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74 results for “conidia”
FIGURE 2. Xiuguozhangia macrospora. a. Substrate. b. Conidia and conidiophores under stereomicroscope. c in Xiuguozhangia macrospora (Pezizomycotina: Ascomycota)-a new species of bambusicolous fungi from India
FIGURE 2. Xiuguozhangia macrospora. a. Substrate. b. Conidia and conidiophores under stereomicroscope. c. Association of fungus with lichen. d. Conidiophores with lageniform proliferations. e. Holoblastic conidial ontogeny. f. Conidia. g. Dictyoseptate conidium. Scale bars: c = 100 μm; d, f = 20 μm; e, g = 10 μm.
FIGURE 5. Asterostomella coccineae. A. Infected leaf. B. Mycelial colony. C. Pycnothyria. D. Conidia. E. Mycelial colony with pycnothyria. F in New teleomorphic and anamorphic taxa of Asterinaceous black mildew from Western coast of India
FIGURE 5. Asterostomella coccineae. A. Infected leaf. B. Mycelial colony. C. Pycnothyria. D. Conidia. E. Mycelial colony with pycnothyria. F. Conidia. Illustrated by Pratik D. Natekar.
FIGURE 3. Asterostomella wrightiae. A. Infected leaf. B. Mycelial colony. C. Appressoriate mycelium. D. Pycnothyria. E. Conidia. F. Mycelial colony with pycnothyria. G in New teleomorphic and anamorphic taxa of Asterinaceous black mildew from Western coast of India
FIGURE 3. Asterostomella wrightiae. A. Infected leaf. B. Mycelial colony. C. Appressoriate mycelium. D. Pycnothyria. E. Conidia. F. Mycelial colony with pycnothyria. G. Conidia. Illustrated by Pratik D. Natekar.
FIGURE 4. Asterostomella salaciae. A. Infected leaf. B. Mycelial colony. C. Appressoriate mycelium. D. Pycnothyria. E. Conidia. F. Mycelial colony with pycnothyria. G in New teleomorphic and anamorphic taxa of Asterinaceous black mildew from Western coast of India
FIGURE 4. Asterostomella salaciae. A. Infected leaf. B. Mycelial colony. C. Appressoriate mycelium. D. Pycnothyria. E. Conidia. F. Mycelial colony with pycnothyria. G. Conidia. Illustrated by Pratik D. Natekar.
FIGURE 1. Asterina dysoxyli. A. Infected leaf. B. Mycelial colony. C. Thyriothecium. D. Asci. E. Ascospores. F. Conidia. G. Mycelial colony with thyriothecium. H. Ascus. I. Ascospores. J in New teleomorphic and anamorphic taxa of Asterinaceous black mildew from Western coast of India
FIGURE 1. Asterina dysoxyli. A. Infected leaf. B. Mycelial colony. C. Thyriothecium. D. Asci. E. Ascospores. F. Conidia. G. Mycelial colony with thyriothecium. H. Ascus. I. Ascospores. J. Conidia. Illustrated by Pratik D. Natekar.
FIGURE 2. Asterina mallotii. A. Infected leaf. B. Mycelial colony. C. Thyriothecium. D. Asci. E. Ascospores. F. Conidia. G. Mycelial colony with thyriothecia. H. Ascus. I. Ascospores. J in New teleomorphic and anamorphic taxa of Asterinaceous black mildew from Western coast of India
FIGURE 2. Asterina mallotii. A. Infected leaf. B. Mycelial colony. C. Thyriothecium. D. Asci. E. Ascospores. F. Conidia. G. Mycelial colony with thyriothecia. H. Ascus. I. Ascospores. J. Conidia. Illustrated by Pratik D. Natekar.
FIGURE 5. Dictyosporium hydei a. Mature conidia with one appendage. b. Conidia with two appendages. c. Conidia with three appendages. d in Two new species of Dictyosporium from India
FIGURE 5. Dictyosporium hydei a. Mature conidia with one appendage. b. Conidia with two appendages. c. Conidia with three appendages. d. Top view of conidia with attached appendages. Scale bar: = 10 μm.
