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393 results for “New Hybrids”
FIGURE 3 in Cattleya × itabapoanaensis (Orchidaceae), a new natural hybrid from Rio Janeiro State (Brazil)
FIGURE 3. Comparison of Cattleya × itabapoanaensis and putative parents. A. Cattleya × itabapoanaensis. B. Cattleya harrisoniana. C. Cattleya porphyroglossa. (Photographs by V.P. Castro)
FIGURE 6 in Potamogeton ×clandestinus (P. crispus × P. natans, Potamogetonaceae), a new natural pondweed hybrid discovered in Europe
FIGURE 6. Potamogeton ×clandestinus in the type locality in the river Koloshma (Aksentievskaya village, Vologda region, Russia), photo A.A. Bobrov, 8 September 2004.
FIGURE 3 in Potamogeton ×clandestinus (P. crispus × P. natans, Potamogetonaceae), a new natural pondweed hybrid discovered in Europe
FIGURE 3. Holotype of Potamogeton ×clandestinus (IBIW) from the river Koloshma (Aksentievskaya village, 2004, Vologda region, Russia).
FIGURE 5 in Potamogeton ×clandestinus (P. crispus × P. natans, Potamogetonaceae), a new natural pondweed hybrid discovered in Europe
FIGURE 5. Young plant of Potamogeton ×clandestinus (IBIW) with characteristic long, linear submersed leaves (the river Nozhema, Nizhnyaya Nozhema village, 2008, Vologda region, Russia).
FIGURE 7 in Potamogeton ×clandestinus (P. crispus × P. natans, Potamogetonaceae), a new natural pondweed hybrid discovered in Europe
FIGURE 7. Community of Potamogeton ×clandestinus in the river Suda (Kyabelevo village, Vologda region, Russia), photo A.A. Bobrov, 9 August 2005.
FIGURE 1 in Potamogeton ×clandestinus (P. crispus × P. natans, Potamogetonaceae), a new natural pondweed hybrid discovered in Europe
FIGURE 1. Localities of Potamogeton ×clandestinus in the Vologda region (Russia). Black triangle denotes the type locality.
FIGURE 4 in Potamogeton ×clandestinus (P. crispus × P. natans, Potamogetonaceae), a new natural pondweed hybrid discovered in Europe
FIGURE 4. Mature plant of Potamogeton ×clandestinus (IBIW) from the river Suda (Kyabelevo village, 2005, Vologda region, Russia). A. Shoot. B. Upper part with inflorescence. C. Floating leaves.
FIGURE 5 in Morphological and anatomical characterization of a new natural hybrid between Cohniella ascendens and C. brachyphylla (Oncidiinae: Orchidaceae)
FIGURE 5. Morphological comparison of Cohniella ×francoi and putative parents. A. Cohniella ascendens (Costa Rica, based on Pupulin 5784, JBL). B. Cohniella ×francoi (Costa Rica, Pupulin s.n. sub Carnevali 7257, CICY). C. Cohniella brachyphylla (Costa Rica, Bogarin 6153, JBL).
FIGURE 4 in Morphological and anatomical characterization of a new natural hybrid between Cohniella ascendens and C. brachyphylla (Oncidiinae: Orchidaceae)
FIGURE 4. Leaf anatomy of Cohniella ×francoi, transverse sections. A. Schematic cross section near the middle of the leaf. B. Larger vascular bundles. C. Smaller vascular bundles. D. Extravascular fibers. E. Stoma and extravascular fibers, detail. F. View of the mesophyll, spiral cell wall thickenings and druses (indicated by arrows).
FIGURE 2 in Morphological and anatomical characterization of a new natural hybrid between Cohniella ascendens and C. brachyphylla (Oncidiinae: Orchidaceae)
FIGURE 2. Distributional records of Cohniella ×francoi and putative parents (based upon Cetzal-Ix & Carnevali, 2010). BE= Belize. CR= Costa Rica. GT= Guatemala. NI= Nicaragua. SV= El Salvador.
FIGURE 1 in Morphological and anatomical characterization of a new natural hybrid between Cohniella ascendens and C. brachyphylla (Oncidiinae: Orchidaceae)
FIGURE 1. Cohniella ×francoi. A. Habit with inflorescence. B. Flower. C. Labellum front view. D. Labellum back view. E. Sepals and petals. F. Disc and callus. G. Column and base of labellum, lateral view. H. Column, ventral view. I. Column, front view. Scale: B- E. 6 mm. Drawing by W. Cetzal-Ix.
FIGURE 3 in Morphological and anatomical characterization of a new natural hybrid between Cohniella ascendens and C. brachyphylla (Oncidiinae: Orchidaceae)
FIGURE 3. Morphological comparison of Cohniella ×francoi and putative parents. A1–A5. Cohniella ascendens. B1–B5. Cohniella ×francoi. C1–C5. Cohniella brachyphylla. A1–C1. Flowers. A2–C2. Column and base of labellum, lateral view. A3–C3. Disc and callus, front view. A4–C4. Callus. A5–C5. Column, ventral view. Drawing by W. Cetzal-Ix.
