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432 results for “compositae”
Figure 4 from: Robinson H, Funk VA (2018) Vernonia subgenus Austrovernonia, a new subgenus from South America (Compositae, Vernonieae, Vernoniinae). PhytoKeys 110: 123-134. https://doi.org/10.3897/phytokeys.110.28890
Figure 4 Image of the selected lectotype for Vernoniaincana Less. There are now six isosyntypes in European herbaria: all the specimens are similar, but the LL specimen was selected as the lectotype because it had the most complete information, including the collecting number and the label indicates that it had been in the Berlin herbarium before it was sent to S.F. Blake. [photo courtesy of JSTOR-Plants, continuously updated].
Figure 3 from: Robinson H, Funk VA (2018) Vernonia subgenus Austrovernonia, a new subgenus from South America (Compositae, Vernonieae, Vernoniinae). PhytoKeys 110: 123-134. https://doi.org/10.3897/phytokeys.110.28890
Figure 3 Image of US herbarium sheet of Vernoniaincana Less. which shows the two types of roots: fleshy and fibrous. [photo courtesy of I. Lin, US].
Figure 1 from: Gonzáles P, Cano A, Robinson H (2018) A new genus of Compositae (Eupatorieae, Piqueriinae) from Peru, named Centenaria to honour the 100 th anniversary of the Natural History Museum of the National University Mayor of San Marcos. PhytoKeys 113: 69-77. https://doi.org/10.3897/phytokeys.113.28242
Figure 1 Centenariarupacquiana. A Plant B leaf (adaxial surface) C mature leaf (abaxial surface) D mature leaf (adaxial surface) E upper leaf F uppermost leaf bracteiform G capitula (upper view) H involucre I inner phyllaries J outer phyllaries K flower (frontal view) L flower (lateral view) M flower tube with glandular trichomes N flower (upper view) O style and stamens P, Q scale of pappus R achene without pappus. Photos by P. Gonzáles.
Figure 7 from: Chang C-Y, Tzeng H-Y, Tseng Y-H (2019) Cirsium tatakaense (Compositae), a new species from Taiwan. PhytoKeys 117: 119-132. https://doi.org/10.3897/phytokeys.117.29380
Figure 7 Comparison of the pollen morphology of the three species of Cirsiumsect.Onotrophe in Taiwan. AC.tatakaense Y.H.Tseng & C.Y.Chang BC.kawakamii Hayata CC.arisanense Kitam.: 1 polar view 2 equatorial view 3 colporate view. Scale bar: 30 μm.
Figure 4 from: Chang C-Y, Tzeng H-Y, Tseng Y-H (2019) Cirsium tatakaense (Compositae), a new species from Taiwan. PhytoKeys 117: 119-132. https://doi.org/10.3897/phytokeys.117.29380
Figure 4 Holotypes of the three species of Cirsiumsect.Onotrophe in Taiwan. AC.tatakaense Y.H.Tseng & C.Y.Chang, C. Y. Chang 1444 (TCF) BC.kawakamii Hayata, T. Kawakami & U. Mori 2279 (TI!) CC.arisanense Kitam., S. Kitamura s.n. (KYO!).
Figure 1 from: Chang C-Y, Tzeng H-Y, Tseng Y-H (2019) Cirsium tatakaense (Compositae), a new species from Taiwan. PhytoKeys 117: 119-132. https://doi.org/10.3897/phytokeys.117.29380
Figure 1 Line drawings of Cirsiumtatakaense Y.H.Tseng & C.Y.Chang A habit B root C leaf D capitula E inner phyllary E' middle phyllary E" outer phyllary F floret F' floret (pappus removed) G synantherous H style branches I achene. Voucher: C. Y. Chang 1442 (TCF).
Figure 3 from: Chang C-Y, Tzeng H-Y, Tseng Y-H (2019) Cirsium tatakaense (Compositae), a new species from Taiwan. PhytoKeys 117: 119-132. https://doi.org/10.3897/phytokeys.117.29380
Figure 3 Distribution map of Cirsiumtatakaense Y.H.Tseng & C.Y.Chang (star); C.kawakamii Hayata (triangle); and C.arisanense Kitam. (circle) of Taiwan.
