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94 results for “Lentibulariaceae”
Linked collectors and determiners for: Unveiling Utricularia amethystina's true colours: a taxonomic revision of one of the largest species complexes (U. sect. Foliosa, Lentibulariaceae).
Natural history specimen data linked to collectors and determiners held within, "Unveiling Utricularia amethystina's true colours: a taxonomic revision of one of the largest species complexes (U. sect. Foliosa, Lentibulariaceae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/e182c4cc-2536-4f6c-bdb0-be4704e50e4d">https://bionomia.net/dataset/e182c4cc-2536-4f6c-bdb0-be4704e50e4d</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/e182c4cc-2536-4f6c-bdb0-be4704e50e4d">https://gbif.org/dataset/e182c4cc-2536-4f6c-bdb0-be4704e50e4d</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Diversity and distribution of Lentibulariaceae in Bahia state, Brazil: implications for phytogeography and conservation.
Natural history specimen data linked to collectors and determiners held within, "Diversity and distribution of Lentibulariaceae in Bahia state, Brazil: implications for phytogeography and conservation". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/6ea4ec5f-b4df-4321-b36b-557389067003">https://bionomia.net/dataset/6ea4ec5f-b4df-4321-b36b-557389067003</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/6ea4ec5f-b4df-4321-b36b-557389067003">https://gbif.org/dataset/6ea4ec5f-b4df-4321-b36b-557389067003</a>. Formatted as a Frictionless Data package.
Utricularia sp. (Lentibulariaceae) - inflorescence - frontal view of flower
Image of Utricularia sp. (Lentibulariaceae) - inflorescence - frontal view of flower
FIGURE 1 in Micromorphology of seeds of three Mexican species of Pinguicula (Lentibulariaceae) show autofluorescence using confocal laser scanning microscopy
FIGURE 1. Confocal laser scanning microscopy images showing the micromorphological features of Pinguicula seeds. A–D. Pinguicula casperi; E–H. P. parvifolia; I–L. P. oblongiloba. A, E and I are a general view of the entire seeds (20×, scale bar 100 μm); B, F and J show the micropylar end (60×, scale bar 20 μm); D, H, and L show the chalazal end of the seed (60×, scale bar 20 μm); C, G and K show the surface details of the seeds (100×, scale bar 10 μm).
FIGURE 3 in Diversity and distribution of Lentibulariaceae in Bahia state, Brazil: implications for phytogeography and conservation
FIGURE 3. Distribution of Lentibulariaceae species in Protected Areas of Chapada Diamantina. APA = Environmental Protection Area, PARNA = National Park, PNM = Municipal Natural Park.
FIGURE 4 in Diversity and distribution of Lentibulariaceae in Bahia state, Brazil: implications for phytogeography and conservation
FIGURE 4. Distribution of Lentibulariaceae species in Protected Areas north (above) and southwest (below) of Chapada Diamantina. APA = Environmental Protection Area, ARIE = Area of Relevant Ecological Interest, MONA = Natural Monument, PE = State Park, PNM = Municipal Natural Park.
FIGURE A1 in Diversity and distribution of Lentibulariaceae in Bahia state, Brazil: implications for phytogeography and conservation
FIGURE A1. Protected Areas in Bahia state that cover the natural distribution of Lentibulariaceae species. Strictly Protected Areas: MONA = Natural Monument (II), PARNA = National Park (II), PE = State Park (II), PNM = Municipal Natural Park (II), REBIO = Biological Reserve (Ia), REVIS = Wildlife Refuge (III). Areas of Sustainable Use: APA = Environmental Protection Area (V), ARIE = Area of Relevant Ecological Interest (IV), PM = City Park (V), RESEX = Extractive Reserve (VI), RPPN = Private Reserve of Natural Heritage (IV).
