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291 results for “monophyletic”
FIGURE 19. Cleonini terminals C58–C65 in Cleonini (Coleoptera: Curculionidae: Lixinae) are monophyletic and flightless: tribe overview, rampant adult homoplasy and illustrated global diversity
FIGURE 19. Cleonini terminals C58–C65.
FIGURE 18. Cleonini terminals C50–C57 in Cleonini (Coleoptera: Curculionidae: Lixinae) are monophyletic and flightless: tribe overview, rampant adult homoplasy and illustrated global diversity
FIGURE 18. Cleonini terminals C50–C57.
FIGURE 17. Cleonini terminals C42–C49 in Cleonini (Coleoptera: Curculionidae: Lixinae) are monophyletic and flightless: tribe overview, rampant adult homoplasy and illustrated global diversity
FIGURE 17. Cleonini terminals C42–C49.
FIGURE 16. Cleonini terminals C34–C41 in Cleonini (Coleoptera: Curculionidae: Lixinae) are monophyletic and flightless: tribe overview, rampant adult homoplasy and illustrated global diversity
FIGURE 16. Cleonini terminals C34–C41.
FIGURE 14. Cleonini terminals C17–C24 in Cleonini (Coleoptera: Curculionidae: Lixinae) are monophyletic and flightless: tribe overview, rampant adult homoplasy and illustrated global diversity
FIGURE 14. Cleonini terminals C17–C24.
FIGURE 13. Cleonini terminals C9–C16 in Cleonini (Coleoptera: Curculionidae: Lixinae) are monophyletic and flightless: tribe overview, rampant adult homoplasy and illustrated global diversity
FIGURE 13. Cleonini terminals C9–C16.
FIGURE 11. Cleonini terminal C31 in Cleonini (Coleoptera: Curculionidae: Lixinae) are monophyletic and flightless: tribe overview, rampant adult homoplasy and illustrated global diversity
FIGURE 11. Cleonini terminal C31: Cleonis pigra, the type species of the tribe's type genus.
FIGURE 12. Cleonini terminals C1–C8 in Cleonini (Coleoptera: Curculionidae: Lixinae) are monophyletic and flightless: tribe overview, rampant adult homoplasy and illustrated global diversity
FIGURE 12. Cleonini terminals C1–C8.
Norte Pronvice. Cabinda: "Chinchoxo" [-5.10000, 12.10000] (Peters 1877a:615; Bocage 1895a:81); "Cabinda" [-5.55000, 12.18333] (Frade 1963:252). Lunda Norte: "Dundo" [-7.36667, 20.83333] (Laurent 1954:43; Thys van den Audenaerde 1966:32). Taxonomic and distributional notes: Kelly et al. (2011) provided molecular phylogenetic data to support the inclusion of this taxon along with the B. fuliginosus complex within a monophyletic Boaedon, separate from Lamprophis sensu stricto. MAP 289. Distribution of Boaedon olivaceus in Angola. in Diversity and Distribution of the Amphibians and Terrestrial Reptiles of Angola Atlas of Historical and Bibliographic Records (1840-2017)
Norte Pronvice. Cabinda: "Chinchoxo" [-5.10000, 12.10000] (Peters 1877a:615; Bocage 1895a:81); "Cabinda" [-5.55000, 12.18333] (Frade 1963:252). Lunda Norte: "Dundo" [-7.36667, 20.83333] (Laurent 1954:43; Thys van den Audenaerde 1966:32). Taxonomic and distributional notes: Kelly et al. (2011) provided molecular phylogenetic data to support the inclusion of this taxon along with the B. fuliginosus complex within a monophyletic Boaedon, separate from Lamprophis sensu stricto. MAP 289. Distribution of Boaedon olivaceus in Angola.
Fig. 8 in Pollen characters and DNA sequence data converge on a monophyletic genus Iresine (Amaranthaceae, Caryophyllales) and help to elucidate its species diversity
Fig. 8. Evolution of pollen morphology using the maximum clade credibility tree of the plastid analysis with a reduced sampling. Pie charts depict the ancestral states reconstructed for pollen form (character 1), aperture number (character 2), aperture diameter (character 3), shape and diameter of mesoporia (characters 4, 5), and pollen size (character 6). For character and state definitions see Appendix 2.
