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131 results for “palynology”
FIGURE 4. A−B in Morphology, anatomy and palynology study on Turkish endemic species Saponaria karapinarensis (Caryophyllaceae)
FIGURE 4. A−B. Transverse section of the stem: E, epidermis; P, parenchyma; En, endodermis; D, druse crystals; Pc, pericycle; Ph, phloem; X, xylem; Pi, pith region.
FIGURE 3. A−B in Morphology, anatomy and palynology study on Turkish endemic species Saponaria karapinarensis (Caryophyllaceae)
FIGURE 3. A−B. Transverse section of the root: Pe, periderm; Pc, primary cortex; D, druse crystal; Ph, phloem; Ca, cambium; X, xylem.
FIGURE 6 in Morphology, anatomy and palynology study on Turkish endemic species Saponaria karapinarensis (Caryophyllaceae)
FIGURE 6. SEM micrographs of the pollen grains. A−B: equatorial view and exine sculpturing of Saponaria karapinarensis (O. Tugay 10999); C−D: light micrographs of the pollen grains.
FIGURE 2 in Morphological, anatomical, palynological, karyological and ecological remarks of Astragalus argaeus (Fabaceae) endemic to Turkey
FIGURE 2. Cross section of A. argeus A–B. Root. C. Stem. D. Leaflet (pd: periderm, pa: parenchyma, sc: sclerenchyma, sph: secondary phloem, ca: cambium, pr: pith ray, tr: trachea, trk: tracheid, ab: aerankimatic hallow, fl: phellem, fg: phellogen, fd: phelloderm, ph: phloem, xls: xylem, pt: pith, ue: upper epidermis, le: lower epidermis, pp: palisade parenchyma, st: stomata dk: bundle sheath).
FIGURE 3. A. argaeus A in Morphological, anatomical, palynological, karyological and ecological remarks of Astragalus argaeus (Fabaceae) endemic to Turkey
FIGURE 3. A. argaeus A. General view of pollen grains under LM. B. Equatorial view of pollen in SEM. C. Polar view of pollen in SEM. D. Close-up of pollen ornamentation in SEM.
FIGURE 1. A. argaeus A. General view. B. Stipule. C.Leaflet. D. Bract. E. Calyx. F. Standard. G. Wings. H. Keel. I in Morphological, anatomical, palynological, karyological and ecological remarks of Astragalus argaeus (Fabaceae) endemic to Turkey
FIGURE 1. A. argaeus A. General view. B. Stipule. C.Leaflet. D. Bract. E. Calyx. F. Standard. G. Wings. H. Keel. I. Pistil ve Stamen. J. Fruit.
FIGURE 4 in Morphological, anatomical, palynological, karyological and ecological remarks of Astragalus argaeus (Fabaceae) endemic to Turkey
FIGURE 4. Seed photographs of A. argaeus A. Seed general view in LM. B. General view in SEM. C. Testa surface in SEM.
Supplementary Data for Provenance, Environments, and Tectonic Signatures of Tanjong-Sandakan Formations, Northeast Sabah, Malaysia: Implications for Sedimentology, Palynology, and Geochemistry
<p>This dataset includes supplementary sedimentary facies tables and geochemical analysis data used in the manuscript titled <strong>Provenance, Environments, and Tectonic Signatures of Tanjong-Sandakan Formations, Northeast Sabah, Malaysia: Implications for Sedimentology, Palynology, and Geochemistry</strong>.</p>
FIGURE 4 in The anatomical, palynological and micromorphological aspects of three endemic Bellevalia species (Asparagaceae) in Turkey and their taxonomic importance
FIGURE 4. SEM photographs of pollen grains of the examined Bellevalia taxa. a.–b. Proximal view and exine sculpturing of B. gracilis; c–d. Proximal view and exine sculpturing of B. malatyaensis; e–f. Proximal view and exine sculpturing of B. vuralii.
FIGURE 2 in The anatomical, palynological and micromorphological aspects of three endemic Bellevalia species (Asparagaceae) in Turkey and their taxonomic importance
FIGURE 2. Cross sections of Bellevalia malatyaensis: a. root, b. vascular cylinder, c. scape, d. close view of the scape, e. leaf, f. close view of the leaf. Acronyms as follows, r: rhizodermis, ex: exodermis, co: cortex parenchyma, en: endodermis, pr: pericycle, ph: phloem, px: protoxylem, mx: metaxylem, ep: epidermis, sc: sclerenchyma, vb: vascular bundle, pi: pith region, cr: crystal, lc: lysigenous cavity, le: lower epidermis, m: mesophyll, pp: palisade parenchyma, sp: spongy parenchyma, ue: upper epidermis.
FIGURE 1 in The anatomical, palynological and micromorphological aspects of three endemic Bellevalia species (Asparagaceae) in Turkey and their taxonomic importance
FIGURE 1. Transverse Cross-sections of Bellevalia gracilis; a. root, b. vascular cylinder, c. scape, d. close view of the scape, e. leaf, f. close view of the leaf. Acronyms as follows, r: rhizodermis, ex: exodermis, co: cortex parenchyma, en: endodermis, pr: pericycle, ph: phloem, px: protoxylem, mx: metaxylem, ep: epidermis, sc: sclerenchyma, vb: vascular bundle, pi: pith region, cr: crystal, le: lower epidermis, m: mesophyll, pp: palisade parenchyma, sp: spongy parenchyma, ue: upper epidermis.
