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Figure 1 from: Landry J, Hebert P (2013) Plutella australiana (Lepidoptera, Plutellidae), an overlooked diamondback moth revealed by DNA barcodes. ZooKeys 327: 43-63. https://doi.org/10.3897/zookeys.327.5831
Figure 1 - NJ tree based on K2P distances for the barcode region of the cytochrome c oxidase I gene among seven species of the genus Plutella and one member of the closely allied genus Eidophasia. Because of the large number of specimens for both Plutella xylostella and Plutella australiana, the tree nodes have been collapsed and specimen records are plotted by state for Australia and by country of origin in other cases. The bracketed numerals indicate the number of specimens from each site. The type specimen of Plutella karsholtella is reassigned to Plutella xylostella and is the only specimen of this species from Spain (Canary Islands).
Figures 4-9 from: Ding J-H, Sun J-L, Zhang X (2017) A new species of the water mite genus Sperchon Kramer, 1877 from China, with identifying Sperchon rostratus Lundblad, 1969 through DNA barcoding (Acari, Hydrachnidia, Sperchontidae). ZooKeys 707: 47-61. https://doi.org/10.3897/zookeys.707.13493
Figures 4-9 - Sperchon fuxiensis sp. n., Female 4 infracapitulum 5 chelicera 6 palp 7 IV-L-1–IV-L-6 8 claw 9 dorsal seta of IV-L-5.
Figures 18-19 from: Ding J-H, Sun J-L, Zhang X (2017) A new species of the water mite genus Sperchon Kramer, 1877 from China, with identifying Sperchon rostratus Lundblad, 1969 through DNA barcoding (Acari, Hydrachnidia, Sperchontidae). ZooKeys 707: 47-61. https://doi.org/10.3897/zookeys.707.13493
Figures 18-19 - Sperchon rostratus Lundblad, 1969, Female 18 idiosoma, dorsal view 19 idiosoma, ventral view.
Figures 13-17 from: Ding J-H, Sun J-L, Zhang X (2017) A new species of the water mite genus Sperchon Kramer, 1877 from China, with identifying Sperchon rostratus Lundblad, 1969 through DNA barcoding (Acari, Hydrachnidia, Sperchontidae). ZooKeys 707: 47-61. https://doi.org/10.3897/zookeys.707.13493
Figures 13-17 - Sperchon rostratus Lundblad, 1969, Male 13 infracapitulum 14 chelicera 15 palp 16 claw 17 IV-L-1–IV-L-6.
Figure 20 from: Ding J-H, Sun J-L, Zhang X (2017) A new species of the water mite genus Sperchon Kramer, 1877 from China, with identifying Sperchon rostratus Lundblad, 1969 through DNA barcoding (Acari, Hydrachnidia, Sperchontidae). ZooKeys 707: 47-61. https://doi.org/10.3897/zookeys.707.13493
Figure 20 - Phylogenetic tree based on barcode region of COI of Sperchon plumifer, Sperchon rostratus, and Sperchonopsis echphyma. The bootstrap proportions of neighbour-joining and maximum-likelihood are indicated above each branch in the format of NJ/ML. Sperchonopsis echphyma was used as the outgroup.
Figures 1-3 from: Ding J-H, Sun J-L, Zhang X (2017) A new species of the water mite genus Sperchon Kramer, 1877 from China, with identifying Sperchon rostratus Lundblad, 1969 through DNA barcoding (Acari, Hydrachnidia, Sperchontidae). ZooKeys 707: 47-61. https://doi.org/10.3897/zookeys.707.13493
Figures 1-3 - Sperchon fuxiensis sp. n., Female 1 idiosoma, dorsal view 2 idiosoma, ventral view 3 structure of integument.
Figures 10-12 from: Ding J-H, Sun J-L, Zhang X (2017) A new species of the water mite genus Sperchon Kramer, 1877 from China, with identifying Sperchon rostratus Lundblad, 1969 through DNA barcoding (Acari, Hydrachnidia, Sperchontidae). ZooKeys 707: 47-61. https://doi.org/10.3897/zookeys.707.13493
Figures 10-12 - Sperchon rostratus Lundblad, 1969, Male 10 idiosoma, dorsal view 11 idiosoma, ventral view 12 structure of integument.
Figure 9 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 9 - Restriction fragments of COI PCR products (restriction enzyme, species): 1 AhlI, E. maura or E. testudinaria 2 AhlI, E. integriceps 3 PsiI, E. maura or E. testudinaria 4 PsiI, E. integriceps 5 Bst2UI, E. maura or E. testudinaria 6 Bst2UI, E. integriceps; M, 100 bp DNA ladder.
