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473 results for “Araceae,”
FIGURE 3 in Lagenandra limbusleviterapertae, a new addition to the genus Lagenandra (Araceae) from Sri Lanka
FIGURE 3. Habit of Lagenandra limbusleviterapertae; A. Leaves with lighter green upper surface and light cream mixed with marron spathes. B. Leaves with dark green upper surface and purple lower surface and dark marron spathe. C. Leaves with dark green upper surface maroon spathe., all occurring together along the stretch of the streamlet.
FIGURE 5 in Lagenandra limbusleviterapertae, a new addition to the genus Lagenandra (Araceae) from Sri Lanka
FIGURE 5. Lagenandra limbusleviterapertae; A. Leaf. B. and C. Spathe from different angles showing the opening in the limb. D. Spathe dissected and opened. E. Kettle with the spadix. F. Appendix and staminate flower zone. G. Pistillate flower zone. H. Infructescence and I. Seeds.
FIGURE 4 in Lagenandra limbusleviterapertae, a new addition to the genus Lagenandra (Araceae) from Sri Lanka
FIGURE 4. Variation in leaf and spathe colour of Lagenandra limbusleviterapertae; A1. and A2. Leaves with lighter green upper surface and light cream mixed with marron spathes. B1. and B2. Leaves with dark green upper surface and maroon spathe.C1. and C2. Leaves with dark green upper surface and purple lower surface and dark marron spathe. Note that A1. And B1. are upper leaf surfaces while C1. is lower surface.
FIGURE 6 in Two new species of Stylochaeton (Araceae: Aroideae) from South Africa
FIGURE 6. Topographical map showing the known distribution (black dots) of Stylochaeton glaucophyllum. The insert shows a map of southern Africa with names of countries; the grey rectangle indicates the area depicted by the topographical map.
FIGURE 2. Stylochaeton glaucophyllum. A in Two new species of Stylochaeton (Araceae: Aroideae) from South Africa
FIGURE 2. Stylochaeton glaucophyllum. A. Plant with mature infructescence borne partly below-ground; dashed line indicates soil level. B. Vertical rhizome with sturdy, though non-tuberous roots, and mature infructescence, the latter intact (left) and as seen in longitudinal section (right); horizontal band of stippling indicates soil level. Scale bar = 10 mm. Artists: Anne Stadler (A) and Gillian Condy (B).
FIGURE 1. Stylochaeton natalense, general morphology. A in Two new species of Stylochaeton (Araceae: Aroideae) from South Africa
FIGURE 1. Stylochaeton natalense, general morphology. A. Plants with ca. sagittate leaves. B. Inflorescence. C. Plants with ca. hastate leaves. D. Developing infructescence. Photographs: W. McCleland (A), R.G.C. Boon (B), G. Nichols (C) and A.E. van Wyk (D).
FIGURE 5. Stylochaeton glaucophyllum and S in Two new species of Stylochaeton (Araceae: Aroideae) from South Africa
FIGURE 5. Stylochaeton glaucophyllum and S. sekhukhuniense, habit and habitat. A. S. glaucopyllum, two plants, each with two leaves, growing among norite rocks. B. S. sekhukhuniense, plant growing among norite rocks and with black burned plant material indicating that the plant has sprouted after a recent wild fire. Photographs: A. Klopper (A) and S.J. Siebert (B).
FIGURE 8 in Two new species of Stylochaeton (Araceae: Aroideae) from South Africa
FIGURE 8. Topographical map showing the known distribution (black dots) of Stylochaeton sekhukhuniense. The insert shows a map of southern Africa with names of countries; the grey rectangle indicates the area depicted by the topographical map.
FIGURE 4 in Two new species of Stylochaeton (Araceae: Aroideae) from South Africa
FIGURE 4. Stylochaeton glaucophyllum, morphology of infructescence. A. Plant with mature infructescence, the latter borne partly below-ground; some soil has been removed from around the infructescence to show the upper purplish surface visible above-ground and the lower whitish part that were below-ground. B. Infructescence removed from the soil; the bulk of it was below-ground, with only the area tinged greenish purple at the top exposed above-ground. C. Infructescence with purplish colouration indicating that most of the berries were borne above-ground. D. Infructescence that were mainly borne below-ground as indicated by the broad whitish lower part. Photographs: A.E. van Wyk (A, C & D) and S.J. Siebert (B).
