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7 results for “Lightfootiella”

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FIGURE 7 in Taxonomic revision of Ulva montana (Lightfoot 1777) and description of a new genus of Lightfootiella (Cyanophyceae, Chroococcaceae)

FIGURE 7. Secondary structures of 16-23S ITS regions of Lightfootiella montana and other chroococcalean cyanobacteria. A–G. D1- D1´helices. H–N. B-box helices. A, H. Lightfootiella montana. B, I. Gloeocapsa sp. C, J. Gloeocapsa sp. AICB1013. D, K. Uncultured Chroococcidiopsis sp. clone AR1_3. E, L. Uncultured Chroococcidiopsis sp. clone NA1 4. F, M. Chroococcidiopsis thermalis PCC 7203. G, N. Gloeocapsopsis crepidinum BDU 20121.

opennotspecifiedJul 2018View details →
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FIGURE 5 in Taxonomic revision of Ulva montana (Lightfoot 1777) and description of a new genus of Lightfootiella (Cyanophyceae, Chroococcaceae)

FIGURE 5. Morphological variability of Gloeocapsopsis magma. A. Fresh material from Norway, collected by Chris Carter 2017. B. Rupture of mature colony consisted of subcolonies. C. Rupture of individual colony. D, E. Liberation of arthrospores. F. Rupture of small colony and liberation of individual cells without mucilaginous envelopes. G, H. Liberated arthrospores. I–L. Developmental stages of colonies. M. Desiccated type material by Brébisson 1841. Scale bars: 10 μm.

opennotspecifiedJul 2018View details →
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FIGURE 2 in Taxonomic revision of Ulva montana (Lightfoot 1777) and description of a new genus of Lightfootiella (Cyanophyceae, Chroococcaceae)

FIGURE 2. Lightfootiella montana, status familiaris lamellosus and status perdurans, fresh material originating from Ben Eighe, collected by Pentecost 2016. A–C. Formation of young colonies. D. Disintegration and gelatinization of the mucilaginous surface layers. E. released and divided cell without mucilaginous envelopes. F. Disintegrated colony. G. Rupture of outer mucilage layers. H. Aggregation of colonies into flattened thick layer. I. Formation of diffluent mucilage. J. Colony disintegration. K. Disintegration of large colony. A, B,D–K. Status familiaris lamellosus. C. Status perdurans. * diffluent mucilage, + sparsely stratified mucilage envelopes with red-orange granules, ++ densely stratified mucilage envelopes with red-orange granules. Scale bar: 10 μm.

opennotspecifiedJul 2018View details →
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FIGURE 3 in Taxonomic revision of Ulva montana (Lightfoot 1777) and description of a new genus of Lightfootiella (Cyanophyceae, Chroococcaceae)

FIGURE 3. Life cycle and reproduction of Lightfootiella montana. A. Growth and disintegration of small colonies. B. Gelatinization and disintegration of colonies within population. C. Formation of population consisting of individual sub-colonies covered by layered and diffluent mucilage envelopes. Scale bar: 10 μm.

opennotspecifiedJul 2018View details →
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FIGURE 1 in Taxonomic revision of Ulva montana (Lightfoot 1777) and description of a new genus of Lightfootiella (Cyanophyceae, Chroococcaceae)

FIGURE 1. Desiccated type material of Lightfootiella montana, status familiaris lamellosus, collected by Lightfoot 1777 at Isle of Skye. A. sample under magnification of 400×. B–D. Sample under magnification of 1000×. * diffluent mucilage, + sparsely stratified mucilage envelopes with red-orange granules, ++ densely stratified mucilage envelopes with red-orange granules. Scale bars: 10 μm.

opennotspecifiedJul 2018View details →
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FIGURE 6 in Taxonomic revision of Ulva montana (Lightfoot 1777) and description of a new genus of Lightfootiella (Cyanophyceae, Chroococcaceae)

FIGURE 6. Position of Lightfootiella montana in the phylogenetic tree based on maximum likelihood topology. The bootstrap support values are in order as follows: Bayesian inference, maximum likelihood and maximum parsimony. Only values higher than 50% are presented, asterisk represents 100% bootstrap value.

opennotspecifiedJul 2018View details →
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FIGURE 4 in Taxonomic revision of Ulva montana (Lightfoot 1777) and description of a new genus of Lightfootiella (Cyanophyceae, Chroococcaceae)

FIGURE 4. Line drawings of Lightfootiella montana holotype and putative or similar specimens published in 19th and beginning of 20th century. A. Ulva montana (Lightfoot 1777). B. Palmella alpicola (Lyngbye 1819). C. Sorospora montana (Hassall 1845). D. Palmella alpicola (Wille 1918). E. Protococcus magma Brébisson 1835. F. Gloeocapsa shuttlerworthiana (Kützing 1843). G. Gloeocapsa shuttlerworthiana (Getler 1932).

opennotspecifiedJul 2018View details →

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