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15 results for “Trachelomonas”

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Fig. 6 in Contemporary integrative taxonomy for sexually deprived protists: A case study of Trachelomonas (Euglenaceae) from western Ukraine

Fig. 6. Loricae showing different shape and ornamentation (SEM; all at the same scale). A, Lorica of Trachelomonas sp.GeoM*524; B, Lorica of Trachelomonas sp. GeoM 526; C, Lorica of Trachelomonas hispida var. irregularis GeoM 529; D, Protologue of Trachelomonas hispida var. irregularis.

opencc-by-4.0Feb 2020View details →
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Fig. 4 in Contemporary integrative taxonomy for sexually deprived protists: A case study of Trachelomonas (Euglenaceae) from western Ukraine

Fig. 4. Different ontogenetic stages and empty loricae of selected Trachelomonas strains (LM; all at the same scale). M–P, Young immature cell, mature naked cell, mature loricate cell and empty lorica of Trachelomonas teres var. minor GeoM 527; Q–T, Young immature cell, mature naked cell, mature loricate cell and empty lorica of Trachelomonas hispida var. irregularis GeoM 529; U–X, Young immature cell, mature naked cell, mature loricate cell and empty lorica of Trachelomonas teres var. granulata GeoM 540.

opencc-by-4.0Feb 2020View details →
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Fig. 2 in Contemporary integrative taxonomy for sexually deprived protists: A case study of Trachelomonas (Euglenaceae) from western Ukraine

Fig. 2. Box plot display of cell width of investigated mature naked cells and mature loricate cells of Trachelomonas strains. Statistically significant clusters are indicated with letters a or b and green or red colour, corresponding to the phylogenetic tree (see Fig. 7).

opencc-by-4.0Feb 2020View details →
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Fig. 1 in Contemporary integrative taxonomy for sexually deprived protists: A case study of Trachelomonas (Euglenaceae) from western Ukraine

Fig. 1. Box plot display of cell length of investigated mature naked cells and mature loricate cells of Trachelomonas strains. Statistically significant clusters are indicated with letters a or b and green or red colour, corresponding to the phylogenetic tree (see Fig. 7).

opencc-by-4.0Feb 2020View details →
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Fig. 5 in Contemporary integrative taxonomy for sexually deprived protists: A case study of Trachelomonas (Euglenaceae) from western Ukraine

Fig. 5. LM, epitype, SEM and protologue images of mature Trachelomonas cells from selected strains. A–F, Mature loricate cells (A & B), epitype images (C & D), SEM image (E) and protologue (F) of Trachelomonas hispida var. volicensis GeoM 520; G–L, Mature loricate cells (G & H), epitype images (I & J), SEM image (K) and protologue (L) of Trachelomonas teres var. minor GeoM 527; M–R, Mature loricate cells (M & N), epitype images (O & P), SEM image (Q) and protologue (R) of Trachelomonas teres var. granulata GeoM 540.

opencc-by-4.0Feb 2020View details →
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Fig. 3 in Contemporary integrative taxonomy for sexually deprived protists: A case study of Trachelomonas (Euglenaceae) from western Ukraine

Fig. 3. Different ontogenetic stages and empty loricae of selected Trachelomonas strains (LM; all at the same scale). A–D, Young immature cell, mature naked cell, mature loricate cell and empty lorica of Trachelomonas hispida var. volicensis GeoM 520; E–H, Young immature cell, mature naked cell, mature loricate cell and empty lorica of Trachelomonas sp. GeoM*524; I–L, Young immature cell, mature naked cell, mature loricate cell and empty lorica of Trachelomonas sp. GeoM 526.

opencc-by-4.0Feb 2020View details →
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FIGURE 2 in Trachelomonas volzii vs T. dubia (Euglenophyceae)-one or two separate species? Study on similarities and differences of the species

FIGURE 2. Trachelomonas dubia and its variety according to different authors. A. Trachelomonas dubia by Svirenko 1914. B. T. dubia by Deflandre 1926. C. T. dubia by Popova 1951. D–I. T. dubia by Conrad & Van Meel 1952. J. T. dubia by Safonova 1965. K. T. dubia by Le Cohu 1974. L–M. T. dubia by Asauł 1975. N. T. dubia var. acuminata by Conrad &Van Meel 1952. O. T. dubia var. lata by Popova 1951. P. T. dubia var. lata by Asauł 1975. Q. T. dubia var. minor by Deflandre 1926. R. T. dubia var. pekinensis by Svirenko 1926. S. T. dubia var. ornata by Szabados 1939. T. T. dubia var. colliundulata by Caljon 1987. U. T. dubia var. crassiannulata by Shi & Jao 1998.

opennotspecifiedJun 2018View details →
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FIGURE 1 in Trachelomonas volzii vs T. dubia (Euglenophyceae)-one or two separate species? Study on similarities and differences of the species

