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9 results for “Tubakiaceae”
FIGURE 1 in Morphological and molecular identification of Ellipsoidisporodochium gen. nov. (Tubakiaceae, Diaporthales) in Hainan Province, China
FIGURE 1. Phylogram of Tubakiaceae based on combined ITS, LSU, tef1, tub2 and rpb2 genes. The BI and ML bootstrap support values above 0.50 BYPP and 60 % are shown at the first and second position above nodes. Strains from the current study are in red. Some branches were shortened to fit them to the page – these are indicated by two diagonal lines with the number of times a branch was shortened indicated next to the lines.
FIGURE 2 in Morphological and molecular identification of Ellipsoidisporodochium gen. nov. (Tubakiaceae, Diaporthales) in Hainan Province, China
FIGURE 2. Ellipsoidisporodochium photiniae (SAUCC 210421). a Leaves of host plant. b Surface of colony after 15 days on PDA. c Reverse of colony after 15 days on PDA. d Conidiomata sporulating on PDA margin. e–g Conidiogenous cells with developing conidia. h–i Conidia. Scale bars = 10 μm (e–i).
FIGURE 2 in Tubakia byeongjinii, a new species of Tubakiaceae, isolated from Quercus variabilis in South Korea
FIGURE 2. Leaf spot on seedlings of Quercus variabilis caused by Tubakia byeongjinii. A. Symptoms on leaves. B. Scutellum and conidia in germination. C. Close-up view of symptoms and conidiomata. D. Top view of radiate scutellum. E. Conidia. Scale bar: 10 µm.
Figure 5 from: Zhang Z, Mu T, Liu S, Liu R, Zhang X, Xia J (2021) Morphological and phylogenetic analyses reveal a new genus and two new species of Tubakiaceae from China. MycoKeys 84: 185-201. https://doi.org/10.3897/mycokeys.84.73940
Figure 5 Tubakia dryinoides (SAUCC 1924). a diseased leaf of Quercus palustris; b surface of colony after 15 days on MEA; c reverse of colony after 15 days on MEA; d conidiomata; e–g conidiophores, conidiogenous cells with conidia; h–i conidia. Scale bars: 10 μm (e–i).
Figure 4 from: Zhang Z, Mu T, Liu S, Liu R, Zhang X, Xia J (2021) Morphological and phylogenetic analyses reveal a new genus and two new species of Tubakiaceae from China. MycoKeys 84: 185-201. https://doi.org/10.3897/mycokeys.84.73940
Figure 4 Tubakia lushanensis (SAUCC 1923). a diseased leaf of Quercus palustris; b surface of colony after 15 days on MEA; c reverse of colony after 15 days on MEA; d conidiomata; e–i conidiogenous cells with conidia; j–k conidia. Scale bars: 10 μm (e–k).
Figure 3 from: Zhang Z, Mu T, Liu S, Liu R, Zhang X, Xia J (2021) Morphological and phylogenetic analyses reveal a new genus and two new species of Tubakiaceae from China. MycoKeys 84: 185-201. https://doi.org/10.3897/mycokeys.84.73940
Figure 3 Obovoideisporodochium lithocarpi (SAUCC 0748). a infected leaf of Lithocarpus fohaiensis; b surface of colony after 15 days on MEA; c reverse of colony after 15 days on MEA; d conidiomata; e–g conidiophores, conidiogenous cells and conidia; h–i conidia. Scale bars: 10 μm (e–i).
Figure 1 from: Zhang Z, Mu T, Liu S, Liu R, Zhang X, Xia J (2021) Morphological and phylogenetic analyses reveal a new genus and two new species of Tubakiaceae from China. MycoKeys 84: 185-201. https://doi.org/10.3897/mycokeys.84.73940
Figure 1 Phylogram of Tubakiaceae, based on the concatenated ITS, LSU and rpb2 sequence alignment. The BI and ML bootstrap support values above 0.74 and 74% are shown at the first and second position, respectively. The tree is rooted to Greeneria uvicola (culture FI12007) and ex-type cultures are indicated in bold face. Strains from the current study are in red. Some branches were shortened for layout purposes – these are indicated by two diagonal lines with the number of times a branch was shortened indicated next to the lines.
Figure 2 from: Zhang Z, Mu T, Liu S, Liu R, Zhang X, Xia J (2021) Morphological and phylogenetic analyses reveal a new genus and two new species of Tubakiaceae from China. MycoKeys 84: 185-201. https://doi.org/10.3897/mycokeys.84.73940
Figure 2 Phylogram of Tubakiaceae, based on the concatenated ITS, tef1 and tub2 sequence alignment. The BI and ML bootstrap support values above 0.74 and 74% are shown at the first and second position, respectively. The tree is rooted to Greeneria uvicola (culture FI12007) and ex-type cultures are indicated in bold face. Strains from the current study are in red. Some branches were shortened for layout purposes – these are indicated by two diagonal lines with the number of times a branch was shortened indicated next to the lines.
FIGURE 1 in Tubakia byeongjinii, a new species of Tubakiaceae, isolated from Quercus variabilis in South Korea
FIGURE 1. Phylogenetic relationship between Tubakia byeongjinii isolates and some reference isolates retrieved from the NCBI database, inferred by the maximum likelihood method using a combined data set of the LSU, ITS, and TEF-1α gene regions. Bootstrap values (≥50%) based on 1000 replications are indicated. The scale bar represents 0.01 nucleotide substitutions per site. The isolates used in this work are indicated in bold.
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