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13,397 results for “sp. nov.”
FIGURE 2 in Vanderbylia kashmiriana sp. nov. (Polyporales, Polyporaceae) from Azad Jammu & Kashmir, Pakistan
FIGURE 2. Phylogram generated from Maximum Likelihood (ML) method based on LSU sequence data representing Vanderbylia kashmiriana and its related species. Novel sequences generated during this study are in bold.
FIGURE 1 in Vanderbylia kashmiriana sp. nov. (Polyporales, Polyporaceae) from Azad Jammu & Kashmir, Pakistan
FIGURE 1. Phylogram generated from Maximum Likelihood (ML) method based on ITS sequence data representing Vanderbylia kashmiriana and its related species. Novel sequences generated during this study are in bold.
FIGURE 6 in Cyathus tongxinianus sp. nov. (Basidiomycota) from China
FIGURE 6. Microscopic structures of Cyathus tongxinianus (drawn from the holotype, CLZhao 27588). A: Basidiospores. B: Generative hyphae of the funicular cord. C: Internal structure of the peridiole. Bars: A–C = 10 µm. Drawings by: Zi-Yan Duan.
FIGURE 3 in Cyathus tongxinianus sp. nov. (Basidiomycota) from China
FIGURE 3. Basidiomata of Cyathus tongxinianus showing in (B) hairs of peridium. Bars: A = 1 cm, B = 1 mm (Holotype: CLZhao 27588). Photoplate by: Zi-Yan Duan.
FIGURE 4 in Cyathus tongxinianus sp. nov. (Basidiomycota) from China
FIGURE 4. Peridioles of Cyathus tongxinianus showing in (B) a cross-section. Bars: A–B = 1 mm (Holotype: CLZhao 27588). Photoplate by: Zi-Yan Duan.
FIGURE 5 in Cyathus tongxinianus sp. nov. (Basidiomycota) from China
FIGURE 5. Microscopic structures of Cyathus tongxinianus (drawn from the holotype, CLZhao 27588). A: Outer wall of peridium. B: Inner wall of peridium. C: Structure of the hairs. Bars: A–C = 10 µm. Drawings by: Zi-Yan Duan.
FIGURE 2 in Cyathus tongxinianus sp. nov. (Basidiomycota) from China
FIGURE 2. Maximum parsimony strict consensus tree illustrating the phylogeny of the new species and related species in Cyathus based on ITS sequences. Branches are labelled with maximum likelihood bootstrap values ≥70%, parsimony bootstrap values ≥50%, and Bayesian posterior probabilities ≥0.95, respectively. Scale bar = 20. Type specimen accessions are in bold, ✱ corresponds to type species.
FIGURE 1 in Cyathus tongxinianus sp. nov. (Basidiomycota) from China
FIGURE 1. Maximum parsimony strict consensus tree illustrating the phylogeny of the new species of Cyathus and related genera in the family Nidulariaceae based on combined ITS and nLSU sequences dataset. Branches are labelled with maximum likelihood bootstrap values ≥70%, parsimony bootstrap values ≥50% and Bayesian posterior probabilities ≥0.95, respectively, Scale bar = 20. The new species is in bold, ✱ corresponds to type species.
FIGURE 2 in Addition to Pseudoplagiostomataceae: Pseudoplagiostoma inthanonense sp. nov. from Doi Inthanon National Park, Northern Thailand
FIGURE 2. Pseudoplagiostoma inthanonense. (MFLU 23-0345, holotype). a = Host substrate. b, c = Pycnidia with conidial exudates. d = Cross section of the conidioma. e = Conidiomata wall. f = Paraphyses. g–k = Conidiogenous cells with attached conidia. l–p = Conidia. q = Germinated conidium. r = Culture in PDA media. s = Culture in MEA media. t = Spore masses on cultures in MEA media. Scale bars: d–f, q = 20 µm, g–p = 10 µm.
FIGURE 1 in Addition to Pseudoplagiostomataceae: Pseudoplagiostoma inthanonense sp. nov. from Doi Inthanon National Park, Northern Thailand
FIGURE 1. Bayesian inference (BI) phylogram of Pseudoplagiostomaceae based on a concatenated ITS, LSU, rpb2, tef1α and tub2 sequence alignment, with Apoharknessiaceae as the outgroup. Ultrafast bootstraps ≥75% and Bayesian posterior probabilities ≥0.95 are shown at the first and second positions, respectively. The strain obtained in the present study is in blue. The scale bar at the centre-bottom represents 0.04 substitutions per site.
