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18 results for “Microcostatus”

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zenodo32/100

FIGURES 20–38. Associated diatom flora. Figs 20–21, 33 in A new diatom (Bacillariophyta) species from Indonesian urban areas, description of Microcostatus labrisicus sp. nov.

FIGURES 20–38. Associated diatom flora. Figs 20–21, 33. Eunotia isabelensis Lange-Bertalot, Bąk & Kociolek. Fig. 22. Microcostatus stapputana Lange-Bertalot & Wydrzycka. Figs 22–23, 35–36. Placoneis geitleri (Hustedt) Vishnjakov. Figs 25–27, 34. Humidophila contenta (Grunow) Lowe et al. Figs 29–31, 37, 38. Luticola muticoides (Hustedt) D.G. Mann. Fig. 32. Luticola sp. Scale bar represents 10 µm (Figs 1–13), 5 µm (Figs 16, 17, 19), 3 µm (Fig. 15), 2 µm (Fig. 18).

opennotspecifiedJul 2022View details →
zenodo32/100

FIGURES 1–19 in A new diatom (Bacillariophyta) species from Indonesian urban areas, description of Microcostatus labrisicus sp. nov.

FIGURES 1–19. Microcostatus labrisicus sp. nov. Figs 1–13. Light micrographs of the holotype population, fig. 7 represents the holotype specimen. Figs 14–17. Scanning electron microscopic (SEM) images of external view. Fig. 14. External view of the entire valve. Fig. 15. External detail of the central area and central parts of longitudinal depressions. Figs 16–17. External detail of the distal raphe endings and microcostae. Fig. 18. Internal detail of the central area and proximal raphe endings. Fig. 19. Internal valve view. Scale barrepresents 5 µm (Figs 1–13), 4 µm (Fig. 14), 3 µm (Fig. 19), 1 µm (Figs 15–18).

opennotspecifiedJul 2022View details →
zenodo32/100

FIGURES 2–17. Microcostatus aerophilus. 2–6 in Study of the type material of Navicula egregia Hustedt and descriptions of two new aerial Microcostatus (Bacillariophyta) species from Central Europe

FIGURES 2–17. Microcostatus aerophilus. 2–6. LM photographs from Hustedt German material. 7–12. Holotype population from Husów material. 13–15. SEM photographs in external valve view illustrating variation in size, outline and conopea with perforation. 16. External girdle view from Husów. 17. External valve view with clearly visible asymmetrical constricted sternum from Hustedt German material.

opennotspecifiedOct 2016View details →
zenodo32/100

FIGURES 18–28. Microcostatus edaphicus. 18–23 in Study of the type material of Navicula egregia Hustedt and descriptions of two new aerial Microcostatus (Bacillariophyta) species from Central Europe

FIGURES 18–28. Microcostatus edaphicus. 18–23. LM photographs of type material from Hustedt Collection. 24–25, 27. SEM photographs of external valve view with characteristic clearly visible elongated pores as continuation of striae. 26, 28. Internal valve view with helictoglossae.

opennotspecifiedOct 2016View details →
zenodo32/100

FIGURES 29–56. Microcostatus egregius. 29 in Study of the type material of Navicula egregia Hustedt and descriptions of two new aerial Microcostatus (Bacillariophyta) species from Central Europe

FIGURES 29–56. Microcostatus egregius. 29. Drawing of Navicula egregia Hustedt 1942a. 30–52. LM photographs of Hustedt type material. 53, 55–56. SEM photographs of external valve view illustrating a row of perforation in the place of sternum and conopeum connection. 54. Internal valve view with helictoglossae.

opennotspecifiedOct 2016View details →
zenodo32/100

FIGURES 21–24 in Description of a new diatom species-Microcostatus dexteri sp. nov.-from terrestrial habitats in southern Poland

FIGURES 21–24. Detailed SEM images of Microcostatus dexteri sp nov. (Figs 21, 24: scale bar = 1 µm, Figs 22, 23: scale bar = 2 µm).