FIGURE 6 in A new hybrid from Taiwan, Elatostema ×hybrida (Urticaceae), is the first confirmed natural hybrid for Urticaceae
FIGURE 6. Phylogenetic trees of A. nrITS and B. chloroplast trnH-psbA sequences based on maximum parsimony analysis. Numbers on branches are posterior probabilities from BI, bootstrap supports from neighbor-joining and maximum-parsimony methods, respectively. Six populations were analyzed, including Bafu trail (B), Dongman forest trail (D), Honghe valley (H), Sandiaoling (S), Mt. Malabang (M), Anshuo (A). Numbers followed by the place names are copy number of nrITS sequence. Pellionia grijsii (Coll. No. Y. H. Tseng1167) and P.scabra (Y. H. Tseng1219) were used as outgroups (nrITS accession no: KC420491, KC420492; trnH-psbA accession no: KC420503, KC420504).
FIGURE 5 in A new hybrid from Taiwan, Elatostema ×hybrida (Urticaceae), is the first confirmed natural hybrid for Urticaceae
FIGURE 5. Distribution of E. lineolatum var. majus (solid circle), E. platyphylloides (open diamond), E. ×hybrida (inset; solid star) in Taiwan.
FIGURE 1 in A new hybrid from Taiwan, Elatostema ×hybrida (Urticaceae), is the first confirmed natural hybrid for Urticaceae
FIGURE 1. Elatostema ×hybrida Tseng & Hu. A. Habit. B. Female inflorescence (ventral view). C. Female flower. D. Variation in female bracteoles, left: abaxial view, right: adaxial view. E. Male inflorescence (ventral view). F. Male flower, left: floral bud, right: blooming. G. Male bracteole. (A based on Y. H. Tseng1198; B–G based on Y. H. Tseng1117).
FIGURE 3 in A new hybrid from Taiwan, Elatostema ×hybrida (Urticaceae), is the first confirmed natural hybrid for Urticaceae
FIGURE 3. Somatic chromosome of A. E. ×hybrida. B. E. lineolatum var. majus. C. E. platyphylloides (Scale bar = 10 µm).
FIGURE 2 in A new hybrid from Taiwan, Elatostema ×hybrida (Urticaceae), is the first confirmed natural hybrid for Urticaceae
FIGURE 2. Photographs of E. ×hybrida. A. Habit. B. Male inflorescence. C. Female inflorescence. D. Male inflorescence (ventral view). E. Leaf base.
FIGURE 3 in Type designation and new combination for the alpine intergeneric hybrid ×Pseudadenia micrantha (Orchidinae, Orchidaceae)
FIGURE 3. Illustrations of ×Pseudadenia micrantha. A. Habit, with Gymnadenia rhellicani (Swiss, Chandolin, 28 July 2009, Photo J.-F. Christians, Swiss Orchid Foundation at the Herbarium Jany Renz 192531). B. Details of the leaves (Italy. Veneto: Passo Giau, UTM WGS84 46°29´16´´N – 12°2´3´´E (±5 km). 10 July 2012, Photo F. Fratolin. C. Other original illustrations from Kerner (1865): 'Tb. 5. XIII. Flos antice 2:1' and 'Tb. 5. XIV. Flos a latere 2:1'. D–F. Flowers. D. Italy, Loc. Fedare, 7 July 2012, Photo F. Brunamonte. E. Italy, Apennines on border between provinces of Pavia and Piacenza, July 1987, Photo L. Bongiorni. F. Loc. Fedare, 7 July 2012, Photo G. Picone.
FIGURE 2 in Type designation and new combination for the alpine intergeneric hybrid ×Pseudadenia micrantha (Orchidinae, Orchidaceae)
FIGURE 2. Lectotype of ×Pseudadenia micrantha:—AUSTRIA. [Icon]: 'I. Nigritella micrantha Kern.', from Kerner (1865: Icon. nost. Tb. 6. I. Planta integra 1:1) (image on the extreme left side).
FIGURE 3 in A new species and a new natural hybrid of Laelia (Orchidaceae) from Oaxaca, Mexico
FIGURE 3. Laelia ×oaxacana. A. Flowering plant. B. Flower. C. Labellum and column from side. D. Dorsal sepal. E. Petal. F. Lateral sepal. G. Labellum. H. Column, ventral view. I. Column, side view. J. Column in longitudinal section. K. Anther. L. Pollinarium. Drawn by Rolando Jiménez-Machorro from Lau sub Hágsater 9539.
ScienceDex guides
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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.