FIGURE 1. Trachelomonas volzii and its variety according to different authors. A. Trachelomonas volzii by Lemmermann 1904. B. T. volzii by Walton 1915. C. T. volzii by Conrad &Van Meel 1952. D–E. T. volzii by Asauł 1975. F–G. T. volzii by Islam & Muniruzzaman 1981. H. T. volzii by Vetrova 1984. I. T. volzii var. australis by Conrad & van Meel 1952. J. T. volzii var. cylindracea by Playfair 1915. K. T. volzii var. cylindracea by Prowse 1958. L. T. volzii var. cylindracea by Conrad &Van Meel 1952. M. T. volzii var. cylindrica by Yamagishi 1992. N. T. volzii var. intermedia by Playfair 1915. O. T. volzii var. intermedia by Conrad &Van Meel 1952. P. T. volzii var. pellucida by Conrad & van Meel 1952. Q. T. volzii var. pellucida by Compére 1975. R–S. T. volzii var. pellucida by Islam & Muniruzzaman 1981. T. T. volzii var. sulcata by Playfair 1915. U. T. volzii var. inflata by Conrad &Van Meel 1952. V. T. volzii var. acidophila by Bourrelly 1961; W–X. T. volzii var. acidophila by Islam & Muniruzzaman 1981.

opennotspecifiedJun 2018View details →
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FIGURE 3 in Trachelomonas volzii vs T. dubia (Euglenophyceae)-one or two separate species? Study on similarities and differences of the species

FIGURE 3. Trachelomonas volzii - LM (Figs 3A–3F) and SEM (Figs 3G–3O) visualization of specimens found in natural environments. A–L. General view of the cell and the lorica; M–O. Details of the apical pore and the collar area. J–K courtesy of our colleague Josef Juráň (CAS, Třeboň, Czech Republic); A, B, G–I, M–O photo J. Piątek; Figs C–F, L photo M. Poniewozik; Figs J, K photo J. Juráň. Scale bars for LM = 10 μm.

opennotspecifiedJun 2018View details →
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FIGURE 3. Potential euglenophyte flagship species. A. Colacium epiphyticum. B. Trachelomonas hemisphaerica. C. Colacium minimum. D. Trachelomonas argentinensis. E. Trachelomonas magdaleniana. F. Phacus plicatus. G in African Trachelomonas saccasii found in a European mesotrophic pond (Czech Republic). Implication for euglenoid biogeography and recommendations for euglenoid flagship species

FIGURE 3. Potential euglenophyte flagship species. A. Colacium epiphyticum. B. Trachelomonas hemisphaerica. C. Colacium minimum. D. Trachelomonas argentinensis. E. Trachelomonas magdaleniana. F. Phacus plicatus. G. Lepocinclis crassicollis. Size ratio is not retained.

opennotspecifiedJan 2018View details →
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FIGURE 2 in African Trachelomonas saccasii found in a European mesotrophic pond (Czech Republic). Implication for euglenoid biogeography and recommendations for euglenoid flagship species

FIGURE 2. Visualization of Trachelomonas saccasii lorica using scanning electron microscopy. A. Lorica contain irregularly distributed pores. B. Detailed view of the lorica surface structure with several granules (indicated by arrows). C. Detailed view of the apical pore with a thickened edge (indicated by arrow).

opennotspecifiedJan 2018View details →
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FIGURE 1 in African Trachelomonas saccasii found in a European mesotrophic pond (Czech Republic). Implication for euglenoid biogeography and recommendations for euglenoid flagship species

FIGURE 1. Trachelomonas saccasii observed by light optical microscopy. A, B. General view of the lorica with thickening around the apical pore (marked with arrows) and several chloroplasts (some marked "Ch"). C. Lorica surface structure with irregularly distributed pores.

opennotspecifiedJan 2018View details →
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Figure 2 from: Juráň J (2016) Trachelomonas bituricensis var. lotharingia M.L. Poucques 1952, a morphologically interesting, rare euglenoid new to the algal flora of the Czech Republic. PhytoKeys 61: 81-91. https://doi.org/10.3897/phytokeys.61.7408

Figure 2 - Photograph of a free water surface with knotweed (Potamogeton sp., at the front) and Carex spp., together with Sphagnum spp. communities (left).

opencc-by-4.0Feb 2016View details →
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Figure 3 from: Juráň J (2016) Trachelomonas bituricensis var. lotharingia M.L. Poucques 1952, a morphologically interesting, rare euglenoid new to the algal flora of the Czech Republic. PhytoKeys 61: 81-91. https://doi.org/10.3897/phytokeys.61.7408

Figure 3 - Visualisation of the morphology of Trachelomonas bituricensis var. lotharingia by optical and electron scanning microscopy. A Overall appearance of lorica under an optical microscope, with a short collar with undulated edge (marked with arrow) B Detailed image of the lorica surface with three types of spines: long, curved spines at the antapical part of the lorica; shorter spines on the lorica's body; and several straight spines near the apical pore (marked with arrows). Note the numerous disc-like chloroplasts in the cell C, D Loricas viewed by scanning electron microscopy, with clearly visible punctuation at the surface, and short collar with undulated edge (marked with arrow). Scale bars = 10 μm.

opencc-by-4.0Feb 2016View details →
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Figure 1 from: Juráň J (2016) Trachelomonas bituricensis var. lotharingia M.L. Poucques 1952, a morphologically interesting, rare euglenoid new to the algal flora of the Czech Republic. PhytoKeys 61: 81-91. https://doi.org/10.3897/phytokeys.61.7408

Figure 1 - Location of the studied locality.

opencc-by-4.0Feb 2016View details →

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