opennotspecifiedJun 2021View details →
zenodo32/100

FIGURES 2–20 in Description of a new diatom species-Microcostatus dexteri sp. nov.-from terrestrial habitats in southern Poland

FIGURES 2–20. Light microscopy images of Microcostatus dexteri sp. nov. in size diminution series (scale bar = 10 µm). Figs 15–20 SEM images of Microcostatus dexteri sp. nov. (Fig. 15: scale bar = 3 µm, Figs. 17, 20: scale bar = 4 µm, Figs 16, 18, 19: scale bar = 5 µm)

opennotspecifiedJun 2021View details →
zenodo28/100

FIGURE 1 in Description of a new diatom species-Microcostatus dexteri sp. nov.-from terrestrial habitats in southern Poland

FIGURE 1. Map showing locations of sampling sites.

opennotspecifiedJun 2021View details →
zenodo28/100

Figure 7 from: Rybak M, Kochman-Kędziora N, Peszek Ł (2021) Description of four new terrestrial diatom species from Luticola and Microcostatus genera from South Africa. PhytoKeys 182: 1-26. https://doi.org/10.3897/phytokeys.181.65326

Figure 7 LM images of associated diatom flora A–DPinnularia borealis Ehrenberg sensu latoE–LPinnularia sp. M–TNitzschia brevissima Grunow U–XHantzschia amphioxys (Ehrenberg) Grunow. Scale bar: 10 µm.

opencc-by-4.0Sep 2021View details →
zenodo28/100

Figure 1 from: Rybak M, Kochman-Kędziora N, Peszek Ł (2021) Description of four new terrestrial diatom species from Luticola and Microcostatus genera from South Africa. PhytoKeys 182: 1-26. https://doi.org/10.3897/phytokeys.181.65326

Figure 1 A–AD Holotype population of Luticola microcephala M. Rybak, Peszek & Kochman-Kędziora, sp. nov. A–VLM images of valve views W–ADSEM images W–X external view of valves Y external view of frustule girdle view Z partial valve view and girdle view of middle frustule section AA central area with several shallow depressions AB raphe structure with detailed view on distal raphe endings AC proximal raphe endings AD internal view of valve. Scale bars: 10 µm (A–Y), 5 µm (Z–AA), 4 µm (AB), 3 µm (AC, AD).

opencc-by-4.0Sep 2021View details →
zenodo28/100

Figure 4 from: Rybak M, Kochman-Kędziora N, Peszek Ł (2021) Description of four new terrestrial diatom species from Luticola and Microcostatus genera from South Africa. PhytoKeys 182: 1-26. https://doi.org/10.3897/phytokeys.181.65326

Figure 4 Holotype population of Microcostatus meridionalis Peszek, M.Rybak & Kochman-Kędziora, sp. nov. A–OLM images of valve views P–AASEM images P–T images of entire valve external views U–Z view on valve central area and valve apices AA internal view of valve. Scale bars: 10 µm (A–O), 5 µm (P, Q), 4 µm (R), 3 µm (S–U, Y–AA), 2 µm (V, W), 1 µm (X).

opencc-by-4.0Sep 2021View details →
zenodo28/100

Figure 6 from: Rybak M, Kochman-Kędziora N, Peszek Ł (2021) Description of four new terrestrial diatom species from Luticola and Microcostatus genera from South Africa. PhytoKeys 182: 1-26. https://doi.org/10.3897/phytokeys.181.65326

Figure 6 LM images of associated diatom flora A–KLuticola intermedia (Hustedt) Levkov, Metzeltin & Pavlov L–ULuticola permuticoides Metzeltin & Lange-Bertalot V, WLuticola distinguenda (Hustedt) Levkov, Metzeltin & Pavlov X, YNupela lesothensis (Schoeman) Lange-Bertalot Z–ABStauroneis cf. pygmaea f. undulata Hustedt AC–AEMuelleria sp. Scale bar: 10 µm.

