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861 results for “Zygoptera”
FIGURES 30–33 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURES 30–33. Venter of synthorax of male Devadatta species: (30) D. basilanensis Davao Oriental, Mindanao; (31) D. podolestoides male described in this paper; (32) D. clavicauda holotype; (33) D. clavicauda paratype (SAR09_10_AMP40, Gunung Serapi).
FIGURES 20–25 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURES 20–25. Synthorax of male Devadatta species, lateral view: (20) D. aran holotype; (21) D. basilanensis Davao Oriental, Mindanao; (22) D. clavicauda holotype; (23) D. podolestoides male described in this paper; (24) D. somoh holotype; (25) D. tanduk holotype.
FIGURE 7. Maximum Likelihood best tree for 33 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURE 7. Maximum Likelihood best tree for 33 specimens of Devadatta and one outgroup taxon from the combined COI+16S+ITS+28S data set. Bootstrap support values below 100 are superimposed on the tree. RMNH collection codes are shown for each specimen, with the RMNH.INS. prefix omitted for clarity.
FIGURES 26–29 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURES 26–29. Venter of synthorax of male Devadatta species: (26) D. aran holotype; (27) D. somoh holotype; (28) D. tanduk holotype; (29) D. tanduk paratype (SAB12_AMP29).
FIGURE 6. Phylogenetic reconstruction for 33 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURE 6. Phylogenetic reconstruction for 33 specimens of Devadatta and one outgroup taxon from the combined COI+16S+ITS+28S data, using Bayesian Inference analysis. Posterior probability values are shown (as percentages) if less than 100%. RMNH collection codes are shown for each specimen, with the RMNH.INS. prefix omitted for clarity.
FIGURES 14–19 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURES 14–19. Heads of male Devadatta species: (14) D. aran holotype; (15) D. basilanensis Davao Oriental, Mindanao; (16) D. clavicauda holotype; (17) D. podolestoides male described in this paper; (18) D. somoh holotype; (19) D. tanduk holotype.
FIGURE 5. 28S gene tree for 33 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURE 5. 28S gene tree for 33 specimens of Devadatta and one outgroup taxon, from Bayesian Inference analysis. Posterior probability values are shown (as percentages) if less than 100%. RMNH collection codes are shown for each specimen, with the RMNH.INS. prefix omitted for clarity.
FIGURES 52–57 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURES 52–57. Heads of Devadatta female specimens described in this paper: (52) D. aran; (53) D. basilanensis; (54) D. clavicauda; (55) D. podolestoides; (56) D. somoh; (57) D. tanduk.
FIGURES 64–67 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURES 64–67. Prothorax of female Devadatta species with horns, lateral view: (64) D. aran female described in this paper; (65) D. aran Crocker Range, Sabah; (66) D. somoh female described in this paper; (67) D. tanduk female described in this paper.
FIGURE 3. 16S gene tree for 33 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURE 3. 16S gene tree for 33 specimens of Devadatta and one outgroup taxon, from Bayesian Inference analysis. Posterior probability values are shown (as percentages) if less than 100%. RMNH collection codes are shown for each specimen, with the RMNH.INS. prefix omitted for clarity.
FIGURE 4. ITS gene tree for 33 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURE 4. ITS gene tree for 33 specimens of Devadatta and one outgroup taxon, from Bayesian Inference analysis. Posterior probability values are shown (as percentages) if less than 100%. RMNH collection codes are shown for each specimen, with the RMNH.INS. prefix omitted for clarity.
FIGURES 58–63 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURES 58–63. Prothorax of Devadatta female specimens described in this paper, dorsal view: (58) D. aran; (59) D. basilanensis; (60) D. clavicauda; (61) D. podolestoides; (62) D. somoh; (63) D. tanduk.
FIGURE 2. COI gene tree for the 33 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURE 2. COI gene tree for the 33 specimens of Devadatta also used in the analysis with other markers and one outgroup taxon. Posterior probability values are shown (as percentages) if less than 100%. RMNH collection codes are shown for each specimen, with the RMNH.INS. prefix omitted for clarity.
FIGURE 1. COI gene tree for 73 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURE 1. COI gene tree for 73 specimens of Devadatta and one outgroup taxon, from Bayesian Inference analysis. Posterior probability values are shown (as percentages) if less than 100%. RMNH collection codes are shown for each specimen, with the RMNH.INS. prefix omitted for clarity.
FIGURE 75 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURE 75. Distribution of D. clavicauda. The inset shows the locations, all in Sarawak and Brunei, from which the DNA samples used in the COI gene trees (Figs. 1, 2) originate: COI clade 1—yellow circle; COI clade 2—red triangle; COI clade 3—green square; COI clade 4—black circle.
FIGURES 38–39 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURES 38–39. Genital ligula of two Devadatta species, scale bars = 0.5mm: (38) D. aran holotype; (39) D. podolestoides male described in this paper.
FIGURES 8–13 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURES 8–13. Habitus of males of Devadatta species: (8) D. aran holotype; (9) D. basilanensis Davao City, Mindanao; (10) D. clavicauda holotype; (11) D. podolestoides male described in this paper; (12) D. somoh holotype; (13) D. tanduk holotype.
FIGURES 46–51 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURES 46–51. Male anal appendages, lateral view (scale bars 1 mm): (46) D. aran holotype; (47) D. basilanensis Davao Oriental, Mindanao; (48) D. clavicauda holotype; (49) D. podolestoides Kubah NP, Sarawak; (50) D. somoh holotype; (51) D. tanduk holotype.
FIGURES 40–45 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURES 40–45. Male anal appendages, dorsal view: (40) D. aran holotype; (41) D. basilanensis Davao Oriental, Mindanao; (42) D. clavicauda holotype; (43) D. podolestoides Kubah NP, Sarawak; (44) D. somoh holotype; (45) D. tanduk holotype.
FIGURES 34–37 in Revision of the genus Devadatta Kirby, 1890 in Borneo based on molecular and morphological methods, with descriptions of four new species (Odonata: Zygoptera: Devadattidae)
FIGURES 34–37. Wings of some Devadatta species: (34) D. basilanensis male Zamboanga, Mindanao; (35) D. basilanensis female Cotabato, Mindanao; (36) D. clavicauda paratype, Gunung Santubong, Sarawak; (37) D. podolestoides paratype, Gunung Poteng, Kalimantan Barat.
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
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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.