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54 results for “Ferula”
FIGURE 1 in A new species of Ferula (Apiaceae) from Malta
FIGURE 1. Outline of the terminal leaflet blade. A) Ferula melitensis from Malta; B) F. communis from Sicily; C) F. tunetana from Tunisia. Illustrations by S. Brullo based on living material.
FIGURE 2 in A new species of Ferula (Apiaceae) from Malta
FIGURE 2. Flowers of Ferula melitensis (A) from Malta, and F. communis (B) from Sicily. Hermaphrodite flowers: 1) above view, 2) lateral view, 3) pistil; male flowers: 4) above view, 5) lateral view, 6) stylopod. Illustrations by S. Brullo based on living material.
FIGURE 4. Mericarp cross sections. A in A new species of Ferula (Apiaceae) from Malta
FIGURE 4. Mericarp cross sections. A) Ferula communis from Sicily; B) F. melitensis from Malta; C) F. arrigonii from Sardinia. Illustrations by S. Brullo based on living material.
FIGURE 2 in Ferula divaricata (Umbelliferae), a new species from Central Anatolia, Turkey
FIGURE 2. Ferula divaricata, type specimen: mericarp cross-section. 1': exocarp, 2': mesocarp, 3': fibrous mesocarp (hypendocarp), 4': parenchyma cells of mesocarp with lignified pitted walls, 5': vascular bundles, 6': secretory ducts (vittae), 7': endosperm. Scale bar = 1 mm
FIGURE 1 in Ferula ermenekense (Apiaceae), an interesting new species from Southern Anatolia in the eastern Mediterraenean Basin
FIGURE 1. Ferula ermenekense (Collection no: M.Sağıroğlu 7001& H. Duman A. general habit B. Inflorescence C. Basal leaves (photographed by M. Sağıroğlu).
FIGURE 4 in Ferula ermenekense (Apiaceae), an interesting new species from Southern Anatolia in the eastern Mediterraenean Basin
FIGURE 4. Sheaths of investigated Ferula species. a: F. ermenekense (Coll. no: M. Sağıroğlu 7039 & B. Şahin) LM photo; b: F. lycia (Coll. no: M.Sağıroğlu 7038 & B. Şahin) LM photo; c: F. duranii (Coll. no: M.Sağıroğlu 2240) LM photo; d: F. pisidica (Coll. No: M. Sağıroğlu 7047 & B. Şahin)) LM photo.
FIGURE 3 in Ferula ermenekense (Apiaceae), an interesting new species from Southern Anatolia in the eastern Mediterraenean Basin
FIGURE 3. Ultimate segments of investigated Ferula species. a: F. ermenekense (Coll. no: M. Sağıroğlu 7001& H. Duman) LM photo; b: F. lycia (Coll. no: M.Sağıroğlu 6989) LM photo; c: F. duranii (Coll. no: M.Sağıroğlu 1896) LM photo; d: F. pisidica (Coll. No: M. Sağıroğlu 7047) LM photo.
FIGURE 5 in Ferula ermenekense (Apiaceae), an interesting new species from Southern Anatolia in the eastern Mediterraenean Basin
FIGURE 5. Mericarp micromorphology of investigated Ferula species. a-b: F. ermenekense (Coll. no: M. Sağıroğlu 7039) LM photo, SEM; c-d: F. lycia (Coll. no: M.Sağıroğlu 7038 & B.Şahin) LM photo, SEM; e-f: F. duranii (Coll. no: M.Sağıroğlu 2240) LM photo, SEM; g-h: F. pisidica (Coll. No: M. Sağıroğlu 7047)) LM photo, SEM.
FIGURE 2. Ferula ermenekense. A in Ferula ermenekense (Apiaceae), an interesting new species from Southern Anatolia in the eastern Mediterraenean Basin
FIGURE 2. Ferula ermenekense. A. Lower parts of plant: A(a) fibrous collar; A(b) basal leaves A(c) lower sheaths; B(1, 2). Middle sheaths; C. Upper part of plant; D. Part of basal leaves; E. Dorsal surface of fruit; F. Section of mericarp: F(a) dorsal vittae, F(b) commussural vittae, F(c, d) vascular bundle [illustrated by M. Sağıroğlu 38; Collection no: M.Sağıroğlu 7001 &H.Duman (in flower), M.Sağıroğlu 7039 & B.Şahin (in fruit)].
