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336 results for “Lobelia”
FIGURE 1 in Revised typification of the Linnaean name Lobelia zeylanica (Campanulaceae)
FIGURE 1. Lectotype of Lobelia zeylanica L., Herb. Linn. No. 368.3 (S). Photograph courtesy of The Swedish Museum of Natural History, reproduced with permission.
FIGURE 6. Lobelia saturnini Art.Castro & I in Synopsis of the spurred species of Lobelia section Stenotium (Campanulaceae) in Sierra Madre Occidental, Mexico, and the description of two new species
FIGURE 6. Lobelia saturnini Art.Castro & I.Gutiérrez. A. Habit. B. Frontal view of staminate and pistillate-phase flower. C. Lateral view of staminate and pistillate-phase flower. D. Lateral view of a fruit with persistent hypanthium.
FIGURE 5. Lobelia saturnini Art.Castro & I in Synopsis of the spurred species of Lobelia section Stenotium (Campanulaceae) in Sierra Madre Occidental, Mexico, and the description of two new species
FIGURE 5. Lobelia saturnini Art.Castro & I.Gutiérrez. A. Habit. B. Frontal view of a staminate and pistillate-phase flower, showing the position of staminal tube. C. Lateral view of staminate and pistillate-phase flower. D. Mature capsule with remainder of style and calyx. Drawn by Lesslie Martínez Rubí from the type material.
FIGURE 2. Lobelia mcvaughii. A. Habit. B in Synopsis of the spurred species of Lobelia section Stenotium (Campanulaceae) in Sierra Madre Occidental, Mexico, and the description of two new species
FIGURE 2. Lobelia mcvaughii. A. Habit. B. Flower in frontal view. C. Flower in lateral view. D. Fruit with persistent hypanthium.
FIGURE 4. Lobelia rzedowskii Art.Castro & I in Synopsis of the spurred species of Lobelia section Stenotium (Campanulaceae) in Sierra Madre Occidental, Mexico, and the description of two new species
FIGURE 4. Lobelia rzedowskii Art.Castro & I.Gutiérrez. A. Inflorescence branching. B. Flower detail.
FIGURE 3. Lobelia rzedowskii Art.Castro & I in Synopsis of the spurred species of Lobelia section Stenotium (Campanulaceae) in Sierra Madre Occidental, Mexico, and the description of two new species
FIGURE 3. Lobelia rzedowskii Art.Castro & I.Gutiérrez. A. Lateral view of a staminate and pistillate-phase flower, showing the position of staminal tube. B. Frontal view of staminate-phase flower C. Mature capsule with remainder of style and calyx. D. Detail of anther tube, including apical hairs on ventral anthers. E. Seeds. Drawn by Lesslie Martínez Rubí from the type material.
FIGURE 1 in Synopsis of the spurred species of Lobelia section Stenotium (Campanulaceae) in Sierra Madre Occidental, Mexico, and the description of two new species
FIGURE 1. Distribution map of spurred species of Lobelia along the Sierra Madre Occidental, Mexico. A. L. ayersiae (■), L. flexuosa (○), L. goldmanii (□), L. knoblochii (∆) and L. mcvaughii (♦). B. L. cordifolia (▲), L. endlichii (●), L. macrocentron (*), L. rzedowskii () and L. saturnini (▼).
FIGURE 2 in The rediscovery of Lobelia macrocentron (Campanulaceae) after 169 years, with notes on the morphology, habitat and conservation status
FIGURE 2. Distribution map of Lobelia macrocentron (red dots); the red line indicates Seemann's exploration track (1849–1850) within which the original locality of the species remains unclear. The portion between Mazatlán and Durango corresponds to the old (non-toll) road, which was the only one available at that time. The star represents the town El Palmito, and the polygon of Santuario El Palmito is highlighted in green. The squares corresponds to the localities mentioned by Seemann in his itinerary (1 Mazatlán, 2 San Sebastián (currently Concordia), 3 Copala, 4 Santa Lucía, 5 El Salto, 6 Llano Grande, 7 Navíos, 8 Mimbres, 9 Durango, 10 San Francisco del Mezquital, 11 La Guajolota, 12 Santa Teresa, and 13 Tepic).
FIGURE 1 in The rediscovery of Lobelia macrocentron (Campanulaceae) after 169 years, with notes on the morphology, habitat and conservation status
FIGURE 1. Lobelia macrocentron (Benth.) T.J.Ayers. A & B. Frontal view of pistillate-phase and lateral view of staminate-phase flower. C. Lateral view of a fruit with persistent hypanthium and spur. D & E. Terrestrial and saxicolous habit. F. Basal stems and rhizome. G & H. Leaves variation. Photographs: Heriberto Ávila-González (A–C) and Arturo Castro-Castro (D–H).
Data from: Microsatellite evidence for obligate autogamy, but abundant genetic variation in the herbaceous monocarp Lobelia inflata (Campanulaceae)
Although high levels of self-fertilization (>85%) are not uncommon in nature, organisms reproducing entirely through selfing are extremely rare. Predominant selfers are expected to have low genetic diversity because genetic variation is distributed among rather than within lineages, and is readily lost through genetic drift. We examined genetic diversity at 22 microsatellite loci in 105 individuals from a population of the semelparous herb Lobelia inflata L., and found (1) no evidence of heterozygosity through outcrossing, yet (2) high rates of genetic polymorphism (2-4 alleles per locus). Furthermore, this genetic variation among lineages was associated with phenotypic traits (e.g. flower colour, size at first flower). Coupled with previous work characterizing the fitness consequences of reproductive timing, our results suggest that temporal genotype-by-environment interaction may maintain genetic variation and, because genetic variation occurs only among lineages, this simple system offers a unique opportunity for future tests of this mechanism.
Lobelia cardinalis SPAdes preassembly
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Data from: The continuum between semelparity and iteroparity: plastic expression of parity in response to season length manipulation in Lobelia inflata.
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Data from: Frequency-dependent fitness in gynodioecious Lobelia siphilitica
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Plasticity in floral longevity and sex-phase duration of Lobelia siphilitica in response to simulated pollinator declines
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Data from: Lobelia siphilitica plants that escape herbivory in time also have reduced latex production
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Data from: Microsatellite evidence for obligate autogamy, but abundant genetic variation in the herbaceous monocarp Lobelia inflata (Campanulaceae)
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Altitudinal variation of leaf carbon isotope for Dendrosenecio keniensis and Lobelia gregoriana in Mount Kenya alpine zone
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Data from: Beyond balancing selection: frequent mitochondrial recombination contributes to high female frequencies in gynodioecious Lobelia siphilitica L. (Campanulaceae)
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Data from: Do genetic drift and gene flow affect the geographic distribution of female plants in gynodioecious Lobelia siphilitica?
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Supplementary material 1 from: Muchuku JK, Gichira AW, Zhao S-Y, Chen J-M, Chen L-Y, Wang Q-F (2020) Distribution pattern and habitat preference for Lobelia species (Campanulaceae) in five countries of East Africa. PhytoKeys 159: 45-60. https://doi.org/10.3897/phytokeys.159.54341
Tables S1–S12
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