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5 results for “Caloglossa”
FIGURE 1 in Morphological and molecular evidence for the recognition of Caloglossa fonticola sp. nov. (Delesseriaceae, Rhodophyta) from an underground spring in Guangxi, China
FIGURE 1. Map of China showing the location of the study area, Baimo Cave in Bama County, Guangxi, China, where samples of Caloglossa fonticola sp. nov. were collected.
FIGURE 4 in Morphological and molecular evidence for the recognition of Caloglossa fonticola sp. nov. (Delesseriaceae, Rhodophyta) from an underground spring in Guangxi, China
FIGURE 4. Caloglossa (Ceramiales, Rhodophyta) maximum likelihood tree based on the rbcL DNA sequences data. Bootstrap supports for maximum likelihood, and Bayesian inference (ML/BI) are shown on branches. '*' denotes the branch differed in the BI topology (data not shown).
FIGURE 3 in Morphological and molecular evidence for the recognition of Caloglossa fonticola sp. nov. (Delesseriaceae, Rhodophyta) from an underground spring in Guangxi, China
FIGURE 3. Drawing of Caloglossa fonticola sp. nov. thallus at the node follows Kamiya et al. (1999, 2003). Transverse pericentral cells are omitted. Axial cells are brown, wing cells are purple, and rhizoids are cyan. AB, abaxial side; AD, adjacent side to the lateral branch; AX, adaxial side; FLA, first axial cell of the lateral axis; FMA, first axial cell of the main axis; LA, lateral axis; LPC, lateral pericentral cell; MA, main axis; NA, nodal axial cell; OP, opposite side to the lateral branch; WC, wing cell; Rhizoids form from groups of second and third-order cells arising from the first three axial cells of the main and lateral axes (type B in Kamiya et al. 2003). Scale bar = 200 µm.
FIGURE 2 in Morphological and molecular evidence for the recognition of Caloglossa fonticola sp. nov. (Delesseriaceae, Rhodophyta) from an underground spring in Guangxi, China
FIGURE 2. Morphological structures of Caloglossa fonticola sp. nov. A. Vegetative thalli of C. fonticola. B. Thallus blades showing hardly or slightly constricted at nodes, and lateral axis (arrows) demonstrating significantly less growth than the main axis (arrowheads). C. Cell arrangement around a node. Nodal axial cell (diamond) and first axial cell (star) of the main axis (MA) both produced one secondorder cell row (arrows) and one third-order cell rows (arrowheads) on the opposite to the lateral branch (LA), all these cell rows reach to the blade margin. D. Nodal region of thallus illustrating the nodal axial cell (diamond) produces one cell row (arrowhead) on the abaxial side not extending to the margin, and the first axial cell of the lateral axis (asterisk) produces one cell row (arrow) on the adaxial side not extending to the margin. E-G Internodal blade. Each axial cell (a) produces one second-order cell row (arrows) that forms 1-3 third-order cell rows (arrowheads). H. Rhizoids at node showing each wing cell produces a single rhizoidal filament (white arrowheads). I. Rhizoids at node displaying the type B arrangement of Kamiya et al. (2003). Rhizoidal filaments (arrowheads) arising from wing cells near the main axis and lateral axis at the nodes. Scale bars: A = 1 cm, B = 1.0 mm, C and E = 200 μm, D, F and G = 20 μm, H and I = 100 μm.
FIGURE 5 in Morphological and molecular evidence for the recognition of Caloglossa fonticola sp. nov. (Delesseriaceae, Rhodophyta) from an underground spring in Guangxi, China
FIGURE 5. Caloglossa (Ceramiales, Rhodophyta) Maximum likelihood tree based on the LSU rRNA sequences data. Bootstrap supports for maximum likelihood, and Bayesian inference (ML/BI) are shown on branches. '*' denotes the branch differed in the BI topology (data not shown).0.
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