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40 results for “inflorescence morphology”
FIGURE 1 in Synflorescence morphology of grasses with reduced terminal inflorescences: a case study of Jouvea (Cynodonteae, Chloridoideae, Poaceae)
FIGURE 1. Synflorescence diagrams of Jouvea pilosa: A, Pistillate synflorescence showing the different internode zones. Dotted square indicates the terminal cluster. B, C, Other variations of pistillate synflorescences. D, Pistillate terminal cluster where the terminal inflorescence is associated with trophotagma enrichment axes. E, F, G, Variations of staminate synflorescences. References: LIZ, long internode zone; SIZ, short internode zone; tea, trophotagma enrichment axis of staminate synflorescences; tea1, trophotagma enrichment axis type 1; tea2, trophotagma enrichment axis type 2; tIn, terminal inflorescence.
FIGURE 4. Orleanesia yauaperyensis Barbosa Rodrigues. A. Habit. B. Inflorescence stem. C in Molecular and morphological phylogenetic analysis and taxonomic revision of the genus Orleanesia (Laeliinae, Epidendroideae, Orchidaceae)
FIGURE 4. Orleanesia yauaperyensis Barbosa Rodrigues. A. Habit. B. Inflorescence stem. C. Flower in frontal view. D. Details of perianth parts. E–F. Floral sheaths. G. Gynostemium posterior view. H. Gynostemium lateral view. I. Anther dorsal view. J. Anther ventral view. K. Pollinias (A.H. Krahl 359). Illustrated by A.H. Krahl.
FIGURE 6. Kylicanthe cornuata. A. Habit. B. Inflorescence. C in A new genus of angraecoid orchids (Orchidaceae: Angraecinae) with highly distinctive pollinaria morphology, including three new species from tropical West and Central Africa
FIGURE 6. Kylicanthe cornuata. A. Habit. B. Inflorescence. C. Flower in lateral view. D. Flower in frontal view. E. Dorsal sepal. F. Lateral sepal. G. Petals. H. Lip in dorsal view. I. Column in frontal view. J. Column in lateral view. K. Column in frontal view showing rostellum. L. Anther cap. M. Pollinaria with pollinia still attached in lateral view. N. Pollinaria without pollinia in dorsal view. Drawn by Hans de Vries after Yaoundé shadehouse series 1127.
FIGURE 5. Kylicanthe bueae. A. Habit. B. Inflorescence. C in A new genus of angraecoid orchids (Orchidaceae: Angraecinae) with highly distinctive pollinaria morphology, including three new species from tropical West and Central Africa
FIGURE 5. Kylicanthe bueae. A. Habit. B. Inflorescence. C. Flower in lateral view. D. Flower in frontal view. E. Dorsal sepal. F. Lateral sepal. G. Petals. H. Lip in lateral view. I. Lip in frontal view. J. Floral pedicel, ovary and column. K. Column in lateral view. L. Column in frontal view. M. Pollinaria in dorsal view. N. Pollinaria in lateral view. Drawn by Hans de Vries after Yaoundé shadehouse series 5098 & 5958.
FIGURE 4. Kylicanthe arcuata. A. Habit. B. Inflorescence. C. Flower. D. Dorsal sepal. E. Lateral sepal. F. Petals. G in A new genus of angraecoid orchids (Orchidaceae: Angraecinae) with highly distinctive pollinaria morphology, including three new species from tropical West and Central Africa
FIGURE 4. Kylicanthe arcuata. A. Habit. B. Inflorescence. C. Flower. D. Dorsal sepal. E. Lateral sepal. F. Petals. G. Floral pedicel, ovary and column. H. Lip in lateral view. I. Lip in dorsal view. J. Column and lip spur in frontal view showing the callus. K. Spur, detail of the mouth in dorsal view. L. Column in frontal view. M. Column in lateral view with pollinaria still attached. N. Pollinaria in lateral view. N. Anther cap in frontal view. O. Anther cap in ventral view. P. Anther cap in lateral view. Q. Pollinaria in ventral view. R. Pollinaria in lateral view showing dorsal side of stipes with pollinia still attached. S. Pollinaria in lateral view showing ventral side of stipes with pollinia still attached. Drawn by Hans de Vries after a photograph of a living specimen (A) and after Droissart & Stévart 695 (B–S).
FIGURE 1. Aristolochia involuta. A. Branch, B. Inflorescence, C in The taxonomic revision of Asian Aristolochia (Aristolochiaceae) III: Two new taxa of Aristolochia and morphological revision for the flower character of A. obliqua from Yunnan, China
FIGURE 1. Aristolochia involuta. A. Branch, B. Inflorescence, C. Longitudinal-section of flower (showing inside structure), D. Flower in frontal view, E. Anthers and gynostemium, F. Capsule. (Drawn by H.X.Dong, A–E from X.X.Zhu ZXX17003, F from X.X.Zhu ZXX17063.)
