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1,968 results for “morphological taxonomy”
FIGURE 2 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 2. Piribelba rossica (Bulanova-Zachvatkina, 1957), adult from Kemerovo region: A, B—part of epimeral III-IV region, left (genital area painted over); С—bothridial setae; D—chelicera, left, antiaxial view; E—subcapitulum, ventral view; F—palp, left, antiaxial view; G—prodorsal setae; H—notogastral setae. Scale bar 100 μm.
FIGURE 3 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 3. Piribelba rossica (Bulanova-Zachvatkina, 1957), adult from Kemerovo region: A—leg I, left, antiaxial view; B—leg II, left, antiaxial view; C—trochanter III, left, antiaxial view; D—femur, genu, tibia and tarsus III, left, antiaxial view; E—trochanter IV, left, antiaxial view; F—femur, genu, tibia and tarsus IV, left, antiaxial view. Scale bar 100 μm.
FIGURE 3 in Seed Morphological and Anatomical Structures as Taxonomy Tool for Turkish Hyacinthella Schur (Asparagaceae) Taxa
FIGURE 3. The seed anatomical structures of the examined Hyacinthella taxa; 1: H. acutiloba, 2: H. campanulata, 3: H. glabrescens, 4: H. heldreichii (t= testa, co= cotyledon, e= epidermis, se= subepidermis, sm= storage material, em= embryo).
FIGURE 1 in Seed Morphological and Anatomical Structures as Taxonomy Tool for Turkish Hyacinthella Schur (Asparagaceae) Taxa
FIGURE 1. The seeds of the studied Hyacinthella taxa; 1: H. acutiloba, 2: H. campanulata, 3: H. glabrescens, 4: H. heldreichii, 5: H. hispida, 6: H. lazulina, 7: H. lineata, 8: H. micrantha, 9: H. nervosa, 10: H. siirtensis and 11: H. venusta (Scale bars= 1 mm).
FIGURE 3. Begonia mindanaensis Warb. A in Taxonomy of the genus Begonia (Begoniaceae) in Mindanao, Philippines III: New insights into the morphology and distribution of Begonia malindangensis and B. mindanaensis
FIGURE 3. Begonia mindanaensis Warb. A. Habit; B. Leaves, adaxial and abaxial surfaces; C. Details of the stem; D. Pistillate flower, front view; E. Pistillate flower, profile view; F. Detail of ovary; G. Staminate flower; H. Fruit. From MA Cababan 1. Photos by: M.A. Cababan.
FIGURE 1. Begonia malindangensis Merr. A in Taxonomy of the genus Begonia (Begoniaceae) in Mindanao, Philippines III: New insights into the morphology and distribution of Begonia malindangensis and B. mindanaensis
FIGURE 1. Begonia malindangensis Merr. A. Habit (inset: female flowers); B. Leaves, abaxial surface (above), adaxial surface below; C. Pistillate flowers; D. Bracteole; E. Cross section of the ovary; F. Staminate flower; G. Dried fruit. From MA Cababan 2. Photos by: MAK Naive (A, C, D, E) and P. Pelser & J. Barcelona (B, F, G).
FIGURE 2 in Seed Morphological and Anatomical Structures as Taxonomy Tool for Turkish Hyacinthella Schur (Asparagaceae) Taxa
FIGURE 2. (Continued) The SEM pictures of the examined Hyacinthella taxa; 7: H. lineata, 8: H. micrantha, 9: H. nervosa, 10: H. siirtensis and 11: H. venusta (black arrow indicates secondary structures on the surface).
FIGURE 2 in Seed Morphological and Anatomical Structures as Taxonomy Tool for Turkish Hyacinthella Schur (Asparagaceae) Taxa
FIGURE 2. The SEM pictures of the examined Hyacinthella taxa; 1: H. acutiloba, 2: H. campanulata, 3: H. glabrescens, 4: H. heldreichii, 5: H. hispida, 6: H. lazulina.
FIGURE 3 in Seed Morphological and Anatomical Structures as Taxonomy Tool for Turkish Hyacinthella Schur (Asparagaceae) Taxa
FIGURE 3. (Continued) The seed anatomical structures of the examined Hyacinthella taxa; 9: H. nervosa, 10: H. siirtensis and 11: H. venusta (t= testa, co= cotyledon, e= epidermis, se= subepidermis, sm= storage material, em= embryo).
