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Figure 2 from: Leblanc L, Tsatsia F, Doorenweerd C (2021) Novel lures and COI sequences reveal cryptic new species of Bactrocera fruit flies in the Solomon Islands (Diptera, Tephritidae, Dacini). ZooKeys 1057: 49-103. https://doi.org/10.3897/zookeys.1057.68375
Figure 2 Species accumulation curves based on the 2018 survey of Solomon Islands A for all sampled sites with 95% confidence interval range B for the three individually sampled islands, and C comparing forest and agricultural sites separately on Guadalcanal and Kolombangara. Estimated species numbers for each curve (in brackets) based on the Chao 2 estimator.
Figure 18 from: Leblanc L, Tsatsia F, Doorenweerd C (2021) Novel lures and COI sequences reveal cryptic new species of Bactrocera fruit flies in the Solomon Islands (Diptera, Tephritidae, Dacini). ZooKeys 1057: 49-103. https://doi.org/10.3897/zookeys.1057.68375
Figure 18 Dacus solomonensis Malloch A head and scutum B, C abdomen D wing. Bactrocera penefurva Drew E head and scutum F abdomen G male wing H female wing. Bactrocera pagdeni (Malloch) I head and scutum J abdomen K wing. Zeugodacus univittatus (Drew) L head and scutum M abdomen N wing.
Figure 17 from: Leblanc L, Tsatsia F, Doorenweerd C (2021) Novel lures and COI sequences reveal cryptic new species of Bactrocera fruit flies in the Solomon Islands (Diptera, Tephritidae, Dacini). ZooKeys 1057: 49-103. https://doi.org/10.3897/zookeys.1057.68375
Figure 17 Bactrocera frauenfeldi (Schiner) A head B head and scutum C abdomen, male D wing E lateral view, female.
Figure 10 from: Leblanc L, Tsatsia F, Doorenweerd C (2021) Novel lures and COI sequences reveal cryptic new species of Bactrocera fruit flies in the Solomon Islands (Diptera, Tephritidae, Dacini). ZooKeys 1057: 49-103. https://doi.org/10.3897/zookeys.1057.68375
Figure 10 Bactrocera kolombangarae sp. nov. A head B head and scutum C abdomen D male genitalia E wing F lateral view.
Figure 19 from: Leblanc L, Tsatsia F, Doorenweerd C (2021) Novel lures and COI sequences reveal cryptic new species of Bactrocera fruit flies in the Solomon Islands (Diptera, Tephritidae, Dacini). ZooKeys 1057: 49-103. https://doi.org/10.3897/zookeys.1057.68375
Figure 19 Zeugodacus hamaceki Drew & Romig A head and scutum B abdomen C wing. Zeugodacus amoenus (Drew) D head and scutum E abdomen F wing. Zeugodacus cucurbitae (Coquillett) G head and scutum H abdomen I wing. Zeugodacus fuscipennulus (Drew & Romig) G head and scutum H abdomen I wing.
Figure 12 from: Leblanc L, Tsatsia F, Doorenweerd C (2021) Novel lures and COI sequences reveal cryptic new species of Bactrocera fruit flies in the Solomon Islands (Diptera, Tephritidae, Dacini). ZooKeys 1057: 49-103. https://doi.org/10.3897/zookeys.1057.68375
Figure 12 Bactrocera quasienochra sp. nov. A head B head and scutum C abdomen D male genitalia E wing F lateral view.
Figure 1 from: Leblanc L, Tsatsia F, Doorenweerd C (2021) Novel lures and COI sequences reveal cryptic new species of Bactrocera fruit flies in the Solomon Islands (Diptera, Tephritidae, Dacini). ZooKeys 1057: 49-103. https://doi.org/10.3897/zookeys.1057.68375
Figure 1 Map of the Solomon Islands, with groups of islands for distribution records, and trapping locations on Guadalcanal, Gizo and Kolombangara islands in the 2018 survey. Red circles are sites located in forest and blue triangles are sites in agricultural environments.
Figure 16 from: Leblanc L, Tsatsia F, Doorenweerd C (2021) Novel lures and COI sequences reveal cryptic new species of Bactrocera fruit flies in the Solomon Islands (Diptera, Tephritidae, Dacini). ZooKeys 1057: 49-103. https://doi.org/10.3897/zookeys.1057.68375
Figure 16 Bactrocera vargasi sp. nov. A head B head and scutum C abdomen D male genitalia E wing F lateral view.
