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1,138 results for “cryptic diversity”
FIGURE 19 in Cryptic diversity in the Azorean beetle genus Tarphius Erichson, 1845 (Coleoptera: Zopheridae): An integrative taxonomic approach with description of four new species
FIGURE 19. Habitus of T. rufonodulosus Israelson. Scale 0,50 mm (Photo: Enésima Mendonça).
FIGURE 18 in Cryptic diversity in the Azorean beetle genus Tarphius Erichson, 1845 (Coleoptera: Zopheridae): An integrative taxonomic approach with description of four new species
FIGURE 18. Habitus of Tarphius pomboi Borges. Scale 0.50 mm (Photo: Erno-Endre Gergely).
FIGURE 16 in Cryptic diversity in the Azorean beetle genus Tarphius Erichson, 1845 (Coleoptera: Zopheridae): An integrative taxonomic approach with description of four new species
FIGURE 16. Habitus of Tarphius depressus Gillerfors. Scale 0.5 mm (Photo: Erno-Endre Gergely).
FIGURE 17 in Cryptic diversity in the Azorean beetle genus Tarphius Erichson, 1845 (Coleoptera: Zopheridae): An integrative taxonomic approach with description of four new species
FIGURE 17. Habitus of Tarphius acuminatus Gillerfors. Scale 0.5 mm (Photo: Erno-Endre Gergely).
FIGURE 14 in Cryptic diversity in the Azorean beetle genus Tarphius Erichson, 1845 (Coleoptera: Zopheridae): An integrative taxonomic approach with description of four new species
FIGURE 14. Habitus of Tarphius floresensis sp. nov.. Scale 0.5 mm (Photo: Erno-Endre Gergely).
FIGURE 13 in Cryptic diversity in the Azorean beetle genus Tarphius Erichson, 1845 (Coleoptera: Zopheridae): An integrative taxonomic approach with description of four new species
FIGURE 13. Habitus of Tarphius gabrielae sp. nov.. Scale 0.5 mm (Photo: Erno-Endre Gergely).
FIGURE 15 in Cryptic diversity in the Azorean beetle genus Tarphius Erichson, 1845 (Coleoptera: Zopheridae): An integrative taxonomic approach with description of four new species
FIGURE 15. Habitus of Tarphius azoricus Gillerfors. Scale 0.5 mm (Photo: Erno-Endre Gergely).
FIGURE 11 in Cryptic diversity in the Azorean beetle genus Tarphius Erichson, 1845 (Coleoptera: Zopheridae): An integrative taxonomic approach with description of four new species
FIGURE 11. Habitus of Tarphius furtadoi sp. nov.. Scale 0.5 mm. (Photo: Erno-Endre Gergely).
FIGURE 9 in Cryptic diversity in the Azorean beetle genus Tarphius Erichson, 1845 (Coleoptera: Zopheridae): An integrative taxonomic approach with description of four new species
FIGURE 9. Habitus of Tarphius relictus sp. nov.. Scale 0.5 mm (Photo: Erno-Endre Gergely).
FIGURE 2 in Integrative taxonomy reveals cryptic diversity in neotropical grasshoppers: taxonomy, phylogenetics, and evolution of the genus Sphenarium Charpentier, 1842 (Orthoptera: Pyrgomorphidae)
FIGURE 2. (Continued)
FIGURE 11 in Integrative taxonomy reveals cryptic diversity in neotropical grasshoppers: taxonomy, phylogenetics, and evolution of the genus Sphenarium Charpentier, 1842 (Orthoptera: Pyrgomorphidae)
FIGURE 11. (Continued)
Figure 3 from: Santos-Silva C, Louro R, Natário B, Nobre T (2021) Lack of knowledge on ecological determinants and cryptic lifestyles hinder our understanding of Terfezia diversity. MycoKeys 84: 1-14. https://doi.org/10.3897/mycokeys.84.71372
Figure 3 Terfezia species collected in the present work AT. arenariaBT. fanfaniCT. cistophilaDT. griseaET. dunensisFT. extremadurensisGT. lusitanicaHT. piniIT. solaris-libera.
