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2,477 results for “type species”

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zenodo32/100

FIGURE 7 in Towards a better understanding of Tetrapyrgos (Basidiomycota, Agaricales): new species, type studies, and phylogenetic inferences

FIGURE 7. Macroscopic and anatomical features for Tetrapyrgos subdendrophora (AHH 79 a–b, d–e, g; DAOM 145301—Holotype c, f, h). a. Basidiomes. b–c. Basidiospores. d. Basidium and basidioles. e–f. Hymenial cystidia. g–h. Pileipellis terminal cells. Scale bars: a = 10 mm, b–h = 10 μm. Illustrated by D.E. Desjardin.

opennotspecifiedOct 2015View details →
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FIGURE 3 in Towards a better understanding of Tetrapyrgos (Basidiomycota, Agaricales): new species, type studies, and phylogenetic inferences

FIGURE 3. Macroscopic and anatomical features for Tetrapyrgos nigripes (DED 5326). a. Basidiomes. b. Basidiospores. c. Basidium and basidioles. d. Cheilocystidia. e. Pileipellis terminal cells. f. Caulocystidia. Scale bars: a = 10 mm, b–f = 10 μm. Illustrated by D.E. Desjardin.

opennotspecifiedOct 2015View details →
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FIGURE 2 in Towards a better understanding of Tetrapyrgos (Basidiomycota, Agaricales): new species, type studies, and phylogenetic inferences

FIGURE 2. Macroscopic and anatomical features for Tetrapyrgos longicystidiata (DED 7817). a. Basidiomes. b. Basidiospores. c. Basidium and basidioles. d. Cheilocystidia. e. Pileipellis terminal cells. f. Caulocystidia. Scale bars: a = 10 mm, b–f = 10 μm. Illustrated by D.E. Desjardin.

opennotspecifiedOct 2015View details →
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FIGURE 10 in Towards a better understanding of Tetrapyrgos (Basidiomycota, Agaricales): new species, type studies, and phylogenetic inferences

FIGURE 10. Anatomical features for: Campanella tenuitunicata (Singer T1750—Holotype a–c). a. Basidiospores. b. Basidium. c. Hymenial cystidia. Gymnopus floridanus (F-18290—Holotype d–g). d. Basidioles. e. Cheilocystidia. f. Pileipellis terminal cells. g. Caulocystidia. Marasmius caesius (F-18263—Holotype h–k). h. Basidiospores. i. Basidium and basidiole. j. Cheilocystidia. k. Pileipellis terminal cells. Scale bar = 10 μm. Illustrated by D.E. Desjardin.

opennotspecifiedOct 2015View details →
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FIGURE 6 in Towards a better understanding of Tetrapyrgos (Basidiomycota, Agaricales): new species, type studies, and phylogenetic inferences

FIGURE 6. Macroscopic and anatomical features for Tetrapyrgos subcinerea (DED 7517 a–b, d–g; Thwaites 782—Holotype c, h). a. Basidiomes. b–c. Basidiospores. d. Basidium and basidioles. e. Cheilocystidia. f. Pileipellis terminal cells. g–h. Caulocystidia. Scale bars: a = 10 mm, b–h = 10 μm. Illustrated by D.E. Desjardin.

opennotspecifiedOct 2015View details →
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FIGURE 1 in Towards a better understanding of Tetrapyrgos (Basidiomycota, Agaricales): new species, type studies, and phylogenetic inferences

FIGURE 1. Maximum likelihood (-lnL = 3590.75887) topology of Tetrapyrgos specimens sampled as part of this investigation based on ITS sequence data. Numbers separated by "/" represent non-parametric maximum likelihood bootstrap (BS) proportions and Bayesian posterior probablilites (PP), respectively. Branches highlighted in bold received combined support values of ≥70%/0.95.

opennotspecifiedOct 2015View details →
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FIGURE 9 in Towards a better understanding of Tetrapyrgos (Basidiomycota, Agaricales): new species, type studies, and phylogenetic inferences

FIGURE 9. Anatomical features for: Campanella dendrophora (Singer M706—Paratype a, d; Horak ZT393 b, e; Singer M746—Holotype c). a–b. Basidiospores. c–e. Hymenial cystidia. Campanella diplocystis (Singer B3025—Holotype f–g). f. Basidiospores. g. Pileipellis terminal cells. Campanella simulans (Copelomo 1268—Holotype h–j). h. Basidiospores. i. Basidia. j. Hymenial cystidia. Scale bar = 10 μm. Illustrated by D.E. Desjardin.

opennotspecifiedOct 2015View details →
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FIGURE 8 in Towards a better understanding of Tetrapyrgos (Basidiomycota, Agaricales): new species, type studies, and phylogenetic inferences