Figure 14 from: Leblanc L, Tsatsia F, Doorenweerd C (2021) Novel lures and COI sequences reveal cryptic new species of Bactrocera fruit flies in the Solomon Islands (Diptera, Tephritidae, Dacini). ZooKeys 1057: 49-103. https://doi.org/10.3897/zookeys.1057.68375
Figure 14 Bactrocera tsatsiai sp. nov. A head B head and scutum C–G abdomen variants H male genitalia I wing.
Figure 3 from: Pohjoismäki J, Haarto A (2021) Scenopinus jerei, a new species of window fly (Diptera, Scenopinidae) from Finland. ZooKeys 1059: 135-156. https://doi.org/10.3897/zookeys.1059.70085
Figure 3 Female heads of Scenopinus species A lateral view of paratype Scenopinus jerei sp. nov., female head B frontal view of paratype Scenopinus jerei sp. nov., head C lateral view of Scenopinus fenestralis female head D frontal view of Scenopinus fenestralis female head E l ateral view of Scenopinus vitripennis female head. Photograph D. Schimrosczyk F frontal view of Scenopinus vitripennis female head. Photograph D. Schimrosczyk G lateral view of Scenopinus glabrifrons female head H frontal view of Scenopinus glabrifrons female head. Scale bar: 500 mm.
Figure 6 from: Pohjoismäki J, Haarto A (2021) Scenopinus jerei, a new species of window fly (Diptera, Scenopinidae) from Finland. ZooKeys 1059: 135-156. https://doi.org/10.3897/zookeys.1059.70085
Figure 6 Identification of ScenopinidaeA male Scenopinus fenestralis. Hanko, Finland, June 22, 2021. Note the three stripes on the abdomen caused by the white integument protruding between the tergites. These should not be confused with white bands of microtomentum on tergites of some Scenopinus species. Photograph by J. Pohjoismäki B illustration of Caenoneura wing. Arrow pointing the petiole on r5. Drawn after Kelsey (1969)C generic Scenopinus wing. Modified from Winterton and Gaimari (2017)D wing venation in albicinctus-group with R4 branching from R5 beyond the middle of cell r5 (arrow; compare with C) E Wing of Scenopinus griseus (Kröber) with narrow cu cell. Drawn after Narchuk (1988).
Figure 5 from: Pohjoismäki J, Haarto A (2021) Scenopinus jerei, a new species of window fly (Diptera, Scenopinidae) from Finland. ZooKeys 1059: 135-156. https://doi.org/10.3897/zookeys.1059.70085
Figure 5 Maximum likelihood tree of COI sequence similarities among Scenopinus spp. Numbers at nodes indicate posterior probabilities and scale bar the relative sequence divergence. BOLD sample ID number is given after the species name.
Figure 2 from: Pohjoismäki J, Haarto A (2021) Scenopinus jerei, a new species of window fly (Diptera, Scenopinidae) from Finland. ZooKeys 1059: 135-156. https://doi.org/10.3897/zookeys.1059.70085
Figure 2 Male heads of Scenopinus species A lateral view of holotype Scenopinus jerei sp. nov., male head B frontal view of holotype Scenopinus jerei sp. nov., head C lateral view of Scenopinus fenestralis male head D frontal view of Scenopinus fenestralis male head. For the illustrations of male heads of S. vitripennis and S. glabrifrons, see Krivosheina (1981). Scale bar: 500 mm.
Figure 4 from: Pohjoismäki J, Haarto A (2021) Scenopinus jerei, a new species of window fly (Diptera, Scenopinidae) from Finland. ZooKeys 1059: 135-156. https://doi.org/10.3897/zookeys.1059.70085
Figure 4 Scenopinus male terminalia A hypandrium of Scenopinus jerei sp. nov. paratype B epandrium of Scenopinus jerei sp. nov. paratype C hypandrium of Scenopinus fenestralisD epandrium of Scenopinus fenestralisE terminal segments of Scenopinus jerei sp. nov. paratype F aedeagus of Scenopinus jerei sp. nov. paratype G terminal segments of Scenopinus fenestralisH aedeagus of Scenopinus fenestralis. aed – aedeagus; aed lb– aedeagal lobe; distph – distiphallus; ej apod – ejaculatory apodeme; epand – epandrium; goncx apod – gonocoxal apodeme; gonst – gonostylym; hypand – hypandrium; pm sh – parameral sheath. For the illustrations of male terminalia of S. vitripennis and S. glabrifrons, see Krivosheina (1981).
