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1,696 results for “DNA sequence”
Figure 3 from: Balke M, Skale A, Tänzler R, Hendrich L (2012) High mitochondrial DNA sequence divergence in New Guinea Carabdytes stream beetles and the taxonomist's dilemma when other evidence is kind of subtle… (and collecting localities are far far away). ZooKeys 247: 31-43. https://doi.org/10.3897/zookeys.247.3812
Figure 3 - Morphological characters, above habitus, left Carabdytes upin tindige from the Bird's Head (12.0 mm long), right Carabdytes upin upin from Papua: Aipomek area (12.9 mm long); below left median lobe of aedeagus in lateral view of Carabdytes upin tindige (Carabdytes upin upin is identical), its paramere, right, paramere of Carabdytes upin upin from Papua: Aipomek area. Scale for genitalia is 0.1 mm.
Figure 2 from: Balke M, Skale A, Tänzler R, Hendrich L (2012) High mitochondrial DNA sequence divergence in New Guinea Carabdytes stream beetles and the taxonomist's dilemma when other evidence is kind of subtle… (and collecting localities are far far away). ZooKeys 247: 31-43. https://doi.org/10.3897/zookeys.247.3812
Figure 2 - Maximum likelihood tree based on cox1 data, the tree was rooted with Rhantus guadalcanalensis Balke (pruned here), colored buttons represent diagnostic nuclear DNA characters and their positions in our sequence alignment (there are found characters supporting the node between Carabdytes 3084 and all others, and one that is shared between 3084 as well as the two specimens 4317 & 4318 in Simbai 138) .
Figure 5 from: Radea C, Parmakelis A, Papadogiannis V, Charou D, Triantis K (2013) The hydrobioid freshwater gastropods (Caenogastropoda, Truncatelloidea) of Greece: new records, taxonomic re-assessments using DNA sequence data and an update of the IUCN Red List Categories. ZooKeys 350: 1-20. https://doi.org/10.3897/zookeys.350.6001
Figure 5 - A Pseudamnicola negropontina B Pseudamnicola macrostoma. The first whorls of the shells of Pseudamnicola negropontina wereheavily encrusted with epibionts. Scale bar 1 mm.
Figure 2 from: Radea C, Parmakelis A, Papadogiannis V, Charou D, Triantis K (2013) The hydrobioid freshwater gastropods (Caenogastropoda, Truncatelloidea) of Greece: new records, taxonomic re-assessments using DNA sequence data and an update of the IUCN Red List Categories. ZooKeys 350: 1-20. https://doi.org/10.3897/zookeys.350.6001
Figure 2 - Sampling localities. A Ag. Sophia, Aitoloakarnania B Olympos, Karpathos C Stoupaioi, Evvoia D Peraia, Lake Vegorritis E Megali Vrysi, Argolida. The arrows point the exact site where the specimens were found.
Figure 4 from: Radea C, Parmakelis A, Papadogiannis V, Charou D, Triantis K (2013) The hydrobioid freshwater gastropods (Caenogastropoda, Truncatelloidea) of Greece: new records, taxonomic re-assessments using DNA sequence data and an update of the IUCN Red List Categories. ZooKeys 350: 1-20. https://doi.org/10.3897/zookeys.350.6001
Figure 4 - Graecoanatolica vegorriticola A Krya spring, Voiotia B Pigi Chariton, Voiotia C Lake Vegorritis, Pella. Scale bar 1 mm.
Figure 1 from: Radea C, Parmakelis A, Papadogiannis V, Charou D, Triantis K (2013) The hydrobioid freshwater gastropods (Caenogastropoda, Truncatelloidea) of Greece: new records, taxonomic re-assessments using DNA sequence data and an update of the IUCN Red List Categories. ZooKeys 350: 1-20. https://doi.org/10.3897/zookeys.350.6001
Figure 1 - Map showing the administrative units of Greece where "hydrobioid" localities were sampled during the fieldwork of this study.
Figure 3 from: Radea C, Parmakelis A, Papadogiannis V, Charou D, Triantis K (2013) The hydrobioid freshwater gastropods (Caenogastropoda, Truncatelloidea) of Greece: new records, taxonomic re-assessments using DNA sequence data and an update of the IUCN Red List Categories. ZooKeys 350: 1-20. https://doi.org/10.3897/zookeys.350.6001
Figure 3 - Hydrobioids collectedduring the survey in mainland and insular Greece. A Daphniola exigua (dorsal and ventral view) B Isimerope semele (dorsal and ventral view, Megali Vrysi) C Pseudoislamia balcanica (dorsal and ventral view, Ag. Sophia) D Pseudamnicola pieperi (Olympos) E Radomaniola cf. curta (spring of Louros river) F Radomaniola cf. curta (Ag. Sophia spring) G Trichonia trichonica H Pseudobithynia eubooensis. Scale bar 1 mm.