Figure 5 from: Chang C-Y, Tzeng H-Y, Tseng Y-H (2019) Cirsium tatakaense (Compositae), a new species from Taiwan. PhytoKeys 117: 119-132. https://doi.org/10.3897/phytokeys.117.29380
Figure 5 Comparison of the morphological characters amongst the species of Cirsiumsect.Onotrophe in Taiwan. AC.tatakaense Y.H.Tseng & C.Y.Chang BC.kawakamii Hayata CC.arisanense Kitam.: 1 leaf 2 capitula 3 inner phyllary 3' middle phyllary 3" outer phyllary 4 floret 4' floret (pappus removed) 5 synantherous 6 style branches 7 achene 7' achene with pappus.
Figure 2 from: Chang C-Y, Tzeng H-Y, Tseng Y-H (2019) Cirsium tatakaense (Compositae), a new species from Taiwan. PhytoKeys 117: 119-132. https://doi.org/10.3897/phytokeys.117.29380
Figure 2 Cirsiumtatakaense Y.H.Tseng & C.Y.Chang A habitat B habit C seedling D variations of leaves E inflorescences F capitula G floret; (right-side pappus removed) H achene with pappus I achene.
Figure 6 from: Chang C-Y, Tzeng H-Y, Tseng Y-H (2019) Cirsium tatakaense (Compositae), a new species from Taiwan. PhytoKeys 117: 119-132. https://doi.org/10.3897/phytokeys.117.29380
Figure 6 Chromosome number of the two species of Cirsiumsubsect.Nipponocirsium Kitam. in Taiwan. A 2n = 64, C.tatakaense Y.H.Tseng & C.Y.Chang B 2n = 64, C.kawakamii Hayata. Scale bar: 5 μm.
Figure 5 from: Hasegawa N, Kajihara H (2019) A redescription of Syncarpa composita (Ascidiacea, Stolidobranchia) with an inference of its phylogenetic position within Styelidae. ZooKeys 857: 1-15. https://doi.org/10.3897/zookeys.857.32654
Figure 5 Syncarpaoviformis Redikorzev, 1913, ZIRAS 508-911 (syntype). A Outer surface of pharynx, viewed from right side B magnification of white square in A, showing that all transverse vessels make 'shortcuts' and bridge across the pharyngeal fold.
Figure 6 from: Hasegawa N, Kajihara H (2019) A redescription of Syncarpa composita (Ascidiacea, Stolidobranchia) with an inference of its phylogenetic position within Styelidae. ZooKeys 857: 1-15. https://doi.org/10.3897/zookeys.857.32654
Figure 6 Phylogenetic relationship of 28 styelid ascidians. ML tree generated from concatenated sequences of 18S (1582 bp) and COI (686 bp). Numbers on nodes indicate bootstrap values and, where applicable, posterior probabilities. Scale bar indicates number of substitutions per site. B, P, and S represented Botryllinae, Polyzoinae, and Styelinae.
Figure 3 from: Hasegawa N, Kajihara H (2019) A redescription of Syncarpa composita (Ascidiacea, Stolidobranchia) with an inference of its phylogenetic position within Styelidae. ZooKeys 857: 1-15. https://doi.org/10.3897/zookeys.857.32654
Figure 3 Syncarpacomposita (Tokioka, 1951). A, BICHUM 5817 CICHUM 5824. A Zooid opened dorsally, with pharynx removed B stomach internal surface C tadpole larva.