FIGURE 3 in Seed Morphological and Anatomical Structures as Taxonomy Tool for Turkish Hyacinthella Schur (Asparagaceae) Taxa
FIGURE 3. (Continued) The seed anatomical structures of the examined Hyacinthella taxa; 5: H. hispida, 6: H. lazuline, 7: H. lineata, 8: H. micrantha (t= testa, co= cotyledon, e= epidermis, se= subepidermis, sm= storage material, em= embryo).
Supplementary material 4 from: Slater G, Scheel D, Kolokotronis S, Potter C, Rotstein D, Tsangaras K, Greenwood A, Helgen K (2014) Biogeography and taxonomy of extinct and endangered monk seals illuminated by ancient DNA and skull morphology. ZooKeys 409: 1-33. https://doi.org/10.3897/zookeys.409.6244
Fifty percent majority-rule consensus tree based on 1000 bootstrap pseudoreplicates generated using the maximum parsimony phylogenetic optimality criterion.: Explanation note: Values at nodes indicate the proportion of bootstrap trees (>50%) for which a particular bipartition was recovered.
Supplementary material 2 from: Slater G, Scheel D, Kolokotronis S, Potter C, Rotstein D, Tsangaras K, Greenwood A, Helgen K (2014) Biogeography and taxonomy of extinct and endangered monk seals illuminated by ancient DNA and skull morphology. ZooKeys 409: 1-33. https://doi.org/10.3897/zookeys.409.6244
Alignment of Neomonachus tropicalis cytb with extant monk seal cytb sequences.: Explanation note: The extinct Caribbean monk seal sequence was used as a reference. Dots indicate identity to the reference. Differences are shown as the base change relative to the reference. Numbering starts from the first base of the ATG start codon.
Supplementary material 1 from: Slater G, Scheel D, Kolokotronis S, Potter C, Rotstein D, Tsangaras K, Greenwood A, Helgen K (2014) Biogeography and taxonomy of extinct and endangered monk seals illuminated by ancient DNA and skull morphology. ZooKeys 409: 1-33. https://doi.org/10.3897/zookeys.409.6244
Amplicons covering cytb in this study.: Explanation note: Sequence of the cytb gene and the resulting PCR amplicons with length in number of base pairs (bp). Asterisks indicate that the sequence extends over the 3' or 5' border of the target sequence.
Supplementary material 3 from: Slater G, Scheel D, Kolokotronis S, Potter C, Rotstein D, Tsangaras K, Greenwood A, Helgen K (2014) Biogeography and taxonomy of extinct and endangered monk seals illuminated by ancient DNA and skull morphology. ZooKeys 409: 1-33. https://doi.org/10.3897/zookeys.409.6244
Alignment of three Neomonachus tropicalis D-loop hypervariable region sequences (from USNM 100358, 102527, and 102534).: Explanation note: The Neomonachus schauinslandi sequence was used as a reference. Dots indicate identity to the reference. Differences are shown as the base change relative to the reference. Numbering starts at the first base after the primer closest to the 5' end. The X symbols indicate the break between the two amplicons that are approximately 200 bp apart. Sequences were generated from consensus sequences of 3–5 individual PCR product clones. Several products were cloned and sequenced from more than one amplicon to confirm that the differences observed were not DNA damage related or due to sequencing errors.
Fig. 29 in Morphological and molecular evidence refute a broad circumscription for Pultenaea glabra (Fabaceae: Mirbelieae), with implications for taxonomy, biogeography, and conservation
Fig. 29. Pultenaea praecipua subsp. temperata (=P. sp. Nullo Mountain (M. A. M. Renner et al. 903)) photos. (a) Habit, showing the glaucous adaxial leaf surfaces and irregular branching. (b–f) Flowering shoots, showing buds produced in association with normal vegetative leaves. All from plants growing in the vicinity of NSW 1052799.