Fig. 10 in Pollen characters and DNA sequence data converge on a monophyletic genus Iresine (Amaranthaceae, Caryophyllales) and help to elucidate its species diversity
Fig. 10. Evolution of pollen morphology, continued from Fig. 9. Pie charts depict the ancestral states reconstructed for the ektexinous bodies on the aperture membrane including their number (character 13), density (character 14) and shape (character 15). Character 16 defines the reproductive system. Consistently hermaphroditic flowers (state 0) are ancestral and widespread in Amaranthaceae, while the Iresinoids are mostly dioecious (state 1) or sometimes gynodioecious (bisexual and pistillate flowers appear on the same plant; state 2).
Fig. 3 in Pollen characters and DNA sequence data converge on a monophyletic genus Iresine (Amaranthaceae, Caryophyllales) and help to elucidate its species diversity
Fig. 3. Phylogenetic relationships of Iresine and related Gomphrenoideae based on the analysis of nrITS sequence data and depicting the 50% majority-rule tree of the Bayesian analysis. Subclades A (with further subclades A1, A2 and A3) and B are largely congruent in composition to the plastid tree depicted in Fig. 2. Posterior probabilities are shown above branches, bootstrap values from parsimony (left, bold) and maximum likelihood analysis (right, italics) below branches. The annota- tion bars for the species concepts are placed for identical groups of individuals as in the plastid tree.
Fig. 9 in Pollen characters and DNA sequence data converge on a monophyletic genus Iresine (Amaranthaceae, Caryophyllales) and help to elucidate its species diversity
Fig. 9. Evolution of pollen morphology, continued from Fig. 8. Pie charts depict the ancestral states reconstructed for tectum characters including tectum completeness (character 7), diameter and frequency of tectum perforations (characters 8, 9), and placement, height and frequency of microspines (characters 10, 11, 12).
Fig. 2 in Pollen characters and DNA sequence data converge on a monophyletic genus Iresine (Amaranthaceae, Caryophyllales) and help to elucidate its species diversity
Fig. 2. Phylogenetic relation- ships of Iresine and related Gomphrenoideae based on a combined analysis of matK-trnK, rpl16 and trnLF sequence data depicting the 50% majority-rule tree of the Bayesian analysis. Posterior probabilities are shown above branches, bootstrap values from parsimony (left, bold) and maximum likelihood analysis (right, italics) below branches.
Fig. 4 in Progress in erigonine spider phylogeny-the Savignia-group is not monophyletic (Araneae: Linyphiidae)
Fig. 4 Continuation of Fig. 3, showing clade 21
Figure 2 in Is the subfamily Eriosomatinae (Hemiptera: Aphididae) monophyletic?
Figure 2. The strict consensus tree of the 14 MPTs from the MP analysis combining sequences from 2 mitochondrial genes (COI and COII) and 2 nuclear genes (EF-1α and LWO). Note that the topologies of the MPTs were almost identical.
FIGURE 24 in Towards a Monophyletic Infrageneric Circumscription of Adesmia DC. (Dalbergieae, Leguminosae): a Taxonomic Revision in Adesmia series Adesmia
FIGURE 24. Geographical distribution of Adesmia pimpinellifolia (Poir.) Cobra.
FIGURE 31 in Towards a Monophyletic Infrageneric Circumscription of Adesmia DC. (Dalbergieae, Leguminosae): a Taxonomic Revision in Adesmia series Adesmia
FIGURE 31. Geographical distribution of Adesmia securigerifolia Herter and A. smithiae DC.
FIGURE 33 in Towards a Monophyletic Infrageneric Circumscription of Adesmia DC. (Dalbergieae, Leguminosae): a Taxonomic Revision in Adesmia series Adesmia
FIGURE 33. Geographical distribution of Adesmia subtropicalis Cobra, and A. uruguaya Arechav.
Linked collectors and determiners for: Towards a Monophyletic Infrageneric Circumscription of Adesmia DC. (Dalbergieae, Leguminosae): a Taxonomic Revision in Adesmia series Adesmia.
Natural history specimen data linked to collectors and determiners held within, "Towards a Monophyletic Infrageneric Circumscription of Adesmia DC. (Dalbergieae, Leguminosae): a Taxonomic Revision in Adesmia series Adesmia". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/0375c604-0b26-411e-ac05-0b610df3dd3f">https://bionomia.net/dataset/0375c604-0b26-411e-ac05-0b610df3dd3f</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/0375c604-0b26-411e-ac05-0b610df3dd3f">https://gbif.org/dataset/0375c604-0b26-411e-ac05-0b610df3dd3f</a>. Formatted as a Frictionless Data package.
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.