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397 results for “Boraginaceae”
FIG. 5 in Onosma satensis sp. nov. (Boraginaceae: Lithospermeae), a new species from Hakkari (eastern Anatolia, Turkey)
FIG. 5. — SEM micrographs of indumentum of O. satensis sp. nov.: A, B, stem; C, upper leaf surface; D, lower leaf surface; E, upper calyx surface; F, lower calyx surface; G, H, corolla. Scale bars: A, C-G, 100 µm; B, H, 20 µm.
FIG. 6 in Onosma satensis sp. nov. (Boraginaceae: Lithospermeae), a new species from Hakkari (eastern Anatolia, Turkey)
FIG. 6. — SEM micrographs of O. satensis sp. nov. pollen: A, profil view; B, distal view; C, proksimal view; D, E, ornamentation; F, autline view. Scale bars: A-C, 1 µm; D, E, 200 nm; F, 2 µm.
FIGURE 1 in A new species Lappula botschantzevii (Boraginaceae) from the Northern Africa
FIGURE 1. Holotype of Lappula botschantzevii (LE 01039487).
Figure 4 from: Lehnebach C (2012) Two new species of forget-me-nots (Myosotis, Boraginaceae) from New Zealand. PhytoKeys 16: 53-64. https://doi.org/10.3897/phytokeys.16.3602
Figure 4 - Plant of Myosotis mooreana in situ (A) and close-up view of vegetative and reproductive structures (B Inflorescence C Rosette leaves D Stem leaves E Fertilised flower at leaf axil F Flower G Rosette leaf indumentum, upper surface H Rosette leaf petiole I Stem J Nutlets). Bar = 1 cm in A, C & D, 5 mm in B, 1 mm in E, F, H, I, J. Material from WELT SP092756/A.
Figure 3 from: Lehnebach C (2012) Two new species of forget-me-nots (Myosotis, Boraginaceae) from New Zealand. PhytoKeys 16: 53-64. https://doi.org/10.3897/phytokeys.16.3602
Figure 3 - Photograph of the holotype of Myosotis mooreana C.A. Lehnebach. (C.A.Lehnebach & A.Zeller s.n., WELT SP092756/A).
Figure 2 from: Lehnebach C (2012) Two new species of forget-me-nots (Myosotis, Boraginaceae) from New Zealand. PhytoKeys 16: 53-64. https://doi.org/10.3897/phytokeys.16.3602
Figure 2 - Plant of Myosotis chaffeyorum (A) and close-up view of vegetative and reproductive structures (B Flowering stem C Flower D Rosette leaves E Rosette leaf indumentum F Petiole G Stem H Node with flower and stem leaf I Nutlets). Bar = 1 cm in A & D, 5 mm in B & E, 1 mm in C, F, G, H, I. Material from WELT SP092173 (D, E, F, G, H ) and WELT SP094151 (A, B, C, I).
Figure 1 from: Lehnebach C (2012) Two new species of forget-me-nots (Myosotis, Boraginaceae) from New Zealand. PhytoKeys 16: 53-64. https://doi.org/10.3897/phytokeys.16.3602
Figure 1 - Photograph of the holotype of Myosotis chaffeyorum C.A. Lehnebach. (A.P.Druce s.n., CHR 311719). Copyright Allan Herbarium (CHR), Landcare Research. New Zealand.
Figure 2 from: Lorence DH, Wagner WL (2015) Heliotropium (Boraginaceae) in the Marquesas Islands (French Polynesia) with description of a new species. PhytoKeys 47: 49-57. https://doi.org/10.3897/phytokeys.47.8767
Figure 2 - Heliotropium marchionicum Decne. A Habit B Upper Leaf surface C Inflorescence D Flower, lateral view E Corolla, face view F Flower, longitudinal section showing stamens and gynoecium G Corolla, sectioned to show stamens and indument H Fruit and calyx, lateral view I Fruit showing 4 carpels. Drawn from Perlman 10005 (US) and photos from Nuku Hiva, 24 February 2007 [A], Mercier 1847 (US) and photos from Nuku Hiva, 24 February 2007 courtesy of J-F Butaud [B–I].
Figure 1 from: Lorence DH, Wagner WL (2015) Heliotropium (Boraginaceae) in the Marquesas Islands (French Polynesia) with description of a new species. PhytoKeys 47: 49-57. https://doi.org/10.3897/phytokeys.47.8767
Figure 1 - Heliotropium perlmanii Lorence & WL Wagner A Habit B Upper leaf surface, C Inflorecence D Flower, lateral view E Corolla, face view F Flower, longitudinal section showing stamens and gynoecium G Corolla, sectioned to show stamens and indument, H Fruit and calyx, lateral view I Fruit showing 4 carpels. All figures drawn from Perlman & Florence 10052 (US) and photos from Falaise Est Eiao, 11 March 2007 courtesy of J-F Butaud.