Figure 8 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 8 - Neighbor joining analysis of COI gene sequences from Eurygaster species. * - sequences obtained in this work.
Figure 5 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 5 - Species of the genus Eurygaster Laporte, general view: A E. integriceps (Puton) B E. maura L. C E. testudinaria (Geoffroy) D E. dilaticollis Dohrn. Specimens A–C were collected in the Voronezh Region; specimen D was from the Teberda Nature Reserve, Caucasus.
Figure 2 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 2 - Range of Eurygaster maura (Linnaeus, 1758) (after Göllner-Scheiding 2006 and Vinokurov et al. 2010).
Figure 7 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 7 - Structural details of Eurygaster Laporte species (a, clypeus; b, jugal plate): A E. austriaca (Schrank), head, dorsal view B E. integriceps (Puton), dorsal view C E. integriceps, aedeagus D E. maura L., aedeagus E E. testudinaria (Geoffroy), aedeagus (after Golub, 1980, with changes).
Figure 6 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 6 - Head, anterior view (A, B) and female median genital plates (C, D) of E. maura L. (A, C) and E. testudinaria (Geoffroy) (B, D).
Figure 3 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 3 - Range of Eurygaster testudinaria (Geoffray, 1758) (after Göllner-Scheiding 2006 and Vinokurov et al. 2010).
Figure 4 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 4 - Range of Eurygaster dilaticollis Dohrn, 1860 (after Göllner-Scheiding 2006 and Vinokurov et al. 2010).
Figure 1 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 1 - Range of Eurygaster integriceps (Puton, 1881) (after Göllner-Scheiding 2006 and Vinokurov et al. 2010).
Figure 1 from: Baranov V, Lin X, Hübner J, Chimeno C (2024) Uncovering the hidden diversity of non-biting midges (Diptera, Chironomidae) from central Namibia, using morphology and DNA barcodes. African Invertebrates 65(1): 13-36. https://doi.org/10.3897/afrinvertebr.65.111920
Figure 1 A–D photographs of the collection sites involved in this study A Naukluft Mountain Zebra Park, Tufa waterfalls; 24°15'47.88"S, 16°13'44.76"E; 1 Dec. 2018 B Malaise trap deployed at Von Bach Dam Nature Reserve, Swakop river outflow; 22°0'53.28"S, 16°57'12.24"E; 2 Dec. 2018; facing towards the dam C Von Bach Dam Nature Reserve, Swakop river outflow, river valley; 22°0'53.28"S, 16°57'12.24"E; 2 Dec. 2018; facing away the dam D Von Bach Dam Nature Reserve, immediately above the dam; 2 Dec. 2018; 22°0'53.28"S, 16°57'12.24"E.
Figure 2 from: Baranov V, Lin X, Hübner J, Chimeno C (2024) Uncovering the hidden diversity of non-biting midges (Diptera, Chironomidae) from central Namibia, using morphology and DNA barcodes. African Invertebrates 65(1): 13-36. https://doi.org/10.3897/afrinvertebr.65.111920
Figure 2 A–D photographs of the collection sites involved in this study A Windhoek, Arebbusch river22°34'28.92"S, 17°3'15.84"E; 3 Dec. 2018 B Windhoek, Arebbusch river, Goreangab Reservoir; 22°31'44.4"S, 17°0'3.6"E; 3 Dec. 2018 C Windhoek, Arebbusch river; 22°34'28.92"S, 17°3'15.84"E; 3 Dec. 2018 D Windhoek, Arebbusch river; 22°34'28.92"S, 17°3'15.84"E.
Figure 10 from: Baranov V, Lin X, Hübner J, Chimeno C (2024) Uncovering the hidden diversity of non-biting midges (Diptera, Chironomidae) from central Namibia, using morphology and DNA barcodes. African Invertebrates 65(1): 13-36. https://doi.org/10.3897/afrinvertebr.65.111920
Figure 10 Chironomini, adult males A, BChironomus transvaalensisCChironomus calipterusDDicrotendipes septemmaculatusEKiefferulus brevipalpisFParachironomus acutusGParacladopelma rhodesianusHPolypedilum abyssiniaeA, C–H hypopygia B head.
Figure 9 from: Baranov V, Lin X, Hübner J, Chimeno C (2024) Uncovering the hidden diversity of non-biting midges (Diptera, Chironomidae) from central Namibia, using morphology and DNA barcodes. African Invertebrates 65(1): 13-36. https://doi.org/10.3897/afrinvertebr.65.111920
Figure 9 Tanytarsini, adult males, hypopygia A, BCladotanytarsus pseudomancusCTanytarsus pallidulusDTanytarsus bifurcus.
ScienceDex guides
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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.