Fig. 4 in Sesquiterpene coumarins from Ferula sinkiangensis K.M.Shen and their cytotoxic activities
Fig. 4. Comparisons of calculated ECD spectra and experimental ECD spectra of compounds 3–5. (A) The Cal. ECD of stereoisomer (3′R, 4′R, 5′S, 10′S) of 3 were more matched with the Exp. ECD of 3. (B) The Cal. ECD of stereoisomer (3′S, 5′R, 8′R, 9′S, 10′S) of 4 were more matched with the Exp. ECD of 4. (C) The Cal. ECD of stereoisomer (3′R, 5′R, 6′S, 9′R, 10′R) of 5 were more matched with the Exp. ECD of 5.
Fig. 6 in Sesquiterpene coumarins from Ferula sinkiangensis K.M.Shen and their cytotoxic activities
Fig. 6. Effects of Sinkiangenol E on cell cycle distribution in HeLa cells. (A) HeLa cells were treated by Sinkiangenol E (0, 5, 10, 20 μM) for 24 h, then analyzed by flow cytometry for cell cycle distribution. (B) The data were presented as the mean ± SD of three independent experiments. *p <0.05 and **p <0.01 versus control were considered statistically significance.
Fig. 5 in Sesquiterpene coumarins from Ferula sinkiangensis K.M.Shen and their cytotoxic activities
Fig. 5. Apoptosis induced by Sinkiangenol E in HeLa cells detected by the Annexin V-FITC/PI staining test. HeLa cells were treated with Sinkiangenol E (0, 5, 10, 20 μM) for 24 h. DMSO treatment was used as a solvent control. (A) The apoptotic rates were determined by Annexin V-FITC/PI staining. Dot-plot graphs showed viable cells (AV-/PI-), necrotic cells (AV-/PI+), early phase apoptotic cells (AV+/PI-), and late phase apoptotic cells (AV+/PI+). Apoptosis rate was reported as the percentage of apoptotic cells (AV+/PI- and AV+/PI+) among total cells. (B) The data were presented as the mean ± SD of three independent experiments. *p <0.05 and **p <0.01 versus control were considered statistically significance.
Fig. 7 in Sesquiterpene coumarins from Ferula sinkiangensis K.M.Shen and their cytotoxic activities
Fig. 7. Effects of Sinkiangenol E on the MAPK signaling pathway. ERK-specific inhibitor PD98059, JNK-specific inhibitor SP600125, and p38-specific inhibitor SB203580 were used to confirm the effects of Sinkiangenol E on MAPK signaling transduction pathway. (A) The expression levels of phosphorylated and total ERK1/ 2, JNK, and p38 were detected by Western blot analysis. (B) The effects of PD98059, SP600125, and SB203580 on the expression of apoptosis-related protein (Bax, Bcl-2, and Caspase3). (C) The effects of PD98059, SP600125, and SB203580 on the expression of cell cycle regulation-related protein (CDK2, CDK4, and Cyclin D1). The data were presented as the mean ± SD of three independent experiments. *p <0.05 and **p <0.01 versus control, #p <0.05 and ##p <0.01 versus 20 μM of Sinkiangenol E-treated cells were considered statistically significance.
