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80 results for “Amomum”
Sison amomum L. (BR0000011193401)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Sison amomum L. (BR0000011644064)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Sison amomum L. (BR0000011643739)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Sison amomum L. (BR0000011309857)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Sison amomum L. (BR0000011644156)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Sison amomum L. (BR0000011643401)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Swida amomum seed germination
<p>Premise: Effective seed dispersal is essential in population dynamics of plant species. Swida amomum (Silky dogwood) exhibits a dispersal syndrome characteristic of autumn-ripening shrubs with fleshy fruits, where attached fruits are ingested and defecated by birds while fallen fruits are consumed by ground-foraging birds and mammals. </p> <p>Methods: We documented that fallen fruits of this shrub were consumed by two aquatic turtle species (Eastern painted turtle, Chrysemys picta and Red-eared slider, Trachemys scripta) and that their seeds were defecated. We compared germination success (percentage of seeds germinated) of defecated seeds, seeds collected from pond surface, and seeds removed from shrubs.</p> <p>Results: While four seed taxa were identified in fecal samples, seeds of S. amomum were the most frequent (93%) among samples and the most numerous (106 seeds) in any sample. Average proportion of fecal seeds germinated (85.99%) exceeded that of seeds from pond surface (82.76%) and from shrubs (60.24%), albeit the difference in germination success was insignificant. When analyzed using fecal samples from Painted turtles only, the difference in germination success between fecal seeds and those collected from pond or shrub became significant.</p> <p>Conclusions: Our findings represent the first report of S. amomum seeds being dispersed by turtle gut passage and suggest aquatic turtles could be an important part of a secondary seed dispersal process influencing woody plant community composition in temperate wetland ecosystems.</p>
Swida amomum seed germination
Open the record for dataset details and reuse information.
FIGURE 2. A–D. Amomum xizangense A. Habit. B. Inflorescence. C. Fruit. D in Amomum xizangense (Zingiberaceae), a new species from Xizang, China
FIGURE 2. A–D. Amomum xizangense A. Habit. B. Inflorescence. C. Fruit. D. Lateral view of leaf sheath, ligule and petiole. E– H. Amomum maximum E. Habit. F. Inflorescence. G. Infructescence. H. Lateral view of leaf sheath, ligule and petiole. I–L. Amomum subcapitatum I. Habit. J. Inflorescence. K. Infructescence. L. Lateral view of leaf sheath, ligule and petiole.
FIGURE 3 in Taxonomic studies on Amomum (Zingiberaceae) in China III: Amomum fangdingii, a new species from Guangxi
FIGURE 3. Distribution of Amomum fangdingii (red dots with a black outline) with its type locality (blue triangle with a black outline). Inset upper left: map of China with Guangxi Zhuang Autonomous Region shaded.
FIGURE 2 in Taxonomic studies on Amomum (Zingiberaceae) in China III: Amomum fangdingii, a new species from Guangxi
FIGURE 2. Amomum fangdingii (A) Habit, (B) Bladeless leaf sheaths with crisped margins, (C) Infructescence, (D) Dissection of a flower (from left to right): calyx (split open), corolla lobes, ovary with epigynous glands, style and pedicel, labellum, floral tube with stamen and two minute lateral staminodes (front view, side view & back view). Photos by Ye Xing-Er; (A)–(C) based on X.E. Ye 160, (D) based on X.E. Ye 12.
FIGURE 1 in Taxonomic studies on Amomum (Zingiberaceae) in China III: Amomum fangdingii, a new species from Guangxi
FIGURE 1. Amomum fangdingii (A) Habit, (B) Leaves, (C) Ligule, (D) Rhizome with inflorescences, (E) Bladeless leaf sheaths with crisped margins, (F) Flower (front view), (G) Flower (side view), (H) A single inflorescence and dissection of a cincinnus (from left to right): cincinnus, bract, single flower, single flower bud, bracteole, (I) Infructescence. Photos (A)–(H) by Ye Xing-Er; based on X.E. Ye 127. Photo (I) by Chen Juan; based on J.B. Ni & J. Chen 061008.
