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FIGURE 6 in Massonia bakeriana (Asparagaceae, Scilloideae), a new pustulate species from the Northern Cape Province (South Africa)
FIGURE 6. SEM micrographs of leaf surface showing emergence morphology in the studied Massonia species. A, D. M. bakeriana M.Pinter, Mart.-Azorín & Wetschnig. B, E. M. mimetica Mart.-Azorín, M.Pinter, M.B.Crespo & Wetschnig. C, F. M. echinata L.f. A–C: general view of leaf surface; D–F: detail of pustules morphology in apical view. Scale bars: A–C: 1 mm; D–F: 0.2 mm.
FIGURE 5 in Massonia bakeriana (Asparagaceae, Scilloideae), a new pustulate species from the Northern Cape Province (South Africa)
FIGURE 5. Leaf surface and emergence morphology in the studied Massonia species. A, D. M. bakeriana M.Pinter, Mart.-Azorín & Wetschnig. B, E. M. mimetica Mart.-Azorín, M.Pinter, M.B.Crespo & Wetschnig. C, F. M. echinata L.f. A–C: apical view of leaf surface; D–F: section of leaf with emergence morphology in lateral view. A–D, F fresh leaves, E fixed leaf. Scale bars: A–C: 0.5 cm; D–F: 0.5 mm.
FIGURE 4 in Massonia bakeriana (Asparagaceae, Scilloideae), a new pustulate species from the Northern Cape Province (South Africa)
FIGURE 4. Seed morphology of Massonia bakeriana M.Pinter, Mart.-Azorín & Wetschnig. A. Seed, lateral view; B. Seed, raphal view; C. Seed, longitudinal section; D. Seed, transversal section. Scale bars: 0.5 mm.
FIGURE 2 in Massonia bakeriana (Asparagaceae, Scilloideae), a new pustulate species from the Northern Cape Province (South Africa)
FIGURE 2. Flower and bract morphology of Massonia bakeriana M.Pinter, Mart.-Azorín & Wetschnig flowering in cultivation from Loeriesfontein (WW04971). A. Mature flower in apical view; B. Bracts; C. Development of flowers from the bud (on the left) to full anthesis (on the right). Scale bars: A: 0.5 cm; B, C: 1 cm.
FIGURE 7 in Massonia bakeriana (Asparagaceae, Scilloideae), a new pustulate species from the Northern Cape Province (South Africa)
FIGURE 7. Known distribution of Massonia bakeriana M.Pinter, Mart.-Azorín & Wetschnig. (green triangles), Massonia echinata L.f. (blue squares) and Massonia mimetica Mart.-Azorín, M.Pinter, M.B.Crespo & Wetschnig (red circles) in the Northern Cape Province of South Africa. Type localities are indicated by symbols with white centres.
FIGURE 1 in Massonia bakeriana (Asparagaceae, Scilloideae), a new pustulate species from the Northern Cape Province (South Africa)
FIGURE 1. Habit of Massonia bakeriana M.Pinter, Mart.-Azorín & Wetschnig flowering in cultivation from Loeriesfontein (WW04971). A. Bulb; B. Sprouting plant; C. Plant at anthesis. Scale bar: 1 cm.
FIGURE 1 in Bituminaria kyreniae (Fabaceae), a new species from Northern Cyprus
FIGURE 1. Habit of Bituminaria kyreniae Giusso, C. Brullo, Brullo, Cambria & Miniss. Illustration by S. Brullo based on living material coming from the type locality (CAT).
FIGURE 2 in Bituminaria kyreniae (Fabaceae), a new species from Northern Cyprus
FIGURE 2. Diagnostic features of Bituminaria kyreniae Giusso, C. Brullo, Brullo, Cambria & Miniss. A. flower (ventral view). B. flower (dorsal view). C. flower (lateral view). D. bud. E. open calyx. F. standard. G. wings. H. open keel. I. keel (lateral view). J. staminal tube. K. anthers. L. pistil. M. stigma. N. pods. O. pod with calyx. P. seeds. Illustration by S. Brullo based on living material coming from the type locality (CAT).
FIGURE 4 in Bituminaria kyreniae (Fabaceae), a new species from Northern Cyprus
FIGURE 4. Distribution map of Bituminaria kyreniae based on personal collections (red dots) and literature (green dots).
FIGURE 3 in Bituminaria kyreniae (Fabaceae), a new species from Northern Cyprus
FIGURE 3. SEM micrographs of the seed coat of Bituminaria kyreniae (A1−3) and B. bituminosa (B1−3) at low magnification (A1x 15 and B1 x 20) and at high magnification (A2 and B2 x 1000; A3 and B3 x 2500); pod hairs of B. kyreniae (A4) and B. bituminosa (B4) at medium magnification (x 700), respectively from Cyprus, type material (CAT) and Catania, Brullo s.n. (CAT).
FIGURE 1. Lepidagathis clavata Dalzell. A in Rediscovery and lectotypification of Lepidagathis clavata (Acanthaceae), a steno-endemic species from the northern Western Ghats, India
FIGURE 1. Lepidagathis clavata Dalzell. A. Habitat (inset: close up). B. Habit. C. & D. Inflorescence. E. & F. Sepals. G. Style: hairy with stalked glands. H. SEM image of pollen grains. I. Seed. J. Seed with golden yellowish hygroscopic hairs. K. Fire burnt plants.
FIGURES 2‒7. Cheilolejeunea amazonica. 2 in Cheilolejeunea amazonica (Lejeuneaceae, Marchantiophyta), a new tepui species from northern Brazil
FIGURES 2‒7. Cheilolejeunea amazonica. 2: Portion of gametophyte, ventral view. 3: Portion of gametophyte with underleaf and leaf lobule. 4: Underleaf. 5: Apical tooth lobule. 6: Laminal cells. 7: Stem in cross section with remains of leaves and large papillae on dorsal leaf side. (from holotype, C.E. Zartman 9667).
