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393 results for “New Hybrids”
FIGURE 2. A in A new hybrid and further taxonomic notes on Brazilian tree ferns (Cyatheaceae)
FIGURE 2. A. Petiolar scale of Cyathea corcovadensis s. str. (Schwartsburd 3455 [VIC]). B. Petiolar scale of C. ×stella-matutina (Schwartsburd 3303 [VIC]). C. Petiolar scale of C. microdonta (Schwartsburd 3462 [VIC]). Bar of 0.5 cm.
FIGURE 1. A in A new hybrid and further taxonomic notes on Brazilian tree ferns (Cyatheaceae)
FIGURE 1. A. Lamina apex of Cyathea corcovadensis s. str. (Bovini 1537 [VIC]). B. Lamina apex of C. microdonta (Schwartsburd 3300 [VIC]). C–G. Cyathea ×stella-matutina (Schwartsburd 3303 [VIC]): C. Lamina apex. D. Petiolar aculei. E–G. Medial pinnules, showing variation on degree of dissection and size.
FIGURE 3 in Adiantum ailaoshanense (Pteridaceae), a new natural hybrid from Yunnan, China
FIGURE 3. SEM photographs of the spore morphology of Adiantum × ailaoshanense (B, D and E) and its parents. A. A. sinicum. C. A. menglianense.
FIGURE 1 in Adiantum ailaoshanense (Pteridaceae), a new natural hybrid from Yunnan, China
FIGURE 1. Adiantum × ailaoshanense Y.H. Yan & Y. Wang. A. Habit. B. Pinna abaxial. C. Pinna adaxial. D. Sporangia. E. Multicellular hair. F. Rhizome scale. Drawn from the holotype Yan12410 (CSH).
FIGURE 4. Malesherbia hybrids. a in Notes on Malesherbia (Passifloraceae) in Peru: a new species from southern Peru, a new record and a first report on interspecific hybridization in Malesherbia
FIGURE 4. Malesherbia hybrids. a. Malesherbia fatimae × tenuifolia, inflorescence (M. Weigend et al. 9370); b. Malesherbia fatimae × tenuifolia, leaves (M. Weigend et al. 9370); c. Profesora Fatima Cáceres Huamaní with a bunch of Malesherbia fatimae × tenuifolia and Malesherbia tenuifolia; d. Inflorescence of Malesherbia arequipensis (left), M. ardens (right), Malesherbia ardens × arequipensis (middle; same collections as in e, f, and g); e. Leaves of M. ardens (M. Weigend et al. 7866); f. Leaves of M. ardens × arequipensis (M. Weigend et al. 7868). g. Leaves of M. arequipensis (M. Weigend et al. 7865).
FIGURE 3. Malesherbia fatimae and M in Notes on Malesherbia (Passifloraceae) in Peru: a new species from southern Peru, a new record and a first report on interspecific hybridization in Malesherbia
FIGURE 3. Malesherbia fatimae and M. tenuifolia in native habitat. a. M. fatimae, inflorescence (M. Weigend et al. 9370). b. M. fatimae growing on rock face. c. Habitat of M. fatimae. d. M. tenuifolia (M. Weigend et al. 9368). e. M. tenuifolia (M. Weigend et al. 9369). f. habitat of M. tenuifolia.
FIGURE 2. Malesherbia fatimae, photographic plate. a in Notes on Malesherbia (Passifloraceae) in Peru: a new species from southern Peru, a new record and a first report on interspecific hybridization in Malesherbia
FIGURE 2. Malesherbia fatimae, photographic plate. a. inflorescence; b. flower; c. leaf, abaxial and adaxial side; d. androgynophore (with bracts and bractoles attached); e. Perianth, seen from adaxial side; f. corona and perianth seen from adaxial side (M. Weigend et al. 9372).
FIGURE 1. Malesherbia fatimae, line drawing. a in Notes on Malesherbia (Passifloraceae) in Peru: a new species from southern Peru, a new record and a first report on interspecific hybridization in Malesherbia
FIGURE 1. Malesherbia fatimae, line drawing. a. habit and inflorescence; b. leaf; c. calyx lobe; d. petal; e. corona; f. calyx and corolla seen from adaxial side, corona removed; g. androgynophore, stamens, ovary, and styles [drawn from Weibel 05 (USM) by Hamilton Beltrán].
FIGURE 5 in Berberis × baoxingensis (Berberidaceae), a new putative hybrid from western Sichuan, China
FIGURE 5. Holotype of Berberis ×baoxingensis and its living plants in the wild. A, Holotype. B, Part of the holotype in the wild, showing its living individual growing closely adjacent to the bush of B. verruculosa, on 8 May 2014. C, Part of the paratype Li et al., 141008, showing leaves, 2 bicolored flowers and 1 purplish black berry, on 13 October 2014. Abbreviations: BB, B. ×baoxingensis; BV, B. verruculosa; All photographed by Xin-Hua Li.
FIGURE 1 in Berberis × baoxingensis (Berberidaceae), a new putative hybrid from western Sichuan, China
FIGURE 1. Morphological features of Berberis verruculosa and B. sanguinea. A, B, B. verruculosa in the wild, showing yellow flowers, leaves pruinose below, and terete verruculose branches. C, D, B. sanguinea in the wild, showing bicolored flowers and leaves on the grey sulcate branches. E, F, The yellow petals of B. verruculosa, apexes retuse to entire. G, H, The reddish or reddish yellow petals of B. sanguinea, apexes notched to emarginate. I, Pruinose fruits and leaves of B. verruculosa. J, Purple-black fruits and leaves of B. sanguinea. A–D & I–J, bars = 1 cm, E–H, bars = 1 mm. A–D & I–J photographed by Xin-Hua Li, E & F by Wen-Hui Li, and G & H by Li-Cun Zhang.