FIGURE 4. Corynesporopsis quercicola. a, b. Conidiophores and conidia. c in Phylogenetic placement of a new species of Corynesporopsis from dead acacia wood indicates occurrence of tretic conidiogenesis within Xylariales
FIGURE 4. Corynesporopsis quercicola. a, b. Conidiophores and conidia. c. Young conidium emerging from apical pore of the terminal conidiogenous cell. d, e. Catenate conidia. Scale bars = 20 μm.
FIGURE 3. Corynesporopsis acaciae, microscopic characteristics. a. Conidiophores and conidia from the holotype. b. Conidiophores from another, overmature specimen. c in Phylogenetic placement of a new species of Corynesporopsis from dead acacia wood indicates occurrence of tretic conidiogenesis within Xylariales
FIGURE 3. Corynesporopsis acaciae, microscopic characteristics. a. Conidiophores and conidia from the holotype. b. Conidiophores from another, overmature specimen. c. Conidiophores from the ex-type culture shown in 2b. Scale bars: c, d, e = 10 μm.
FIGURE 2. Fusiconidium indicum. a–i. Conidiophores with conidiogeous cells and conidia. j, k. Conidia. l in Fusiconidium indicum (Melanommataceae) a novel species of asexual Ascomycetes
FIGURE 2. Fusiconidium indicum. a–i. Conidiophores with conidiogeous cells and conidia. j, k. Conidia. l. Culture on MEA.
FIGURE 4. Conidia with appendages and conidiophore. a. Chaetospermum camelliae b in Morphology and phylogeny of Chaetospermum (asexual coelomycetous Basidiomycota)
FIGURE 4. Conidia with appendages and conidiophore. a. Chaetospermum camelliae b. Chaetospermum artocarpi.
FIGURE 3. Corniculariella brasiliensis. Micromorphological characters. a Conidia 1-septate. b Conidiogenous cells phialidic. c in Corniculariella brasiliensis, a new species of coelomycetes in the rhizosphere of Caesalpinia echinata (Fabaceae, Caesalpinioideae) in Brazil
FIGURE 3. Corniculariella brasiliensis. Micromorphological characters. a Conidia 1-septate. b Conidiogenous cells phialidic. c Conidiomata eustromatic immersed in the culture medium.
FIGURE 3 Wiesneriomyces laurinus. A. Branched conidiophores. B. Conidia. C in Wiesneriomyces a new lineage of Dothideomycetes (Ascomycota) basal to Tubeufiales
FIGURE 3 Wiesneriomyces laurinus. A. Branched conidiophores. B. Conidia. C. Sporodochia with incurved setae. Scale bars: A–B = 10 µm, C = 20 µm.
FIGURE. Metarhizium guizhouense (GMB0010) (new host record). a, b. Fungus on stick insects (Phasmatodea) c, d. Green mycelium and sporulating conidiophores covered on the surface of inscect. e, f, g. Conidiophores h, i. Conidia on insect host. Scale bars: a, b = 5 mm, c = 2 mm, d = 500 μm, j–r = 10 μm, e–i = 5μm in Yunnan-Guizhou Plateau: a mycological hotspot
FIGURE. Metarhizium guizhouense (GMB0010) (new host record). a, b. Fungus on stick insects (Phasmatodea) c, d. Green mycelium and sporulating conidiophores covered on the surface of inscect. e, f, g. Conidiophores h, i. Conidia on insect host. Scale bars: a, b = 5 mm, c = 2 mm, d = 500 μm, j–r = 10 μm, e–i = 5μm
FIGURE. Helminthosporium velutinum (HKAS 107064, new host record and a new record from Guizhou Province) a–c. Colony on the substrate. d. Conidiophores. e–g. Conidiophore and conidia. h–l. Conidia. m. Germinating conidium. n, o. Culture on PDA from. n. above o. below after 4 weeks. Scale bars: d = 100 μm, e–g =50 μm, h–m = 20 μm. in Yunnan-Guizhou Plateau: a mycological hotspot
FIGURE. Helminthosporium velutinum (HKAS 107064, new host record and a new record from Guizhou Province) a–c. Colony on the substrate. d. Conidiophores. e–g. Conidiophore and conidia. h–l. Conidia. m. Germinating conidium. n, o. Culture on PDA from. n. above o. below after 4 weeks. Scale bars: d = 100 μm, e–g =50 μm, h–m = 20 μm.
