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473 results for “Araceae”
FIGURES 38–45 in A new species of Beebeomyia Curran (Diptera: Richardiidae) from Brazil, with description of immature stages and notes on their association with Taccarum ulei (Araceae)
FIGURES 38–45. Beebeomyia taccarivora sp. nov., THIRD-INSTAR LARVA, ABDOMINAL SEGMENT, LOCOMOTORY STRUCTURES, VENTRAL VIEW: 38. CREEPING WELT I (CW I); 39. CREEPING WELT II (BLACK BAR INDICATES THE EVIDENT DISTANCE BETWEEN THE MEDIAL ROW AND NEXT ROW); 40. CREEPING WELT III; 41. CREEPING WELT IV; 42. CREEPING WELT V;43. CREEPING WELT VI; 44. CREEPING WELT VII; 45. CREEPING WELT VIII. ABBREVIATIONS: CW: CREEPING WELT. BLACK ARROWS INDICATE THE MEDIAL, ALMOST CONTINUOUS AND REGULAR ROW. SCALE LINES: 0.1MM.
Supplementary material 1 from: Sakuragui CM, Calazans LSB, de Oliveira LL, de Morais EB, Benko-Iseppon AM, Vasconcelos S, Schrago CEG, Joseph Mayo SJ (2018) Recognition of the genus Thaumatophyllum Schott − formerly Philodendron subg. Meconostigma (Araceae) − based on molecular and morphological evidence. PhytoKeys 98: 51-71. https://doi.org/10.3897/phytokeys.98.25044
Taxon sampling, voucher information and GenBank : Explanation note: Taxon sampling, voucher information and GenBank accession numbers of Philodendron, Homalomena and outgroup species.
Fig. 5 Pollen observed under SEM. A, A in The diversification of thecae horns and their putative significance-a case study of Schismatoglottideae (Araceae)
Fig. 5 Pollen observed under SEM. A, A. pendek (10 μm); B, B. caulescens (10 μm); C, B. purseglovei (10 μm); D, H. nicolsonii (10 μm); E, H. borneense (10 μm); F, T. alatensis (5 μm); G, T. surukensis
Fig. 3 in The diversification of thecae horns and their putative significance-a case study of Schismatoglottideae (Araceae)
Fig. 3 Microstructures of the stamens. A1–A6, Aridarum incavatum. A1, Stamen at pistillate anthesis (100 μm), A2, Smooth and clavate papillae cells on the thecae horns and stamen surface (10 μm), A3, Capitate and conical from side view of the papillae cells (10 μm), A4, Irregular shapes of oxalate crystals on the stamen surface at pistillate anthesis (5 μm), A5, Stamen at staminate anthesis (20 μm), A6, Distribution of oxalate crystals on thecae horns during staminate anthesis (100 μm); B1–B6, Aridarum montanum. B1, Stamen at pistillate anthesis (200 μm), B2, Stomata with vermiform papillae cells covered the stamen surface from near the base of the horned thecae (10 μm), B3, Smooth surface of thecae horn (10 μm), B4, Stamen at staminate anthesis (10 μm), B5, Remnants found on papillae cells (10 μm), B6, Triangular prism crystals (20 μm); C1–C6, Aridarum pendek. C1, Stamen at pistillate anthesis (100 μm), C2, Smooth surface on the tip of thecae horn, followed by cerebriform papillae cells (10 μm), C3, Papillae cells on the stamen surface (10 μm), C4, Stamen at staminate anthesis (100 μm), C5, Pollen (arrowhead) was found in the thecae path (50 μm), C6, Papillae cells on the stamen
Fig. 2 in The diversification of thecae horns and their putative significance-a case study of Schismatoglottideae (Araceae)
Fig. 2 Inflorescences at staminate anthesis for taxa included in this study. A, Toga rostrata; B, Toga surukensis; C, Toga unca; D, Pursegloveia ashtonii; E, Pursegloveia burttii; F, Pursegloveia minima; G, Pursegloveia orientalis; H, Hera hebe; I, Tawaia sabahensis; J, Naiadia zygoseta
Fig. 1 in The diversification of thecae horns and their putative significance-a case study of Schismatoglottideae (Araceae)
Fig. 1 Inflorescences at staminate anthesis for taxa included in this study. A, Aridarum incavatum; B, Aridarum pendek; C, Aridarum montanum; D, Burttianthus purseglovei; E, Burttianthus caulescens;
FIGURE 1 in A new species of Anthurium sect. Tetraspermium (Araceae) for eastern slope of the Andes Mountains Range
FIGURE 1. Anthurium brevispadix López-Flor., Marco Correa & Zuluaga. Habit (A); Leaf blades, adaxial and abaxial surfaces (B), black puntactions on the underside of the leaf (C); Cataphylls (D); Inflorescense (E); spadix (F); spathe (G).
FIGURE 2 in A new species of Anthurium (Araceae) from the canga vegetation of the Serra dos Carajás, Pará, Brazil
FIGURE 2. Occurrence of Anthurium pedrovianae Nadruz & Camelo in the Floresta Nacional dos Carajás, PA, Brazil. Source: IBGE 2012.