FIGURE 8. Anatomical features for: Campanella aequatorialis (Singer B7128—Holotype a–c). a. Basidiospore. b. Two types of cheilocystidia. c. Pileipellis terminal cells. Singer (B1546) material of Campanella alba (d–e). d. Basidiospore. e. Cheilocystidia. Lagerheim (31 January 1892) material of Campanella alba (f–g). f. Basidiospores. g. Cheilocystidia. Campanella candida var. stipitata (Singer T1760—Holotype h–j). h. Basidiospores. i. Basidioles. j. Two types of hymenial cystidia. Scale bar = 10 μm. Illustrated by D.E. Desjardin.

opennotspecifiedOct 2015View details →
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FIGURE 5 in Towards a better understanding of Tetrapyrgos (Basidiomycota, Agaricales): new species, type studies, and phylogenetic inferences

FIGURE 5. Macroscopic and anatomical features for Tetrapyrgos parvispora (AHH 130—Holotype). a. Basidiomes. b. Basidiospores. c. Basidia and basidioles. d. Cheilocystidia. e. Pileipellis terminal cells. f. Caulocystidia. Scale bars: a = 10 mm, b–f = 10 μm. Illustrated by D.E. Desjardin.

opennotspecifiedOct 2015View details →
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FIGURE 1. Bulbostylis albidostricta.—A. Habit.—B1, B2 and B3. Inflorescences.—C. Nutlets. From the type specimen H. & E. Hess 51 in Bulbostylis albidostricta (Abildgaardieae, Cyperaceae): a new sedge species from Angola

FIGURE 1. Bulbostylis albidostricta.—A. Habit.—B1, B2 and B3. Inflorescences.—C. Nutlets. From the type specimen H. & E. Hess 51/253.

opennotspecifiedMar 2014View details →
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FIGURES 20–24. Tursiocola ziemanii. Type population, SEM. 20 in Three New Species of Tursiocola (Bacillariophyta) from the Skin of the West Indian Manatee (Trichechus manatus)

FIGURES 20–24. Tursiocola ziemanii. Type population, SEM. 20. Entire frustule in girdle view showing cingulum with 2 copulae, each with a double row of pores. 21. Internal view of valve with attached copula. 22. Cingulum comprised of 2 copulae open on one end (arrow) with 2 rows of pores. 23. Isolated copula showing closed end (arrow) and two rows of pores. 24. Internal view of cingulum showing open (arrow) and closed ends of copulae. Scale bars: 20–22, 24 = 10 μm; 23 = 5 μm.

opennotspecifiedMar 2015View details →
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FIGURES 14–19. Tursiocola ziemanii. Type population, SEM. 14–15 in Three New Species of Tursiocola (Bacillariophyta) from the Skin of the West Indian Manatee (Trichechus manatus)

FIGURES 14–19. Tursiocola ziemanii. Type population, SEM. 14–15. External views of whole valves showing axial and central areas. 16. Internal view of whole valve showing pseudosepta and butterfly structure. 17. Detail of butterfly structure and internal central area with stauros (arrow) and two knobs on the raphe rib. 18. Detail of external central area showing diamond-shaped central area, stauros and deflected proximal raphe ends. 19. Detail of external valve apex showing apparently bifurcated distal raphe ends. Scale bars: 14–16 = 5

opennotspecifiedMar 2015View details →
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FIGURES 65–68. Tursiocola costata. Type population, SEM. 65 in Three New Species of Tursiocola (Bacillariophyta) from the Skin of the West Indian Manatee (Trichechus manatus)

FIGURES 65–68. Tursiocola costata. Type population, SEM. 65. Internal view of whole valve showing pseudosepta and butterfly structure. 66. Detail of butterfly structure and internal hexagonal central area with two knobs on the raphe rib. 67. Isolated copula showing internal structure and opening at one end (arrow). 68. Isolated copula in girdle view showing opening at one end (short arrow), a single row of pores, and a central tab (long arrow) on the advalvar side. Scale bars: 65, 67–68 = 5 μm; 66 = 1 μm.

opennotspecifiedMar 2015View details →
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FIGURES 42–46. Tursiocola varicopulifera. Type population, SEM. 42 in Three New Species of Tursiocola (Bacillariophyta) from the Skin of the West Indian Manatee (Trichechus manatus)

FIGURES 42–46. Tursiocola varicopulifera. Type population, SEM. 42. Internal view of whole valve showing pseudosepta and butterfly structure. 43. Detail of butterfly structure and internal oval central area with two knobs on the raphe rib. 44. Entire frustule in girdle view showing differentiated copulae and wide mantle areas. Long arrow indicates valvocopula; short arrow indicates abvalvar copula. 45. Valve and cingulum showing connections between valvocopula and valve margin. 46. Isolated valvocopula showing 3 tabs on advalvar side and 2 rows of elongated pores. Arrow indicates open end of valvocopula. Scale bars: 42, 44, 46 = 10 μm; 43 = 1 μm; 45 = 5 μm.

opennotspecifiedMar 2015View details →
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FIGURES 38–41. Tursiocola varicopulifera. Type population, SEM. 38 in Three New Species of Tursiocola (Bacillariophyta) from the Skin of the West Indian Manatee (Trichechus manatus)

