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2,620 results for “Molecular Phylogeny”
FIGURES 64–67 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 64–67. Male synthorax lateral: (64) L. sii holotype; (65) L. sii teneral male Gunung Pueh; (66) L. pasia SAB12_GOM1; (67) L. pendleburyi SAR13_14_GOM13.
FIGURES 60–63 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 60–63. Male synthorax lateral: (60) L. coomansi SAR09_10_GOM4; (61) L. sp. cf coomansi SAB12_GOM4; (62) L. schieli holotype; (63) L. williamsoni SAR11_12_GOM56.
FIGURES 42–45 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 42–45. Female head frontal: (42) L pendleburyi SAR16_GOM8; (43) L. schieli paratype SAR15_GOM6; (44) L. williamsoni SAR13_14_GOM51; (45) L. sp. cf williamsoni SAR11_12_GOM59.
FIGURES 36–41 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 36–41. Female head frontal: (36) L. coomansi SAR11_12_GOM48; (37) L. mariae holotype; (38) L. sp. cf coomansi PomS260; (39) L. pasia holotype; (40) L. sii paratype SAR13_14_GOM44; (41) L. species SAR11_12_GOM33.
FIGURES 18–23 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 18–23. Female head dorsal: (18) L. coomansi SAR11_12_GOM48; (19) L. mariae holotype; (20) L. sp. cf coomansi PomS260; (21) L. pasia holotype; (22) L. sii paratype SAR13_14_GOM44; (23) L. species SAR11_12_GOM33.
FIGURES 32–35 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 32–35. Female head dorsal detail; h—occipital horn; p—pit; s—occipital spur; t—tubercle: (32) L pendleburyi SAR16_GOM8; (33) L. schieli paratype SAR15_GOM6; (34) L. williamsoni SAR13_14_GOM51; (35) L. sp. cf williamsoni SAR11_12_GOM59.
FIGURE 1. COI gene tree for 29 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURE 1. COI gene tree for 29 specimens of Leptogomphus and three outgroup taxon. The best Maximum Likelihood tree is shown, with posterior probabilities from the Bayesian Inference analysis also depicted on the branches. Bootstrap values and posterior probabilities are shown if less than 100 or 1.0 respectively. RMNH collection codes are shown for each specimen, as well as the sex of the specimen and an indication of where it was collected.
FIGURES 4–9 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 4–9. Male head dorsal: (4) L. coomansi SAR09_10_GOM4; (5) L. pendleburyi SAR13_14_GOM13; (6) L. pasia SAB12_GOM1; (7) L. sii holotype; (8) L. schieli holotype; (9) L. williamsoni SAR11_12_GOM56.
FIGURES 56–59 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 56–59. Male synthorax dorsal: (56) L. pasia SAB12_GOM1; (57) L. sii holotype; (58) L. schieli holotype; (59) L. williamsoni SAR11_12_GOM56.
FIGURES 14–17 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 14–17. Male head frontal: (14) L. pasia SAB12_GOM1; (15) L. sii holotype; (16) L. schieli holotype; (17) L. williamsoni SAR11_12_GOM56.
FIGURES 52–55 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 52–55. Male synthorax dorsal: (52) L. coomansi SAR09_10_GOM4; (53) L. coomansi holotype; (54) L. sp. cf coomansi SAB12_GOM4; (55) L. pendleburyi SAR13_14_GOM13.
FIGURES 28–31 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 28–31. Female head dorsal detail; h—occipital horn; ot—occipital tube; p—pit; s—occipital spur; t—tubercle; thtubercle horn: (28) L. coomansi SAR11_12_GOM48; (29) L. mariae holotype; (30) L. sp. cf coomansi PomS260; (31) L. species SAR11_12_GOM33.
FIGURES 10–13 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 10–13. Male head frontal: (10) L. coomansi SAR09_10_GOM4; (11) L. coomansi holotype; (12) L. sp. cf coomansi SAB12_GOM4; (13) L. pendleburyi SAR13_14_GOM13.
