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10 results for “Ancylistaceae”
FIGURE 2 in A new species of Neoconidiobolus (Entomophthorales, Ancylistaceae) from China based on morphological, molecular and physiological evidences
FIGURE 2. Neoconidiobolus pseudothromboides sp. nov. RCEF 6692. A, Colony on PDA after 3 d at 21 ˚C; b, Mycelia rarely branched at the edge; c, Mycelia septate and distended like a block; d, e,f, Single primary conidiophores bearing a primary conidium; g, h, Primary conidia with small basal papilla; i, j, Secondary conidia producing from primary ones; k, Zygospores formed between segments of the same hyphae; l, Young zygospores; m, Mature zygospores. — Scale bars: a = 10 mm; b = 100 μm; c–m = 20 μm.
FIGURE 1 in A new species of Neoconidiobolus (Entomophthorales, Ancylistaceae) from China based on morphological, molecular and physiological evidences
FIGURE 1. Maximum Likelihood phylogenetic tree of Neoconidiobolus based on nucLSU, mtSSU and EFL sequences. Eight species in related genera (Azygosporus, Capillidium, Conidiobolus and Microconidiobolus) are chosen as outgroups. Maximum Parsimony bootstrap values (≧70%) / Maximum Likelihood bootstrap values (≧70%) / Bayesian Inference posterior probabilities (≧0.95) of each clade are indicated along branches. Neoconidiobolus pseudothromboides sp. nov. is shown in bold. Scale bar indicates substitutions per site.
Figure 6 from: Nie Y, Yu D-S, Wang C-F, Liu X-Y, Huang B (2020) A taxonomic revision of the genus Conidiobolus (Ancylistaceae, Entomophthorales): four clades including three new genera. MycoKeys 66: 55-81. https://doi.org/10.3897/mycokeys.66.46575
Figure 6 Neoconidiobolus thromboidesa colony on PDA after 3 d at 25 °C b, c primary conidiophores bearing primary conidia d production of secondary conidia e zygospores f primary conidia. Scale bars: 10 mm (a); 20 μm (b–d, f); 40 μm (e).
Figure 3 from: Nie Y, Yu D-S, Wang C-F, Liu X-Y, Huang B (2020) A taxonomic revision of the genus Conidiobolus (Ancylistaceae, Entomophthorales): four clades including three new genera. MycoKeys 66: 55-81. https://doi.org/10.3897/mycokeys.66.46575
Figure 3 Capillidium adiaeretuma colony on PDA after 3 d at 25 °C b mycelia c, d primary conidiophores bearing primary conidia e, f primary conidia g Production of secondary conidia h first stage of forming microconidia i second stage of forming microconidia j, k ellipsoidal secondary conidia arising from slender conidiophores l chlamydospores. Scale bars: 10 mm (a); 100 μm (b); 20 μm (c–l).
Figure 4 from: Nie Y, Yu D-S, Wang C-F, Liu X-Y, Huang B (2020) A taxonomic revision of the genus Conidiobolus (Ancylistaceae, Entomophthorales): four clades including three new genera. MycoKeys 66: 55-81. https://doi.org/10.3897/mycokeys.66.46575
Figure 4 Conidiobolus coronatusa colony on PDA after 3 d at 21 °C b primary conidia c production of secondary conidia d, e primary conidiophores bearing primary conidia f, g microconidia h villose spores. Scale bars: 10 mm (a); 20 μm (b–h).
Figure 5 from: Nie Y, Yu D-S, Wang C-F, Liu X-Y, Huang B (2020) A taxonomic revision of the genus Conidiobolus (Ancylistaceae, Entomophthorales): four clades including three new genera. MycoKeys 66: 55-81. https://doi.org/10.3897/mycokeys.66.46575
Figure 5 a–gConidiobolus iuxtagenitushConidiobolus khandalensisa colony on PDA after 3 d at 21 °C b primary conidiophores bearing primary conidia c primary conidia d tertiary fusiform conidium from a globose spore e zygospore formation with the beak almost emptied of protoplasm f production of secondary conidia g zygospores h microconidia produced from global conidia. Scale bars: 10 mm (a); 20 μm (b–h).
Figure 2 from: Nie Y, Yu D-S, Wang C-F, Liu X-Y, Huang B (2020) A taxonomic revision of the genus Conidiobolus (Ancylistaceae, Entomophthorales): four clades including three new genera. MycoKeys 66: 55-81. https://doi.org/10.3897/mycokeys.66.46575
Figure 2 Capillidium heterosporuma colony on PDA after 3 d at 25 °C b primary conidiophores bearing primary conidia c primary conidia d, e, f ellipsoidal secondary conidia arising from slender conidiophores g, h production of secondary conidia. Scale bars: 10 mm (a); 20 μm (b, c, d, g, h); 100 μm (e, f).
Figure 1 from: Nie Y, Yu D-S, Wang C-F, Liu X-Y, Huang B (2020) A taxonomic revision of the genus Conidiobolus (Ancylistaceae, Entomophthorales): four clades including three new genera. MycoKeys 66: 55-81. https://doi.org/10.3897/mycokeys.66.46575
Figure 1 Phylogenetic tree constructed by maximum likelihood analyses of nucLSU, nucSSU, EF-1α and mtSSU sequences for Entomophthoromycotina, with some chytrid and mucoralean fungi as outgroups. Three new genera and one Chinese new record are shown in red. Maximum likelihood bootstrap values (≥ 50%) / Bayesian posterior probabilities (≥ 0.50) of main clades are indicated along branches. Scale bar indicates substitutions per site.
Figure 2 from: Cai Y, Nie Y, Zhao H, Wang Z, Zhou Z, Liu X, Huang B (2021) Azygosporus gen. nov., a synapmorphic clade in the family Ancylistaceae. MycoKeys 85: 161-172. https://doi.org/10.3897/mycokeys.85.73405
Figure 2 Morphological characters of Azygosporus macropapillatus: a) colony on PDA after 3 d at 21 °C, b) mycelia rarely branched at the colony edge, c-f) primary conidiophores bearing primary conidia, g-h) Primary conidia with prominent basal papillum, j-k) secondary conidia arising from primary conidia, i-m) azygospores formed in the middle region of the old hyphal segment, n) immature azygospore, and o-q) mature azygospores. Scale bars: a) 10 mm, b) 100 μm, and c-q) 20 μm.
Figure 1 from: Cai Y, Nie Y, Zhao H, Wang Z, Zhou Z, Liu X, Huang B (2021) Azygosporus gen. nov., a synapmorphic clade in the family Ancylistaceae. MycoKeys 85: 161-172. https://doi.org/10.3897/mycokeys.85.73405
Figure 1 ML tree of Coniobolus s.l. using nrLSU + TEF1 + mtSSU sequences. Entomophthora muscae and Erynia conica are selected as outgroups. Support for each node is shown as MP bootstrap support/ML bootstrap support/Bayesian posterior probability (MPBS/MLBS/BPP) for nodes with MPBS≧70%, MLBS≧70%) and BPP≧0.95. The new genus, Azyosporus, and new species, A. macropapillatus, are shown in red, and the new combination is shown in blue.
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OpenNeuro
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