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86 results for “Apioideae”
FIGURE 2 in Molecular phylogenetic and morphological analyses of the traditional tribe Coriandreae (Umbelliferae-Apioideae)
FIGURE 2. Majority rule consensus trees (50%) of the Bayesian analysis of the 45 accessions datasets. Numbers are posterior probabilities and maximum parsimony bootstrap support values. Scale bar corresponds to 0.1 substitutions per site.
FIGURE 6 in Molecular phylogenetic and morphological analyses of the traditional tribe Coriandreae (Umbelliferae-Apioideae)
FIGURE 6. Diversity of petals in the tribe Coriandreae: A. Bifora testiculata (Davis 28034, ANK); B. Coriandrum sativum (Grizi and Leinkram s.n., MHA) C. Schrenkia congesta (Pimenov et al.157, MW). A-C: redrawn from Politova (Politova, unpublished).
FIGURE 5 in Molecular phylogenetic and morphological analyses of the traditional tribe Coriandreae (Umbelliferae-Apioideae)
FIGURE 5. Schematic transverse sections of mericarps.A. Schrenkia golickeana (Pimenov et al.135, MW); B. Kosopoljanskya turkestanica (Pimenov et al. 891, MW). A-B: redrawn from Politova (Politova, unpublished). 1 = exocarp; 2 = mesocarp: sclerenchymatous layer; 3 = secterory ducts; 4 = endosperm; scale bar = 1mm.
FIGURE 4 in Rediscovery of Tordylium brachytaenium (Tordylieae, Apioideae, Apiaceae), an endemic and threatened species in Turkey
FIGURE 4. SEM micrographs of ventral surface of mericarps. A–C Tordylium pestalozzae (ADK 4064). D–F Tordylium brachytaenium (ADK 4115). G–I Tordylium ketenoglui (ADK 4138).
FIGURE 1 in Rediscovery of Tordylium brachytaenium (Tordylieae, Apioideae, Apiaceae), an endemic and threatened species in Turkey
FIGURE 1. Distribution map of Tordylium brachytaenium and related species in Turkey.ÌTordylium brachytaenium,zT. pestalozzae,"T. ketenoglui.
FIGURE 6 in Rediscovery of Tordylium brachytaenium (Tordylieae, Apioideae, Apiaceae), an endemic and threatened species in Turkey
FIGURE 6. SEM micrographs of Tordylium brachytaenium pollen (ADK 4115). A. Pollen grains in general view. B. A pollen grain in equatorial view. C. The colpus and exine surface. D. Polar view.
FIGURE 5 in Rediscovery of Tordylium brachytaenium (Tordylieae, Apioideae, Apiaceae), an endemic and threatened species in Turkey
FIGURE 5. Schematic transects of mericarps. A. T. ketenoglui (ADK 4138), B. T. brachytaenium (ADK 4115), C. T. pestalozzae (ADK 4064). Abbreviations: p= parenchyma cells, e= endosperm, ldv=lateral dorsal vittae, cv= commissural vittae, w=wing, vb=vascular bundle, vh=vesicular hair, lh=linear hair.
FIGURE 3 in Rediscovery of Tordylium brachytaenium (Tordylieae, Apioideae, Apiaceae), an endemic and threatened species in Turkey
FIGURE 3. SEM micrographs of dorsal surface of mericarps. A–D Tordylium pestalozzae (ADK 4064). E–H Tordylium brachytaenium (ADK 4115). I–L Tordylium ketenoglui (ADK 4138).
FIGURE 2 in Rediscovery of Tordylium brachytaenium (Tordylieae, Apioideae, Apiaceae), an endemic and threatened species in Turkey
FIGURE 2. Tordylium brachytaenium (ADK 4115). A. Habitat. B. General appearance. C. Fruits and umbel. D. Close to the umbel.
FIGURE 1 in A refined circumscription of Notobubon striatum and the resurrection of Dregea collina Ecklon & Zeyher (Apiaceae, Apioideae)
FIGURE 1. General morphology of Notobubon collinum (A, C, E) and N. striatum (B, D, F–H). (A) Small shrubs, ca. 20 cm tall, of N. collinum (arrow). (B) Larger shrubs, ca. 1 m tall, of N. striatum. (C) Shorter less divided leaves of N. collinum. (D) Longer more divided leaves of N. striatum. (E) Relatively large sepals of N. collinum. (F) Small sepals of N. striatum. (G) Umbel of N. striatum showing ant feeding on secretions from stylopodium, (H) Mature fruit of N. striatum. Vouchers: C1 = Goldblatt 1753 (NBG); C2 = Taylor 3834 (NBG); C3 = CREW 124 (NBG); D = Curtis 236 (NBG); E = Helme 2280 (NBG); F = Curtis 236 (NBG). Scale: C & D = 10 mm; E & F = 500 μm.
