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2,620 results for “Molecular Phylogeny”
Figure 6 in Molecular phylogeny and taxonomy of three anaerobic plagiopyleans (Alveolata: Ciliophora), retrieved from two geographically distant localities in Asia and North America
Figure 6. Drawings of Plagiopyla frontata from life (A–C, E, F) and after protargol staining (D, G–I). A, ventral view of a representative individual, arrowheads show caudal cilia. B, tangential section of the cortex, arrowhead marks straight extrusome, arrow indicates curved extrusome. C, extruded extrusomes with one end slightly inflated (red arrowheads). D, details of oral region, showing oral opening and buccal cavity (arrow). E, F, different cell shapes. G, dorsal view of a compressed cell, showing position of striated band, cytoproct (black arrow), dense ciliary rows (red arrow), and contractile vacuole pores (red arrowheads). H, ventral view to show somatic and oral kineties, arrowhead indicates gap between upper oral lip kineties and somatic kineties. I, dorsal view to show somatic kineties, arrow indicates striated band, arrowhead shows dense ciliary rows, double-arrowhead shows several irregularly and densely packed kinetosomes located near loop of striated band. Abbreviations: CV, contractile vacuole; Ma, macronucleus; SB, striated band. Scale bars: 35 μm (A, E, G, H); 10 μm (C).
Figure 7 in Molecular phylogeny and taxonomy of three anaerobic plagiopyleans (Alveolata: Ciliophora), retrieved from two geographically distant localities in Asia and North America
Figure 7. Photomicrographs of Plagiopyla flontata in vivo (A–H) and aħer protargol staining (I–M). A, ventral view of a slightly compressed cell, arrow marks buccal cavity. B, representative individual, arrow shows oral opening, arrowhead indicates contractile vacuole. C, extruded extrusomes with one end slightly inflated (arrowheads). D, contractile vacuole pores (red arrowheads). E, ventral view of a compressed cell, arrows show straight extrusomes, arrowheads show curved extrusomes. F, details of dorsal side, arrowhead shows cytoproct. G, right side of a compressed cell showing striated band (arrowhead). H, details of extrusomes. I, macronucleus and micronucleus (white arrowhead). J, K, oral region, showing buccal cavity under different focal planes. L, M, ventral (L) and dorsal (M) views of the same individual, showing somatic and oral kineties, red arrow indicates gap between upper oral lip kineties and somatic kineties, black arrow shows striated band, black arrowhead shows dense ciliary rows, red arrowhead indicates several polykineties located near loop of striated band. Abbreviation: Ma, macronucleus. Scale bars: 35 μm.
Figure 3 in Molecular phylogeny and taxonomy of three anaerobic plagiopyleans (Alveolata: Ciliophora), retrieved from two geographically distant localities in Asia and North America
Figure 3. Photomicrographs of Trimyema foissneri from life (A–C, J–M) and aħer protargol staining (D–I, N–º). A, B, right lateral views of different individuals, showing different body shape. C, right lateral views of a slightly compressed individual, arrowhead marks caudal cilia. D, macronucleus and micronucleus (arrowhead). E, cytopharynx fibres (arrowhead). F, lateral view of anterior part of cell, showing two longer oral kineties and a shorter one (arrowhead). G–I, right lateral (G, I) and dorsal (H) view, showing epaulet (arrowheads). J, ventral view, arrowhead indicates oval buccal cavity. K, anterior region, showing buccal cavity (arrowhead). L, lateral view of cell, showing three oblique somatic ciliary girdles. M, anterior part of cell, arrowheads show dents on surface. N, argentophilic lines (arrowhead) connected longitudinal somatic ciliary rows. O, details of oral region, arrowheads indicate kinetids at anterior part of oral kinety 1. P, º, ventral view of the holotype (P) and a paratype (º), showing somatic kineties, oral kineties and different ventro-lateral fragment (red circle), black arrowhead shows first oral kineties, arrow shows second oral kineties, red arrowheads show mucocysts. Abbreviations: G1, first ciliary girdle; G2, second ciliary girdle; G3, third ciliary girdle; Ma, macronucleus; OK1, first oral kineties; OK2, second oral kineties; VLF, ventrolateral fragment. Scale bars: 15 μm (A–C); 10 μm (G, P, º).
Data from: Molecular phylogeny of living xenarthrans and the impact of character and taxon sampling on the placental tree rooting
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Data from: Reconciling molecular phylogeny, morphological divergence and classification of Madagascan narrow-mouthed frogs (Amphibia: Microhylidae)
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Data from: A new infrageneric classification of Meconopsis (Papaveraceae) based on a well-supported molecular phylogeny
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Data from: Molecular phylogeny of Panicum s. str. (Poaceae, Panicoideae, Paniceae) and insights into its biogeography and evolution
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Data from: Molecular phylogeny of Terniopsis (Podostemaceae) and contrasting molecular and morphological variations in two species
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Data from: A molecular phylogeny of Eumorpha (Lepidoptera: Sphingidae) and the evolution of anti-predator larval eyespots
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Data from: A multilocus molecular phylogeny for the avian genus Liocichla (Passeriformes: Leiothrichidae: Liocichla)
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Data from: Molecular phylogeny of the diverse parasitoid wasp genus Ophion Fabricius (Hymenoptera: Ichneumonidae: Ophioninae)
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Data from: Estimating diversity through time using molecular phylogenies: old and species-poor frog families are the remnants of a diverse past.
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Data from: Molecular phylogeny and symbiotic selectivity of the green algal genus Dictyochloropsis sensu lato (Trebouxiophyceae): a polyphyletic and widespread group forming photobiont-mediated guilds in the lichen family Lobariaceae
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Data from: Molecular phylogeny of the marmots (Rodentia: Sciuridae): tests of evolutionary and biogeographic hypotheses
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Data from: Molecular phylogeny and chromosomal evolution of Alcelaphini (Antilopinae)
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A molecular phylogeny of Noctuini (Lepidoptera: Noctuidae: Noctuinae)
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Data from: Molecular phylogeny and morphological analysis of Tetraglochin (Rosaceae: Rosoideae: Sanguisorbeae) and recognition of the new species T. andina
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The 'Evil Tribe' spreads across the land: A dated molecular phylogeny provides insight into dispersal, expansion, and biogeographic relationships within one of the largest tribes of the sunflower family (Vernonieae: Compositae)
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Data from: Molecular phylogeny of rhynchonellide articulate brachiopods (Brachiopoda, Rhynchonellida)
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Molecular phylogeny and evolution of inflorescence types in Eperua
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