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94 results for “Lentibulariaceae”
Figure 2 from: Gonella PM, Barbosa-Silva RG, Fleischmann AS, Zappi DC, Baleeiro PC, Andrino CO (2020) Hidden biodiversity of Amazonian white-sand ecosystems: two distinctive new species of Utricularia (Lentibulariaceae) from Pará, Brazil. PhytoKeys 169: 75-98. https://doi.org/10.3897/phytokeys.169.57626
Figure 2 Utricularia arirambaa, b habit, in flower c base of plant with stolons, rhizoids, and peduncle base d part of stolon, with rhizoids, and leaves with traps e utricle, side view f scale g, h flower of the white morphotype in anterior (g) and side (h) view i, j flower of the lavender morphotype in anterior (i) and side (j) view k flower of the white morphotype in posterior view l upper lip of the corolla, androecium, and gynoecium m stamen n pistil a, c–h, k–n based on the holotype; b, i, j based on C.O. Andrino 560. Illustrations by João Silveira.
FIGURE 2 in Diversity and distribution of Lentibulariaceae in Bahia state, Brazil: implications for phytogeography and conservation
FIGURE 2. Distribution of Lentibulariaceae species in Bahia state.
FIGURE 1 in Diversity and distribution of Lentibulariaceae in Bahia state, Brazil: implications for phytogeography and conservation
FIGURE 1. Distribution of Lentibulariaceae species in Bahia state.
FIGURE 3 in Pinguicula habilii (Lentibulariaceae), a new carnivorous species from South- West Anatolia, Turkey
FIGURE 3. Pinguicula habilii: A–B, generative rosettes; C, habitat; D–E, vegetative rosettes
Fig 3 in Genlisea hawkingii (Lentibulariaceae), a new species from Serra da Canastra, Minas Gerais, Brazil
Fig 3. SEM images of Genlisea hawkingii. A. Flower, corolla and stamens removed, showing the gynoecium and sepals. B. Distal part of a pedicel. C. Cut spur. Note images A-C showing only glandular capitate hairs. D-E. Pollen grains (D–polar view, E–equatorial view). F-G. Seeds (F–Lateral view, G– Front view). https://doi.org/10.1371/journal.pone.0226337.g003
Fig 1. Genlisea hawkingii. A. Habit. B. Rhizophyll. C. Glabrous leaf. D. Glandular capitate hairs. E. Open corolla, lateral view. F. Corolla, front view. G. Calyx. H in Genlisea hawkingii (Lentibulariaceae), a new species from Serra da Canastra, Minas Gerais, Brazil
Fig 1. Genlisea hawkingii. A. Habit. B. Rhizophyll. C. Glabrous leaf. D. Glandular capitate hairs. E. Open corolla, lateral view. F. Corolla, front view. G. Calyx. H. Capsule.
Fig. 4 in Inflorescence morphology and flower development in Pinguicula alpina and P. vulgaris (Lentibulariaceae: Lamiales): monosymmetric flowers are always lateral and occurrence of early sympetaly
Fig. 4 Young lateral shoots of P. vulgaris (material collected in June). Frontal views of plants with all but very young leaves removed. Phyllotaxy is anticlockwise in (a, c) and clockwise in (b, d). a A lateral shoot is formed in axil of the leaf i, then the main axis has formed flowers ii, iii (removed) and iv (probably abortive). b A lateral shoot is present in the axil of the leaf i, flower ii is removed, flower iii is very young. c A lateral shoot in the axil of the leaf i is formed, then the main axis has formed flowers ii (removed), iii, iv, v. d A lateral shoot in the axil of the leaf vi is formed, then the main axis has formed flowers vii, viii (removed), ix, x. Arabic figures 0 leaves of lateral shoots. Scale bars 0300 μm
Fig. 7 Pinguicula vulgaris, early flower development. a The earliest stage with a in Inflorescence morphology and flower development in Pinguicula alpina and P. vulgaris (Lentibulariaceae: Lamiales): monosymmetric flowers are always lateral and occurrence of early sympetaly
