.
Figs. 1–3 in Atherigona culicivora, new species (Insecta: Diptera: Muscidae), a bamboo shoot-fly feeding on mosquito larvae
Figs. 1–3. Atherigona culicivora, new species: 1, holotype male, lateral view, body length ca. 6 mm; 2, holotype male, dorsal view; 3, two males, lateral view, showing terminalia (Malaysia, Pahang state, Genting Highlands, 3.381°N 101.779°E, at 800 m, 1 to 7 December 2019; photos: E. Makovetskaya and N. Vikhrev).
Figs. 18–19 in Atherigona culicivora, new species (Insecta: Diptera: Muscidae), a bamboo shoot-fly feeding on mosquito larvae
Figs. 18–19. Atherigona culicivora, new species. Third instar larva: 18, cephalopharyngeal skeleton, lateral view; 19, cephalopharyngeal skeleton, anterior section from above.
Figs. 13–15 in Atherigona culicivora, new species (Insecta: Diptera: Muscidae), a bamboo shoot-fly feeding on mosquito larvae
Figs. 13–15. Atherigona culicivora, new species. Female: 13, ovipositor, ventral view; 14, tip of ovipositor, dorsal view; 15, sternite 7.
Figs. 28–34 in Atherigona culicivora, new species (Insecta: Diptera: Muscidae), a bamboo shoot-fly feeding on mosquito larvae
Figs. 28–34. Atherigona culicivora, new species. Habitat and life stages: 28, larval habitat: A stump of a young bamboo shoot of Gigantochloa scortechinii in Peninsular Malaysia with A. culicivora females and other flies breeding in the shoots, such as Tipulidae and Drosophilidae; 29, a gravid A. culicivora female, feeding on the wall of a cut bamboo shoot, photographed in the field; 30, two larvae floating in the water, the black posterior spiracles are attached to the water surface, note mosquito larvae of different sizes; 31, larva feeding on a mosquito larva; 32, eggs deposited on the wet bamboo shoot sheath; 33, larva pupariating on the bamboo wall above the water surface, note the foam surrounding the anterior part of the body; 34, three puparia attached to the bamboo wall.
Figs. 24–27 in Atherigona culicivora, new species (Insecta: Diptera: Muscidae), a bamboo shoot-fly feeding on mosquito larvae
Figs. 24–27. Atherigona culicivora, new species. Last instar larva (SEM photographs): 24, head region; 25, maxillary ring; 26, anal division with posterior spiracles; 27, apical surface of the posterior spiracle.
Figs. 4–12 in Atherigona culicivora, new species (Insecta: Diptera: Muscidae), a bamboo shoot-fly feeding on mosquito larvae
Figs. 4–12. Atherigona culicivora, new species. Male: 4, head, lateral view; 5, foreleg, posterior view; 6, tarsomere 5 of foreleg, dorsal view; 7, wing; 8, abdomen, dorsal view; 9, apex of abdomen, lateral view; 10, hypopygium, lateral view; 11, epandrium and cercal plate, dorsal view; 12, tip of cercal plate; cp – cercal plate; ss – surstylus; t – tergite.
Figs. 16–17 in Atherigona culicivora, new species (Insecta: Diptera: Muscidae), a bamboo shoot-fly feeding on mosquito larvae
Figs. 16–17. Atherigona culicivora, new species. Egg and third instar larva: 16, egg, lateral surface of shell; 17, third instar larva, buccal cavity spicules.
Figure 5 A–B in Phylogenetic relationships of the bacchine Flower Flies (Diptera: Syrphidae) based on molecular characters, with a description of a new species of Melanostoma (Schiner, 1860)
Figure 5 A–B: Melanostoma quadripunctatum (Skevington & Thompson, 2014) comb. nov., male holotype. A, lateral view; B, habitus. C, Melanostoma janeceki Mengual, sp. nov., male holotype, ventral view. D, Melanostoma janeceki Mengual, sp. nov., male paratype (ZFMK-DIP-00015941), detail of metasternum (ms). E, Melanostoma janeceki Mengual, sp. nov., female paratype (ZFMK-DIP-00015957), ventral view. F, Melanostoma quadripunctatum, female (ZFMK-DIP-00015952), ventral view.
Figure 4 A–B in Phylogenetic relationships of the bacchine Flower Flies (Diptera: Syrphidae) based on molecular characters, with a description of a new species of Melanostoma (Schiner, 1860)
Figure 4 A–B: Melanostoma sp. from Cameroon (ZFMK-DIP-00015959) with complete metasternum. A, lateral view; B, habitus. C–H: Platycheirus solitarius (van Doesburg, 1955) comb. nov. C, female holotype, lateral view; D, female holotype, habitus; E, female holotype, Downloaded frontal from view; F, Brill. female com 12/ holotype 12/2023, labels 03:06;: G 37, PM female paratype, lateral viewvia; H, Open femaleAccess. paratypeThis, is headan, open lateralaccess view. article distributed under the terms of the CC-BY 4.0 License. https://creativecommons.org/licenses/by/4.0/
Figure 2 in Phylogenetic relationships of the bacchine Flower Flies (Diptera: Syrphidae) based on molecular characters, with a description of a new species of Melanostoma (Schiner, 1860)
Figure 2 Maximum-likelihood tree based on the combined dataset (COI, 28S, and 18S) using Garli v.2.1.17 and the structural alignment for 28S and 18S. Bootstrap support values (above) and Bayesian posterior probabilities (below) are depicted at the nodes (only>50 or>0.5, respectively). BS = Bootstrap support Downloaded from Brill.com 12/12/2023 03:06:37PM values; PP = Bayesian posteriorvia Open probabilities Access.. This is an open access article distributed under the terms of the CC-BY 4.0 License. https://creativecommons.org/licenses/by/4.0/
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.