FIGURE 7 in Two new species of Stylochaeton (Araceae: Aroideae) from South Africa
FIGURE 7. Stylochaeton sekhukhuniense, morphology of leaves and inflorescence. A. Basal part of leaves showing the distinctly ligulate petiolar sheaths; note hairs on the part of the petiole above the sheath. B. Petiolar sheaths with curly ligulae, viewed from above. C. Inflorescence with strongly forward curving spathe. D. Inflorescences removed from plant and soil cleaned from basal parts; viewed from different angles. Photographs: A.E. van Wyk (A, C & D) and S.J. Siebert (B).
FIGURE 3 in Two new species of Stylochaeton (Araceae: Aroideae) from South Africa
FIGURE 3. Stylochaeton glaucophyllum, morphology of inflorescence. A. Inflorescence at start of anthesis. B. Inflorescence partly open; note dark central blotch. C. Fully opened inflorescence, with dark central blotch and spadix protruding somewhat from the spathe-tube. D. Inflorescence with spathe in dorsal view to show cryptic coloration among dry grass. E. Inflorescence with spathe in dorsal view to show coloration; flowering in a recently burned area. F. Inflorescences removed from plants and with soil cleaned from basal parts, seen from different angles; inflorescence on far-left still in bud. G. Upper part of spadix with staminate flowers and protruding from the spathe-tube. Photographs: S.J. Siebert.
Data from: Identification of chloroplast genome loci suitable for high-resolution phylogeographic studies of Colocasia esculenta (L.) Schott (Araceae) and closely related taxa
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Data for: Birth order as a source of within-genotype diversification in the clonal duckweed, Spirodela polyrhiza (Araceae: Lemnoideae)
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Data from: Typhonium muaklekense sp. nov. (Araceae) from Thailand
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DNA sequences for six chloroplast loci concatenated, representing haplotypes found in Colocasia esculenta, and closely related Araceae
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Fourteen morphological traits of three Japanese species of Arisaema sect. Pistillata (Araceae)
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Data from: Resurrection and new species of the Neotropical genus Adelonema (Araceae: Philodendron clade)
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Figure 4 from: Zhou S-S, Quan R-C, Li R, Liu Q, Yin J-T (2020) Colocasia kachinensis, a new species of Araceae from Myanmar. In: Jin X-H, Xia N-H, Tan Y-H (Eds) Plant diversity of Southeast Asia-II. PhytoKeys 138: 41-47. https://doi.org/10.3897/phytokeys.138.36769
Figure 4 Male flower of C. kachinensis. Drawn by Mr. Bo Pan from the holotype. A Male part of spadix B 1-androus flower C 2-androus flower D 4-androus flower E 3-androus flower.
Figure 3 from: Zhou S-S, Quan R-C, Li R, Liu Q, Yin J-T (2020) Colocasia kachinensis, a new species of Araceae from Myanmar. In: Jin X-H, Xia N-H, Tan Y-H (Eds) Plant diversity of Southeast Asia-II. PhytoKeys 138: 41-47. https://doi.org/10.3897/phytokeys.138.36769
Figure 3 Stem of C. kachinensis and morphological comparison between C. menglaensis and C. kachinensis. A stem of C. kachinensisB lower surface of leaf ×100 of C. menglaensisC lower surface of leaf ×100 of C. kachinensis.
Figure 5 in A new species of the Neotropical genus Beebeomyia (Diptera: Richardiidae) with observations of its biology on Dieffenbachia oerstedii (Araceae)
Figure 5. Detail of female section of the inflorescence of D. oerstedii. (A) cross section showing the female flowers; (B–C) damage produced by larvae of Beebeomyia inside the female flowers; (D) some ovaries damaged by the larvae, and pupae arranged in groups inside the bract. Arrows show larvae and pupae.
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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)
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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.