opencc-by-4.0Sep 2021View details →
zenodo28/100

Figure 5 from: Rybak M, Kochman-Kędziora N, Peszek Ł (2021) Description of four new terrestrial diatom species from Luticola and Microcostatus genera from South Africa. PhytoKeys 182: 1-26. https://doi.org/10.3897/phytokeys.181.65326

Figure 5 LM images of associated diatom flora A–FOrthoseira circularis (Ehrenberg) R.M. Crawford G–REunotia cf. pseudominor Pavlov & Levkov SHumidophila sp. 1 T, UHumidophila sp. 2 V–A, FHumidophila contenta (Grunow) Lowe et al. Scale bar: 10 µm.

opencc-by-4.0Sep 2021View details →
zenodo28/100

Figure 3 from: Rybak M, Kochman-Kędziora N, Peszek Ł (2021) Description of four new terrestrial diatom species from Luticola and Microcostatus genera from South Africa. PhytoKeys 182: 1-26. https://doi.org/10.3897/phytokeys.181.65326

Figure 3 Holotype population of Luticola terrestris Kochman-Kędziora, M. Rybak & Peszek, sp. nov. A–WLM images of valve views X–AFSEM images X–AA external view of an entire valve with several ghost areolae in the central area AB proximal raphe endings AC distal raphe endings AD internal view of an entire valve AE central area, internal view AF valve apex, internal view. Scale bars: 10 µm (A–W), 5 µm (X–AA, AD, AE), 4 µm (AF), 2 µm (AB, AC).

opencc-by-4.0Sep 2021View details →
zenodo28/100

Figure 2 from: Rybak M, Kochman-Kędziora N, Peszek Ł (2021) Description of four new terrestrial diatom species from Luticola and Microcostatus genera from South Africa. PhytoKeys 182: 1-26. https://doi.org/10.3897/phytokeys.181.65326

Figure 2 Holotype population of Luticola asymmetrica M. Rybak, Kochman-Kędziora & Peszek, sp. nov. A–RLM images of valve views S–ZSEM images S–V external view of an entire valve W internal valve face view of an entire valve X–Y different shape of proximal raphe endings Z distal raphe endings. Scale bars: 10 µm (A–T), 5 µm (U–Z).

opencc-by-4.0Sep 2021View details →
zenodo28/100

Figure 9 from: Rybak M, Kochman-Kędziora N, Peszek Ł (2021) Description of four new terrestrial diatom species from Luticola and Microcostatus genera from South Africa. PhytoKeys 182: 1-26. https://doi.org/10.3897/phytokeys.181.65326

Figure 9 SEM images of associated diatom flora A, BLuticola intermedia (Hustedt) Levkov, Metzeltin & Pavlov C, DLuticola permuticoides Metzeltin & Lange-Bertalot E, FLuticola distinguenda (Hustedt) Levkov, Metzeltin & Pavlov. Scale bars: 15 µm (A–D), 10 µm (E, F).

opencc-by-4.0Sep 2021View details →
zenodo28/100

Figure 8 from: Rybak M, Kochman-Kędziora N, Peszek Ł (2021) Description of four new terrestrial diatom species from Luticola and Microcostatus genera from South Africa. PhytoKeys 182: 1-26. https://doi.org/10.3897/phytokeys.181.65326

Figure 8 SEM images of associated diatom flora A, BOrthoseira circularis (Ehrenberg) R.M. Crawford C, DEunotia cf. pseudominor Pavlov & Levkov EHumidophila contenta (Grunow) Lowe et al. FHantzschia amphioxys (Ehrenberg) Grunow G, HNitzschia brevissima Grunow IPinnularia borealis Ehrenberg sensu latoJPinnularia sp. Scale bars: 10 µm (A, B, D, F, H, I, J), 5 µm (C), 4 µm (E), 3 µm (G).

opencc-by-4.0Sep 2021View details →
zenodo16/100

FIGURE 1. Study area. a in Study of the type material of Navicula egregia Hustedt and descriptions of two new aerial Microcostatus (Bacillariophyta) species from Central Europe

FIGURE 1. Study area. a. Location of Husów in Poland. b. Location of sampling sites.

opennotspecifiedOct 2016View details →

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