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86 results for “Apioideae”
Linked collectors and determiners for: Phylogeny and taxonomic review of Oreocomopsis with description of a new genus Oreocomoides (Apioideae, Apiaceae).
Natural history specimen data linked to collectors and determiners held within, "Phylogeny and taxonomic review of Oreocomopsis with description of a new genus Oreocomoides (Apioideae, Apiaceae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/026ce9dc-2468-4fda-be36-4d6536332c2d">https://bionomia.net/dataset/026ce9dc-2468-4fda-be36-4d6536332c2d</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/026ce9dc-2468-4fda-be36-4d6536332c2d">https://gbif.org/dataset/026ce9dc-2468-4fda-be36-4d6536332c2d</a>. Formatted as a Frictionless Data package.
FIGURE 9 in Phylogeny and taxonomic review of Oreocomopsis with description of a new genus Oreocomoides (Apioideae, Apiaceae)
FIGURE 9. Mericarp of Oreocomopsis longiinvolucellata (scale bar = 1 mm): A—dorsal view; B—commissural view; C—cross section of mericarp, the symbols are the same as in Figure 4.
FIGURE 2 in Phylogeny and taxonomic review of Oreocomopsis with description of a new genus Oreocomoides (Apioideae, Apiaceae)
FIGURE 2. Distribution map of Oreocomopsis species: O. dochenensis (pink triangles), O. longiinvolucellata (green dots), O. aromatica (blue dots) and Oreocomoides stelliphora (white triangles).
FIGURE 1 in Phylogeny and taxonomic review of Oreocomopsis with description of a new genus Oreocomoides (Apioideae, Apiaceae)
FIGURE 1. Majority-rule consensus tree obtained from the Bayesian analysis of XX nrITS sequences. Backbone with posterior probabilities values (> 0.95%) are shown above branches. Maximun parsimony bootstrap support values (> 60%) are shown below branches.
FIGURE 4 in Phylogeny and taxonomic review of Oreocomopsis with description of a new genus Oreocomoides (Apioideae, Apiaceae)
FIGURE 4. Mericarp of Oreocomopsis aromatica (scale bar = 1 mm): A—dorsal view; B—commissural view; C—cross section of mericarp: 1—exsocarp, 2—mesocarp parenchyma, 3—vascular bundle, 4—vitta, 5—endosperm, 6—cavity.
FIGURE 5 in Taxonomic revision of critical taxa of Elwendia (Umbelliferae-Apioideae) from Tajikistan and neighbouring countries, with descriptions of three new species from the Pamir-Alay and distributional novelties
FIGURE 5. Schematic transects of mericarps. A, Elwendia darwasica. B, Elwendia schistosa. C, Elwendia varsobica. D, Elwendia lindbergii. E, Elwendia kuhitangi. F, Elwendia salsa. 1. Exocarp; 2. Vallecular vittae; 3. Vascular bundle; 4. Mesocarp, non-lignified parenchyma cells; 5. Endosperm; 6. Rib secretory ducts; 7. Commissure. Scale bar: 1 mm.
FIGURE 4 in Taxonomic revision of critical taxa of Elwendia (Umbelliferae-Apioideae) from Tajikistan and neighbouring countries, with descriptions of three new species from the Pamir-Alay and distributional novelties
FIGURE 4. General views of mericarps. A, Elwendia darwasica. B, Elwendia schistosa. C, Elwendia varsobica. D, Elwendia kuhitangi. E, Elwendia salsa. Scale bar: 1 mm.
FIGURE 2 in Taxonomic revision of critical taxa of Elwendia (Umbelliferae-Apioideae) from Tajikistan and neighbouring countries, with descriptions of three new species from the Pamir-Alay and distributional novelties
FIGURE 2. Elwendia schistosa, holotype (MW barcode MW0595752). Courtesy of the National Depository Bank of Live Systems, Moscow State University.
FIGURE 8 in Taxonomic revision of critical taxa of Elwendia (Umbelliferae-Apioideae) from Tajikistan and neighbouring countries, with descriptions of three new species from the Pamir-Alay and distributional novelties
FIGURE 8. Bayesian tree obtained from the analysis of 56 nuclear ribosomal ITS and ETS sequences. Branch lengths are proportional to the number of the expected nucleotide substitutions. Bayesian posterior probabilities are indicated above nodes. New species are shown in bold.
FIGURE 4 in Transferring Peucedanum macilentum (Apioideae, Apiaceae) to Ligusticopsis based on morphological and molecular evidences
FIGURE 4. Phylogenetic tree inferred from Maximum likelihood (ML) and Bayesian inference (BI) analyses of complete plastomes. The posterior probability and bootstrap support values are shown next to the branches. Peucedanum macilentum are shown in bold.
