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473 results for “Araceae,”
FIGURE 4. Vietnamocasia dauae. A in Vietnamocasia, a new genus from Central Vietnam belonging to the AlocasiaColocasia clade (Araceae)
FIGURE 4. Vietnamocasia dauae. A. Habit; B. Details of leaf base; C. Apical part of stem showing cataphylls of infructescence and continuation shoot; D. Inflorescence; E. Spadix; F. Ovary (top view); G. Ovary (side view); H. Cross-section of ovary; I. Synandrodes, top view; J. Synandrodes, side view; K. Stamen, side view; L. Stamens, top view; M. Stamens, side view; N. Infructescence.
FIGURE 1 in Vietnamocasia, a new genus from Central Vietnam belonging to the AlocasiaColocasia clade (Araceae)
FIGURE 1. Bayesian tree of 21 taxa based on the trnL-F intergenic spacer, the rpl20-rps12 intergenic spacer, and the trnK/matK region. Posterior probability (PP, above 0.7) and bootstrap (BS, maximum likelihood, above 50%) values are shown above/below/next to each internal branch.
FIGURE 3. Vietnamocasia dauae. A in Vietnamocasia, a new genus from Central Vietnam belonging to the AlocasiaColocasia clade (Araceae)
FIGURE 3. Vietnamocasia dauae. A. Habit; B. Leaf blades: adaxially and abaxially with their closed-up of the leaf bases (from left); C. Inflorescence (front view); D. Cataphyll, spathe (back view), and spadix (from left); E. Close-up of pistillate (E1), sterile interstice (E2) and staminate zones showing free individual staminate flowers (a red arrow, E3); F. Closed-up of appendix; G. pistillate zone after anthesis with lower spathe; H. Fruit spathe (back and front views); I. Longitudinal section of fruit spathe and infructescences (from left).
FIGURE 2 in Vietnamocasia, a new genus from Central Vietnam belonging to the AlocasiaColocasia clade (Araceae)
FIGURE 2. Bayesian tree of 20 taxa based on the phyC nuclear region. Posterior probability (PP, above 0.7) and bootstrap (BS, maximum likelihood, above 50%) values are shown above/below/next to each internal branch.
FIGURE 5 in Vietnamocasia, a new genus from Central Vietnam belonging to the AlocasiaColocasia clade (Araceae)
FIGURE 5. Geographic distribution of Vietnamocasia dauae with the locality represented by the circle.
FIGURE 3. Arisaema tuberculatum C.E.C.Fisch. A in Rediscovery of Arisaema translucens (Araceae) and notes on A. tuberculatum, two strict endemics of Nilgiris, India
FIGURE 3. Arisaema tuberculatum C.E.C.Fisch. A. Habit; B. Abaxial and adaxial view of leaflets; D. Mouth showing caudate limb with a filiform thread; E. & F. Inflorescence.
FIGURE 2 in Rediscovery of Arisaema translucens (Araceae) and notes on A. tuberculatum, two strict endemics of Nilgiris, India
FIGURE 2. Colour illustration of Arisaema translucens C.E.C. Fischer. A. Habit; B. & C. Inflorescence.
FIGURE 1. Arisaema translucens C.E.C.Fisch. A in Rediscovery of Arisaema translucens (Araceae) and notes on A. tuberculatum, two strict endemics of Nilgiris, India
FIGURE 1. Arisaema translucens C.E.C.Fisch. A. Habit; B. Tuber with inflorescence; C. Mouth showing filiform tail; D. Spathe showing the translucence nature; E. Inflorescence; F. Spadix.
FIGURE 4 in Distribution and infraspecific morpho-ecological variability of Ambrosina bassii (Araceae) an endemic of western-central Mediterranean
FIGURE 4. The projection of the multiple correspondence analysis (axes 1 and 2) of the specimens of Ambrosina bassii according to the four varieties (large circles) and to the sampling country: Corsica, Algeria, Italy and Tunisia (colored symbols).
FIGURE 3 in Distribution and infraspecific morpho-ecological variability of Ambrosina bassii (Araceae) an endemic of western-central Mediterranean
FIGURE 3. Ambrosina bassii -Tunisia: Morphological leaf variability of the form (A, B–C); the margin (D, E–F); the color of the blade and the veins (G, H, I, J, K–L); the base (M, N–O) and the apex (P, Q, R–S). The blades are green, light green or sage green, ranging from broadly elliptical shape (width / length> 0.75), elliptical (width / length ranges from 0.5–0.74) to narrowly elliptical (width /length <0.49) (Figs. A–C). The blade can also be stained with purple-black, with arched top, obtuse, very obtuse or lobed (Figs. P–S) and cordate base, rounded or clasping (Figs. M–O). The veins are more or less parallel arising from the petiole insertion green, light green or dark green. The margins of the leaf blade are wavy, tense or not corrugated (Figs. D–F). Photographed by Safa Ben Khalifa.