FIGURE 5 in Polygonum terzioglui sp. nov. (Polygonaceae), from Northeast Turkey
FIGURE 5. (a –a) Polygonum terzioglui (Makbul & S. Kundakçı 514), (b –b) P. samsunicum (Makbul & S. Kundakçı 316). 1. Ochrea 1 3 1 3 (stero microscope), 2. Epidermal cell shape (SEM), 3. Ochrea ornamentation (SEM).
FIGURE 3 in Polygonum terzioglui sp. nov. (Polygonaceae), from Northeast Turkey
FIGURE 3. Distribution map of Polygonum terzioglui, P. samsunicum, and P. salebrosum according to floristic regions of Turkey.
FIGURE 7 in Polygonum terzioglui sp. nov. (Polygonaceae), from Northeast Turkey
FIGURE 7. Majority-rule consensus cladogram of the Polygonum from the ML analysis based on the nrDNA ITS dataset (support values: first-line ML bootstrap and JK jackknife, second-line pp posterior probability). Clade names are in accordance with those taken from Yurtseva et al. (2019), and Atraphaxis, Bactria, Duma, Duravia, Fallopia, Muehlenbeckia, Persepolium, and Polygonella were indicated by a thick black bar.
FIGURE 4 in Polygonum terzioglui sp. nov. (Polygonaceae), from Northeast Turkey
FIGURE 4. (a –a) Polygonum terzioglui (Makbul & S. Kundakçı 514), (b –b) P. samsunicum (Makbul & S. Kundakçı 316). 1. Leaves 1 3 1 3 (stero microscope), 2. Leaves (SEM), 3. epidermal ornamentation (SEM).
FIGURE 1 in Polygonum terzioglui sp. nov. (Polygonaceae), from Northeast Turkey
FIGURE 1. Polygonum terzioglui (a) photograph from the type locality (Photographed by S. Makbul), (b) holotype (Makbul & S. Kundakçı 514)
FIGURE 6 in Polygonum terzioglui sp. nov. (Polygonaceae), from Northeast Turkey
FIGURE 6. (a –a) Polygonum terzioglui (Makbul & S. Kundakçı 514), (b –b) P. samsunicum (Makbul & S. Kundakçı 316). 1. Fruit 1 3 1 3 (stero microscope), 2–3. Fruit surface ornamentation (SEM).
FIGURE 3 in Xylaria sridharii sp. nov.-a new species of Xylariaceae from India
FIGURE 3. ML tree with 1000 bootstrap values based on analysis of a combined dataset of ITS & TUB2 for the species of Xylaria constructed using the Tamura 3-parameter method in MEGAX. Bootstrap support values ≥ 50 % are at the nodes. Poronia pileiformis WSP 88113001 was used as an outgroup. The phylogenetic position of Xylaria sridharii is indicated in red font.
FIGURE 2. A–B—Stromata with the branched structure without a in Xylaria sridharii sp. nov.-a new species of Xylariaceae from India
FIGURE 2. A–B—Stromata with the branched structure without a hair-like appendage at the apical tip; C–D—cross-section of stromata showing the perithecia with ascocarp and ascospores; E—young immature ascocarp with ascospores; F & G—matured ascocarp with ascospores of Xylaria sridharii (Scale: A & B—100 µm; C–E—50 µm; F & G—20 µm).
FIGURE 1 in Xylaria sridharii sp. nov.-a new species of Xylariaceae from India
FIGURE 1. Location from where the holotype specimen was collected (Konaje); B–E—Xylaria sridharii developed on the lamina of Coconut leaflet; F—cross-section of stromata (basal bulbous region showing the arrangement of perithecia); G–I—Pure culture of X. sridharii (NFCCI 5117) on PDA medium (12 days old; G & H front view; I reverse view).
FIGURE 3 in Piptoporellus taiwanensis sp. nov. (Polyporales, Fomitopsidaceae) from Taiwan and its phytochemistry
FIGURE 3. Microscopic structures of Piptoporellus taiwanensis. a. Basidiospores. b. Basidioles. c. Basidia. d. Clamp connections. e. Hyphae from context. f. Hyphae from trama. Bars: a–f = 10 μm.
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