FIGURE 5 in Morphological and micromorphological data support the independent specific status of Chamaesium spatuliferum (Apioideae, Apiaceae) from China
FIGURE 5. Chamaesium novemjugum (A. B. C) and C. spatuliferum (D. E. F). A. D, Radical leaf; B. E, Habit; C. F, Ultimate segments.
FIGURE 4 in Morphological and micromorphological data support the independent specific status of Chamaesium spatuliferum (Apioideae, Apiaceae) from China
FIGURE 4. LM and SEM micromorphology of Chamaesium spatuliferum and C. novemjugum in upper and lower epidermis of leaves. A. C. E. G, C. novemjugum; B. D. F. H, C. spatuliferum. A. B. E. F, Surface of adaxial epidermal; C. D. G. H, Surface of abaxial epidermal.
FIGURE 3 in Morphological and micromorphological data support the independent specific status of Chamaesium spatuliferum (Apioideae, Apiaceae) from China
FIGURE 3. Morphological and micromorphological characters in seeds of Chamaesium spatuliferum and C. novemjugum. A. C. E, C. spatuliferum; B. D. F, C. novemjugum. A–B Seed; C–D Calyx teeth; E–F Surface ornamentation of pericarp.
FIGURE 6. Chamaesium paradoxum. A in Phylogeny of Chinese Chamaesium (Apiaceae: Apioideae) inferred from ITS, cpDNA and morphological characters
FIGURE 6. Chamaesium paradoxum. A. cross section of mericarp; B. blade of basal leaves; C. habit; D. fruiting umbellet with bracteoles; E. dorsal view of mericarp. [A, C, D and E from GXL1509270101; B from GXL1509270102].
FIGURE 1. Bayesian 50 in Phylogeny of Chinese Chamaesium (Apiaceae: Apioideae) inferred from ITS, cpDNA and morphological characters
FIGURE 1. Bayesian 50% majority-rule consensus tree of Chamaesium and its related genus inferred from ITS(B) and plastid rpl16+rps16+trnT-trnL(A) using a GTR+G nucleotide substitution model. Values on the branches indicate its support (Bayesian posterior probability/ parsimony bootstrap). Short line denotes no support value. The tree is rooted with Bupleurum. The names of the clades identified are those of Zhou et al. (2008, 2009) and Downie et al. (2010).
FIGURE 5. Chamaesium mallaeanum. A in Phylogeny of Chinese Chamaesium (Apiaceae: Apioideae) inferred from ITS, cpDNA and morphological characters
FIGURE 5. Chamaesium mallaeanum. A. cross section of mericarp; B. blade of basal leaves; C. habit; D. fruiting umbellet with bracteoles; E. dorsal view of mericarp. [A, D and E from GXL1509010101; B from GXL1509010102, C from GXL1509010103].
FIGURE 9. Chamaesium wolffianum. A in Phylogeny of Chinese Chamaesium (Apiaceae: Apioideae) inferred from ITS, cpDNA and morphological characters
FIGURE 9. Chamaesium wolffianum. A. cross section of mericarp; B. blade of basal leaves; C. habit; D. fruiting umbel; E. dorsal view of mericarps. [A, B, D, E from GXL1608200101; C from GXL1608200102].
FIGURE 2. Bayesian 50 in Phylogeny of Chinese Chamaesium (Apiaceae: Apioideae) inferred from ITS, cpDNA and morphological characters
FIGURE 2. Bayesian 50% majority-rule consensus tree of Chamaesium and its related genus inferred from combined ITS and plastid rpl16+rps16+trnT-trnL using a GTR+G nucleotide substitution model. Values on the branches indicate its support (Bayesian posterior probability/ parsimony bootstrap). The tree is rooted with Bupleurum. The names of the clades identified are those of Zhou et al. (2008, 2009) and Downie et al. (2010).
FIGURE 8. Chamaesium viridiflorum. A in Phylogeny of Chinese Chamaesium (Apiaceae: Apioideae) inferred from ITS, cpDNA and morphological characters
FIGURE 8. Chamaesium viridiflorum. A. cross section of mericarp; B. segment of basal leaf; C. habit; D. flowering umbellet with bracteoles; E. dorsal view of mericarps. [A, B, D, E from GXL1507150101; C from GXL1507150102].
FIGURE 7. Chamaesium thalictrifolium. A in Phylogeny of Chinese Chamaesium (Apiaceae: Apioideae) inferred from ITS, cpDNA and morphological characters
FIGURE 7. Chamaesium thalictrifolium. A. cross section of mericarp; B. segments of basal leaf; C. habit; D. fruiting umbel with bracts; E. dorsal view of mericarp. [A, B, D and E from GXL1509180101; C from GXL1509180102].
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