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17 results for “Onygenales”

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zenodo32/100

FIGURE. Chrysosporium multiforme (holotype). A. Conidiogenous structures. B. Intercalary conidia. C. Conidia. D–E. Colony (front and reverse) on PDA. Bars: A–C = 20 μm, D–E = 10 mm. in Morphological and phylogenetic characterisations reveal nine new species of Chrysosporium (Onygenaceae, Onygenales) in China

FIGURE. Chrysosporium multiforme (holotype). A. Conidiogenous structures. B. Intercalary conidia. C. Conidia. D–E. Colony (front and reverse) on PDA. Bars: A–C = 20 μm, D–E = 10 mm.

opennotspecifiedMar 2022View details →
zenodo32/100

FIGURE. Chrysosporium kaiyangense (holotype). A–C. Conidiogenous structures. D. Conidia. E. Colony on PDA media. Bars: A–D = 10 μm, E = 10 mm. in Morphological and phylogenetic characterisations reveal nine new species of Chrysosporium (Onygenaceae, Onygenales) in China

FIGURE. Chrysosporium kaiyangense (holotype). A–C. Conidiogenous structures. D. Conidia. E. Colony on PDA media. Bars: A–D = 10 μm, E = 10 mm.

opennotspecifiedMar 2022View details →
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FIGURE. Chrysosporium jiangsuense (holotype). A. Conidiogenous structures. B. Conidia. C–D. Colonies (front and reverse) on PDA. Bars: A–B = 20 μm; C–D = 10 mm. in Morphological and phylogenetic characterisations reveal nine new species of Chrysosporium (Onygenaceae, Onygenales) in China

FIGURE. Chrysosporium jiangsuense (holotype). A. Conidiogenous structures. B. Conidia. C–D. Colonies (front and reverse) on PDA. Bars: A–B = 20 μm; C–D = 10 mm.

opennotspecifiedMar 2022View details →
zenodo32/100

FIGURE. Chrysosporium irregularum (holotype). A. Conidiogenous structures. B. Intercalary conidia. C. Conidia. D–E. Colonies (front and reverse) on PDA. Bars: A–C = 20 μm, D–E= 10 mm. in Morphological and phylogenetic characterisations reveal nine new species of Chrysosporium (Onygenaceae, Onygenales) in China

FIGURE. Chrysosporium irregularum (holotype). A. Conidiogenous structures. B. Intercalary conidia. C. Conidia. D–E. Colonies (front and reverse) on PDA. Bars: A–C = 20 μm, D–E= 10 mm.

opennotspecifiedMar 2022View details →
zenodo32/100

FIGURE. Chrysosporium guangxiense (holotype). A. Conidiogenous structures. B. Racquet hyphae. C. Intercalary conidia. D–E. Colonies (front and reverse) on PDA. Bars: A–C = 20 μm, D–E = 10 mm. in Morphological and phylogenetic characterisations reveal nine new species of Chrysosporium (Onygenaceae, Onygenales) in China

FIGURE. Chrysosporium guangxiense (holotype). A. Conidiogenous structures. B. Racquet hyphae. C. Intercalary conidia. D–E. Colonies (front and reverse) on PDA. Bars: A–C = 20 μm, D–E = 10 mm.

opennotspecifiedMar 2022View details →
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FIGURE 0 in Morphological and phylogenetic characterisations reveal nine new species of Chrysosporium (Onygenaceae, Onygenales) in China

FIGURE 0. Chrysosporium villiformum (holotype). A–C. Conidiogenous structures. D. Conidia. E–F. Colony (front and reverse) on PDA. Bars: A–D = 20 μm, E–F = 10 mm.

opennotspecifiedMar 2022View details →
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FIGURE. Phylogenetic analysis of Chrysosporium spp. based on ITS sequences. Statistical support values (≥50 %) are shown at nodes, and presented as ML bootstrap support/Bayesian posterior probabilities. Names in black bold are the strains isolated in this study, the coloured names are the new species. in Morphological and phylogenetic characterisations reveal nine new species of Chrysosporium (Onygenaceae, Onygenales) in China

FIGURE. Phylogenetic analysis of Chrysosporium spp. based on ITS sequences. Statistical support values (≥50 %) are shown at nodes, and presented as ML bootstrap support/Bayesian posterior probabilities. Names in black bold are the strains isolated in this study, the coloured names are the new species.

opennotspecifiedMar 2022View details →
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FIGURE. Chrysosporium gansuense (holotype). A–B. Conidiogenous structures. C. Conidia. D–E. Colonies (front and reverse) on PDA media. Bars A–C = 10 μm, D–E = 10 mm. in Morphological and phylogenetic characterisations reveal nine new species of Chrysosporium (Onygenaceae, Onygenales) in China

FIGURE. Chrysosporium gansuense (holotype). A–B. Conidiogenous structures. C. Conidia. D–E. Colonies (front and reverse) on PDA media. Bars A–C = 10 μm, D–E = 10 mm.