FIGURES 46–51 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 46–51. Female head frontal detail; h—occipital horn; ot—occipital tube; t—tubercle; th—tubercle horn: (46) L. coomansi SAR11_12_GOM48; (47) L pendleburyi SAR16_GOM8; (48) L. schieli paratype SAR15_GOM6; (49) L. species SAR11_12_GOM33; (50) L. williamsoni SAR13_14_GOM51; (51) L. sp. cf williamsoni SAR11_12_GOM59.
FIGURES 24–27 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURES 24–27. Female head dorsal: (24) L pendleburyi SAR16_GOM8; (25) L. schieli paratype SAR15_GOM6; (26) L. williamsoni SAR13_14_GOM51; (27) L. sp. cf williamsoni SAR11_12_GOM59.
FIGURE 3. Phylogenetic reconstruction for 30 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURE 3. Phylogenetic reconstruction for 30 specimens of Leptogomphus and three outgroup taxa using the combined COI+ITS dataset. The best Maximum Likelihood tree is shown, with posterior probabilities from the Bayesian Inference analysis also depicted on the branches. Bootstrap values and posterior probabilities are shown if less than 100 or 1.0 respectively. RMNH collection codes are shown for each specimen, as well as the sex of the specimen and an indication of where it was collected.
FIGURE 2. ITS gene tree for 20 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)
FIGURE 2. ITS gene tree for 20 specimens of Leptogomphus and three outgroup taxon. The best Maximum Likelihood tree is shown, with posterior probabilities from the Bayesian Inference analysis also depicted on the branches. Bootstrap values and posterior probabilities are shown if less than 100 or 1.0 respectively. RMNH collection codes are shown for each specimen, as well as the sex of the specimen and an indication of where it was collected.
Supplementary material 4 from: Kise H, Fujii T, Masucci GD, Biondi P, Reimer JD (2017) Three new species and the molecular phylogeny of Antipathozoanthus from the Indo-Pacific Ocean (Anthozoa, Hexacorallia, Zoantharia). ZooKeys 725: 97-122. https://doi.org/10.3897/zookeys.725.21006
Phylogenetic tree of ITS-rDNA : Explanation note: Maximum likelihood (ML) tree based on internal transcribe spacer region of ribosomal DNA sequences. Numbers on nodes represent ML and neighbor-joining (NJ) bootstrap values (> 50% are shown). Bold branches indicate high supports of Bayesian posterior probabilities (> 0.95).
Supplementary material 2 from: Kise H, Fujii T, Masucci GD, Biondi P, Reimer JD (2017) Three new species and the molecular phylogeny of Antipathozoanthus from the Indo-Pacific Ocean (Anthozoa, Hexacorallia, Zoantharia). ZooKeys 725: 97-122. https://doi.org/10.3897/zookeys.725.21006
Phylogenetic tree of COI : Explanation note: Maximum likelihood (ML) tree based on cytochrome oxidase subunit I sequences. Numbers on nodes represent ML and neighbor-joining (NJ) bootstrap values (> 50% are shown). Bold branches indicate high supports of Bayesian posterior probabilities (> 0.95).
Supplementary material 3 from: Kise H, Fujii T, Masucci GD, Biondi P, Reimer JD (2017) Three new species and the molecular phylogeny of Antipathozoanthus from the Indo-Pacific Ocean (Anthozoa, Hexacorallia, Zoantharia). ZooKeys 725: 97-122. https://doi.org/10.3897/zookeys.725.21006
Phylogenetic tree of 16S-rDNA : Explanation note: Maximum likelihood (ML) tree based on mitochondrial 16S ribosomal DNA sequences. Numbers on nodes represent ML and neighbor-joining (NJ) bootstrap values (> 50% are shown). Bold branches indicate high supports of Bayesian posterior probabilities (> 0.95).
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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.