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684 results for “Phylogenetic placement”
FIGURE 2 in Phylogenetic placement of Specklinia ordinata in Madisonia (Pleurothallidinae, Orchidaceae)
FIGURE 2. Maximum likelihood tree of Pleurothallidinae based on analysis of combined nuclear and plastid data, emphasizing the placement of Specklinia ordinata (red arrow). Numbers at the nodes represent maximum likelihood bootstrap percentages/Bayesian posterior probabilities.
FIGURE 1 in Phylogenetic placement of Specklinia ordinata in Madisonia (Pleurothallidinae, Orchidaceae)
FIGURE 1. Madisonia ordinata (cultivated specimen Ponert 1789). A., B. Flower. C. Habit. Photo by J. Ponert.
FIGURE 8 in Description and phylogenetic placement of a new species of Patania (Lepidoptera Crambidae: Spilomelinae) resembling P. harutai (Inoue, 1955)
FIGURE 8. Cornuti in phallus of Japanese 10 Patania species. A: P. balteata, B: P. brevipennis, C: P. chlorophanta, D: P. crepuscularia, E: P. harutai, F: P. punctimarginalis, G: P. ruralis, H: P. sabinusalis, I: P. scinisalis, J: P. verecunda.
FIGURE 7 in Description and phylogenetic placement of a new species of Patania (Lepidoptera Crambidae: Spilomelinae) resembling P. harutai (Inoue, 1955)
FIGURE 7. Gnathos and uncus of Japanese 10 Patania species. A: P. balteata, B: P. brevipennis, C: P. chlorophanta, D: P. crepuscularia, E: P. harutai, F: P. punctimarginalis, G: P. ruralis, H: P. sabinusalis, I: P. scinisalis, J: P. verecunda. Black arrows indicate a transverse gnathos and red arrows indicate a median process of the gnathos.
FIGURE 2 in Description and phylogenetic placement of a new species of Patania (Lepidoptera Crambidae: Spilomelinae) resembling P. harutai (Inoue, 1955)
FIGURE 2. Adults of two Patania species dorsal view. A: P. crepuscularia sp. nov. holotype male. B: ditto, paratype female. C: P. harutai male. D: ditto, female. Scale bars = 10.0 mm. Cited and modified from Matsui and Naka (2021).
FIGURE 6 in Description and phylogenetic placement of a new species of Patania (Lepidoptera Crambidae: Spilomelinae) resembling P. harutai (Inoue, 1955)
FIGURE 6. Maximum likelihood (ML) phylotree of Japanese Patania species. Nodes are labeled with the BS from ML and PP from BI as BS | PP. The position of one branch differed between the ML and BI phylotrees; this branch's placement in the BI tree is indicated by a red arrow.
FIGURE 1 in Description and phylogenetic placement of a new species of Patania (Lepidoptera Crambidae: Spilomelinae) resembling P. harutai (Inoue, 1955)
FIGURE 1. Type series of P. harutai. A: holotype male, B: ditto, labels. C: a paratype male, D: ditto, genitalia, E: ditto labels. Black arrows indicate the adult characters to diagnose P. harutai and P. crepuscularia sp. nov.
FIGURE 4 in Description and phylogenetic placement of a new species of Patania (Lepidoptera Crambidae: Spilomelinae) resembling P. harutai (Inoue, 1955)
FIGURE 4. Male genitalia of two Patania species. A: P. crepuscularia sp. nov. (gen. slide no. YM482), B: P. harutai (gen. slide no. YM483). Scale bars = 1.0 mm.
FIGURE 5. 50 in A new species of Ecitonides Wasmann, 1894 (Coleoptera: Staphylinidae: Paederinae) from Peru and phylogenetic placement of the genus based on molecular data
FIGURE 5. 50% majority rule consensus tree from the Bayesian phylogenetic analysis of molecular data. Posterior probabilities are given at the respective nodes.
FIGURE 6 in A new species of Ecitonides Wasmann, 1894 (Coleoptera: Staphylinidae: Paederinae) from Peru and phylogenetic placement of the genus based on molecular data
FIGURE 6. RoguePlots showing support for the placement of the Ecitonides constanceae sp. nov. Colour key represents the percentage of trees that Ecitonides constanceae was sister to a particular taxon.
FIGURE 4. A in A new species of Ecitonides Wasmann, 1894 (Coleoptera: Staphylinidae: Paederinae) from Peru and phylogenetic placement of the genus based on molecular data
FIGURE 4. A. Distribution maps of all species of Ecitonides. B. Surrounding habitat of E. costanceae sp. nov. C. Light sheet at which the E. costanceae sp. nov. was collected.
