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50 results for “Thelypteridaceae”
Fig. 3 in Insecticidal activity of the methanol extract of Pronephrium megacuspe (Thelypteridaceae) and its active component on Solenopsis invicta (Hymenoptera: Formicidae)
Fig. 3. The effect of methanol extract, ethyl acetate fraction, and compound 26 298 (phenol-3-O-beta-D-glucoside) from Pronephrium megacuspe on the clinging ability of 299 Solenopsis invicta macrergates. Each data point represents the mean ± SE of 3 replicates. Each 300 replicate contained 10 tested ants. CK = control.
Fig. 1 in Insecticidal activity of the methanol extract of Pronephrium megacuspe (Thelypteridaceae) and its active component on Solenopsis invicta (Hymenoptera: Formicidae)
Fig. 1. The effect of methanol extract, ethyl acetate fraction, and compound 26 288 (phenol-3-O-beta-D-glucoside) from Pronephrium megacuspe on the walking ability of 289 Solenopsis invicta macrergates. Each data point represents the mean ± SE of 3 replicates. Each 290 replicate contained 10 tested ants. CK = control.
Linked collectors and determiners for: First records of Tall Beech Fern, Phegopteris excelsior N. Patel & A.V. Gilman (Thelypteridaceae), for Ontario and Prince Edward Island.
Natural history specimen data linked to collectors and determiners held within, "First records of Tall Beech Fern, Phegopteris excelsior N. Patel & A.V. Gilman (Thelypteridaceae), for Ontario and Prince Edward Island". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/105e9f58-39b9-46e9-9ae0-fec6d3455111">https://bionomia.net/dataset/105e9f58-39b9-46e9-9ae0-fec6d3455111</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/105e9f58-39b9-46e9-9ae0-fec6d3455111">https://gbif.org/dataset/105e9f58-39b9-46e9-9ae0-fec6d3455111</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Phegopteris excelsior (Thelypteridaceae): A New Species of North American Tetraploid Beech Fern.
Natural history specimen data linked to collectors and determiners held within, "Phegopteris excelsior (Thelypteridaceae): A New Species of North American Tetraploid Beech Fern". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/3ec27add-200f-4d9f-9fd3-a46ed282720a">https://bionomia.net/dataset/3ec27add-200f-4d9f-9fd3-a46ed282720a</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/3ec27add-200f-4d9f-9fd3-a46ed282720a">https://gbif.org/dataset/3ec27add-200f-4d9f-9fd3-a46ed282720a</a>. Formatted as a Frictionless Data package.
Data from: The role of deep hybridization in fern speciation: Examples from the Thelypteridaceae
Open the record for dataset details and reuse information.
Goniopteris ×tico (Thelypteridaceae), a new hybrid fern from Costa Rica
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A global phylogenomic study of the Thelypteridaceae
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Plesioneuron attenuatum, Lunga river,Guadalcanal, Solomon Islands.Photo by Cheng-Wei Chen. in A Generic Classification of the Thelypteridaceae
Plesioneuron attenuatum, Lunga river,Guadalcanal, Solomon Islands.Photo by Cheng-Wei Chen.
Pneumatopteris glandulifera, Kolombangara,Solomon Islands. Photo by Cheng-Wei Chen. in A Generic Classification of the Thelypteridaceae
Pneumatopteris glandulifera, Kolombangara,Solomon Islands. Photo by Cheng-Wei Chen.
Phegopteris connectilis, Mosquito River, Alger County, Michigan.Photo by Susan Fawcett. in A Generic Classification of the Thelypteridaceae
Phegopteris connectilis, Mosquito River, Alger County, Michigan.Photo by Susan Fawcett.
FIGURE 2 in A new variety of fern from Borneo, Sphaerostephanos unitus var. dimorphophylla (Thelypteridaceae)
FIGURE 2. Morphology of Sphaerostephanos unitus var. dimorphophylla T. Hayashi, M. Suleiman, H. Okada & Tsukaya, var. nov. (A) sterile frond and rhizome. (B) fertile frond. (C) reduced lateral pinna of sterile frond. (D) protuberance of reduced pinna of fertile frond. (E) adaxial surface of base of lateral pinna of sterile frond. (F) abaxial surface of base of lateral pinna of sterile frond. (G) abaxial surface of base of lateral pinna of fertile frond. (H) indusium. (I) scale on base of stipe. Size bars: (A, B) = 5 cm, (E, F) = 3 mm, (C, D, G, I) = 1 mm, (H) = 100 μm.
