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14 results for “Kirschsteiniothelia”
FIGURE 1 in Morphological and phylogenetic evidence for recognition of a new species of Kirschsteiniothelia, K. agumbensis and validation of five new combinations in Kirschsteiniotheliaceae
FIGURE 1. Maximum likelihood (ML) phylogenetic tree obtained from an IQ-TREE analysis of species from Kirschsteiniotheliaceae and closely related taxa based on ITS, LSU and SSU sequences. Strains of the species under study is shown in bold text. Families and orders are indicated on the right side of the tree in blocks, as well as the name of new species in bold text. Branch support values from 1000 non-parametric bootstraps for IQ-TREE (ML-BS) and posterior probability values from the Bayesian analysis (PP) are shown at the nodes (ML-BS>70%/ PP>0.9). The tree is rooted with Stemphylium vesicarium MFLUCC 14-0920 and Stemphylium vesicarium CBS 191.86.
FIGURE 3 in Morphological and phylogenetic evidence for recognition of a new species of Kirschsteiniothelia, K. agumbensis and validation of five new combinations in Kirschsteiniotheliaceae
FIGURE 3. Kirschsteiniothelia agumbensis (AMH 10646). a–c Conidia with attachment. d–i Conidia. Scale bars: a–i = 20 µm.
FIGURE 5 in Morphological and phylogenetic evidence for recognition of a new species of Kirschsteiniothelia, K. agumbensis and validation of five new combinations in Kirschsteiniotheliaceae
FIGURE 5. The results of the pairwise homoplasy index (PHI) test for the closely related species of Kirschsteiniothelia agumbensis using both LogDet transformation and splits decomposition. PHI test results (фw) <0.05 indicate significant recombination within the dataset.
FIGURE 2 in Morphological and phylogenetic evidence for recognition of a new species of Kirschsteiniothelia, K. agumbensis and validation of five new combinations in Kirschsteiniotheliaceae
FIGURE 2. Kirschsteiniothelia agumbensis (AMH 10646). a–c Conidiomata on natural substrate. d Colonies on MEA obverse. e Colonies on MEA reverse. Scale bars: a = 1000 µm. b–c = 100 µm.
FIGURE 4 in Morphological and phylogenetic evidence for recognition of a new species of Kirschsteiniothelia, K. agumbensis and validation of five new combinations in Kirschsteiniotheliaceae
FIGURE 4. Kirschsteiniothelia agumbensis (AMH 10646). a–f SEM of conidia. Scale bars: a–b = 20 µm. c–d = 2 µm. e–f = 20 µm.
FIGURE 1 in A new addition to Kirschsteiniotheliaceae: Kirschsteiniothelia chiangmaiensis sp. nov. from Northern Thailand
FIGURE 1. Phylogenetic tree generated from ML analysis based on the combined ITS, LSU, and SSU sequence data for selected Dothideomycetes families. The tree was rooted to Stemphylium vesicarium (CBS 191.86 and MFLUCC 14–0920). Newly generated sequence is indicated in red, and holotype/ex-type strains are symbolic by T. Ultrafast ML bootstrap values ≥ 75% and BYPP ≥ 0.95 are given at the nodes. Strain numbers are noted after the species names.
FIGURE 2 in A new addition to Kirschsteiniotheliaceae: Kirschsteiniothelia chiangmaiensis sp. nov. from Northern Thailand
FIGURE 2. Kirschsteiniothelia chiangmaiensis on decaying wood (MFLU 23–0358, holotype). A. Host b. The appearance of ascomata on the host surface. c–e. Vertical section through an ascoma. f, g Structure of peridium. h. Ostiole. i. Pseudoparaphyses. j–m. Asci. n. Small ocular chamber at the apical inner layer of the ascus. o–r. Ascospores. s. Ascospore showing sheath in India ink. t. Germinating ascospore. u. Colony growing on PDA for 30 days (both upper and lower sides). Scale bars: b = 200 μm, c = 100 μm, d, e = 50 μm, f, h–m = 20 μm, g, n–t = 10 μm.
Figure 3 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 3 Kirschsteiniothelia saprophytica (MFLU 23–0419, holotype) a host b, c appearance of ascomata on host surface d paraphyses e–g asci h–k ascospores l, m culture on PDA (front and reverse). Scale bars: 20 µm (d–g); 10 µm (h–k).
Figure 7 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 7 Kirschsteiniothelia xishuangbannaensis (MFLUCC 23–0273, new record) a, b colonies on wood c, d conidiophores and conidiogenous cells e conidiophore with conidium f–o conidia p germinated conidium q, r culture on PDA (front and reverse). Scale bars: 200 μm (a); 100 μm (b); 50 μm (c, d, p); 30 μm (e); 20 μm (f–o).
Figure 2 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 2 Kirschsteiniothelia inthanonensis (MFLU 23–0420, holotype) a, b colonies on the host c, d conidiophores and conidia e regeneration of conidiophores f–j conidiogenous cells and conidia l–o conidia p germinating conidium q, r colony on PDA (front and reverse). Scale bars: 500 μm (b–d); 50 μm (e–j); 20 μm (k–p).
Figure 6 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 6 Kirschsteiniothelia tectonae (MFLUCC 23–0271, new record) a, b colonies on wood c–e conidiophores with conidia and conidiogenous cells f–k conidia l germinated conidium m, n culture on PDA (front and reverse). Scale bars: 100 μm (a, b); 50 μm (c–e, l); 20 μm (f–k).
Figure 5 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 5 Kirschsteiniothelia zizyphifolii (MFLU 23–0415, holotype) a colonies on wood b–d, g conidiophores and conidiogenous cells e, f conidiophores with conidia h–o conidia p germinated conidium q, r cultures on PDA from the surface and reverse. Scale bars: 200 μm (a); 100 μm (b–d); 50 μm (e, f); 20 μm (g–p).
Figure 4 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 4 Kirschsteiniothelia saprophytica (MFLUCC 23–0276) a host b colonies on the host, associated with asexual morph c conidiophore with conidiogenous cell and conidiospore d, e conidiophore (e – from the culture) f–j conidiospore from culture k germinating spore m, n culture on PDA (front and reverse). Scale bars: 50 µm (c–e); 20 µm (f–k).
Figure 1 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 1 Maximum Likelihood phylogenetic tree generated from ITS, LSU and SSU sequence data for selected Kirschsteiniotheliales and related Dothideomycetes orders. The tree is rooted with Stemphylium vesicarium (CBS 191.86 and MFLUCC 14–0920). Newly-generated sequences are in blue and new species are in bold. Holotype and ex-type strains are symbolic by "T". Maximum Likelihood bootstrap (MLBS) values ≥ 70% and Bayesian posterior probabilities (BYPP) ≥ 0.95 are shown at the nodes.
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