Fig. 10 in The Enigmatic Dead-Leaf Miner Geochus Broun (Coleoptera: Curculionidae): Phylogenetic Placement, a New Species, and Lectotype Designations
Fig. 10. Geochus kuscheli, new species, confocal microscope images. Mouthparts: A) Labium, ventral view, B) Maxilla, ventral view, C) Left mandible, dorsal view, D) Right mandible, dorsal view. E) Dorsal view of the apicoventral portion of rostrum showing pharyngeal plate (arrow), F) Lateral view of meso- and metathorax showing reduced hind wing.
Fig. 9 in The Enigmatic Dead-Leaf Miner Geochus Broun (Coleoptera: Curculionidae): Phylogenetic Placement, a New Species, and Lectotype Designations
Fig. 9. Geochus kuscheli, new species, male (A–C) and female (D–E) terminalia, confocal microscope images. A) Aedeagus, dorsal view, B) Aedeagus, lateral view, C) Sternites VIII (with spiculum gastrale) and IX (arrow), D) Sternite VIII and spermatheca, E) Enlargement of spermatheca in D.
Fig. 5. SEM images. A in The Enigmatic Dead-Leaf Miner Geochus Broun (Coleoptera: Curculionidae): Phylogenetic Placement, a New Species, and Lectotype Designations
Fig. 5. SEM images. A) Geochus inaequalis, protarsus, the arrow indicating absence of pretarsal claw (ventral aspect). G. rufipictus: B) Head (dorso-anterior aspect), C) Enlargement of frons and dorsal surface of rostrum, D) Mesonotum, E) Left elytron. F) G. rugulosus, mesonotum.
Fig. 4. SEM images, Geochus inaequalis. A in The Enigmatic Dead-Leaf Miner Geochus Broun (Coleoptera: Curculionidae): Phylogenetic Placement, a New Species, and Lectotype Designations
Fig. 4. SEM images, Geochus inaequalis. A) Enlargement of frons and dorsal surface of rostrum, B) Enlargement of setae/scales on dorsal surface of rostrum, showing canal openings of wax glands (arrows), C) Mesonotum, D) Left elytron, E) Enlargement of scale on elytron, showing canal opening of the wax gland, F) Protarsus, the arrow indicating absence of pretarsal claw (dorsal aspect).
Fig. 14 in The Enigmatic Dead-Leaf Miner Geochus Broun (Coleoptera: Curculionidae): Phylogenetic Placement, a New Species, and Lectotype Designations
Fig. 14. Phylogenetic tree of sampled weevil genera, predominantly from New Zealand. Clades discussed in the text are indicated using colored boxes. Node support values summarized as symbols. Nodes with less than 0.5 posterior probability have been collapsed. CCCMS = Curculioninae, Conoderinae, Cossoninae, Molytinae, and Scolytinae clade.
Fig. 6. SEM images. A in The Enigmatic Dead-Leaf Miner Geochus Broun (Coleoptera: Curculionidae): Phylogenetic Placement, a New Species, and Lectotype Designations
Fig. 6. SEM images. A) Geochus rugulosus, left elytron. G. sulcatus: B) Mesonotum, C) Right elytron, D) Enlargement of elytron, showing canal openings of wax glands (arrows). G. tibialis: E) Head (dorso-anterior aspect), F) Enlargement of frons and dorsal surface of rostrum.
Fig. 3 in The Enigmatic Dead-Leaf Miner Geochus Broun (Coleoptera: Curculionidae): Phylogenetic Placement, a New Species, and Lectotype Designations
Fig. 3. SEM images. Geochus kuscheli, new species: A) Protarsus, showing presence of pretarsal claws (dorsal aspect), B) Protarsus, showing pretarsal claws (ventral aspect), C) Enlargement of spatulate setae on ventral surface of protarsus, D) Pro- and mesothorax, lateral aspect, showing partially fused meta- and metepisterna, E) Enlargement of metepisternum, showing stellate setae/fimbriate scales. F) G. inaequalis, head (dorso-anterior aspect).
Fig. 2 in The Enigmatic Dead-Leaf Miner Geochus Broun (Coleoptera: Curculionidae): Phylogenetic Placement, a New Species, and Lectotype Designations
Fig. 2. SEM images, Geochus kuscheli, new species. A) Head (dorso-anterior aspect), B) Enlargement of frons and base of rostrum, C) Mesonotum, D) Left elytron, E) Enlargement of scales on elytron, F) Enlargement of scale, showing canal opening of the wax gland.
Fig. 17 in The Enigmatic Dead-Leaf Miner Geochus Broun (Coleoptera: Curculionidae): Phylogenetic Placement, a New Species, and Lectotype Designations
Fig. 17. Dorsal habitus photographs of representatives of the type series or holotypes of Geochus arranged into informal groups.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.