FIGURE 3 in Berberis × baoxingensis (Berberidaceae), a new putative hybrid from western Sichuan, China
FIGURE 3. Morphological features of Berberis ×baoxingensis. A, Solitary to 3-fascicled, bicolored flowers. B, C, Part of the holotype in the wild, showing the bicolored flower and leaves. D, Ripening fruit, part of the paratype Li et al., 141008. E–G, The outmost 3 purplish red sepals. H–J, The innermost 3 sepals. K, L, Petals, apexes retuse. M, Stamen. N–R, Longitudinal dissection of ovaries, N, 2 ovules, O, 3 ovules, P, 4 ovules, Q, 5 ovules, R, 6 abortive ovules. S, Seed. A–D, bars = 1 cm, E–S, bars = 1 mm. A–D photographed by Xin-Hua Li, E–S by Wen-Hui Li.
FIGURE 4 in Berberis × baoxingensis (Berberidaceae), a new putative hybrid from western Sichuan, China
FIGURE 4. Comparison of the flower features of the three sympatric congeners of Berberis. A, Pedicel length. B, Tepal number. C, Size of sepals and petals. Abbreviations: BB, B. ×baoxingensis; BS, B. sanguinea; BV, B. verruculosa; LO, length of the outmost 3 sepals; WO, width of the outmost 3 sepals; LI, length of the innermost 3 sepals; WI, width of the innermost 3 sepals; LP, length of the 6 petals; WP, width of the 6 petals; LT, length of all tepals; WT, width of all tepals. Values with different letters indicating significant differences at p<0.01 level.
FIGURE 5 in Stipa ×fallax (Poaceae: Pooideae: Stipeae), a new natural hybrid from Tajikistan, and a new combination in Stipa drobovii
FIGURE 5. High mountain feather grass steppes near Iskanderkul Lake (Zeravshan Mts, Tajikistan), a habitat of Stipa ×fallax: (A) association of Stipetum drobovii, (B) association of Stipetum lipskyi, (C) Stipa ×fallax. Photos by M. Nobis, 30 May 2015.
FIGURE 3 in Stipa ×fallax (Poaceae: Pooideae: Stipeae), a new natural hybrid from Tajikistan, and a new combination in Stipa drobovii
FIGURE 3. Micromorphology of Stipa drobovii (A–D), S.×fallax (E–H) and S. macroglossa subsp. macroglossa (I–L). (A, E, I) lemma surface - lateral view, (B, F, J) lemma apex, (C, G, K) callus, (D, H, L) adaxial surface of vegetative leaves. Abbreviations: h = hook, lc = long cell, sb = silica body, cc—cork cell, pr—prickle, mh—macrohair. Scale bars: C, G, K: 1 mm. Examined specimens of S. drobovii, S.×fallax and S. macroglossa were collected in Tajikistan (near Iskanderkul Lake) and are preserved at KRA.
FIGURE 2 in Stipa ×fallax (Poaceae: Pooideae: Stipeae), a new natural hybrid from Tajikistan, and a new combination in Stipa drobovii
FIGURE 2. Pollen grains of Stipa taxa stained with Alexander's dye: (A) S. ×fallax, (B) S. macroglossa subsp. macroglossa, (C) S. drobovii. Scale bar 50 μm.
FIGURE 4 in Stipa ×fallax (Poaceae: Pooideae: Stipeae), a new natural hybrid from Tajikistan, and a new combination in Stipa drobovii
FIGURE 4. Stipa ×fallax: (A) vegetative shoots, (B) awns, (C) anthecia, (D) panicle, (E) lower part of awns (columns) with anthecia. Scale bar: (A), (B), (D), (E) = 1 cm, (C) = 0.5 cm.
FIGURE 1 in Stipa ×fallax (Poaceae: Pooideae: Stipeae), a new natural hybrid from Tajikistan, and a new combination in Stipa drobovii
FIGURE 1. Biplot of principal component analysis (PCA) performed on 10 quantitative characters; ellipses indicate 95% confidence interval. For character abbreviations see Methods.
FIGURE 1 in The Origin of New Natural hybrid, Goodyera maximo-velutina (Orchidaceae) from Jeju Island, Korea
FIGURE 1. The morphological comparison of Goodyera × maximo-velutina and their putative parental taxa. The habitus images from type locality (A, D, G), photographic images of ovary (B, E, H) and leaf venation (C, F, I). G. × maximo-velutina (A–C), G. maximowicziana (D–F), G. velutina (G–I).
FIGURE 2 in The Origin of New Natural hybrid, Goodyera maximo-velutina (Orchidaceae) from Jeju Island, Korea
FIGURE 2. Phylogenetic tree obtained by Bayesian phylogenetic inference of ITS region. Numbers above branches represent posterior probabilities.
FIGURE 5. G in The Origin of New Natural hybrid, Goodyera maximo-velutina (Orchidaceae) from Jeju Island, Korea
FIGURE 5. G. × maximo-velutina N.S. Lee & J.H. So A. Lateral sepal B. Dorsal sepal C. Lateral petal D. Lateral view of flower E. Bract F. Lateral and Face view of lip G. Face view of flower H. Habit.
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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.