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124 results for “karyology”
FIGURE 1. Gomesa caatingana. A in A new species of Gomesa (Oncidiinae, Orchidaceae) from inselbergs in Brazilian caatinga: morphological and karyological evidence
FIGURE 1. Gomesa caatingana. A. Habitat where the type specimen was collected: an inselberg, Lagoa da Serra do Paulo District, São João do Tigre, Paraíba. B. Habit. C. Detail of the inflorescence. D. Dissected flower. E. Detail of the polllinia. F. Detail of the callus.
FIGURE 2 in Morphological, anatomical, palynological, karyological and ecological remarks of Astragalus argaeus (Fabaceae) endemic to Turkey
FIGURE 2. Cross section of A. argeus A–B. Root. C. Stem. D. Leaflet (pd: periderm, pa: parenchyma, sc: sclerenchyma, sph: secondary phloem, ca: cambium, pr: pith ray, tr: trachea, trk: tracheid, ab: aerankimatic hallow, fl: phellem, fg: phellogen, fd: phelloderm, ph: phloem, xls: xylem, pt: pith, ue: upper epidermis, le: lower epidermis, pp: palisade parenchyma, st: stomata dk: bundle sheath).
FIGURE 3. A. argaeus A in Morphological, anatomical, palynological, karyological and ecological remarks of Astragalus argaeus (Fabaceae) endemic to Turkey
FIGURE 3. A. argaeus A. General view of pollen grains under LM. B. Equatorial view of pollen in SEM. C. Polar view of pollen in SEM. D. Close-up of pollen ornamentation in SEM.
FIGURE 1. A. argaeus A. General view. B. Stipule. C.Leaflet. D. Bract. E. Calyx. F. Standard. G. Wings. H. Keel. I in Morphological, anatomical, palynological, karyological and ecological remarks of Astragalus argaeus (Fabaceae) endemic to Turkey
FIGURE 1. A. argaeus A. General view. B. Stipule. C.Leaflet. D. Bract. E. Calyx. F. Standard. G. Wings. H. Keel. I. Pistil ve Stamen. J. Fruit.
FIGURE 4 in Morphological, anatomical, palynological, karyological and ecological remarks of Astragalus argaeus (Fabaceae) endemic to Turkey
FIGURE 4. Seed photographs of A. argaeus A. Seed general view in LM. B. General view in SEM. C. Testa surface in SEM.
FIGURE 3 in Morphometric and karyological study of Genista sericea (Cytiseae-Fabaceae)
FIGURE 3. Morphology of standard in the different units. a—Genista sericea subsp. sericea (Rupingrande); b—Genista sericea subsp. rigida (Donji Medun); c—Genista sericea subsp. pollinensis (M. Pollino). Scale bars = 10 mm.
FIGURE 5 in Morphometric and karyological study of Genista sericea (Cytiseae-Fabaceae)
FIGURE 5. Photomicrographs and relative drawings of somatic metaphase plates of: a—Genista sericea subsp. sericea (Mt. Slavnik), 2n = 48; b—Genista sericea subsp. rigida (Brgat), 2n = 48; c—Genista sericea subsp. pollinensis (Mt. Pollino), 2n = 48. —Scale bars =
FIGURE 4 in Morphometric and karyological study of Genista sericea (Cytiseae-Fabaceae)
FIGURE 4. Variation in selected morphological characters compared in the different units of Genista sericea. Boxes define 25 and 75 percentiles; horizontal lines show median; whiskers are from 10 to 90 percentiles; circles and asterisks show extreme values. A—Length of the middle leaf in sterile stem. B—Length of calyx lower teeth. C—Length/width of the middle leaf in sterile stem. D—Length of basal half of standard. E—Length of standard/length of basal half of standard (morphology of standard). F—Length of standard
FIGURE 2 in Morphometric and karyological study of Genista sericea (Cytiseae-Fabaceae)
FIGURE 2. Distribution of the different units. Yellow dots—Genista sericea subsp. sericea; red dots—Genista sericea subsp. rigida; blue dots—Genista sericea subsp. pollinensis.
FIGURE 1 in Morphometric and karyological study of Genista sericea (Cytiseae-Fabaceae)
FIGURE 1. Ordination of the units of Genista sericea on the basis of discriminant analysis applied to all flower characters (illustrator Dr. Simone Velari).
FIGURE 4 in The taxonomic position of Tonkinomys daovantieni (Rodentia: Muridae) based on karyological and molecular data
FIGURE 4. ML phylogenetic tree of Dacnomys division and relative groups constructed based on combined Cytb + COI + GHR gene sequences. The bootstrap values (ML/MP, TN93+G+I) are indicated above the nodes, the BI posterior probabilities (PPs) are bellow the nodes (the values below 0.5 are not indicated).
