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59 results for “Cymbidium”
FIGURE 2. Cymbidium weishanense. A. Flowering plant. B. Flower, front view. C. Flower, side view. D in Cymbidium weishanense (Orchidaceae; Epidendroideae), a new species from China: evidence from morphological and molecular data
FIGURE 2. Cymbidium weishanense. A. Flowering plant. B. Flower, front view. C. Flower, side view. D. Dorsal sepal, petal, lateral sepal and lip. E. Column. Drawn by Meng-Yao Zeng.
FIGURE 2. Cymbidium xichouense. A. Habit. B in Cymbidium xichouense (Orchidaceae; Epidendroideae), a new species from China: evidence from morphological and molecular data
FIGURE 2. Cymbidium xichouense. A. Habit. B. Base of inflorescence. C. Floral morphology. D. Flower, front view. E. Flower, side view. F. Lip and column, side view. G. Flower of C. qiubeiense.
FIGURE 1 in Cymbidium xichouense (Orchidaceae; Epidendroideae), a new species from China: evidence from morphological and molecular data
FIGURE 1. Phylogenetic tree for selected species of Cymbidium from combined analysis of nrITS and plastid matK. Analysis of selected species of Cymbidium based on separate plastid matK (a) and nrITS (b) in the top left corner. Numbers near the nodes are bootstrap percentages and Bayesian posterior probabilities (PP, BP, BP). "-" indicates that the node is incongruent between the topology of the ML MP Bayesian tree and the MP/ML trees. PP 1 = 1.00.
FIGURE 3. Cymbidium xichouense. A. Flowering plant. B. Flower, front view. C. Perianth. D. Column, side view. E in Cymbidium xichouense (Orchidaceae; Epidendroideae), a new species from China: evidence from morphological and molecular data
FIGURE 3. Cymbidium xichouense. A. Flowering plant. B. Flower, front view. C. Perianth. D. Column, side view. E. Pollinarium, front view and back view. Drawn by Wenqi Hu.
FIGURE 5. Cymbidium sangii Aver. & V.C in New orchids in the flora of Vietnam VI (Orchidaceae, tribes Arethuseae, Cymbidieae, Diurideae, Epidendreae, Vandeae, and Vanilleae)
FIGURE 5. Cymbidium sangii Aver. & V.C.Nguyen, sp. nov. A. Flowering plant in cultivation. B. Intact inflorescence. C, D. Pseudobulbs, roots and basal part of leaves. E. Flattened plant parts. F. Flattened floral parts. G. Flattened lip, adaxial and abaxial side. H. Flattened lip hypochile. I. Column and anther cap, view from different sides. J. Anther cap, view from different sides. K. Pollinarium, frontal view and view from above. All photos were made from the plant used for the preparation of the specimen, V.C. Camh, AL 1300, by L. Averyanov, with photo correction and design by L. Averyanov and T. Maisak.
FIGURE 4. Cymbidium macrorhizon Lindl. A in New orchids in the flora of Vietnam VI (Orchidaceae, tribes Arethuseae, Cymbidieae, Diurideae, Epidendreae, Vandeae, and Vanilleae)
FIGURE 4. Cymbidium macrorhizon Lindl. A. Flowering plants in nature. B. Intact inflorescence. C, D. Intact flowers, frontal and half-side views. E. Flattened flowering plants. F, G. Flattened rhizomes. H. Flattened floral parts. I. Intact column apex, anther cap, and lip epichile, frontal view. J. Intact lip, adaxial surface. K. Sagittal lip section. L–N. Column and anther cap, view from different sides. All photos were made from the plant used for the preparation of the specimen Averyanov et al., AL 1300, by L. Averyanov, with photo correction and design by L. Averyanov and T. Maisak.
FIGURE 2 in Phylogenetics of two rhizomatous epiphytic species of Cymbidium (Orchidaceae; Cymbidieae): evidence from analyses of nuclear and plastid DNA
FIGURE 2. Maximum likelihood tree for Cymbidium based on combined nuclear and plastid DNA regions. The previously recognised sections from Liu et al. (2006) are highlighted by the colour of branches. Numbers near the nodes are bootstrap percentages and Bayesian posterior probabilities (BS ML, BS MP, PP). A dash (–) indicates that the node is inconsistent between the topology of the MP/ML trees and the Bayesian tree. "*" indicates that the node has 100 bootstrap percentage or 1.00 posterior probability.
FIGURE 1 in Phylogenetics of two rhizomatous epiphytic species of Cymbidium (Orchidaceae; Cymbidieae): evidence from analyses of nuclear and plastid DNA
FIGURE 1. Phylogenetic comparison between the ML/MP/BI trees of Cymbidium based on nuclear ribosomal ITS (left) and plastid DNA (right). Numbers near the nodes are bootstrap percentages and Bayesian posterior probabilities (BS, BS, PP). A dash (–) indicates that ML MP the node is inconsistent between the topology of the MP/ML trees and the Bayesian tree. "*" indicates that the node has 100 bootstrap percentage or 1.00 posterior probability.