Fig. 26 in Morphological and molecular evidence refute a broad circumscription for Pultenaea glabra (Fabaceae: Mirbelieae), with implications for taxonomy, biogeography, and conservation
Fig. 26. Pultenaea praecipua subsp. praecipua (= P. sp. Genowlan Point (NSW 417813)) line drawing. (a) Flowering branch detail; (b) habit; (c) stipule; (d) flower, lateral view; (e) flower, perianth removed, lateral view; (f) standard petal, ventral view; (g) wing, lateral view; (h) keel, lateral view; (l) leaf abaxial surface; (j) leaf, adaxial surface; (k) leaf cross-section and adaxial surface; (l) leaf cross-section and abaxial surface. Scale bar: 10 mm (a); 26.7 mm (b); 2.7 mm (c); 8 mm (d–h); 5 mm (i, j), 1.6 mm (k, l). All from NSW 1052720, b from dried material, a, c–l from spirit.
Fig. 23 in Morphological and molecular evidence refute a broad circumscription for Pultenaea glabra (Fabaceae: Mirbelieae), with implications for taxonomy, biogeography, and conservation
Fig. 23. Pultenaea aculeata (= P. sp. Olinda (R. Coveny 6166)) line drawing. (a) Habit, (b) flowering branch detail, (c) flower, side view, (d) standard petal, (e) wing, (f) keel, (g) flower, side view, petals removed, (h) magnified calyx, side view, (i) ovary detail (j) stem detail showing stipule, (k) leaf, adaxial surface, (l) leaf, abaxial surface, (m) leaf surface detail, adaxial, (n) leaf surface detail, abaxial. Scale bar: 26.7 mm (a); 10 mm (b); 8 mm (c–g); 4 mm (h); 2.67 mm (i, j); 5 mm (k, l); 1.6 mm (m, n). All from NSW 1052810, a from dried material, b–n from spirit.
Fig. 20 in Morphological and molecular evidence refute a broad circumscription for Pultenaea glabra (Fabaceae: Mirbelieae), with implications for taxonomy, biogeography, and conservation
Fig. 20. Pultenaea mutabilis var. mutabilis (= P. sp. Lees Pinch (L. A. S. Johnson s.n.: NSW 17642)) photos. (a) A typical shoot, showing the flowers scattered among the leaves. (b–e) Close-ups of flowering shoot sectors, showing flowers produced in association with normal vegetative leaves, the green upper and lower leaf surfaces, the calyces that appear glabrous, but which bear short antrorse hairs, and the pale yellow keel. Note the short sparse hairs on the branchlets in e. All from plants at Mount Irvine, growing in the vicinity of NSW1058848.
Fig. 17 in Morphological and molecular evidence refute a broad circumscription for Pultenaea glabra (Fabaceae: Mirbelieae), with implications for taxonomy, biogeography, and conservation
Fig. 17. Pultenaea tenebrosa (= P. sp. Wolgan Cliffs (S. Clarke 602)) seedlings observed on 5 June 2021.
Fig. 16 in Morphological and molecular evidence refute a broad circumscription for Pultenaea glabra (Fabaceae: Mirbelieae), with implications for taxonomy, biogeography, and conservation
Fig. 16. Pultenaea tenebrosa (= P. sp. Wolgan Cliffs (S. Clarke 602)) photos. (a) Shoot apex showing flower in frontal view, note the splayed wings and nearly oblong standard which is taller than it is wide, in contrast to other members of the P. glabra complex; note also the strong glaucous bloom on the adaxial surface of the nearly terete leaves. (b) Close-up of flower buds showing the presence of sparse, long spreading hairs and the long, pungent bracteole, which extend as far as or beyond the calyx lobes; note also the production of normal or nearly normal leaves beneath each flower bud. (c) A flowering shoot, showing the flowers at the shoot apex in a close-set series, in which the internodes are of similar spacing to those separating adjacent vegetative leaves, note the leaves spreading perpendicular to the shoot below the flowers. (d) A group of flowers at the shoot apex, note the long pungent bracteoles, and the glaucous leaf adaxial surface, also note that the wings do not conceal the keel apex, in contrast to P. glabra. (e) Another view of flower buds. (f) Habit. (g) Close-up shoot showing mature stipules, which are characteristically charcoal–black and whose lobes are recurved, note again the leaves spreading perpendicular to the stem axis. All from plants growing in the vicinity of voucher NSW 1058842.
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.