FIGURE 7. A–B. U in Diversity and distribution of Lentibulariaceae in Bahia state, Brazil: implications for phytogeography and conservation
FIGURE 7. A–B. U. longifolia; C. U. myriocista; D. U. nana; E–F. U. nelumbifolia; G. U. neottioides; H. U. nephrophylla; I. U. nervosa; J. U. parthenopipes; K. U. poconensis; L. U. praelonga; M–N. U. purpureocaerulea; O–P. U. pusilla; Q. U. resupinata; R. U. rostrata; S. U. simulans; T. U. subulata; U–V. U. trichophylla; W. U. tricolor; X–Y. U. triloba. (Photos A, B, D, G, I, J, L, N, O–Q, S, T, W–Y by F.M. Guedes; C, U, V by S. Guzmán; E, F by N.G. Silva; H by J. Allen; K by M.F. Cardoso; M by P.M. Gonella; R by N. Rebbert).
FIGURE 6. A in Diversity and distribution of Lentibulariaceae in Bahia state, Brazil: implications for phytogeography and conservation
FIGURE 6. A. Genlisea aurea; B. G. exhibitionista; C. G. filiformis; D. G. guianensis; E. G. lobata; F. G. repens; G. G. tuberosa; H. G. uncinata; I. Utricularia adpressa; J–K. U. amethystina; L–M. U. blanchetii; N. U. breviscapa; O. U. costata; P. U. cucullata; Q. U. erectiflora; R. U. flaccida; S. U. foliosa; T. U. gibba; U. U. guyanensis; V. U. hydrocarpa; W. U. jamesoniana; X. U. juncea; Y. U. laxa. (Photos A by J.C. Zamora; B by C. Rohrbacher; C by Z. Miranda; D, E, G, H by P.M. Gonella; F, Y by H. Dolsan; I–M, Q, R, U, X by F.M. Guedes; N, O by J. Fabricante; P by M. Hopkins; S. by Y. Canalli; T by A. Nepomuceno; V by G.S. Garcia; W by Y. Gouveia).
FIGURE 5 in Diversity and distribution of Lentibulariaceae in Bahia state, Brazil: implications for phytogeography and conservation
FIGURE 5. Distribution of Lentibulariaceae species in Protected Areas at northern and southern coast of Bahia. APA = Environmental Protection Area, ARIE = Area of Relevant Ecological Interest, MONA = Natural Monument, PARNA = National Park, PE = State Park, PM = City Park, PNM = Municipal Natural Park, REBIO = Biological Reserve, RESEX = Extractive Reserve, REVIS = Wildlife Refuge, RPPN = Private Reserve of Natural Heritage.
Fig 5 in Genlisea hawkingii (Lentibulariaceae), a new species from Serra da Canastra, Minas Gerais, Brazil
Fig 5. Phylogeny of the Genlisea species based on the Bayesian inference (BI) and maximum likelihood (ML) analyses of the combined dataset (rps16 + matK). The numbers above and below the branches refer to the BI posterior probability and to the ML bootstrap support, respectively. The numbers beside the species names are references to the different specimens/populations and follow the numbers in Table 1. https://doi.org/10.1371/journal.pone.0226337.g005
Fig 2. Genlisea hawkingii. A. Habitat. B in Genlisea hawkingii (Lentibulariaceae), a new species from Serra da Canastra, Minas Gerais, Brazil
Fig 2. Genlisea hawkingii. A. Habitat. B. Habit of the plant in Delfinópolis, Minas Gerais (Brazil). C. Corolla, front view. D. Corolla, lateral view. E. Dry infructescence. The pedicel twist upward. F. Immature fruit. G. Mature fruit. Pedicels bent upward. H. A rosette with two scapes. I. A rosette with photosynthetic leaves (above) and rhizophylls (below). https://doi.org/10.1371/journal.pone.0226337.g002
Fig 4 in Genlisea hawkingii (Lentibulariaceae), a new species from Serra da Canastra, Minas Gerais, Brazil
Fig 4. Distribution of Genlisea hawkingii in Serra da Canastra, Delfinópolis municipality in Minas Gerais, Brazil (Modified from https://www.simplemappr.net). https://doi.org/10.1371/journal.pone.0226337.g004
Genlisea sp nv. (Lentibulariaceae), a new species from Serra da Canastra, Minas Gerais, Brazil
