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298 results for “Iridaceae”
FIGURE 1 in Rediscovery and taxonomic analysis of Romulea melitensis (Iridaceae) from the Maltese islands
FIGURE 1. The nine plants of the type specimen of × R. melitensis on two herbarium sheets G00370314 (left) and G00370315 (right).
FIGURE 4 in Rediscovery and taxonomic analysis of Romulea melitensis (Iridaceae) from the Maltese islands
FIGURE 4. Romulea ×melitensis reproductive structures a. Stamens and style (left: D217b, right: A210b) showing subglabrous pilosity at the base of the filaments and a scarce production of pollen. b. Pollen grains (E217a): low-resolution image showing shrivelled and fragmented pollen of irregular size; high-resolution image showing translucent empty grains.
FIGURE 5 in Rediscovery and taxonomic analysis of Romulea melitensis (Iridaceae) from the Maltese islands
FIGURE 5. Typical habitat of × R. melitensis co-occurring with R. columnae and R. variicolor at a footpath in Rdum Majjiesa (Majjistral Park), Mellieħa, 11-Feb-2020. Lower crop out images are up to scale with each other.
FIGURE 2 in Herbertia guyunusae, a new species of Iridaceae from the grassland ecosystem of Río de La Plata, South America
FIGURE 2. Map of geographic distribution of Herbertia guyunusae. Orange circles represent specimens collected, gray circles represent specimens observed, which were not made vouchers.
FIGURE 3. Herbertia guyunusae. A–B. Habit. C. Flower, inclined view. D. Flower, lateral view E in Herbertia guyunusae, a new species of Iridaceae from the grassland ecosystem of Río de La Plata, South America
FIGURE 3. Herbertia guyunusae. A–B. Habit. C. Flower, inclined view. D. Flower, lateral view E. Flower, showing style, stamens, and two inner bracts. F. Inner tepal, lateral view. G. Inner tepal, frontal view H. Flower, upper view, showing the style branches, inner tepals and claws of outer tepals. I. Capsule. J. Seeds (A, from L.P. Deble & B.P. Moreira 19622, B, I–J, from L.P. Deble & B.P. Moreira 19703, C–D, from material non collected, E–H from material cultivated of the same population of the holotype).
FIGURE 1. Herbertia guyunusae. A–B. Habit. C. Flower, upper view. D in Herbertia guyunusae, a new species of Iridaceae from the grassland ecosystem of Río de La Plata, South America
FIGURE 1. Herbertia guyunusae. A–B. Habit. C. Flower, upper view. D. Flower, lateral view, evidencing spathes and distal part of peduncles. E. Flower, showing style, stamens, and inner bract. F. Capsule. G. seeds. H. Caulinar leaf and proximal part of peduncles. I. Spathes in fruiting (A, C–E, H, from L. P. Deble & B.P. Moreira 19622, B, F, G, I, from L.P. Deble & B.P. Moreira 19703).
FIGURE 4 in Herbertia guyunusae, a new species of Iridaceae from the grassland ecosystem of Río de La Plata, South America
FIGURE 4. Diversity of Herbertia. A. Herbertia amabilis. B. Herbertia amatorum. C. Herbertia amoena. D. Herbertia caerulea. E. Herbertia crosae. F. Herbertia darwinii. G. Herbertia guyunusae. H. Herbertia lahue. I. Herbertia pulchella. J. Herbertia quareimana. K. Herbertia tigridioides. L. Herbertia zebrina. (Scale bar in L = 1 cm).
FIGURE 1. Specimen barcoded E01137465 in Taxonomic notes on Xiphion collinum (Iridaceae)
FIGURE 1. Specimen barcoded E01137465 at E (by permission of the Curator of the Royal Botanic Garden Edinburgh).
FIGURE 2 in Taxonomic notes on Xiphion collinum (Iridaceae)
FIGURE 2. Lectotype of the name Xiphion collinum N.Terracc. at FI (FI066659, by permission of the Curator of the Herbarium Centrale Italicum). In the frame: detail of the flower.
FIGURE 4 in A new species of Gladiolus from Southeastern Türkiye, Gladiolus siirtensis (Iridaceae, Crocoideae)
FIGURE 4. SEM photographs of seeds of Gladiolus siirtensis and G. humilis; a–c: G. siirtensis, d–f: G. humilis. (a–d general view under stereo microscope; bars = 1 mm, b–e- c–f- epidermal cells).