FIGURE 1 in Cheilolejeunea amazonica (Lejeuneaceae, Marchantiophyta), a new tepui species from northern Brazil
FIGURE 1. Photograph showing the collection site, Rio Aracá, summit of Serra Aracá, rocks along stream (Photo by C. E. Zartman).
FIGURE 1. Ischaemum agharkarii. A. Habit. B. First node. C. Collar. D. Joint. E in Ischaemum agharkarii (Andropogoneae, Poaceae), a new species from Northern Western Ghats, India
FIGURE 1. Ischaemum agharkarii. A. Habit. B. First node. C. Collar. D. Joint. E. Sessile and pedicelled spikelet. (F–O. Sessile spikelet) F. Lower glume. G. Upper glume. H. Lower lemma. I. Lower palea. J. Stamens of lower floret. K. Upper lemma (awn partially removed). L. Upper palea. M. Stamens of upper floret. N. Pistil with lodicules. O. Caryopsis. (P–Y. Pedicelled spikelet) P. Spikelet with pedicel. Q. Lower glume. R. Upper glume. S. Lower lemma. T. Lower palea. U. Upper lemma. V. Upper palea. W. Stamens of upper floret. X. Pistil with lodicule. Y. Caryopsis. (All images from the holotype).
FIGURES 19‒34. Cheilolejeunea cuspidifera. 19. Gametophyte, ventral view. 20‒24. Leaf lobe apices. 25‒27. Underleaves. 28‒29. Lobules. 30. Lobule apex showing second and first teeth. 31 in Three new species of Cheilolejeunea (Spruce) Steph. (Marchantiophyta, Lejeuneaceae) from northern Brazil
FIGURES 19‒34. Cheilolejeunea cuspidifera. 19. Gametophyte, ventral view. 20‒24. Leaf lobe apices. 25‒27. Underleaves. 28‒29. Lobules. 30. Lobule apex showing second and first teeth. 31. Marginal cells of the leaf lobules. 32. Laminal cells. 33. Stem in cross section. 34. Gynoecial branch with innovation (from holotype, Mário H.T. Araújo 1245).
FIGURES 42‒45. Comparison between C. caracariensis with C. oncophylla. 42 in Three new species of Cheilolejeunea (Spruce) Steph. (Marchantiophyta, Lejeuneaceae) from northern Brazil
FIGURES 42‒45. Comparison between C. caracariensis with C. oncophylla. 42. Part of gametophyte of C. caracariensis, ventral view. 43. Part of gametophyte of C. oncophylla, ventral view. 44: lobule keel of C. caracariensis. 45. Lobule keel of C. oncophylla (C. oncophylla: from Schäfer-Verwimp 12742 - EGR).
FIGURES 46‒51. Comparison between C. cuspidifera with C. lacerata. 46 in Three new species of Cheilolejeunea (Spruce) Steph. (Marchantiophyta, Lejeuneaceae) from northern Brazil
FIGURES 46‒51. Comparison between C. cuspidifera with C. lacerata. 46. Part of gametophyte of C. cuspidifera with perianth, ventral view. 47. Part of gametophyte of C. lacerata with gynoecia, ventral view. 48. Part of gametophyte with underleaves of C. cuspidifera. 49. Part of gametophyte of C. lacerata with underleaves. 50. Part of gametophyte of C. cuspidifera, ventral view. 51. Part of gametophyte of C. lacerata, ventral view (C. lacerata: from holotype - ALCB).
FIGURES 11‒18. Cheilolejeunea caracariensis. 11. Gametophyte, ventral view. 12. Leaf lobe apex. 13. Underleaf and lobule. 14 in Three new species of Cheilolejeunea (Spruce) Steph. (Marchantiophyta, Lejeuneaceae) from northern Brazil
FIGURES 11‒18. Cheilolejeunea caracariensis. 11. Gametophyte, ventral view. 12. Leaf lobe apex. 13. Underleaf and lobule. 14: Free margin of leaf lobule. 15. Leaf lobule apex. 16. Laminal cells. 17‒18. Stems in cross sections (from holotype, Mário H.T. Araújo 1217a).
FIGURES 35‒41. Comparison between C. aracaensis and C. asperiflora. 35‒36 in Three new species of Cheilolejeunea (Spruce) Steph. (Marchantiophyta, Lejeuneaceae) from northern Brazil
FIGURES 35‒41. Comparison between C. aracaensis and C. asperiflora. 35‒36. Apical teeth lobue of C. aracaensis. 37. Apical teeth lobule of C. asperiflora. 38. Part of gametophyte with underleaves of C. aracaensis. 39. Part of gametophyte with underleaves of C. asperiflora. 40. Perianth of C. aracaensis. 41. Perianth of C. asperiflora (C. asperiflora: photo from type specimen - NY).
FIGURES 1‒10. Cheilolejeunea aracaensis. 1. Gametophyte, ventral view. 2‒3 in Three new species of Cheilolejeunea (Spruce) Steph. (Marchantiophyta, Lejeuneaceae) from northern Brazil
FIGURES 1‒10. Cheilolejeunea aracaensis. 1. Gametophyte, ventral view. 2‒3. Portion of gametophyte, ventral view. 4. Underleaf and lobule. 5‒6. Leaf lobules apices. 7. Laminal cells. 8: Stem in cross section. 9. Gynoecial branch with perianth, ventral view. 10: Androecial branch, ventral view (from holotype, C. Zartman 9686).
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.