Figures 3 from: Guilliams CM, Jang T, Baldwin BG (2016) Molecular and morphological evidence for recognition of two species within Harpagonella (Amsinckiinae, Boraginaceae). PhytoKeys 70: 17-30. https://doi.org/10.3897/phytokeys.70.9053
Figures 3 - Maximum clade credibility trees from phylogenetic analysis of the: A combined, partitioned nuclear DNA regions, and B combined, partitioned chloroplast DNA regions. Values on branches are Bayesian posterior probabilities followed by maximum likelihood bootstrap values.
Figure 4 from: Guilliams CM, Jang T, Baldwin BG (2016) Molecular and morphological evidence for recognition of two species within Harpagonella (Amsinckiinae, Boraginaceae). PhytoKeys 70: 17-30. https://doi.org/10.3897/phytokeys.70.9053
Figure 4 - Box and whisker plots by taxon of A average maximum fruit length (mm), B average maximum fruit width (mm), C average maximum subterete appendage length (mm). Asterisks denote the measured values of type specimens. Note significant differentiation in all features measured.
Figure 2 from: Guilliams CM, Jang T, Baldwin BG (2016) Molecular and morphological evidence for recognition of two species within Harpagonella (Amsinckiinae, Boraginaceae). PhytoKeys 70: 17-30. https://doi.org/10.3897/phytokeys.70.9053
Figure 2 - Fruits of Harpagonella in lateral view, from A) southern Arizona (Tedford 1043, ARIZ403065) and B) southern California (Bramlet 2301, ARIZ345225). Although morphologically similar, note overall difference in size. Scale bars are each approximately 1 mm. Labels: (AAS) sepals away from inflorescence axis in flower; (IA) inflorescence axis; (N) nutlet; (P) pedicel; (SA) sepal appendages; (TAS) sepals toward inflorescence axis in flower.
Figure 1 from: Guilliams CM, Jang T, Baldwin BG (2016) Molecular and morphological evidence for recognition of two species within Harpagonella (Amsinckiinae, Boraginaceae). PhytoKeys 70: 17-30. https://doi.org/10.3897/phytokeys.70.9053
Figure 1 - Map of western North America showing Harpagonella collections in major herbaria based on available specimen data from GBIF and Bajaflora. Type collection localities are indicated with black star for Harpagonella palmeri and a red star for Harpagonella arizonica.
Figure 2 from: Binzet R (2016) Onosma anatolica, a new species of Boraginaceae from Turkey. PhytoKeys 69: 39-49. https://doi.org/10.3897/phytokeys.69.8360
Figure 2 - The holotype of Onosma anatolica from the herbarium ANK: Binzet 201501, 22 June 2015. (Photo Rıza Binzet).
Figure 3 from: Binzet R (2016) Onosma anatolica, a new species of Boraginaceae from Turkey. PhytoKeys 69: 39-49. https://doi.org/10.3897/phytokeys.69.8360
Figure 3 - The holotype of Onosma subulifolia: Tobey 2615, 11 May 1969 (E 00022534); image available at website: Source: http://elmer.rbge.org.uk/bgbase/vherb/bgbasevherb.php
Figure 4 from: Binzet R (2016) Onosma anatolica, a new species of Boraginaceae from Turkey. PhytoKeys 69: 39-49. https://doi.org/10.3897/phytokeys.69.8360
Figure 4 - Distribution map of Onosma anatolica Binzet (filled triangle) and Onosma subulifolia (filled circle).
Fig. 7 in Taxonomy of the small southern African endemic genus Echiostachys Levyns (Boraginaceae: Boraginoideae)
Fig. 7. Distribution of Echiostachys spicatus.
Fig. 5 in Taxonomy of the small southern African endemic genus Echiostachys Levyns (Boraginaceae: Boraginoideae)
Fig. 5. Distribution of Echiostachys incanus.
Fig. 3 in Taxonomy of the small southern African endemic genus Echiostachys Levyns (Boraginaceae: Boraginoideae)
Fig. 3. Distribution of Echiostachys ecklonianus.
FIGUERE 1 in Thyrocarpus fujianensis (Boraginaceae; Cynoglosseae), a new species from China: evidence from morphological and molecular analyses
FIGUERE 1. Fruit difference of T. fujianensis (A), T. sampsonii (B), and T. glochidiatus (C).
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