ОСОБЕННОСТИ ФАРМАКОЛОГИЧЕСКОЙ АКТИВНОСТИ ЭКСРАКТА СМОЛЫ FERULA TAJIKORUM
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TABLE 2 in Ferula ermenekense (Apiaceae), an interesting new species from Southern Anatolia in the eastern Mediterraenean Basin
<p><b>TABLE 2</b> Comparison of mericarp characteristics of <i>Ferula ermenekense, F. lycia, F. duranii</i> and <i>F. pisidica</i> (L: length, W: width, T: thickness, SD: standard deviation; values in mm).</p><table><tbody><tr><th><b>Mericarpcharacters</b></th><th><i>F. ermenekense</i></th><th><i>F. lycia</i></th><th><i>F. duranii</i></th><th><i>F. pisidica</i></th></tr></tbody><tbody><tr><th>L,W</th><td>9.02–15.01mm, 5.02–7.50 mm</td><td>7.00–10.3mm, 4.00–7.01 mm</td><td>6.02–10.01 mm, 3.03–5.02 mm</td><td>8.01–14.2 mm, 5.03–8.04 mm</td></tr><tr><th>T</th><td>1.92–2.03 mm</td><td>1.25–1.50 mm</td><td>0.70–1.51 mm</td><td>1.45–2.001 mm</td></tr><tr><th>L/W</th><td>12.015/6.26:1.91</td><td>8.65/5.505:1.57</td><td>8.015/4.025:2.01</td><td>11.105/6.535:1.69</td></tr><tr><th>Mericarp Shape</th><td>obovate-eliptical</td><td>rounded-oblong</td><td>narrowly elliptical-oblong</td><td>oblong</td></tr><tr><th>Mericarp Color</th><td>brown</td><td>light brownish</td><td>dark brown</td><td>light brownish</td></tr><tr><th>Mericarp size (mm)</th><td>9–15 × 5–7,5</td><td>7–10 × 4–7</td><td>6–10 × 3–5</td><td>8–14 × 5–8</td></tr><tr><th>Mericarp wing wide (mm)</th><td>0.5–0.7</td><td>1–1.5</td><td>0.3–0.5</td><td>0.5–0.7</td></tr><tr><th>Mericarp dorsal ridges</th><td>filiform straight</td><td>slightly filiform</td><td>filiform and slightly undulate</td><td>filiform and slightly undulate</td></tr><tr><th>ornamentation</th><td>rugulose, granules</td><td>rugulose-reticulate</td><td>rugulose</td><td>rugulose-reticulate</td></tr><tr><th>Epicuticular wax</th><td>crust; sparsely irregular platelets</td><td>smooth layer; irregular and sparsely platelets</td><td>smooth layer; diffuse, dense, irregular and nonentire platelets</td><td>smooth layer; tiny and very sparsely irregular platelets</td></tr><tr><th>Epidermal cells shape</th><td>incospicous more or less isodiametric, polygonal</td><td>conspicous more or less isodiametric, especially quadrangle polygonal</td><td>inconspicous more or less isodiametric, polygonal</td><td>inconspicous rounded, more or less isodiametric</td></tr><tr><th>Anticlinal cell walls</th><td>inconspicuous, regularly thickened and straight</td><td>conspicuous, sunken, ribbed, undulate</td><td>inconspicuous, irregularly thickened and straight</td><td>inconspicuous, irregularly thickened and minutely raised to straight</td></tr><tr><th>Periclinal cells walls</th><td>flat</td><td>convex</td><td>concave</td><td>flat</td></tr></tbody></table>
TABLE 1. A in Ferula ermenekense (Apiaceae), an interesting new species from Southern Anatolia in the eastern Mediterraenean Basin