FIGURE 3 in The anatomical, palynological and micromorphological aspects of three endemic Bellevalia species (Asparagaceae) in Turkey and their taxonomic importance
FIGURE 3. The cross sections of Bellevalia vuralii: a. root, b. vascular cylinder, c. scape, d. close view of the scape. Acronyms as follows, r: rhizodermis, ex: exodermis, co: cortex parenchyma, en: endodermis, pr: pericycle, ph: phloem, px: protoxylem, mx: metaxylem, ep: epidermis, sc: sclerenchyma, vb: vascular bundle, pi: pith region, e. general view of leaf, f. close view of leaf. cr: crystal, le: lower epidermis, m: mesophyll, pp: palisade parenchyma, sp: spongy parenchyma, ue: upper epidermis.
FIGURE 4. Group I in Palynological observations on the genus Gundelia L. (Asteraceae) growing in Turkey
FIGURE 4. Group I: SEM micrographs of pollen grains (equatorial view) and ornamentation. a) Gundelia anatolica, b) G. rosea, c) G. tournefortii (Scale bar: pollen grains 20 µm, ornamentation 5 µm).
FIGURE 3 in Palynological observations on the genus Gundelia L. (Asteraceae) growing in Turkey
FIGURE 3. Light microscopy micrographs of pollen grains (Acetolysis method). Group I. a) Gundelia anatolica, b) G. rosea, c) G. tournefortii. Group II. d) G. siirtica, e) G. armeniaca, f) G. purpurascens, g) G. cilicica, h) G. mesopotamica, i) G. armata, j) G. dersim, k) G. asperrima, l) G. glabra, m) G. munzuriensis, n) G. tournefortii var. tenuisecta. Group III. o) G. colemerikensis, p) G. komagenensis, r) G. vitekii (Scale bar: 10 µm).
FIGURE 1 in Palynological observations on the genus Gundelia L. (Asteraceae) growing in Turkey
FIGURE 1. Flowers (cephaloid flowers) of the studied taxa of Gundelia. Group I. a) G. anatolica, b) G. rosea, c) G. tournefortii. Group II. d) G. siirtica, e) G. armeniaca, f) G. purpurascens, g) G. cilicica, h) G. mesopotamica, i) G. armata, j) G. dersim, k) G. asperrima, l) G. glabra, m) G. munzuriensis, n) G. tournefortii var. tenuisecta. Group III. o) G. colemerikensis, p) G. komagenensis, r) G. vitekii. Pollen groups I–III are explained below.
FIGURE 2 in Palynological observations on the genus Gundelia L. (Asteraceae) growing in Turkey
FIGURE 2. Light microscopy micrographs of pollen grains (polar and equatorial views). Group I. a) Gundelia anatolica, b) G. rosea, c) G. tournefortii. Group II. d) G. siirtica, e) G. armeniaca, f) G. purpurascens, g) G. cilicica, h) G. mesopotamica, i) G. armata, j) G. dersim, k) G. asperrima, l) G. glabra, m) G. munzuriensis, n) G. tournefortii var. tenuisecta. Group III. o) G. colemerikensis, p) G. komagenensis, r) G. vitekii (Scale bar: 20 µm).
FIGURE 5. Group II in Palynological observations on the genus Gundelia L. (Asteraceae) growing in Turkey
FIGURE 5. Group II: SEM micrographs of pollen grains (equatorial view) and ornamentation. d) Gundelia siirtica, e) G. armeniaca, f) G. purpurascens, g) G. cilicica, h) G. mesopotamica, i) G. armata, j) G. dersim, k) G. asperrima, l) G. glabra, m) G. munzuriensis, n) G. tournefortii var. tenuisecta (Scale bar: pollen grains 20 µm and ornamentation 5 µm).
Late Eocene–early Miocene evolution of the southern Australian Subtropical Front: a marine palynological approach
<p>Supplementary dataset for the publication in Journal of Micropalaeontology (JM): "Late Eocene–early Miocene evolution of the southern Australian Subtropical Front: a marine palynological approach" </p> <p>Supplementary Table 1: Age model table of paleomagnetic reversals and biostratigraphic events from planktic foraminifera, dinocysts, and calcareous nannofossils (Pfuhl and McCave, 2003; Sluijs et al., 2003; Stickley et al., 2004b; Pross et al., 2012; Houben et al., 2019). Including the updated GTS2012 timescale converted ages.</p> <p>Supplementary Table 2: Total palynomorph assemblage counts ODP Site 1168 (877–334 m b.s.f.) and the relative abundance of selected dinocyst groups (Table 1).</p> <p>Supplementary Table 3: The calculated relative abundance of dinocyst assemblage groups per time phase from the drill sites in the Tasmanian Gateway region, portrayed in Fig. 6.</p>
Data from: Dynamics of marsh-mangrove ecotone since the mid-Holocene: a palynological study of mangrove encroachment and sea level rise in the Shark River Estuary, Florida
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Data from: Diversification dynamics of vegetation during the Cenozoic in the Neotropics: A palynological perspective from Colombia
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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