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47 results for “Nectriaceae”
FIGURE 1 in Varicosporellopsis shangrilaensis sp. nov. (Nectriaceae, Hypocreales), a new terricolous species isolated from the rhizosphere soil of Astragalus polycladus in northwestern Yunnan, China
FIGURE 1. Maximum likelihood tree based on combined ITS, LSU, TUB and ACT sequence data from 42 Nectriaceae isolates. Bootstrap support values for maximum likelihood (black) equal to or greater than 70% and Bayesian posterior probabilities values (red) equal to or greater than 0.90 are indicated near the nodes. The two new isolates are in blue and type isolates are in bold. The tree is rooted with Pseudonectria buxi (CBS 114049 and CBS 324.53).
FIGURE 1. The most parsimonious trees obtained from a in Taxonomy and phylogeny of Fusarium houttuyniae and F. liriopes spp. nov. (Hypocreales, Nectriaceae) from China
FIGURE 1. The most parsimonious trees obtained from a heuristic search of combined cmdA, rpb2, tef1 and tub2, sequence data for the Fusarium oxysporum complex (FOSC) group. Fusarium udum (CBS 177. 31) is used as the outgroup taxon. The MP bootstrap values ≥ 50%, ML bootstraps ≥ 70%, and Bayesian posterior probabilities ≥ 0.90 (MPBS/MLBS/BYPP) are given at the nodes. New collections obtained in this study are in red.
FIGURE 3 in Taxonomy and phylogeny of Fusarium houttuyniae and F. liriopes spp. nov. (Hypocreales, Nectriaceae) from China
FIGURE 3. Fusarium liriopes (Specimen code: HGUP 10008) a, b. Colony on PDA; a. Surface of colony on PDA after 21 days at 24 °C under continuous white light; b. Reverse of colony on PDA; c, d. Mycelium on PDA; e, h. Conidiophores and phialides on aerial mycelium; i, j. Chlamydospores; k, r Aerial conidia (microconidia); s, t Sporodochia conidia (macroconidia). Scale bars: a, b = 10 mm; c, d = 1 mm; e, g, k, r = 5 µm; h, j, s, t = 15 µm.
FIGURE 2 in Taxonomy and phylogeny of Fusarium houttuyniae and F. liriopes spp. nov. (Hypocreales, Nectriaceae) from China
FIGURE 2. Fusarium houttuyniae (Specimen code: HGUP 10007) a, b. Colony on PDA; a. Surface of colony on PDA after 21 days at 24 °C under continuous white light; b. Reverse of colony on PDA; c, d. Mycelium on PDA; e, f. Conidiophores and phialides on aerial mycelium; g. Chlamydospores; h, o. Aerial conidia (microconidia); p, t. Sporodochial conidia (macroconidia). Scale bars: a, b = 10 mm; c, d = 1 mm; f = 20 μm; e, g, p, t = 15 µm; h, o = 5 µm.
FIGURE 2 in Fusarium endophyticum sp. nov. (Nectriaceae, Hypocreales), a new endophytic fungus from northern Thailand
FIGURE 2. Fusarium endophyticum (SDBR-CMU465, holotype). Colonies incubated at 25°C for two weeks. a. PDA; b. OA; c. SNA (left, surface view and right, reverse view); d–f. Monophialides; g. Polyphialide; h,i. Chlamydospores; j. Aerial macroconidia. Scale bars: a–c = 10 mm; d–g = 5 µm; h–j = 10 µm.
Data from: Not as ubiquitous as we thought: taxonomic crypsis, hidden diversity and cryptic speciation in the cosmopolitan fungus Thelonectria discophora (Nectriaceae, Hypocreales, Ascomycota)
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Figure 8 from: He J, Li D-W, Cui W-L, Zhu L-H, Huang L (2024) Morphological and phylogenetic analyses reveal three new species of Fusarium (Hypocreales, Nectriaceae) associated with leaf blight on Cunninghamia lanceolata in China. MycoKeys 101: 45-80. https://doi.org/10.3897/mycokeys.101.113128
Figure 8 Fusarium hunanense (HN33-8-2) A–D colonies on PDA, SNA, OMA, and CMA, respectively, after 5 days at 24 °C in the dark E sporodochia formed on PDAF–K aerial conidiophores, phialides, and conidia L–N sporodochial conidiophores, phialides, and conidia O, P macroconidia (3–6-septate) Q chlamydospore. Scale bars: 1,000 μm (E); 50 μm (F–H); 10 μm (I–Q).