FIGURE 1. Anthurium pedrovianae Nadruz & Camelo. A. Habit showing a in A new species of Anthurium (Araceae) from the canga vegetation of the Serra dos Carajás, Pará, Brazil
FIGURE 1. Anthurium pedrovianae Nadruz & Camelo. A. Habit showing a detail the ferric soil; detail of inflorescence at anthesis. B. Erect plant with two inflorescences. C. Elliptical leaf blade with straight margins. D. Detail of midrib and primary lateral veins prominent at the abaxial surface. E. Inflorescence erect, green peduncle, spate greenish to yellowish, patent, long stipe greenish with a dark-purple detail at the junction at the spathe, spadix conical, purple with white pollen grains. F. Detail of spadix in anthesis. G. Spadix at pos-anthesis grey, immature berries greenish, mature berries purple. H. Berries entire purple and tepalar filaments are absent. Photos A–B; F—André Cardoso; C–E, H—Luiz Otávio Adão; G—Mel C. Camelo.
FIGURE 2 in A new species of broad-leafed Anthurium (Araceae) from the central region of Veracruz, Mexico
FIGURE 2. Map showing the collection site (black dot) of Anthurium tiswatl sp. nov. in Tequila, Veracruz, Mexico.
FIGURE 1. Anthurium tiswatl. A in A new species of broad-leafed Anthurium (Araceae) from the central region of Veracruz, Mexico
FIGURE 1. Anthurium tiswatl. A. Adult plant in its habit; B. Adaxial view of the leaf blade with a portion of the petiole; C. Inflorescence at anthesis (male phase) showing yellowish-green spathe, tinged with purple on the margins; D. Infructescence showing yellowish-green immature berries. Photos by P. Díaz Jiménez.
FIGURE 5. Anthurium itacarense. A. Habit with creeping stem detail. B in Two new species of Anthurium sect. Urospadix (Araceae) endemic to the restinga vegetation of Bahia, Brazil
FIGURE 5. Anthurium itacarense. A. Habit with creeping stem detail. B. Detail of creeping stem apex. C. Leaf blade, detail showing cuneate leaf base. D. Inflorescence. E. Flowers showing orange tepals, stamens and stigma droplet. Photos by K. Pimenta.
FIGURE 2. Anthurium bellissimum. A in Two new species of Anthurium sect. Urospadix (Araceae) endemic to the restinga vegetation of Bahia, Brazil
FIGURE 2. Anthurium bellissimum. A. Habit, with creeping stem shown in the detail. B. First leaf of an immature plant. C. Adaxial view of mature leaf blade. D. Inflorescence. E. Flowers showing stamens. F. Infructescence. G. Detail of fruit on infructescence. Photos by K. Pimenta.
FIGURE 4. Anthurium itacarense. A. Habit. B in Two new species of Anthurium sect. Urospadix (Araceae) endemic to the restinga vegetation of Bahia, Brazil
FIGURE 4. Anthurium itacarense. A. Habit. B. Detail of creeping stem apex. C. Detail of leaf blade base. D. Cross section of petiole. E. Cross section of geniculum. F. Inflorescence. G. Stipe. H. Flowers. I–J. Tepals. Illustration by K. Pimenta.
FIGURE 1. Anthurium bellissimum. A. Habit. B in Two new species of Anthurium sect. Urospadix (Araceae) endemic to the restinga vegetation of Bahia, Brazil
FIGURE 1. Anthurium bellissimum. A. Habit. B. Detail of leaf blade base. C. Cross sections of petiole. D. Cross section of geniculum. E. Cross section of peduncle. F. Stipe. G. Spathe curling up when mature. H. Flowers. I–J. Tepals. K. Fruit. L. Seed. Illustration by K. Pimenta.
FIGURE 91 in Revision of Monstera (Araceae: Monsteroideae) of Central America
FIGURE 91. Monstera wilsoniensis from Coto Brus, Costa Rica. (A, B) adult plants in their natural habitat. (C) Hanging stems with pendulous or sub-erect infructescences (arrow). M. Cedeño et al. 1484 (USJ). Image from Cedeño-Fonseca et al. (2020a).
FIGURE 88 in Revision of Monstera (Araceae: Monsteroideae) of Central America
FIGURE 88. Monstera tuberculata from Sarapiquí, Costa Rica. (A) Developing inflorescence. (B) Inflorescence with open spathe, front view. (C) Mature infructescence, stylar plates detaching. (D) Fertile flower; in lateral view (left), and longitudinal section (right). (E) Sterile flower; in lateral view (left) and in longitudinal section (right). (F) Stylar plate with stigma (right) and one stamen (left). (G) Juvenile plant. (H) Seedling. (I) Seeds. (J) Adult plant. M. Cedeño et al. 874 (USJ). Image from Cedeño-Fonseca et al. (2022).
FIGURE 87 in Revision of Monstera (Araceae: Monsteroideae) of Central America
FIGURE 87. Monstera titanum from Panama. Adult plant growing in the locality type. M. Cedeño et al. 2385 (PMA). Image from Cedeño-Fonseca et al. (2020b).
FIGURE 84 in Revision of Monstera (Araceae: Monsteroideae) of Central America
FIGURE 84. Monstera tarrazuensis from Tarrazú, Costa Rica. (A, B) adult plants in their natural habitat, with hanging stems at the edge of the forest. (C) hanging stem with erect inflorescence (arrow). (D) hanging stem with erect infructescence (arrow). M. Cedeño 1686 (USJ). Image from Cedeño-Fonseca et al. (2020a).
FIGURE 80. Monstera tablasensis from Boquete, Panama. Adult plant growing 3 m above the ground. O in Revision of Monstera (Araceae: Monsteroideae) of Central America
FIGURE 80. Monstera tablasensis from Boquete, Panama. Adult plant growing 3 m above the ground. O. Ortiz et al. 2791 (MO, PMA). Photo by M. Cedeño-Fonseca.
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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.