FIGURE 2. Ambrosina bassii L in Distribution and infraspecific morpho-ecological variability of Ambrosina bassii (Araceae) an endemic of western-central Mediterranean
FIGURE 2. Ambrosina bassii L.: var. maculata (A); var. reticulata (B) and var. bassii (C) from Tunisia. Photographed by Safa Ben Khalifa.
FIGURE 1. A in Distribution and infraspecific morpho-ecological variability of Ambrosina bassii (Araceae) an endemic of western-central Mediterranean
FIGURE 1. A. Distribution of Ambrosina bassii, an endemic species of western central Mediterranean. Black Triangles represent voucher locations listed in the literature and from herbarium specimens. B. Sites prospected in Tunisia (black triangles: prospected sites where A. bassii is present, open triangles: prospected sites where A. bassii is absent). Region codes are: M: Mogods, K: Kroumirie, VM: Medjerda Valley, DT: Tunisian dorsal, NE: North-East.
FIGURE 1 in Philodendron melloi (Araceae), a new species from central Amazonia, Brazil
FIGURE 1. Map showing the locality data for the collection points of fertile populations of Philodendron melloi in central Amazonia.
FIGURE 3. Philodendron melloi. A. Habit. B. Left blade adaxial surface. C. Left blade abaxial surface. D. Prophyll. E in Philodendron melloi (Araceae), a new species from central Amazonia, Brazil
FIGURE 3. Philodendron melloi. A. Habit. B. Left blade adaxial surface. C. Left blade abaxial surface. D. Prophyll. E. Inflorescence in anthesis at the ground. F. Sympodium floral with four inflorescences. G. Inflorescence and floral button, adaxial side. H. Inflorescence and floral button, detail of spathe and floral cataphyll, abaxial side. I. Detail staminate zone, male-sterile zone, pistillate zone and stipe. J. Fertile collect. K. Infrutescence mature. L. Detailed view of the distinctive vegetative characters between similar species collected in RFAD, P. melloi (on top), P. barrosoanum (on the left side) and P.hylaeae (in the right side) respectively.
FIGURE 2. Philodendron melloi. A. Habit. B in Philodendron melloi (Araceae), a new species from central Amazonia, Brazil
FIGURE 2. Philodendron melloi. A. Habit. B. Plasticity foliar in ontogenetic development of leaves. C. Detail of the form and width of the base of the anterior lobe, the abaxial and adaxial leaf faces. D. Inflorescence in a transversal cut. E. Peduncle and stipe. F. Prophyll. G. Frontal view of the inflorescence and detail of the persistent prophyll H. Staminate fertile flowers on a superior view. I. Staminate fertile flowers in a transversal cut and a lateral view. J. Sterile staminodes in a lateral view. K. Detail of ovules and trichomes L. Gynoecium in a lateral view showing locules with ovules and details of the external trichomes on the stigma M. Gynoecium in a longitudinal cut, show axile placentation and ovules inserted into the entire length of the placenta. N. Transversal cut of the ovary.
FIGURE 2 in Second-step lectotypification of three names of Araceae from India
FIGURE 2. Lectotype of Arisaema nepenthoides (Wall.) Mart. ex Schott [Wallich Cat. No. 8919, (K001131838) A & B, designated here] © Royal Botanic Gardens, Kew (Available online from http://apps.kew.org/herbcat/getImage.do?imageBarcode=K001131838).
FIGURE 1 in Second-step lectotypification of three names of Araceae from India
FIGURE 1. Lectotype of Arisaema echinatum (Wall.) Schott [Wallich Cat. No. 8916 (K001131834) A–C, designated here] © Royal Botanic Gardens, Kew (Available online from http://apps.kew.org/herbcat/getImage.do?imageBarcode=K001131834).
FIGURE 2. Arisaema longitubum Z. X in Arisaema longitubum (Araceae), a new species from northwestern Yunnan, China
FIGURE 2. Arisaema longitubum Z. X. Ma. A. mature individual, B. juvenile leaf blade, C. spathe, D. male spadix, E. synandria, F. female spadix, G. pistil. Drawn by Yi-Fan Li: A & F from paratype, B & G from isotypes, C–E from holotype.
FIGURE 1. Arisaema longitubum Z.X in Arisaema longitubum (Araceae), a new species from northwestern Yunnan, China
FIGURE 1. Arisaema longitubum Z.X. Ma. A. inflorescence. B. individuals in the habitat. C. female spadix. D. male spadix. Images © Zheng-Xu Ma; plants are from the population of the holotype.
FIGURE 1 in Amorphophallus shyamsalilianum, a New Species (Araceae) from Bhandara District, Maharashtra State, India
FIGURE 1. Photograph of Amorphophallus shyamsalilianum J. V. Gadpayale, S. R. Somkuwar & A. A. Chaturvedi. A. Habitat. B. Tuber. C. Petiole. D. Inflorescence with peduncle. E. Spathe with spadix. F. Open spathae with spadix. G. Spadix with female, staminodal & male flowers. H. Female flowers zone. I. Staminodal flowers. J. Male flowers zone. K. Spadix appendix. L. Infructescence. M. Berries. N. Single Berry. O. Seeds. Photographs by Jagannath V. Gadpayale (India).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.