Figure 2 from: Hasegawa N, Kajihara H (2019) A redescription of Syncarpa composita (Ascidiacea, Stolidobranchia) with an inference of its phylogenetic position within Styelidae. ZooKeys 857: 1-15. https://doi.org/10.3897/zookeys.857.32654
Figure 2 Syncarpacomposita (Tokioka, 1951). A, B, D, EICHUM 5817 CSMBL 104. A Zooid opened dorsally B ciliated groove (rotated 90 degrees anti-clockwise and enlarged view of the white square of A) C magnification of inner surface of pharynx, showing large (indicated by an asterisk) and small (indicated by an arrow) transverse vessels D outer surface of pharynx, viewed from right side E magnification of white square in D, showing 'shortcut' of large transverse vessel (asterisk) above pharyngeal fold and 'detour' of small transverse vessel (arrowed) along pharyngeal fold.
Figure 1 from: Hasegawa N, Kajihara H (2019) A redescription of Syncarpa composita (Ascidiacea, Stolidobranchia) with an inference of its phylogenetic position within Styelidae. ZooKeys 857: 1-15. https://doi.org/10.3897/zookeys.857.32654
Figure 1 Syncarpacomposita (Tokioka, 1951). A, B, D, EICHUM 5817 CSMBL 104 (syntype). A Live colony B intact colony C preserved colony D intact zooid E zooid showing length from top of siphon to end of stomach (La) and from end of stomach to posterior end of zooid (Lb).
Figure 4 from: Hasegawa N, Kajihara H (2019) A redescription of Syncarpa composita (Ascidiacea, Stolidobranchia) with an inference of its phylogenetic position within Styelidae. ZooKeys 857: 1-15. https://doi.org/10.3897/zookeys.857.32654
Figure 4 Syncarpacomposita (Tokioka, 1951), ICHUM 5824, cross section of a tadpole larva, showing photolith.
Figure 6 from: Calvo J, Granda A, Funk VA (2019) New combinations and synonyms in discoid caespitose Andean Senecio (Senecioneae, Compositae). PhytoKeys 132: 111-130. https://doi.org/10.3897/phytokeys.132.38534
Figure 6 Senecio pygmophyllusA habit (drawn from Funk et al. 13153) B leaf (drawn from Weberbauer 7358). Illustration by Alice Tangerini.
Figure 5 from: Calvo J, Granda A, Funk VA (2019) New combinations and synonyms in discoid caespitose Andean Senecio (Senecioneae, Compositae). PhytoKeys 132: 111-130. https://doi.org/10.3897/phytokeys.132.38534
Figure 5 Distribution map of Senecio melanandrus (black circle), S. pygmophyllus (red circle), and S. digitatus (blue circle).
Figure 4 from: Calvo J, Granda A, Funk VA (2019) New combinations and synonyms in discoid caespitose Andean Senecio (Senecioneae, Compositae). PhytoKeys 132: 111-130. https://doi.org/10.3897/phytokeys.132.38534
Figure 4 A, BSenecio melanandrus (glabrous form) C, DSenecio pygmophyllusA habit B leaves (Peru, Puno, pr. Ananea; Funk et al. 13184) C habit D leaves (Peru, Moquegua, pr. Anillune; Funk et al. 13153). Pictures by Mauricio Diazgranados.
Figure 3 from: Calvo J, Granda A, Funk VA (2019) New combinations and synonyms in discoid caespitose Andean Senecio (Senecioneae, Compositae). PhytoKeys 132: 111-130. https://doi.org/10.3897/phytokeys.132.38534
Figure 3 A, BSenecio melanandrus (pilose form) C, DSenecio pygmophyllusE, FSenecio digitatusA habit (Peru, Cusco, Sibinacocha; Meneses et al. 6968) B leaves (Bolivia, Potosí, Kari Kari; Calvo & Zárate 7872) C habit (Chile, Tarapacá, Colchane; Moreira-Muñoz 2876) D leaves (Chile, Arica-Parinacota, Las Cuevas; Moreira-Muñoz & Luebert 2470) E habit F leaves (Chile, Antofagasta, Pacana; Calvo 7926). Picture A by Jim Farfán B, E, F by Joel Calvo C, D by Andrés Moreira-Muñoz.
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Allen Brain Atlas
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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.