Figure 1 from: Pohjoismäki J, Haarto A (2021) Scenopinus jerei, a new species of window fly (Diptera, Scenopinidae) from Finland. ZooKeys 1059: 135-156. https://doi.org/10.3897/zookeys.1059.70085
Figure 1 Habitus of northern European Scenopinus fenestralis group species of ScenopinidaeA holotype male of Scenopinus jerei sp. nov., Kouvola, Finland B paratype female of Scenopinus jerei sp. nov., Kouvola, Finland C male of Scenopinus fenestralis, Liperi, Finland D female of Scenopinus fenestralis, Liperi, Finland E male of Scenopinus vitripennis, Württburg, Germany. Photograph by Susanne Leidenroth F female of Scenopinus vitripennis, Warszawa, Poland. Photograph by D. Schimrosczyk G female of Scenopinus glabrifrons, Ockstadt, Germany. Scale bar: 500 mm.
Genomic signals of admixture and reinforcement between two closely related species of European sepsid flies
<p>Interspecific gene flow by hybridization may weaken species barriers and adaptive divergence, but can also initiate reinforcement of reproductive isolation through natural and sexual selection. However, the extent of interspecific gene flow and its consequences for the initiation and maintenance of species barriers in natural systems remain poorly understood. We first applied coalescence simulations and approximate Bayesian calculations based on microsatellite data to infer the yet unknown demographic history of the two closely related European dung fly sister species Sepsis cynipsea and Sepsis neocynipsea (Diptera: Sepsidae). To assess genome-wide patterns of historical gene flow between both species, we quantified discordances in derived allele sharing (D-statistics, ABBA-BABA test) in whole-genome resequencing data from pooled DNA of male specimens originating from natural and laboratory populations. We contrasted genome-wide variation in DNA sequence differences between samples from sympatric populations of the two species in France and Switzerland with that of interspecific differences between pairs of samples involving allopatric populations from Estonia and Italy. At one site in the French Cevennes we detected a relative excess of DNA sequence identity, suggesting interspecific gene flow in sympatry. In contrast, at two sites in Switzerland, we observed a relative depletion of DNA sequence identity compatible with reinforcement of species boundaries in sympatry. Our results suggest that the species boundaries between S. cynipsea and S. neocynipsea in Europe depend on the eco-geographic context.</p>
FIGURES 24–29. Female Apocephalus species, segment 6 in Revision of the Apocephalus mucronatus group of ant decapitating flies (Diptera: Phoridae)
FIGURES 24–29. Female Apocephalus species, segment 6, ventral.
FIGURES 17–23. Female Apocephalus species, tergite 6 in Revision of the Apocephalus mucronatus group of ant decapitating flies (Diptera: Phoridae)
FIGURES 17–23. Female Apocephalus species, tergite 6, dorsal.
Figure 3 from: Winterton S, Gillung J (2012) A new species of spider fly in the genus Sabroskya Schlinger from Malawi, with a key to Acrocerinae world genera (Diptera, Acroceridae). ZooKeys 171: 1-15. https://doi.org/10.3897/zookeys.171.2137
Figure 3 - Acrocerinae: A, Sabroskya ogcodoides Schlinger, 1960a; B, Sabroskya schlingeri sp. n.; C, Sabroskya schlingeri sp. n., male head, lateral view. Scale line = 0.2 mm.
Figure 5 from: Winterton S, Gillung J (2012) A new species of spider fly in the genus Sabroskya Schlinger from Malawi, with a key to Acrocerinae world genera (Diptera, Acroceridae). ZooKeys 171: 1-15. https://doi.org/10.3897/zookeys.171.2137
Figure 5 - Sabroskya schlingeri sp. n., male, lateral view [Morphbank: 705551]. Body length = 5.0 mm.
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.