FIGURE 2. Aponogeton wolfgangianus A. Habit. B. Inflorescence. C. Infructescence. D in A new species of Aponogeton (Aponogetonaceae) from India with critical notes on embryo morphology
FIGURE 2. Aponogeton wolfgangianus A. Habit. B. Inflorescence. C. Infructescence. D. Embryo. Illustrated by Shrikant Sutar.
FIGURE 1. Aponogeton wolfgangianus. A. Habitat. B. Habit. C. Inflorescence. D. Infructescence. E. Follicle. G, H, I in A new species of Aponogeton (Aponogetonaceae) from India with critical notes on embryo morphology
FIGURE 1. Aponogeton wolfgangianus. A. Habitat. B. Habit. C. Inflorescence. D. Infructescence. E. Follicle. G, H, I. Embryo (Photos by S. R. Yadav). F. Embryo of Aponogeton jacobsenii (Photo provided by Deepthi Yakandawala).
FIGURE 3. Dendrobium yongjiaense Z.Zhou & S.R.Lan. A. Flowering plant. B. Inflorescences. C in Morphological and molecular evidence for a new species from China: Dendrobium yongjiaense (Orchidaceae: Malaxideae)
FIGURE 3. Dendrobium yongjiaense Z.Zhou & S.R.Lan. A. Flowering plant. B. Inflorescences. C. Anatomy of the flower. D. Lip, side view. E. Pollinarium. F. Flower, front view. G. Flower with lateral sepals removed, side view. H. Column, front view. I. Lip, front view (left) and basal view (right). J–K. Anther cap, different view.
FIGURE 5. Liparis funingensis. A. Flowering plant. B. Inflorescence. C. Flower, front view. D. Flower, side view. E in Liparis funingensis (Orchidaceae; Epidendroideae; Malaxidae), a new species from Yunnan, China: evidence from morphology and DNA
FIGURE 5. Liparis funingensis. A. Flowering plant. B. Inflorescence. C. Flower, front view. D. Flower, side view. E. Pollinarium.
FIGURE 1. Kalanchoe miniata var. miniata. A. Vegetative morphology. B. Inflorescence. C in Nomenclature and taxonomic placement of the infraspecific taxa recognised in the Malagasy Kalanchoe miniata (Crassulaceae subfam. Kalanchooideae) by Perrier de la Bâthie and Boiteau and Mannoni in the 20 century
FIGURE 1. Kalanchoe miniata var. miniata. A. Vegetative morphology. B. Inflorescence. C. View of the mouth of the flower. Photographs: Ronen Shtein.
FIGURE. Inflorescence of Hylaeaicum. A. H. myrmecophilum (Leme 2555). B. H. levianum (Leme 5639-A). C–D. H. wurdackii (Leme 2567). C. Top view. D. Outer primary fascicle, with secondary fascicles indicated by an arrow. E–G. H. eleutheropetalum var. eleutheropetalum (Leme 4491). E. Top view. F. Secondary fascicles indicated by an arrow. G. Outer primary fascicles, with secondary fascicles indicated by an arrow. H. H. margaretae (Leme 2331). I. H. tarapotoense (Leme 1977). J. H. aff. myrmecophilum (Leme 3487). K. H. pendulum (Leme 1979). in Re-evaluation of the Amazonian Hylaeaicum (Bromeliaceae: Bromelioideae) based on neglected morphological traits and molecular evidence
FIGURE. Inflorescence of Hylaeaicum. A. H. myrmecophilum (Leme 2555). B. H. levianum (Leme 5639-A). C–D. H. wurdackii (Leme 2567). C. Top view. D. Outer primary fascicle, with secondary fascicles indicated by an arrow. E–G. H. eleutheropetalum var. eleutheropetalum (Leme 4491). E. Top view. F. Secondary fascicles indicated by an arrow. G. Outer primary fascicles, with secondary fascicles indicated by an arrow. H. H. margaretae (Leme 2331). I. H. tarapotoense (Leme 1977). J. H. aff. myrmecophilum (Leme 3487). K. H. pendulum (Leme 1979).
FIGURE. Habit of Hylaeaicum. A–C. H. pendulum (Leme 1979). D. H. pendulum var. brevifolium from Pastaza, Ecuador, in cultivation in Selby Botanical Gardens (SEL 82-419). E–F. H. tarapotoense from San Martin, Peru (Leme 1977). E. Habit. F. Detail of the inflorescence. in Re-evaluation of the Amazonian Hylaeaicum (Bromeliaceae: Bromelioideae) based on neglected morphological traits and molecular evidence
FIGURE. Habit of Hylaeaicum. A–C. H. pendulum (Leme 1979). D. H. pendulum var. brevifolium from Pastaza, Ecuador, in cultivation in Selby Botanical Gardens (SEL 82-419). E–F. H. tarapotoense from San Martin, Peru (Leme 1977). E. Habit. F. Detail of the inflorescence.