Fig. 7 Pinguicula vulgaris, early flower development. a The earliest stage with a very narrow calyx rim marked by arrows. b,c Initiation of calyx and androecium; the two massive stamen primordia appear just before corolla initiation. d-e Flowers with median abaxial petal initiated. f-i Further development of corolla. f and i Different views of the same flower, while g and h are different views of another flower. In f no connection between the median lower lip petal and lateral lower lip petals observable, but in i at the same young flower (as well as in another flower in g and h) it is clearly visible. h-i All petals are united by a rim. At this stage, the gynoecium is not visible. Abbreviations: pl, lower lip petals; pu, upper lip petals; s, spur, sl, lower lip sepals; su, upper lip sepals; st, stamen. Scale bars 0200 μm (a, b, c, f, g, h), 300 μm (d, e. i)
Fig. 2 in Inflorescence morphology and flower development in Pinguicula alpina and P. vulgaris (Lentibulariaceae: Lamiales): monosymmetric flowers are always lateral and occurrence of early sympetaly
Fig. 2 Shoot branching in Pinguicula alpina. Frontal view of shoot apices (a, d), their diagrams (b, e) and schematic representation of shoot systems (c, f). In a-c (collected 21 September 2006), leaves i-iii form a clockwise spiral, followed by flowers iv-vi; a lateral shoot with a clockwise spiral (prophylls 1-2 followed by flower 3) is present in the axil of leaf iii; leaves a-g form an anticlockwise spiral and belong to a shoot in the axil of the leaf 2. In d-f (collected 1 September 2006), leaves i-iv form an anticlockwise spiral followed by flower v; a lateral shoot with an anticlockwise spiral 1-5 is present in the axil of the leaf iv. Scale bars 0500 μm (a), 200 μm (d)
FIGURE 7 in Species richness, geographic distribution and endemism of Pinguicula (Lentibulariaceae) in the Mexican Transition Zone
FIGURE 7. Species richness of Pinguicula by grid cell. A, D, G) Species richness distribution; B, E, H) weighted endemism; C, F, I) corrected weighted endemism. A, B, C) Cells size of 0.33° × 0.33°; D, E, F) cells size of 0.54° × 0.54°; G, H, I) cells size of 1° × 1°.
FIGURE 1 in Species richness, geographic distribution and endemism of Pinguicula (Lentibulariaceae) in the Mexican Transition Zone
FIGURE 1. Floral representation of Pinguicula. A) P. crenatiloba; B) P. nivalis; C) P. gracilis; D) P. pygmaea; E) P. parvifolia; F) P. gypsicola; G) P. laueana; H) P. hemiepiphytica; I) P. ehlersieae; J) P. crassifolia; K) P. lilacina, L) P. heterophylla; M) P. kondoi; N) P. rotundiflora; O) P. takaki; P–S) P. moranensis; T) P. cyclosecta; U) P. esseriana; V) P. zamudioana; W) P. oblongiloba; X) P. michoacana. A–C) Subgenus Temnoceras; D–E, K–O, T) Subgenus Isoloba; F–J, P–S, U–X) Subgenus Pinguicula. A–G, I–X) J. López; H) G. Gónzález.
FIGURE 3 in Pinguicula filifolia subsp. alba (Lentibulariaceae), a new subspecies with an extremely restricted distribution in Pinar del Río, Cuba
FIGURE 3. Distribution of P. filifolia subsp. alba (star) and P. filifolia subsp. filifolia (circle) in western Cuba based on herbarium records.
FIGURE 2. P in A new diploid butterwort species (Pinguicula, Lentibulariaceae) from Sardinia
FIGURE 2. P. sehuensis sp. nov., seed shape and structure, exemplified by means of SEM microphotographs of seeds (general view, on the left and particular of exotesta cells, on the right).
FIGURE 4. A–D. U. hirtella s.l., E–G. U. velascoensis, H. U. tridentata, I. U. tricolor, J. U. biceps, K. U. bicolor, L. U. chapadensis, M–N. U. pantaneira, O. U. trinervia. Images C. Rivadavia, D. Rohrbacher, E–G in Unveiling Utricularia amethystina's true colours: a taxonomic revision of one of the largest species complexes (U. sect. Foliosa, Lentibulariaceae)
FIGURE 4. A–D. U. hirtella s.l., E–G. U. velascoensis, H. U. tridentata, I. U. tricolor, J. U. biceps, K. U. bicolor, L. U. chapadensis, M–N. U. pantaneira, O. U. trinervia. Images C. Rivadavia, D. Rohrbacher, E–G. by Marcos Cardoso, J., K. Gonella.
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