<p><b>TABLE 1.</b> A comparison of selected characters differing among <i>F. ermenekense, F. lycia, F. duranii</i> and <i>F. pisidica</i>.</p><table><tbody><tr><th><b>Characters</b></th><th><i>Ferula ermenekense</i></th><th><i>F. lycia</i></th><th><i>F. duranii</i></th><th><i>F. pisidica</i></th></tr></tbody><tbody><tr><th>Basal leaves</th><td>4–5(–6) pinnate</td><td>6 pinnate</td><td>6–7 pinnate</td><td>6–7 pinnate</td></tr><tr><th>Basal leaves</th><td>sparsely scabrid</td><td>glabrous</td><td>glabrous</td><td>setulose</td></tr><tr><th>Ultimate segments</th><td>linear, 4–10 (–12) × 1–3 mm</td><td>oblong-linear, 1–2 × 0.5–1 mm</td><td>linear, 3–8 × 0.4–0.8 mm</td><td>linear, 1–4 × 0.5–1.5 mm</td></tr><tr><th>Ultimate segments apex</th><td>acuminate</td><td>acute</td><td>acuminate</td><td>obtuse</td></tr><tr><th>Inflorescence</th><td>dense</td><td>lax</td><td>lax</td><td>lax</td></tr><tr><th>Sheaths</th><td>lanceolate</td><td>ovate</td><td>lanceolate</td><td>ovate</td></tr><tr><th>Upper sheaths lamina</th><td>very reduced</td><td>very reduced</td><td>distinctly leafy</td><td>very reduced</td></tr><tr><th>Central umbels rays</th><td>14–26</td><td>6–16</td><td>14–22</td><td>8–22</td></tr><tr><th>Central umbels pedicel</th><td>7–10 mm</td><td>6–14</td><td>5–10 mm</td><td>2–8 mm</td></tr><tr><th>Umbellules flowers</th><td>(10–)15–23</td><td>10–15</td><td>20–40</td><td>9–15</td></tr><tr><th>Petals</th><td>glabrous</td><td>glabrous</td><td>glabrous</td><td>setulose</td></tr><tr><th>Mericarps</th><td>obovate-elliptic, 9–15 × 5–7.5 mm</td><td>orbicular-oblong, 7–10 × 4–7 mm</td><td>narrowly elliptic-blong, 6–10 × 3–5 mm</td><td>oblong, 8–14 × 4–9 mm</td></tr><tr><th>Dorsal vittae per vallecula</th><td>1–2</td><td>1</td><td>2–3</td><td>1–3</td></tr><tr><th>Commussural vittae</th><td>6–8</td><td>2–4</td><td>4–6</td><td>(2–)4–6</td></tr><tr><th>Lateral wings wide</th><td>0.5–0.7 mm</td><td>1–1.5 mm</td><td>0.3–0.5 mm</td><td>0.5–1 mm</td></tr></tbody></table>
FIGURE 5 in Validating the systematic placement of Eriosynaphe in the genus Ferula (Apiaceae: Scandiceae: Ferulinae) linked with the description of Ferula mikraskythiana sp. nov. from Romania
FIGURE 5. Photograph of the holotype specimen of F. mikraskythiana (by B.-I. Hurdu)
FIGURE 3 in Ferula divaricata (Umbelliferae), a new species from Central Anatolia, Turkey
FIGURE 3. Natural population of Ferula divaricata in the type locality
Figure 5 from: Başer B, Sagıroglu M, Dogan G, Duman H (2021) Morphology of pollen in Ferula genus (Apiaceae). PhytoKeys 179: 111-128. https://doi.org/10.3897/phytokeys.179.66312
Figure 5 Dendrogram using Average Linkage (Between Groups) of the examined data (F1: F. szowitsiana; F2: F. drudeana; F3: F. coskuni; F4: F. mervynii; F5: F. communis; F6: F. tingitana; F7: F. duranii; F8: F. lycia; F9: F. hermonis; F10: F. anatolica; F11: F. orientalis; F12: F. brevipedicellata; F13: F. halophila; F14: F. parva; F15: F. tenuissima; F16: F. haussknechtii; F17: F. elaeochytris; F18: F. longipedunculata; F19: F. divaricata; F20: F. huber-morathii; F21: F. caspica; F22: F. rigidula; F23: F. pisidica).
Figure 3 from: Başer B, Sagıroglu M, Dogan G, Duman H (2021) Morphology of pollen in Ferula genus (Apiaceae). PhytoKeys 179: 111-128. https://doi.org/10.3897/phytokeys.179.66312
Figure 3 SEM micrographs of pollen grains in the Ferula taxa examined 1F. szowitsiana2F. drudeana3F. coskuni4F. mervynii5F. communis6F. tingitana7F. duranii8F. lycia9F. hermonis10F. anatolica11F. orientalis12F. brevipedicellata.
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