FIGURE 3 in The taxonomic position of Tonkinomys daovantieni (Rodentia: Muridae) based on karyological and molecular data
FIGURE 3. ML phylogenetic tree of Dacnomys division and relative groups constructed based on combined Cytb + COI sequences, intrageneric branches are shown compressed. The bootstrap values (ML/MP, TN93+G+I) are indicated above the nodes, the BI posterior probabilities (PPs)> 0.8 are indicated by filled circles.
FIGURE 1 in The taxonomic position of Tonkinomys daovantieni (Rodentia: Muridae) based on karyological and molecular data
FIGURE 1. Tonkinomys daovantieni, adult female from Huu Lien Nature Reserve, Lang Son Province, Vietnam; living images in natural environment. Photographed by Alexander E. Balakirev.
FIGURE 6 in Rediscovery of the Earless Microteiid Lizard Anotosaura collaris Amaral, 1933 (Squamata: Gymnophthalmidae): A redescription complemented by osteological, hemipenial, molecular, karyological, physiological and ecological data
FIGURE 6. Results of a discriminant analysis on morphometric measurements of male individuals of Anotosaura collaris (blue circles), A. vanzolinia (green circles), Colobosauroides cearensis (orange diamonds) and Dryadosaura nordestina (red squares). Group centroids are represented by a black dot. In parenthesis is the amount of original variation explained by each axis.
FIGURE 3 in Rediscovery of the Earless Microteiid Lizard Anotosaura collaris Amaral, 1933 (Squamata: Gymnophthalmidae): A redescription complemented by osteological, hemipenial, molecular, karyological, physiological and ecological data
FIGURE 3. Individuals of (A) Anotosaura collaris adult, and (B) juvenile, and its congener Anotosaura vanzolinia (C), in life.
FIGURE 4 in Rediscovery of the Earless Microteiid Lizard Anotosaura collaris Amaral, 1933 (Squamata: Gymnophthalmidae): A redescription complemented by osteological, hemipenial, molecular, karyological, physiological and ecological data
FIGURE 4. Sulcate, lateral and asulcate faces of the left hemipenis of (A) Anotosaura collaris (MZUSP 103845) and (B) A. vanzolinia (MZUSP 95328). Scale bars = 1mm.
FIGURE 1 in Rediscovery of the Earless Microteiid Lizard Anotosaura collaris Amaral, 1933 (Squamata: Gymnophthalmidae): A redescription complemented by osteological, hemipenial, molecular, karyological, physiological and ecological data
FIGURE 1. Lateral (A), ventral (B) and dorsal (C) views of the head, and (D) of the entire body, in ventral (above) and dorsal (below) views of the holotype of Anotosaura collaris (MZUSP 788). Scale bar = 1mm.
FIGURE 8. Phylogenetic relationships recovered through a in Rediscovery of the Earless Microteiid Lizard Anotosaura collaris Amaral, 1933 (Squamata: Gymnophthalmidae): A redescription complemented by osteological, hemipenial, molecular, karyological, physiological and ecological data
FIGURE 8. Phylogenetic relationships recovered through a Bayesian (BA) and Maximum Likelihood (ML) analysis of Anotosaura collaris based on mitochondrial (12S, 16S and ND4) and nuclear genes (C-mos and 18S). The value for posterior probabilities (BA), and bootstrap (ML) are show on branches, respectively.
FIGURE 10 in Rediscovery of the Earless Microteiid Lizard Anotosaura collaris Amaral, 1933 (Squamata: Gymnophthalmidae): A redescription complemented by osteological, hemipenial, molecular, karyological, physiological and ecological data
FIGURE 10. Comparison of environmental temperatures at microhabitats used by Anotosaura collaris with its critical thermal limits. CTmax (red) and CTmin (blue) are species means. Dots around the boxplots represent outliers. Whiskers end at the 5th (below) and and the 95th (above) percentiles. Horizontal lines within the box plot represent the 25th, 50th and 75 quartiles. Temperatures measured in December 2012.
FIGURE 2 in Rediscovery of the Earless Microteiid Lizard Anotosaura collaris Amaral, 1933 (Squamata: Gymnophthalmidae): A redescription complemented by osteological, hemipenial, molecular, karyological, physiological and ecological data
FIGURE 2. Lateral (A), ventral (B) and dorsal (C) views of the head, ventral views of right hand (D) and foot (E), and the cloacal region (F) of Anotosaura collaris (MZUSP 103832). Scale bars = 1 mm.
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.