Figure 9 from: He J, Li D-W, Cui W-L, Zhu L-H, Huang L (2024) Morphological and phylogenetic analyses reveal three new species of Fusarium (Hypocreales, Nectriaceae) associated with leaf blight on Cunninghamia lanceolata in China. MycoKeys 101: 45-80. https://doi.org/10.3897/mycokeys.101.113128
Figure 9 Symptoms on detached Cunninghamia lanceolata leaves (A) and shoots of tissue-culture seedlings of C. lanceolata (B) inoculated with isolates: Fusarium fujianense (LC14), F. fujikuroi (HN43-17-1), F. guizhouense (GZ7-20-1), F. concentricum (SJ1-10), and F. hunanense (HN33-8-2). Scale bar: 10 mm. C, Lesion length on detached C. lanceolata leaves inoculated with F. fujianense (LC14), F. fujikuroi (HN43-17-1), F. guizhouense (GZ7-20-1), F. concentricum (SJ1-10), and F. hunanense (HN33-8-2). Error bars represent standard deviation, and different letters indicate significant difference based on LSD's range test at P < 0.05 (n = 8).
Figure 6 from: He J, Li D-W, Cui W-L, Zhu L-H, Huang L (2024) Morphological and phylogenetic analyses reveal three new species of Fusarium (Hypocreales, Nectriaceae) associated with leaf blight on Cunninghamia lanceolata in China. MycoKeys 101: 45-80. https://doi.org/10.3897/mycokeys.101.113128
Figure 6 Fusarium fujianense (LC14) A–D colonies on PDA, SNA, OMA, and CMA, respectively, after 5 days at 24 °C in the dark E, F sporodochia formed on PDAG, H aerial conidiophores, phialides, and microconidia I–L sporodochial conidiophores, phialides, and macroconidia M mesoconidium (1-septate) and macroconidia (4–6-septate). Scale bars: 200 μm (E, F); 10 μm (G–M).
Figure 7 from: He J, Li D-W, Cui W-L, Zhu L-H, Huang L (2024) Morphological and phylogenetic analyses reveal three new species of Fusarium (Hypocreales, Nectriaceae) associated with leaf blight on Cunninghamia lanceolata in China. MycoKeys 101: 45-80. https://doi.org/10.3897/mycokeys.101.113128
Figure 7 Fusarium guizhouense (GZ7-20-1) A–D colonies on PDA, SNA, OMA, and CMA, respectively, after 5 days at 24 °C in the dark E sporodochia formed on the surface of carnation leaves F–J sporodochial conidiophores, phialides, and macroconidia K macroconidia (4–6-septate). Scale bars: 200 μm (E); 10 μm (F, G, K); 50 μm (H–J).
Figure 3 from: He J, Li D-W, Cui W-L, Zhu L-H, Huang L (2024) Morphological and phylogenetic analyses reveal three new species of Fusarium (Hypocreales, Nectriaceae) associated with leaf blight on Cunninghamia lanceolata in China. MycoKeys 101: 45-80. https://doi.org/10.3897/mycokeys.101.113128
Figure 3 Splitgraphs showing the results of the pairwise homoplasy index (PHI) test of three newly described taxa and closely related species using both LogDet transformation and splits decomposition A the PHI of Fusarium fujianense sp. nov. with their phylogenetically related isolates or species B the PHI of F. hunanense sp. nov. with their phylogenetically related isolates or species C the PHI of F. guizhouense sp. nov. with their phylogenetically related isolates or species. PHI test value (Φw) < 0.05 indicate significant recombination within a dataset. * indicates isolates of this study. T indicates ex-types. HT indicates ex-holotypes.
Figure 5 from: He J, Li D-W, Cui W-L, Zhu L-H, Huang L (2024) Morphological and phylogenetic analyses reveal three new species of Fusarium (Hypocreales, Nectriaceae) associated with leaf blight on Cunninghamia lanceolata in China. MycoKeys 101: 45-80. https://doi.org/10.3897/mycokeys.101.113128
Figure 5 Phylogenetic relationships of 30 isolates of the Fusarium sambucinum species complex with related taxa with concatenated sequences of the TEF-1α, RPB2, and RPB1 loci using Bayesian inference (BI) and maximum likelihood (ML) methods. Bootstrap support values from ML ≥ 70% and BI posterior values ≥ 0.9 are shown at nodes (ML/BI). F. concentricum CBS 450.97T was the outgroup. * indicates strains of this study. T indicates the ex-type strains. HT indicates ex-holotypes.
Figure 4 from: He J, Li D-W, Cui W-L, Zhu L-H, Huang L (2024) Morphological and phylogenetic analyses reveal three new species of Fusarium (Hypocreales, Nectriaceae) associated with leaf blight on Cunninghamia lanceolata in China. MycoKeys 101: 45-80. https://doi.org/10.3897/mycokeys.101.113128
Figure 4 Phylogenetic relationships of 41 isolates of the Fusarium solani species complex with related taxa with concatenated sequences of the TEF-1α, RPB2, and RPB1 loci using Bayesian inference (BI) and maximum likelihood (ML) methods. Bootstrap support values from ML ≥ 70% and BI posterior values ≥ 0.9 are shown at nodes (ML/BI). Fusarium staphyleae NRRL 22316 and F. cicatricum CBS 125552 were the outgroup. * indicates strains of this study. T indicates the ex-type strains. ET indicates ex-epitypes.