FIGURE 1 in Transferring Peucedanum macilentum (Apioideae, Apiaceae) to Ligusticopsis based on morphological and molecular evidences
FIGURE 1. Morphology of Peucedanum macilentum. A. Isolectotype of P. macilentum (Delavay J.M. 2476, P [P02272027]); B. A duplicate of voucher specimen (J. Zhou & Z.W. Liu 20160673); C. Fruit. Scale bar= 0.5 mm; D. Mericarp transection. Scale bar= 0.1 mm.
FIGURE 3 in Transferring Peucedanum macilentum (Apioideae, Apiaceae) to Ligusticopsis based on morphological and molecular evidences
FIGURE 3. Phylogenetic tree inferred from Maximum likelihood (ML) and Bayesian inference (BI) analyses of ITS sequences. The posterior probability and bootstrap support values are shown next to the branches. The four newly sampled accessions are shown in bold.
FIGURE 2 in Transferring Peucedanum macilentum (Apioideae, Apiaceae) to Ligusticopsis based on morphological and molecular evidences
FIGURE 2. Plastome map of P. macilentum. Genes inside and outside the circle are transcribed clockwise and counterclockwise, respectively. The thick line indicates the extent of different regions, and the dark gray area in the inner circle indicates GC content. Different colors for genes indicate different functional groups.
FIGURE 2. A in A new species of Peucedanum (Apiaceae: Apioideae) from south India
FIGURE 2. A. Habit; B. & C. Inflorescence; D. Single flower; E. Sepal; F. Petal; G. Stamen; H. Gynoecium; I. C.S. of ovary; J. Young fruit; K. Mericarp; L. C.S. of a mericarp. (Drawn by M.K. Jabeena from M.K. Jabeena and Maya C. Nair 2133).
FIGURE 1 in A new species of Peucedanum (Apiaceae: Apioideae) from south India
FIGURE 1. Peucedanum vasudevanii sp. nov. A. & B. Habit; C.- F. Inflorescence; G. Single flower; H. Sepal; I. Corolla lobes; J. Corolla split-opens; K. Stamen; L. Gynoecium; M. L.S. of flower; N. Young fruit; O. Mericarp; P. C.S. of Mericarp.
FIGURE 9 in Molecular phylogenetic and morphological analyses of the traditional tribe Coriandreae (Umbelliferae-Apioideae)
FIGURE 9. Schematic transverse sections of mericarp of Schrenkia alaica Pimenov (Pimenov et al. 503, MW), drawn from Pimenov, Vasilieva et Lavrova 503.1 = exocarp; 2 = outer layer of mesocarp; 3 = middle (sclerenchymatous) layer of mesocarp; 4 = inner layer of mesocarp; 5 = endocarp; 6 = endosperm; 7 = vascular bundle of funicle; scale bar = 1mm.
FIGURE 7 in Molecular phylogenetic and morphological analyses of the traditional tribe Coriandreae (Umbelliferae-Apioideae)
FIGURE 7. Known geographical distribution of Schrenkia vaginata. Dots represent localities where herbarium specimens were collected. Details of accession codes are indicated in the Appendix.
FIGURE 4 in Molecular phylogenetic and morphological analyses of the traditional tribe Coriandreae (Umbelliferae-Apioideae)
FIGURE 4. Schematic transverse sections of mericarps. A. Schtschurowskia meifolia (Pimenov et al. 113, MW); B. Sclerotiaria pentaceros (Sovetkina, TAK). Fruits are not divided into two mericarps at maturity. A-B: redrawn from Politova (Politova, unpublished). 1 = exocarp; 2 = mesocarp: sclerenchymatous layer; 3 = secretory ducts; 4 = endosperm; scale bar= 1mm.
FIGURE 3 in Molecular phylogenetic and morphological analyses of the traditional tribe Coriandreae (Umbelliferae-Apioideae)
FIGURE 3. SEM micrographs of mericarp surfaces, (scale bar = 1000 μm) and schematic transverse sections of mericarps: A. smooth and glabrous in Schrenkia golickeana (Pimenov et al.135, MW); B. smooth with tubercles in Schrenkia papillaris (Pimenov et al.216, MW); C. ribbed with big hardened teeth in Lipskya insignis (Pimenov et al.380, MW).
FIGURE 1 in Molecular phylogenetic and morphological analyses of the traditional tribe Coriandreae (Umbelliferae-Apioideae)
FIGURE 1. Majority rule consensus tree (50%) of the Bayesian analysis of the ITS data. Numbers are posterior probabilities and maximum parsimony bootstrap support values. Scale bar corresponds to 0.1 substitutions per site. Members of the tribe Coriandreae are indicated by shading.
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