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302 results for “Fusarium”
Figure 5 from: Ezekiel CN, Kraak B, Sandoval-Denis M, Sulyok M, Oyedele OA, Ayeni KI, Makinde OM, Akinyemi OM, Krska R, Crous PW, Houbraken J (2020) Diversity and toxigenicity of fungi and description of Fusarium madaense sp. nov. from cereals, legumes and soils in north-central Nigeria. MycoKeys 67: 95-124. https://doi.org/10.3897/mycokeys.67.52716
Figure 5 Fusarium madaense sp. nov. (ex-type culture CBS 146669). A–C aspect of colonies on PDA, OA and SNA, respectively, after 14 d at 24°C in the dark D colony reverse on OA (up) and PDA (down) after 14 d at 24 °C in the dark E–G, J aerial conidiophores and phialides H, I sporodochia formed on the surface of carnation leaves K, L sporodochial conidiophores M, N chlamydospores O, P microconidia Q sporodochial conidia. Scale bars: 100 μm (H, I); 20 μm (J); 10 μm (all others).
Figure 1 from: Ezekiel CN, Kraak B, Sandoval-Denis M, Sulyok M, Oyedele OA, Ayeni KI, Makinde OM, Akinyemi OM, Krska R, Crous PW, Houbraken J (2020) Diversity and toxigenicity of fungi and description of Fusarium madaense sp. nov. from cereals, legumes and soils in north-central Nigeria. MycoKeys 67: 95-124. https://doi.org/10.3897/mycokeys.67.52716
Figure 1 Overall incidence of fungal genera recovered from food and soil in two states in north-central Nigeria.
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
Figure 3 from: Le Thi L, Mertens A, Vu DT, Vu TD, Anh Minh PL, Duc HN, de Backer S, Swennen R, Vandelook F, Panis B, Amalfi M, Decock C, Gomes SIF, Merckx VSFT, Janssens SB (2022) Diversity of Fusarium associated banana wilt in northern Viet Nam. MycoKeys 87: 53-76. https://doi.org/10.3897/mycokeys.87.72941
Figure 3 Maximum Likelihood topology obtained via heuristic search algorithm of the combined rpb1, rpb2 and tef1a data matrix. Bootstrap support (ML-BS) values above 50 are indicated with a dot, ML-BS values above 75 are indicated with an asterisk. No indication above the branches indicates a ML-BS value below 50. Newly included accessions are indicated in red. FOSC: Fusarium oxysporum species complex, FFSC: Fusarium fujikuroi species complex.
Figure 2 from: Le Thi L, Mertens A, Vu DT, Vu TD, Anh Minh PL, Duc HN, de Backer S, Swennen R, Vandelook F, Panis B, Amalfi M, Decock C, Gomes SIF, Merckx VSFT, Janssens SB (2022) Diversity of Fusarium associated banana wilt in northern Viet Nam. MycoKeys 87: 53-76. https://doi.org/10.3897/mycokeys.87.72941
Figure 2 A overall view of a banana plant infected by Fusarium wilt B detailed view of wilted plant C radial cutting of Fusarium-infected banana pseudostem D tangential cutting of Fusarium-infected banana pseudostem.
Figure 1 from: Le Thi L, Mertens A, Vu DT, Vu TD, Anh Minh PL, Duc HN, de Backer S, Swennen R, Vandelook F, Panis B, Amalfi M, Decock C, Gomes SIF, Merckx VSFT, Janssens SB (2022) Diversity of Fusarium associated banana wilt in northern Viet Nam. MycoKeys 87: 53-76. https://doi.org/10.3897/mycokeys.87.72941
Figure 1 Distribution map of localities in northern Viet Nam where Fusarium wilt was observed. Colours indicate different Fusarium strains or species. Squares indicate Fusarium infections of wild bananas; circles indicate infections of cultivated bananas.
Supplementary material 1 from: Le Thi L, Mertens A, Vu DT, Vu TD, Anh Minh PL, Duc HN, de Backer S, Swennen R, Vandelook F, Panis B, Amalfi M, Decock C, Gomes SIF, Merckx VSFT, Janssens SB (2022) Diversity of Fusarium associated banana wilt in northern Viet Nam. MycoKeys 87: 53-76. https://doi.org/10.3897/mycokeys.87.72941
Table S1
Figure 5 from: Sandoval-Denis M, Swart WJ, Crous PW (2018) New Fusarium species from the Kruger National Park, South Africa. MycoKeys 34: 63-92. https://doi.org/10.3897/mycokeys.34.25974
Figure 5 Fusarium convolutans sp. nov. A–D Colonies on PDA, SNA, OA and CMA, respectively, after 7 d at 24 °C in the dark E–I Conidiophores, phialides and conidia J–M Chlamydospores N–P Sterile hyphal projections Q Conidia. Scale bars: 20 μm (E, F); 5 μm (G–I); 10 μm (J–Q).
Figure 2 from: Sandoval-Denis M, Swart WJ, Crous PW (2018) New Fusarium species from the Kruger National Park, South Africa. MycoKeys 34: 63-92. https://doi.org/10.3897/mycokeys.34.25974
Figure 2 Maximum-likelihood (ML) phylogram obtained from combined EF-1α, RPB1 and RPB2 sequences of 18 strains belonging to the Fusarium buharicum (FBSC), Fusarium tricinctum (FTSC) and Fusarium lateritium (FLSC) species complexes. Numbers on the nodes are ML bootstrap values above 70% and Bayesian posterior probability values above 0.95. Branch lengths are proportional to distance. Ex-type strains are indicated with T. Strains corresponding to new species described here are shown in bold.
Figure 1 from: Sandoval-Denis M, Swart WJ, Crous PW (2018) New Fusarium species from the Kruger National Park, South Africa. MycoKeys 34: 63-92. https://doi.org/10.3897/mycokeys.34.25974
Figure 1 Map of the Kruger National Park (KNP) in South Africa. The arrows indicate the location of the four research "supersites" (adapted from Smit et al. 2013). Sampling site is indicated with a black star. The inset shows the location of the KNP within South Africa, indicated by a grey box.
Figure 7 from: Sandoval-Denis M, Swart WJ, Crous PW (2018) New Fusarium species from the Kruger National Park, South Africa. MycoKeys 34: 63-92. https://doi.org/10.3897/mycokeys.34.25974
Figure 7 Fusarium transvaalense sp. nov. A–D Colonies on PDA, SNA, OA and CMA, respectively, after 7 d at 24 °C in the dark E Pustule-like growth on OA F, G Sporodochia formed on the surface of carnation leaves H–L Aerial conidiophores phialides and conidia M Aerial conidia N, O Chlamydospores P Sporodochial conidiophores and phialides Q Sporodochial conidia. Scale bars: 2 mm (E); 20 μm (F–J); 5 μm (K); 10 μm (L–Q).
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