FIGURE 1. Sphaerostephanos unitus var. dimorphophylla T. Hayashi, M. Suleiman, H in A new variety of fern from Borneo, Sphaerostephanos unitus var. dimorphophylla (Thelypteridaceae)
FIGURE 1. Sphaerostephanos unitus var. dimorphophylla T. Hayashi, M. Suleiman, H. Okada & Tsukaya, var. nov. in the habitat. (A, B) S. unitus var. dimorphophylla in the habitat. (C) The habitat. S. unitus var. dimorphophylla was discovered at a sunny and rock-strewn riverbed. The photographs were taken in ICCA, on 7th August, 2015.
FIGURE 2 in A new fern species of Christella (Thelypteridaceae) from India
FIGURE 2. Christella kendujharensis: A. Habit; B. A portion of the frond; C. Rhizome; D. An enlarge view of the pinnules; E. Scale of the rhizome; F. Acicular hair; G. Chromosomes; H. A sporangium; I. Single spore.
FIGURE 2 in Stegnogramma leptogrammoides (Thelypteridaceae), its discovery in China, and synonymy
FIGURE 2. ML phylogeny derived from the combined data (rbcL and trnL-F). Numbers on branches are support values PPBI/BSML, * means 1.0 or 100%.
FIGURE 1. Morphological observation. A–C in Stegnogramma leptogrammoides (Thelypteridaceae), its discovery in China, and synonymy
FIGURE 1. Morphological observation. A–C: Leptogramma himalaica JSL4534; D–J: Stegnogramma leptogrammoides SG1869; K–L: S. cyrtomioides JSL5001. A, D and K: Habit and morphology; B, E, F and L: Frond (undersurface and lobing) and veination; C and G: Stipe showing characteristic long hairs (bar: 500 μm); H, I and J: spores of S. leptogrammoides (bar: I 30 μm, H and J 20 μm).
FIGURE 4. Amauropelta subacrostichoides. A. Habit. B. Pinna. C. Pinna segments, adaxial surface detail. D in Prodromus of a fern flora for Bolivia. XXX. Thelypteridaceae
FIGURE 4. Amauropelta subacrostichoides. A. Habit. B. Pinna. C. Pinna segments, adaxial surface detail. D. Stipe base scale. (All from the holotype: S. Altamirano et al. 1192)
FIGURE 3. Amauropelta lanceolata. A. Habit. B. Medial pinna. C. Pinna segments, adaxial surface detail. D. Pinna segments, abaxial surface detail. E in Prodromus of a fern flora for Bolivia. XXX. Thelypteridaceae
FIGURE 3. Amauropelta lanceolata. A. Habit. B. Medial pinna. C. Pinna segments, adaxial surface detail. D. Pinna segments, abaxial surface detail. E. Sorus. (All from the holotype: I. Jimenez 2481)
FIGURE 2. Amauropelta glabrescens. A. Habit. B. Medial pinna. C. Pinna segments, abaxial surface detail. D. Pinna segments, adaxial surface detail. E in Prodromus of a fern flora for Bolivia. XXX. Thelypteridaceae
FIGURE 2. Amauropelta glabrescens. A. Habit. B. Medial pinna. C. Pinna segments, abaxial surface detail. D. Pinna segments, adaxial surface detail. E. Sorus. (All from the holotype: A. Portugal 542)
FIGURE 1. Amauropelta boliviana. A. Habit. B. Medial pinna. C. Pinna segments, adaxial surface detail. D. Pinna segments, abaxial surface detail. E in Prodromus of a fern flora for Bolivia. XXX. Thelypteridaceae
FIGURE 1. Amauropelta boliviana. A. Habit. B. Medial pinna. C. Pinna segments, adaxial surface detail. D. Pinna segments, abaxial surface detail. E. Sorus. (All from the holotype: I. Jimenez 213)
FIGURE 5. Steiropteris glabra. A. Habit. B. Medial pinna. C. Pinna segments, abaxial surface detail. D. Pinna segments, adaxial surface detail. E in Prodromus of a fern flora for Bolivia. XXX. Thelypteridaceae
FIGURE 5. Steiropteris glabra. A. Habit. B. Medial pinna. C. Pinna segments, abaxial surface detail. D. Pinna segments, adaxial surface detail. E. Sorus. (All from the holotype: A.F. Fuentes 14356)
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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
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International Brain Laboratory public data
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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.