Figure 14 from: Freitag H (2013) Ancyronyx Erichson, 1847 (Coleoptera, Elmidae) from Mindoro, Philippines, with description of the larvae and two new species using DNA sequences for the assignment of the developmental stages. ZooKeys 321: 35-64. https://doi.org/10.3897/zookeys.321.5395
Figure 14 - Ancyronyx buhid Freitag, sp. n., larva (SEM photographs; not to scale): A detail of abdominal segment VII, lateral, with posterolateral projections and spiracles B head, dorsal C head, lateral D head, ventral E antenna, frontal F thoracic and first abdominal segments, ventral G midleg, ventral H abdominal segment IX, lateral I operculum, ventral.
Figure 11 from: Freitag H (2013) Ancyronyx Erichson, 1847 (Coleoptera, Elmidae) from Mindoro, Philippines, with description of the larvae and two new species using DNA sequences for the assignment of the developmental stages. ZooKeys 321: 35-64. https://doi.org/10.3897/zookeys.321.5395
Figure 11 - Ancyronyx tamaraw Freitag, sp. n., (SEM photographs in greyscale, stereo microscope photographs in colour; not to scale: see respective chapter for size measurements); adult male: A aedeagus, ventral B aedeagus, dorsal C, D aedeagus, lateral E sternite IX, ventral; adult female: F, G ovipositor, ventral; adult male: H sternite VIII, ventral; adult female: I sternite VIII, ventral.
Figures 2-9 from: Freitag H (2013) Ancyronyx Erichson, 1847 (Coleoptera, Elmidae) from Mindoro, Philippines, with description of the larvae and two new species using DNA sequences for the assignment of the developmental stages. ZooKeys 321: 35-64. https://doi.org/10.3897/zookeys.321.5395
Figures 2-9 - Habitus (not to scale) of 2 Ancyronyx minerva, adult 3 Ancyronyx tamaraw, sp. n. adult 4 Ancyronyx buhid, sp. n., adult 5 Ancyronyx minerva, larva 6 Ancyronyx tamaraw, sp. n., larva 7 Ancyronyx buhid, sp. n., larva 8 Ancyronyx schillhammeri, adult 9 Ancyronyx schillhammeri, larva.
Figure 16 from: Freitag H (2013) Ancyronyx Erichson, 1847 (Coleoptera, Elmidae) from Mindoro, Philippines, with description of the larvae and two new species using DNA sequences for the assignment of the developmental stages. ZooKeys 321: 35-64. https://doi.org/10.3897/zookeys.321.5395
Figure 16 - Collecting sites of the Ancyronyx species in Mindoro Island, including enlarged map of the Baroc River Catchment.
Figure 13 from: Freitag H (2013) Ancyronyx Erichson, 1847 (Coleoptera, Elmidae) from Mindoro, Philippines, with description of the larvae and two new species using DNA sequences for the assignment of the developmental stages. ZooKeys 321: 35-64. https://doi.org/10.3897/zookeys.321.5395
Figure 13 - Ancyronyx buhid Freitag, sp. n., (SEM photographs in greyscale, stereo microscope photographs in colour; not to scale); adult male: A head, ventral B entire body, ventral C adult female: ventrite 5, ventral; adult male: D ventrite 5, ventral; adult female: E tergite VIII, dorsal; adult male: F tergite VIII, dorsal G sternite IX, ventral; aedeagus, ventral; adult female: I sternite VIII, ventral; adult male: J proximal tarsal segment, lateral K aedeagus, dorsal L aedeagus, ventral; M, N aedeagus, lateral E adult female: O, P ovipositor, ventral.
Figure 1 from: Freitag H (2013) Ancyronyx Erichson, 1847 (Coleoptera, Elmidae) from Mindoro, Philippines, with description of the larvae and two new species using DNA sequences for the assignment of the developmental stages. ZooKeys 321: 35-64. https://doi.org/10.3897/zookeys.321.5395
Figure 1 - Phylogram of the consensus tree of the Bayesian analysis with branch lengths measured in expected substitutions per site. Posterior probability values (printed when > 0.5) at respective branches. Sample labels with developmental stage and ENA/GenBank code.