FIGURE 2 in Cymbidium × fugongense (Orchidaceae; Epidendroideae), a new natural hybrid from China: evidence from morphology and molecular analyses
FIGURE 2. Phylogenetic relationships of C. × fugongense based on combined plastid sequence (matK and rbcL). Galeandra devoniana and Eulophia graminea were used as outgroups. The numbers near the nodes are Bayesian posterior probabilities (PP), maximum likelihood bootstrap percentages (BP), and maximum parsimony bootstrap percentages (BP), respectively. "-" indicates that the node ML MP is incongruent between the topology of the Bayesian and MP/ML trees.
FIGURE 4 in Cymbidium × fugongense (Orchidaceae; Epidendroideae), a new natural hybrid from China: evidence from morphology and molecular analyses
FIGURE 4. Cymbidium × fugongense S.Ke, S.R.Lan & Z.J.Liu. A. Habit. B. Flowers, front view. C. Structure of the flower. D-E. Pollinarium. F. C. maguanense flower. G. C. wenshanense flower. H. C. eburneum flowers.
FIGURE 3 in Cymbidium × fugongense (Orchidaceae; Epidendroideae), a new natural hybrid from China: evidence from morphology and molecular analyses
FIGURE 3. Cymbidium × fugongense. A. Habit. B. Flower, front view. C. Lip. D–E. Column. F. Dorsal sepal. G. Petal. H. Lateral sepal. I. Pollinarium.
FIGURE 1 in Cymbidium × fugongense (Orchidaceae; Epidendroideae), a new natural hybrid from China: evidence from morphology and molecular analyses
FIGURE 1. Phylogenetic relationships of C. × fugongense based on the nuclear DNA (ITS). Galeandra devoniana and Eulophia graminea were used as outgroups. The numbers near the nodes are Bayesian posterior probabilities (PP), maximum likelihood bootstrap percentages (BP ML), and maximum parsimony bootstrap percentages (BP MP), respectively. "-" indicates that the node is incongruent between the topology of the Bayesian and MP/ML trees.
FIGURE 3 in An unusual new epiphytic species of Cymbidium (Orchidaceae: Epidedroideae) from Hainan, China
FIGURE 3. Seed micromorphology (SEM). A. Cymbidium dayanum. B. Cymbidium lii.
FIGURE 3 in Cymbidium weishanense (Orchidaceae; Epidendroideae), a new species from China: evidence from morphological and molecular data
FIGURE 3. Cymbidium weishanense (A), C. concinnum (B) and C. insigne (C).
Data from: Complete chloroplast genome of the genus Cymbidium: lights into the species identification, phylogenetic implications and population genetic analyses
Open the record for dataset details and reuse information.
FIGURE 2 in Cymbidium ×shangrilaense (Orchidaceae; Epidendroideae), a new natural hybrid from China: evidence from morphology and molecular analyses
FIGURE 2. Phylogenetic relationships of C. ×shangrilaense based on the nuclear DNA (ITS). Galeandra devoniana and Eulophia graminea were used as outgroups. The numbers near the nodes are Bayesian posterior probabilities (PP), maximum likelihood bootstrap percentages (BP ML), and maximum parsimony bootstrap percentages (BP MP) respectively. "*" indicates that the node has BP 100 or PP 1.00. "-" indicates that the node is incongruent between the topology of the Bayesian and MP/ML trees.
FIGURE 2. Cymbidium motuoense. A. Flowering plant. B. Inflorescence. C in Cymbidium motuoense (Orchidaceae; Epidendroideae), a new species from China: evidence from morphological and molecular data
FIGURE 2. Cymbidium motuoense. A. Flowering plant. B. Inflorescence. C. Lip and column, front view. D. Flower, front view. E. Pseudobulb and base of leaves. F. Sepals and petals, front view. G. Flower of C. tracyanum. H. Flower of C. iridioides.
Impaired chloroplast biogenesis causes color variation between two varieties/cultivars of Chinese orchid (Cymbidium longibracteatum)
GEO Series GSE100180. Cymbidium longibracteatum. 2 samples. Type: Expression profiling by high throughput sequencing.
Small RNA profile from Cymbidium mosaic virus (CymMV) and Odontoglossum ringspot virus (ORSV) infected Phalaenopsis amabilis
GEO Series GSE94083. Phalaenopsis amabilis. 10 samples. Type: Non-coding RNA profiling by high throughput sequencing.
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