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393 results for “New Hybrids”
FIGURE 1 in Calanthe × yarlungzangboensis, a new natural hybrid in genus Calanthe (Orchidaceae) from China
FIGURE 1. Photos of 14 species of Calanthe. A. C. griffithii; B. C. × yarlungzangboensis; C. C. tricarinata; D. C. brevicornu; E. C. herbacea; F. C. nipponica; G. C. alismatifolia; H. C. metoensis; I. C. puberula; J. C. masuca; K. C. plantaginea; L. C. densiflora; M. C. davidii; N. C. mannii.
FIGURE 5 in Calanthe × yarlungzangboensis, a new natural hybrid in genus Calanthe (Orchidaceae) from China
FIGURE 5. Calanthe ×yarlungzangboensis. A. individual; B. front view of flower; C. ovary and column; D. pollinia; E. sepals and petals. (Drawn by Li-Jie Zhu)
FIGURE 4 in Calanthe × yarlungzangboensis, a new natural hybrid in genus Calanthe (Orchidaceae) from China
FIGURE 4. Calanthe ×yarlungzangboensis. A. habitat; B. habit; C. individual; D. front view of flower; E. vertical view of flower; F. peduncle and floral bract; G. ovary and lip; H. perianth and bract; I. lip and column; J. pollinia.
FIGURE 1 in Citrus × pubinervia, a new natural hybrid species from central China
FIGURE 1. Main morphological characters of C. × pubinervia and its related species: C. trifoliata A. Fruits, A. Leaves; C. × polytrifolia 1 2 B. Fruits, B. Leaves; C. × pubinervia. C. Fruits, C. Leaves, C. Anatomy of flowers, C. Flowering branch, C. Cross section of young 1 2 1 2 3 4 5 fruit.
FIGURE 2 in Citrus × pubinervia, a new natural hybrid species from central China
FIGURE 2. Citrus × pubinervia D. G. Zhang & Z. H. Xiang, Y. Wu. A. Flowering branch, B. Stamens and pistil, C. A petal, D. Fruit and its cross section (drawing by Jianing Yang).
FIGURE 2 in First report of natural hybridisation between members of Teucrium subsect. Simplicipilosa and subsect. Polium: Teucrium × murcigerum (Lamiaceae), a new hybrid from southeastern Iberian Peninsula
FIGURE 2. Flower and fruit morphology of parental and hybrid Teucrium taxa. A. Teucrium lanigerum; B. Teucrium × murcigerum; C. Teucrium murcicum; 1. Flower in lateral view; 2. Flower in dorsal view; 3. Flower in ventral view; 4. Corolla in lateral view; 5. Dissected calyx (outer side); 6. Fruits.
FIGURE 1 in First report of natural hybridisation between members of Teucrium subsect. Simplicipilosa and subsect. Polium: Teucrium × murcigerum (Lamiaceae), a new hybrid from southeastern Iberian Peninsula
FIGURE 1. Habitus and inflorescence details of parental and hybrid Teucrium taxa. A. Teucrium lanigerum; B. Teucrium × murcigerum; C. Teucrium murcicum; D. Detail of Teucrium × murcigerum. All from the type locality near Calarreona, Murcia Province, Spain.
FIGURE 6. Hybrid Catasetum. A–B. C in Catasetum × grasineideae (Orchidaceae: Catasetinae), a new nothospecies from Brazilian Amazon and taxonomic notes for the genus
FIGURE 6. Hybrid Catasetum. A–B. C. × aripuanense. C. C. × dalastranum. D. C. × fergusonii. E–F. C. × mojuense. G–H. C. × yarigii. Photos A–B, D and G–H by J. Fernández G., C by F. Godoy and E–F by E. Pontes.
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 2 in Teucrium × gutierrezii a new hybrid from Southeast Iberian Peninsula, a hotspots of natural hybridization of subfamily Ajugoideae (Lamiaceae)
FIGURE 2. Leaves (out side) (1) and dissected calyx (inner side) (2) morphology of parental and hybrid Teucrium taxa. A. Teucrium lusitanicum subsp. lusitanicum; B. Teucrium × gutierrezii; C. T. eriocephalum subsp. eriocephalum.
FIGURE 1 in Teucrium × gutierrezii a new hybrid from Southeast Iberian Peninsula, a hotspots of natural hybridization of subfamily Ajugoideae (Lamiaceae)
FIGURE 1. Habitus (A) and floral stem details (B) of parental and hybrid Teucrium taxa. 1. Teucrium lusitanicum subsp. lusitanicum; 2. Teucrium × gutierrezii; 3. T. eriocephalum subsp. eriocephalum. All from the type locality Antenas de Aguadulce, Almería Province, Spain.
Data from: Genetic analysis of river, swamp and hybrid buffaloes of north-east India throw new light on phylogeography of water buffalo (Bubalus bubalis)
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Data from: Strongly asymmetric hybridization barriers shape the origin of a new polyploid species and its hybrid ancestor
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Data from: New evidence for hybrid zones of forest and savanna elephants in Central and West Africa
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Data from: Evidence for past and present hybridization in three Antarctic icefish species provides new perspectives on an evolutionary radiation
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Data from: A new multiplex SNP genotyping assay for detecting hybridization and introgression between the M and S molecular forms of Anopheles gambiae
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Two new hybrid populations expand the swordtail hybridization model system
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