FIGURES 38–41. Tursiocola varicopulifera. Type population, SEM. 38. External view of whole valve showing axial and central areas. 39. Detail of external central area showing diamond-shaped central area, stauros and straight expanded proximal raphe ends. 40. Detail of external valve apex showing apparently bifurcated distal raphe ends. 41. Detail of external valve apex in mantle view showing transapically elongated areolae and spur-like extension of valve margin at apex. Scale bars. 38 = 10 μm; 39–41 = 1 μm.

opennotspecifiedMar 2015View details →
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FIGURES 58–64. Tursiocola costata. Type population, SEM. 58 in Three New Species of Tursiocola (Bacillariophyta) from the Skin of the West Indian Manatee (Trichechus manatus)

FIGURES 58–64. Tursiocola costata. Type population, SEM. 58. External view of entire valve showing drawn out rostrate apices, asymmetric valve face, bent axial area, diamond-shaped central area and narrow stauros. 59. External view of central area showing deflection of proximal raphe ends. 60. External view of apparently bifurcated distal raphe end. 61. External oblique view of entire valve with attached cingulum showing raised interstriae costae and convergent striae on valve face, raised central area, distinct valve mantle and 2 copulae, each with 1 row of pores. 62. Entire frustule in girdle view showing raised interstriae costae and cingulum with 2 copulae, each with a single row of pores adjacent to the valve margin. 63. Detail of valve center and cingulum in oblique view showing transitions between valve face, mantle and margin. 64. Detail of external valve center in oblique view showing raised interstriae costae, round areolae and narrow stauros. Scale bars: 58, 61–62 = 5 μm; 59–60, 63–64 = 1 μm.

opennotspecifiedMar 2015View details →
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FIGURE 1. A–D. Amaioua macrosepala. A. Infructescence. B. Leaf-like sepals seen from above. C. Calyptrate stipule. D. Solitary young fruit. Photos from the type, E in A striking new species of Amaioua (Gardenieae-Rubiaceae) from the Colombian Andes

FIGURE 1. A–D. Amaioua macrosepala. A. Infructescence. B. Leaf-like sepals seen from above. C. Calyptrate stipule. D. Solitary young fruit. Photos from the type, E. Méndez Vargas 7015, by Enrique Méndez Vargas.

opennotspecifiedJun 2015View details →
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FIGURES 471–477 in Morphological variability within the Achnanthidium minutissimum species complex (Bacillariophyta): comparison between the type material of Achnanthes minutissima and related taxa, and new freshwater Achnanthidium species from Portugal

FIGURES 471–477. SEM micrographs of Achnanthidium lusitanicum Novais & M.Morais, sp. nov. from Boeiro, Sertã Stream (Tejo basin), 09-07-2006 (324/06). 471. Raphe valve in external view. 472. Raphe valve in internal view. 473. Rapheless valve in external view. 474. Rapheless valve in internal view. 475. Detail of the central area of a raphe valve, with the straight, not expanded, proximal raphe pores. 476. Detail of the apex of a raphe valve in external view, with the raphe ending not expanded and slightly deflected. 477. Detail of the apex of a raphe valve in internal view, with the distal raphe ending terminating in a small helictoglossa and the areolae covered by hymenes. Scale bars = 1 μm.

opennotspecifiedAug 2015View details →
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FIGURES 159–162 in Morphological variability within the Achnanthidium minutissimum species complex (Bacillariophyta): comparison between the type material of Achnanthes minutissima and related taxa, and new freshwater Achnanthidium species from Portugal

FIGURES 159–162. SEM micrographs of the type material of Achnanthes minutissima var. cryptocephala Grunow in Van Heurck (Van Heurck Types du Synopsis 238). 159. External view of a raphe valve, with the central area as a rectangular fascia. 160. Internal view of a raphe valve, with the central area as a rectangular fascia. 161. External view of a rapheless valve. 162. Internal view of a rapheless valve. Scale bars = 1 μm.

opennotspecifiedAug 2015View details →
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FIGURES 399–402 in Morphological variability within the Achnanthidium minutissimum species complex (Bacillariophyta): comparison between the type material of Achnanthes minutissima and related taxa, and new freshwater Achnanthidium species from Portugal

FIGURES 399–402. SEM micrographs of Achnanthidium duriense Novais & Ector, sp. nov. from A-do-Bispo, Torto River, Douro basin, 18-08-2007 (129/07). 399. Raphe valve in girdle view, with the row of slit-like areolae on the mantle clearly visible. 400. Detail of a raphe valve in external view, with the proximal raphe ends drop-shaped and slightly deflected unilaterally. 401. Detail of a raphe valve in external view. 402. Detail of a rapheless valve in external view, with the rounded areolae on the valve and the slit-like areolae on the mantle, including the apex. Scale bars = 1 μm.

opennotspecifiedAug 2015View details →

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