Figure 1 from: He J, Li D-W, Cui W-L, Zhu L-H, Huang L (2024) Morphological and phylogenetic analyses reveal three new species of Fusarium (Hypocreales, Nectriaceae) associated with leaf blight on Cunninghamia lanceolata in China. MycoKeys 101: 45-80. https://doi.org/10.3897/mycokeys.101.113128
Figure 1 Phylogenetic relationships of 37 isolates of the Fusarium fujikuroi species complex with related taxa derived from concatenated sequences of the TEF-1α, RPB2, and RPB1 genes/region using Bayesian inference (BI) and maximum likelihood (ML) methods. Bootstrap support values from ML ≥ 70% and BI posterior values ≥ 0.9 are shown at nodes (ML/BI). Fusarium zealandicum CBS 111.93T was the outgroup. * indicates strains of this study. T indicates ex-types or ex-epitypes. LT: Ex-lectotype, NT: Ex-neotype, HT: Ex-holotype.
Figure 2 from: He J, Li D-W, Cui W-L, Zhu L-H, Huang L (2024) Morphological and phylogenetic analyses reveal three new species of Fusarium (Hypocreales, Nectriaceae) associated with leaf blight on Cunninghamia lanceolata in China. MycoKeys 101: 45-80. https://doi.org/10.3897/mycokeys.101.113128
Figure 2 Phylogenetic relationships of 16 isolates of the Fusarium lateritium species complex with related taxa with concatenated sequences of the TEF-1α, RPB2, and RPB1 loci using Bayesian inference (BI) and maximum likelihood (ML) methods. Bootstrap support values from ML ≥ 70% and BI posterior values ≥ 0.9 are shown at nodes (ML/BI). Fusarium sublunatum CBS 189.34T was the outgroup. * indicates strains of this study. T indicates the ex-type strains. LT: Ex-lectotype, NT: Ex-neotype, HT: Ex-holotype.
Supplementary material 1 from: He J, Li D-W, Cui W-L, Zhu L-H, Huang L (2024) Morphological and phylogenetic analyses reveal three new species of Fusarium (Hypocreales, Nectriaceae) associated with leaf blight on Cunninghamia lanceolata in China. MycoKeys 101: 45-80. https://doi.org/10.3897/mycokeys.101.113128
Supplementary data
Supplementary material 1 from: Wang H-Y, Li X, Dong C-B, Zhang Y-W, Chen W-H, Liang J-D, Han Y-F (2024) Two new species of Sordariomycetes (Chaetomiaceae and Nectriaceae) from China. MycoKeys 102: 301-315. https://doi.org/10.3897/mycokeys.102.114480
The alignments used in the phylogenetic analysis
Figure 2 from: Wang H-Y, Li X, Dong C-B, Zhang Y-W, Chen W-H, Liang J-D, Han Y-F (2024) Two new species of Sordariomycetes (Chaetomiaceae and Nectriaceae) from China. MycoKeys 102: 301-315. https://doi.org/10.3897/mycokeys.102.114480
Figure 2 Morphological characteristics of Bisifusarium keratinophilum sp. nov. a–c front and reverse of colony on MEA, OA and PDA after 7 days at 25 °C d, e conidiophores and macroconidia f phialidic pegs g hyphae h, i microconidia. Scale bars: 10 μm (d–i).
Figure 3 from: Wang H-Y, Li X, Dong C-B, Zhang Y-W, Chen W-H, Liang J-D, Han Y-F (2024) Two new species of Sordariomycetes (Chaetomiaceae and Nectriaceae) from China. MycoKeys 102: 301-315. https://doi.org/10.3897/mycokeys.102.114480
Figure 3 Phylogenetic tree of the genus Ovatospora constructed from ITS, LSU, tub2 and rpb2. Notes: Statistical support values (BI/ML) were shown at nodes. ML bootstrap values ≥ 75% and posterior probabilities ≥ 0.90 are shown above the internal branches. '–' indicates the absence of statistical support (< 75% for bootstrap proportions from ML analysis; < 0.90 for posterior probabilities from Bayesian analysis). Three new strains are shown in blue. CBS: CBS-KNAW Fungal Biodiversity Centre, Utrecht, The Netherlands; CGMCC: The China General Microbiological Culture Collection Centre; GZUIFR: The Institute of Fungus Resources, Guizhou University, China; LC: Lei Cai's personal culture collection, Beijing, China.
Figure 4 from: Wang H-Y, Li X, Dong C-B, Zhang Y-W, Chen W-H, Liang J-D, Han Y-F (2024) Two new species of Sordariomycetes (Chaetomiaceae and Nectriaceae) from China. MycoKeys 102: 301-315. https://doi.org/10.3897/mycokeys.102.114480
Figure 4 Morphological characteristics of Ovatospora sinensis sp. nov. a–c reverse and front of colony on MEA, OA and PDA after7 days at 45 °C d–h conidiophores and conidia i hyphae. Scale bars: 10 μm (d–i).
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