<p>Supplementary material on the paper about a new species of the genus <em>Genlisea</em>.</p> <ul> <li>alignment_concatenated.nex is the concatenated matrix for <em>Genlisea</em> species of the regions rps16-intron and matK</li> <li>MATK-B672_D09_SS1-F1_073.ab1 - is the eletropherogram for <em>Genlisea</em> sp nv. for matK (forward sequence)</li> <li>MATK-B672_E09_SS1-R1_071.ab1 - is the eletropherogram for <em>Genlisea</em> sp nv. for matK (reverse sequence)</li> <li>RPS16-B672_F09_SS2-F2_069.ab1 - is the eletropherogram for <em>Genlisea</em> sp nv. for rps16 (forward sequence)</li> <li>RPS16-B672_G09_SS2-R2_067.ab1 - is the eletropherogram for <em>Genlisea</em> sp nv. for rps16 (reverse sequence)</li> </ul> <p> </p>
Fig. 10 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. 10 Diagram (a) and schematic representations (b, c) of shoot system in Pinguicula moranensis based on fig. 2c in Grob et al. (2007). Abbreviations as in Fig. 2 of the present article. b Our preferred interpretation. c Our understanding of the interpretation adopted by Grob et al. (2007)
Fig. 6 Pinguicula alpina, late flower development. a Stage with ring-shaped gynoecium primordium. b-e Flowers with calyx aestivation visible. f 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. 6 Pinguicula alpina, late flower development. a Stage with ring-shaped gynoecium primordium. b-e Flowers with calyx aestivation visible. f Flower with lower lip sepals removed to show young spur of corolla. Abbreviations: g, gynoecium; pl, lower lip petals; pu, upper lip petals; s, spur, sl, lower lip sepals; su, upper lip sepals; st, stamen. Scale bars 0100 μm (a), 200 μm (b), 300 μm (e), 500 μm (c, d), 1,000 μm (f)
Fig. 1 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. 1 Shoots of Pinguicula alpina with different chiralities. Frontal view of shoot apices (a, c) and their diagrams (b, d). In a and b (collected 1 September 2006), eight leaves (a-h) form an anticlockwise spiral. In c and d (collected 1 September 2006), ten leaves (a-j) form a clockwise spiral. 1, 2, 3 are flowers that are formed on a shoot of preceding order. Scale bars 0500 μm. In figs. 1, 2, 3, 4, leaves and flowers of the main axis are numbered starting from the first wellvisible leaf or flower. So, in fig. 1, a number of foliage leaves preceded flowers on the main axis
FIGURE 4 in Species richness, geographic distribution and endemism of Pinguicula (Lentibulariaceae) in the Mexican Transition Zone
FIGURE 4. Species richness and endemism distribution of Pinguicula by: A) country; B) biome; C) biogeographic province. Dark grey = total species, light grey = endemic species.
FIGURE 3 in Species richness, geographic distribution and endemism of Pinguicula (Lentibulariaceae) in the Mexican Transition Zone
FIGURE 3. Biomes with habitats of Pinguicula. A) Cave with stalactites, Tropical & Subtropical Coniferous Forest; B, I) Inselbergs, Tropical & Subtropical Coniferous Forest; C–D) Limestone rock walls, Tropical & Subtropical Moist Broadleaf Forest; E–G, L) Tropical & Subtropical Dry Broadleaf Forest; H) Ravine with a gypsum soils, Tropical & Subtropical Coniferous Forest; J–L) Tropical & Subtropical Coniferous Forest; K) Desert & Xeric Shrubland.
FIGURE 2 in Species richness, geographic distribution and endemism of Pinguicula (Lentibulariaceae) in the Mexican Transition Zone
FIGURE 2. Temperate winter and annual tropical rosettes in Pinguicula. A) P. ehlersieae; B) P. crassifolia; C, I) P. moranensis; D) P. acuminata; E) P. nivalis; F) P. michoacana; G) P. rotundiflora; H) P. kondoi; J) P. lilacina; K) P. takaki; L) P. pygmaea. A–C) epigeous rosettes, D–F) hypogeous rosettes, G–I), subhypogeous rosettes, J–L) annual rosettes. A–L) J. López.
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