Figure 10 from: Freitag H (2013) Ancyronyx Erichson, 1847 (Coleoptera, Elmidae) from Mindoro, Philippines, with description of the larvae and two new species using DNA sequences for the assignment of the developmental stages. ZooKeys 321: 35-64. https://doi.org/10.3897/zookeys.321.5395
Figure 10 - Ancyronyx tamaraw Freitag, sp. n., (SEM photographs in greyscale, stereo microscope photographs in colour; not to scale: see respective chapter for size measurements); adult male: A head, frontal B antenna, frontal C maxillary and labial palpi, frontal D head, ventral E throax and abdomen, ventral; adult female: F, G ventrite 5, ventral; adult male: H, I ventrite 5, ventral; adult female: J, K tergite VIII, dorsal; adult male: L, M tergite VIII, dorsal.
Figure 15 from: Freitag H (2013) Ancyronyx Erichson, 1847 (Coleoptera, Elmidae) from Mindoro, Philippines, with description of the larvae and two new species using DNA sequences for the assignment of the developmental stages. ZooKeys 321: 35-64. https://doi.org/10.3897/zookeys.321.5395
Figure 15 - Ancyronyx schillhammeri Jäch, 1994, larva (SEM photographs) not to scale): A detail of abdominal segments II–III, dorsal, with posterolateral projections and spiracles B detail of abdominal segments VI–VII, ventral, with posterolateral projections and spiracles C head, dorsal D detail of head and prothorax, ventral E antenna, ventral F maxillae and labium, ventral G pronotum with signa, dorsal H thorax, ventral I abdominal segment IX, dorsal J midleg, ventral.
Figure 12 from: Freitag H (2013) Ancyronyx Erichson, 1847 (Coleoptera, Elmidae) from Mindoro, Philippines, with description of the larvae and two new species using DNA sequences for the assignment of the developmental stages. ZooKeys 321: 35-64. https://doi.org/10.3897/zookeys.321.5395
Figure 12 - Ancyronyx tamaraw Freitag, sp. n., larva (SEM photographs; not to scale): A detail of abdominal segment III, lateral, with posterolateral projections and spiracles B head, dorsal C head, frontal D head, ventrolateral E meso- and metathoracic and first and second abdominal segments, ventral F lateral parts of median sclerites of abdominal venter, with setiferous tubercles and lateral projections G abdominal segments VIII and IX, dorsal H operculum, ventral.
Figures 15-17 from: Kurina O, Õunap E, Põldmaa K (2015) Two new Neuratelia Rondani (Diptera, Mycetophilidae) species from Western Palaearctic: a case of limited congruence between morphology and DNA sequence data. ZooKeys 496: 105-129. https://doi.org/10.3897/zookeys.496.9315
Figures 15-17 - Male terminalia, dorsal view, tergite 9 removed. Neuratelia jabalmoussae sp. n. (15), Neuratelia caucasica Zaitzev, 1994 (16) and Neuratelia minor (Lundström, 1912) (17). Scale bar = 0.1 mm.
Figures 23-26 from: Kurina O, Õunap E, Põldmaa K (2015) Two new Neuratelia Rondani (Diptera, Mycetophilidae) species from Western Palaearctic: a case of limited congruence between morphology and DNA sequence data. ZooKeys 496: 105-129. https://doi.org/10.3897/zookeys.496.9315
Figures 23-26 - Male terminalia of Neuratelia nemoralis (Meigen, 1818) (23, 25) and Neuratelia salmelai sp. n. (24, 26). Lateral view (23, 24) and internal view of the gonostylus (25, 26). Scale bar = 0.1 mm. For abbreviations: see Figs 7–8 and 19–22.
Figures 7-8 from: Kurina O, Õunap E, Põldmaa K (2015) Two new Neuratelia Rondani (Diptera, Mycetophilidae) species from Western Palaearctic: a case of limited congruence between morphology and DNA sequence data. ZooKeys 496: 105-129. https://doi.org/10.3897/zookeys.496.9315
Figures 7-8 - Male terminalia of Neuratelia jabalmoussae sp. n., dorsal view (7) and ventral view (8). Scale bar = 0.1 mm. Abbreviations: cerc = cerci; gc = gonocoxite; gc vam = ventroapical margin of gonocoxite; gc vl = ventroapical lobe of gonocoxite; gst db = dorsal branch of gonostylus; gst ib = internal branch of gonostylus; gst mb = medial branch of gonostylus; gst vb = ventral branch of gonostylus; tg 9 = IX tergite.
Figures 27-28 from: Kurina O, Õunap E, Põldmaa K (2015) Two new Neuratelia Rondani (Diptera, Mycetophilidae) species from Western Palaearctic: a case of limited congruence between morphology and DNA sequence data. ZooKeys 496: 105-129. https://doi.org/10.3897/zookeys.496.9315
Figures 27-28 - Male terminalia, dorsal view, tergite 9 removed. Neuratelia nemoralis (27) and Neuratelia salmelai sp. n. (28). Scale bar = 0.1 mm.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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