FIGURE 3. Truongsonia lecongkietii. Inflorescence morphology. A. Entire inflorescence. B in Truongsonia (Arecaceae: Arecoideae: Truongsonieae)-a new palm genus and tribe from Vietnam
FIGURE 3. Truongsonia lecongkietii. Inflorescence morphology. A. Entire inflorescence. B. Distal part of inflorescence showing rachillae and peduncular bract. C. Base of plant showing insertion of inflorescence. D. Rachillae bearing young fruit. Photos: N.S. Lý.
Brassinosteroids modulate meristem fate and differentiation of unique inflorescence morphology in Setaria viridis
GEO Series GSE100423. Setaria viridis. 5 samples. Type: Expression profiling by high throughput sequencing.
Fig. 4 in Inflorescence morphology and flower development in Pinguicula alpina and P. vulgaris (Lentibulariaceae: Lamiales): monosymmetric flowers are always lateral and occurrence of early sympetaly
Fig. 4 Young lateral shoots of P. vulgaris (material collected in June). Frontal views of plants with all but very young leaves removed. Phyllotaxy is anticlockwise in (a, c) and clockwise in (b, d). a A lateral shoot is formed in axil of the leaf i, then the main axis has formed flowers ii, iii (removed) and iv (probably abortive). b A lateral shoot is present in the axil of the leaf i, flower ii is removed, flower iii is very young. c A lateral shoot in the axil of the leaf i is formed, then the main axis has formed flowers ii (removed), iii, iv, v. d A lateral shoot in the axil of the leaf vi is formed, then the main axis has formed flowers vii, viii (removed), ix, x. Arabic figures 0 leaves of lateral shoots. Scale bars 0300 μm
Fig. 7 Pinguicula vulgaris, early flower development. a The earliest stage with a in Inflorescence morphology and flower development in Pinguicula alpina and P. vulgaris (Lentibulariaceae: Lamiales): monosymmetric flowers are always lateral and occurrence of early sympetaly
Fig. 7 Pinguicula vulgaris, early flower development. a The earliest stage with a very narrow calyx rim marked by arrows. b,c Initiation of calyx and androecium; the two massive stamen primordia appear just before corolla initiation. d-e Flowers with median abaxial petal initiated. f-i Further development of corolla. f and i Different views of the same flower, while g and h are different views of another flower. In f no connection between the median lower lip petal and lateral lower lip petals observable, but in i at the same young flower (as well as in another flower in g and h) it is clearly visible. h-i All petals are united by a rim. At this stage, the gynoecium is not visible. Abbreviations: pl, lower lip petals; pu, upper lip petals; s, spur, sl, lower lip sepals; su, upper lip sepals; st, stamen. Scale bars 0200 μm (a, b, c, f, g, h), 300 μm (d, e. i)
Fig. 2 in Inflorescence morphology and flower development in Pinguicula alpina and P. vulgaris (Lentibulariaceae: Lamiales): monosymmetric flowers are always lateral and occurrence of early sympetaly
Fig. 2 Shoot branching in Pinguicula alpina. Frontal view of shoot apices (a, d), their diagrams (b, e) and schematic representation of shoot systems (c, f). In a-c (collected 21 September 2006), leaves i-iii form a clockwise spiral, followed by flowers iv-vi; a lateral shoot with a clockwise spiral (prophylls 1-2 followed by flower 3) is present in the axil of leaf iii; leaves a-g form an anticlockwise spiral and belong to a shoot in the axil of the leaf 2. In d-f (collected 1 September 2006), leaves i-iv form an anticlockwise spiral followed by flower v; a lateral shoot with an anticlockwise spiral 1-5 is present in the axil of the leaf iv. Scale bars 0500 μm (a), 200 μm (d)
FIGURE 7. Kylicanthe perezverae. A. Habit. B. Inflorescence. C. Flower. D. Dorsal sepal. E. Lateral sepal. F. Petals. G in A new genus of angraecoid orchids (Orchidaceae: Angraecinae) with highly distinctive pollinaria morphology, including three new species from tropical West and Central Africa
FIGURE 7. Kylicanthe perezverae. A. Habit. B. Inflorescence. C. Flower. D. Dorsal sepal. E. Lateral sepal. F. Petals. G. Lip in dorsal view. H. Floral pedicel, ovary and column. I. Anther cap in posterior view. J. Column in frontal view showing rostellum. K. Anther cap in frontal view. L. Anther cap in ventral view with one pollinium still inside. M. Pollinaria with pollinia in lateral view. Drawn by Hans de Vries after Nimba shadehouse series 212 & 213.
FIGURE 2. Cymbidium motuoense. A. Flowering plant. B. Inflorescence. C in Cymbidium motuoense (Orchidaceae; Epidendroideae), a new species from China: evidence from morphological and molecular data
FIGURE 2. Cymbidium motuoense. A. Flowering plant. B. Inflorescence. C. Lip and column, front view. D. Flower, front view. E. Pseudobulb and base of leaves. F. Sepals and petals, front view. G. Flower of C. tracyanum. H. Flower of C. iridioides.
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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.