FIGURE. Immersidiscosia eucalypti (IFRD 500-20) a. Host leaves. b. Specimen with conidiomata. c. Conidiomata. d. Section of conidiomata. e. Peridium of conidiomata. f–j. Conidia. Scale bars: b = 300 µm, c, e = 100 µm, d = 200 µm, f–j = 10 µm. in Yunnan-Guizhou Plateau: a mycological hotspot
FIGURE. Immersidiscosia eucalypti (IFRD 500-20) a. Host leaves. b. Specimen with conidiomata. c. Conidiomata. d. Section of conidiomata. e. Peridium of conidiomata. f–j. Conidia. Scale bars: b = 300 µm, c, e = 100 µm, d = 200 µm, f–j = 10 µm.
FIGURE. Myrmecridium schulzeri (IFRD500–012) a, b. Colonies on natural substrate. c–e. Conidiophores with conidia. f, g. Conidiogenous cells with conidia. h–l. Conidia. m Germinating conidia on PDA. n, o. Culture on PDA, n. from front, o. from reverse. Scale bars: c–e, h = 20 μm, m = 10 μm, f, g = 5 μm, i–l = 2 μm. in Yunnan-Guizhou Plateau: a mycological hotspot
FIGURE. Myrmecridium schulzeri (IFRD500–012) a, b. Colonies on natural substrate. c–e. Conidiophores with conidia. f, g. Conidiogenous cells with conidia. h–l. Conidia. m Germinating conidia on PDA. n, o. Culture on PDA, n. from front, o. from reverse. Scale bars: c–e, h = 20 μm, m = 10 μm, f, g = 5 μm, i–l = 2 μm.
Figure 2 from: Réblová M, Nekvindová J, Miller AN (2021) Phylogeny and taxonomy of Catenularia and similar fungi with catenate conidia. MycoKeys 81: 1-44. https://doi.org/10.3897/mycokeys.81.67785
Figure 2 A Phylogenetic analysis of the combined ITS and 28S sequences of members of the Chaetosphaeriaceae. Species names given in bold are taxonomic novelties; T, E, I, N and P indicate ex-type, ex-epitype, ex-isotype, ex-neotype and ex-paratype strains; * holotype of Chaetosphaeria trianguloconidia; # Catenularia cubensis fideLuo et al. (2019). Thickened branches indicate branch support with ML BS = 100%, PP values = 1.0. Branch support of nodes ≥ 75% ML BS and ≥ 0.95 PP is indicated above and below branches B phylogenetic analysis of ITS and 28S of the Chaetosphaeriaceae (continued). For legend refer to (A). Abbreviation: p.p. after a genus name (pro parte).
Figure 9 from: Réblová M, Nekvindová J, Miller AN (2021) Phylogeny and taxonomy of Catenularia and similar fungi with catenate conidia. MycoKeys 81: 1-44. https://doi.org/10.3897/mycokeys.81.67785
Figure 9 Nawawia antennata (PRA-20374 holotype) A, B colony C–G conidiophores H stromatic cells I–P conidia. Images: on natural substrate (A–P). Scale bars: 250 μm (A, B); 20 μm (C, F, G); 25 μm (D, E); 10 μm (H–N).
Figure 1 from: Réblová M, Nekvindová J, Miller AN (2021) Phylogeny and taxonomy of Catenularia and similar fungi with catenate conidia. MycoKeys 81: 1-44. https://doi.org/10.3897/mycokeys.81.67785
Figure 1 Illustrations of teleomorph and anamorph of Catenularia cupuliferaASphaeria cupulifera: ascoma, ascus and ascospores with sporulating conidiophores (holotype, Berkeley and Broome 1871) BPsilonia cuneiformis: conidiophores with conidia (holotype, Richon 1877).
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OpenNeuro
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