FIGURE 6 in A new species of Gladiolus from Southeastern Türkiye, Gladiolus siirtensis (Iridaceae, Crocoideae)
FIGURE 6. Habitat and photographs of Gladiolus siirtensis; a. General habitat (The red arrows in the photo show the areas where the species is distributing. b–c. Photos showing the size of the G. siirtensis in flowering (b) and fruiting (c) time in the hand of an average male individual.
FIGURE 2 in A new species of Gladiolus from Southeastern Türkiye, Gladiolus siirtensis (Iridaceae, Crocoideae)
FIGURE 2. Field photographs of Gladiolus siirtensis and similar species; a–f: G. siirtensis, g–i: G. humilis, j–l: G. atroviolaceus, (a–b– c–d–g–j: habit, e–h–k: inflorescence, f–i–l: flower).
FIGURE 2. Tigridia azufresensis. A–B. Habit. C in A new species and endemism of Tigridia (Tigridieae, Iridaceae) in the Transmexican Volcanic Belt, Mexico
FIGURE 2. Tigridia azufresensis. A–B. Habit. C. Dissected flower (inner tepal sections: 1 = claw, 2 = blade, 3 = limb, 2 + 3 = lamina). D–E. Flower in frontal and lateral views. F. Style and stamens. G. Seeds. Illustrated by Ericka Belén Cortez Castro based on type material (G. Munguía-Lino et al. 921).
FIGURE 5 in A new species and endemism of Tigridia (Tigridieae, Iridaceae) in the Transmexican Volcanic Belt, Mexico
FIGURE 5. Endemics species of Tigridia to Transmexican Volcanic Belt. A. Tigridia flammea. B–C. Habitat of Tigridia flammea. D. Habitat of Tigridia gracielae. E. Tigridia gracielae. F. Tigridia matudae. G. Habitat of Tigridia matudae. H. Habitat of Tigridia venusta. I. Tigridia venusta.
FIGURE 4 in A new species and endemism of Tigridia (Tigridieae, Iridaceae) in the Transmexican Volcanic Belt, Mexico
FIGURE 4. Species of Violacea complex in Tigridia. A–B. Tigridia augusta. C–D. Tigridia dugesii. E–F. Tigridia durangensis. G–H. Tigridia mexicana subsp. lilacina. I–J. Tigridia mexicana subsp. mexicana. K–L. Tigridia mexicana subsp. passiflora. E–F. Photographs by J. González-Gallegos.
FIGURE 3 in A new species and endemism of Tigridia (Tigridieae, Iridaceae) in the Transmexican Volcanic Belt, Mexico
FIGURE 3. Distribution map of endemic species of Tigridia in the Transmexican Volcanic Belt. Biogeographical limit (black line), state limit (thick grey line).
Supplementary material 1 from: Wilson CA (2020) Two new species in Iris series Chinenses (Iridaceae) from south-central China. PhytoKeys 161: 41-60. https://doi.org/10.3897/phytokeys.161.55483
Supplementary file for Dryad
Figure 5 from: Wilson CA (2020) Two new species in Iris series Chinenses (Iridaceae) from south-central China. PhytoKeys 161: 41-60. https://doi.org/10.3897/phytokeys.161.55483
Figure 5 Illustration of I. probstii. A Habit B inflorescence C sepal D petal E style branch, anther F fruit (Sources: A–ED. Probst CPC24.7.03.1 (UC); F photograph by M. Schafer and J. Sacks, photographs available from author).
Figure 1 from: Wilson CA (2020) Two new species in Iris series Chinenses (Iridaceae) from south-central China. PhytoKeys 161: 41-60. https://doi.org/10.3897/phytokeys.161.55483
Figure 1 Phylogenetic tree showing resolution of I. dabashanensis and I. probstii (bold) in series Chinenses (grey box). Posterior probability/bootstrap values shown above branches.
Figure 3 from: Wilson CA (2020) Two new species in Iris series Chinenses (Iridaceae) from south-central China. PhytoKeys 161: 41-60. https://doi.org/10.3897/phytokeys.161.55483
Figure 3 Illustration of I. dabashanensis. A Habit B inflorescence C sepal D petal E style branch, anther F fruit G stolon, roots, tubers H root tuber (Source: A–ED. Probst CPC3.5.01.3 (UC); F photograph by Marty Schafer and Jan Sacks; G, H photograph by D. Probst, photographs available from author).
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International Brain Laboratory public data
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OpenNeuro
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