FIGURE 2. Amomum kingii var. oblongum var. nov. A in Amomum kingii var. oblongum (Zingiberaceae): a new variety from Sikkim Himalaya
FIGURE 2. Amomum kingii var. oblongum var. nov. A. habit; B. ligule; C. inflorescence; D. outer bract; E. inner bract; F. bracteole; G & H flowers; I. calyx with ovary; J. corolla lobes; K. labellum with lateral staminodes; L. stamen; M. ovary with epigynous glands and part of style; N. stigma; O. infructescence. Photos by V.P. Thomas.
FIGURE 1. Amomum kingii. A in Amomum kingii var. oblongum (Zingiberaceae): a new variety from Sikkim Himalaya
FIGURE 1. Amomum kingii. A. habit; B. ligule with glaucous lamina beneath; C, D & E. inflorescences; F. outer bract; G. inner bract; H. bracteole; I. flower; J. calyx; K. corolla lobes; L. labellum; M. stamen; N. ovary with epigynous glands and style; O. stigma; P. infructescence. Photos by V.P. Thomas.
FIGURE 3. Amomum kingii var. oblongum var. nov. A in Amomum kingii var. oblongum (Zingiberaceae): a new variety from Sikkim Himalaya
FIGURE 3. Amomum kingii var. oblongum var. nov. A. part of leafy shoot; B. ligule; C. inflorescence; D. bract; E. bracteole; F. flower; G. calyx; H. corolla lobes; I. stamen; J. labellum; K. ovary with epigynous glands and style; L. stigma; M. c.s. of ovary, N. fruit; O. seed. Drawn by V.P. Thomas.
FIGURE 1. Amomum pratisthana A in A new species of Amomum (Zingiberaceae) from Assam, North East India
FIGURE 1. Amomum pratisthana A. Lower portion of the plant showing rhizome, roots, pseudostem and inflorescence. B. Upper portion of plant showing leaves and petioles. C. Pseudo stem base showing loosely attached leaf sheaths and inflorescence. D–E. Ligules. F. Inflorescence with bracts. G. Inflorescence without bract. H. Bract. I. Bracteole. J. Flower with bracteole. K–L. Flower without calyx-top view. M. Flower-side view. N. Magnified view of flower showing corolla lobes and labellum. O. Flower bud showing calyx. P. Flower base showing calyx. Q. Labellum with dorsal corolla lobe. R. Corolla with stamen and carpel. S. Corolla tube with stamen and carpel. T. Stamen. U. Stigma with upper portion of styles. V. Ovary. All based on J. Sarma 300 (HBARC!).
FIGURE 1. Amomum nimkeyense. A. habit. B. lamina. C. ligule. D–F in Amomum nimkeyense (Zingiberaceae), a new species from Arunachal Pradesh, northeastern India
FIGURE 1. Amomum nimkeyense. A. habit. B. lamina. C. ligule. D–F. basal part of plant showing inflorescences. F. inset T.S. of rhizome. G. inner bract. H. bracteole. I. single flower. J. calyx. K. corolla lobes. L. labellum. M. stamen. N. ovary with epigynous glands and basal portion of style. O. C.S. of ovary. P. stigma. Q. fruit. Photos by M. Sabu and V.S. Hareesh.
FIGURE 2 in A new species and a new combination of Amomum Roxb. (Zingiberaceae) from Sikkim Himalaya, India
FIGURE 2. Amomum raoii: A. inflorescence; B. infructescence. Amomum raoii var. oblongum: C inflorescence; D. infructescence.
FIGURE 1. Amomum raoii. A. a in A new species and a new combination of Amomum Roxb. (Zingiberaceae) from Sikkim Himalaya, India
FIGURE 1. Amomum raoii. A. a part of leafy shoot; B. ligule; C. inflorescence; D. outer bract; E. bracteole; F. flower; G. calyx; H. corolla lobes; I. stamen; J. labellum; K. ovary with epigynous glands and style; L. stigma; M. c.s. of ovary; N. fruit; O. seed. Drawn by V.P. Thomas.
FIGURE 2. Amomum sabuanum A in Amomum sabuanum (Zingiberaceae): A new species from Sikkim, India
FIGURE 2. Amomum sabuanum A. habit; B. ligule; C. Rhizome; D. & E. inflorescences; F. bract; G. bracteole; H. flowers; I. single flower; J. calyx; K. corolla lobes; L. stamen; M. labellum; N. epigynous glands and style; O. stigma; P. fruits. Photos by V.P. Thomas.
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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.