Figure 1 from: Santos-Silva C, Louro R, Natário B, Nobre T (2021) Lack of knowledge on ecological determinants and cryptic lifestyles hinder our understanding of Terfezia diversity. MycoKeys 84: 1-14. https://doi.org/10.3897/mycokeys.84.71372
Figure 1 a Phylogenetic relationship between Terfezia species. The reconstructed phylogeny corresponds to the majority rule consensus tree higher than 0.50 of trees sampled in a Bayesian analysis, and the posterior probability values are shown for main nodes b clades with new sequenced specimens collected within the present study.
Figure 2 from: Santos-Silva C, Louro R, Natário B, Nobre T (2021) Lack of knowledge on ecological determinants and cryptic lifestyles hinder our understanding of Terfezia diversity. MycoKeys 84: 1-14. https://doi.org/10.3897/mycokeys.84.71372
Figure 2 Phylogenetic reconstruction of intra-species diversity (Fig. 1) linking to soil properties and putative host plant aT. arenariabT. fanfanicT. grisea [specimens in the circle represent deviations from the ecological grouping, see text for details] dT. lusitanica. The other species are identified and their relation to soil and host plant are presented in the main text.
Supplementary material 1 from: Santos-Silva C, Louro R, Natário B, Nobre T (2021) Lack of knowledge on ecological determinants and cryptic lifestyles hinder our understanding of Terfezia diversity. MycoKeys 84: 1-14. https://doi.org/10.3897/mycokeys.84.71372
Table S1
FIGURE 16 in Solving the cryptic diversity of the genus Manerebia Staudinger in northern Peru description of new species and considerations on the biogeographical role of the Huancabamba Deflection (Nymphalidae: Satyrinae: Pronophilina)
FIGURE 16. Huancabamba Deflection area map with new taxa known localities.
Figure 12 from: Berggren K, Aarvik L, Huemer P, Lee KM, Mutanen M (2022) Integrative taxonomy reveals overlooked cryptic diversity in the conifer feeding Batrachedra pinicolella (Zeller, 1839) (Lepidoptera, Batrachedridae). ZooKeys 1085: 165-182. https://doi.org/10.3897/zookeys.1085.76853
Figure 12 Maximum-likelihood tree inferred from the ddRAD SNP data. Bootstrap support values are indicated above the branches and only the values > 50% are shown. The barplot shows the assignments of individuals into two genetic clusters, the red clusters referring to Batrachedra confusella, the blue clusters to B. pinicolella. Each bar represents one individual and colours represent the proportion of the individuals that belong to each of the genetic cluster.
Figure 11 from: Berggren K, Aarvik L, Huemer P, Lee KM, Mutanen M (2022) Integrative taxonomy reveals overlooked cryptic diversity in the conifer feeding Batrachedra pinicolella (Zeller, 1839) (Lepidoptera, Batrachedridae). ZooKeys 1085: 165-182. https://doi.org/10.3897/zookeys.1085.76853
Figure 11 Neighbor-joining visualization of genetic divergences of DNA barcode fragment of COI gene within and between European species of Batrachedra. The scale indicates 1% genetic divergence as calculated under Kimura 2 parameter model for nucleotide substitution.
Figures 9-10 from: Berggren K, Aarvik L, Huemer P, Lee KM, Mutanen M (2022) Integrative taxonomy reveals overlooked cryptic diversity in the conifer feeding Batrachedra pinicolella (Zeller, 1839) (Lepidoptera, Batrachedridae). ZooKeys 1085: 165-182. https://doi.org/10.3897/zookeys.1085.76853
Figures 9-10 Female genitalia of Batrachedra9B. confusella sp. nov., genitalia slide NHMO 3937 10B. pinicolella, genitalia slide NHMO 3961.
Figures 5-8 from: Berggren K, Aarvik L, Huemer P, Lee KM, Mutanen M (2022) Integrative taxonomy reveals overlooked cryptic diversity in the conifer feeding Batrachedra pinicolella (Zeller, 1839) (Lepidoptera, Batrachedridae). ZooKeys 1085: 165-182. https://doi.org/10.3897/zookeys.1085.76853
Figures 5-8 Male genitalia of Batrachedra5B. confusella sp. nov., genitalia slide NHMO 3899 6B. confusella sp. nov., distal end of phallus, genitalia slide NHMO 3899 7B. pinicolella, genitalia slide NHMO 3891 8B. pinicolella, distal end of phallus, genitalia slide NHMO 3892.
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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.