opennotspecifiedMar 2022View details →
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FIGURE. Chrysosporium sichuanense (holotype). A. Conidiogenous structures. B. Arthroconidia. C. Racquet hyphae. D. Conidia. E–F. Colony (front and reverse) on PDA. Bars: A–D = 20 μm, E–F = 10 mm. in Morphological and phylogenetic characterisations reveal nine new species of Chrysosporium (Onygenaceae, Onygenales) in China

FIGURE. Chrysosporium sichuanense (holotype). A. Conidiogenous structures. B. Arthroconidia. C. Racquet hyphae. D. Conidia. E–F. Colony (front and reverse) on PDA. Bars: A–D = 20 μm, E–F = 10 mm.

opennotspecifiedMar 2022View details →
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Genetic differences between Coccidioides spp. and closely related nonpathogenic Onygenales

<p><strong>Abstract:&nbsp; </strong><em>Coccidioides</em> spp. are dimorphic, pathogenic fungi that can cause severe human and animal disease.&nbsp; Like the other primary fungal pathogens, animal infection results in a morphologic transformation from the environmental mycelial phase to a tissue phase, known as a spherule.&nbsp; The sequencing and annotation of <em>Coccidioides</em> spp. and the genomes of several nonpathogenic Onygenales species allows orthology comparisons that may provide clues about the <em>Coccidioides</em> spp.&nbsp; genes involved in pathogenesis.&nbsp; There were a number of differences in the characterization of the genes that are <em>Coccidioides</em> spp.-specific and those that are found in both <em>Coccidioides</em> spp. and non-pathogenic Onygenales.&nbsp; Many more <em>Coccidioides </em>spp.-specific genes are up-regulated expression in spherules.&nbsp; <em>Coccidioides </em>spp.-specific genes more often lacked functional annotation, were more often classified as orphan genes and had SNPs with higher non-synonymous/ synonymous ratios.&nbsp; &nbsp;&nbsp;Review of individual genes in the <em>Coccidioides</em> spp.-specific group identified two genes in the Velvet family, a histidine kinase, two thioredoxin genes, a calmodulin gene and ureidoglycolate hydrolase.&nbsp; Velvet genes have been found to be important for mycelium differentiation to yeast in <em>Histoplasma capsulatum</em>.&nbsp; Hopefully, identification of these genes will be useful for pursuing potential <em>Coccidioides</em> spp. virulence genes in the future.</p> <p>This is Supplemental Table 1 from that manuscript</p>

opencc-by-4.0Jul 2019View details →
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Figure 4 from: Zhang Z-Y, Han Y-F, Chen W-H, Liang Z-Q (2019) Phylogeny and taxonomy of three new Ctenomyces (Arthrodermataceae, Onygenales) species from China. MycoKeys 47: 1-16. https://doi.org/10.3897/mycokeys.47.30740

Figure 4 Ctenomycesobovatus (from ex-holotype strain CGMCC 3.19225). A–D Conidiogenous structures and conidia E, F Colony on PDA at day 14. Scale bars: 10 µm (A–D); 10 mm (E, F).

opencc-by-4.0Feb 2019View details →
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Figure 1 from: Zhang Z-Y, Han Y-F, Chen W-H, Liang Z-Q (2019) Phylogeny and taxonomy of three new Ctenomyces (Arthrodermataceae, Onygenales) species from China. MycoKeys 47: 1-16. https://doi.org/10.3897/mycokeys.47.30740

Figure 1 Phylogenetic tree of Arthrodermataceae based on the ITS dataset and Myceliophthoralutea (CBS 145.77 and MUCL 10070) as the outgroup taxon. Numbers at nodes are Bayesian posterior probabilities (left, BPP ≥0.75) and maximum likelihood bootstrap values (right, BS ≥70%).

opencc-by-4.0Feb 2019View details →
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Figure 3 from: Zhang Z-Y, Han Y-F, Chen W-H, Liang Z-Q (2019) Phylogeny and taxonomy of three new Ctenomyces (Arthrodermataceae, Onygenales) species from China. MycoKeys 47: 1-16. https://doi.org/10.3897/mycokeys.47.30740

Figure 3 Ctenomycesalbus (from ex-holotype strain CGMCC 3.19232). A–C Conidiogenous structures and conidia D, E Intercalary conidia F, G Colony on PDA at day 14. Scale bars: 10 µm (A–E); 10 mm (F, G).

opencc-by-4.0Feb 2019View details →
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Figure 2 from: Zhang Z-Y, Han Y-F, Chen W-H, Liang Z-Q (2019) Phylogeny and taxonomy of three new Ctenomyces (Arthrodermataceae, Onygenales) species from China. MycoKeys 47: 1-16. https://doi.org/10.3897/mycokeys.47.30740

Figure 2 Phylogenetic tree of Ctenomyces based on the ITS+EF1A+RPB2 dataset and Myceliophthoralutea (CBS 145.77 and MUCL 10070) as the outgroup taxon. Numbers at nodes are Bayesian posterior probabilities (left, BPP ≥0.9) and maximum likelihood bootstrap values (right, ≥95%).

opencc-by-4.0Feb 2019View details →
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Figure 6 from: Zhang Z-Y, Han Y-F, Chen W-H, Liang Z-Q (2019) Phylogeny and taxonomy of three new Ctenomyces (Arthrodermataceae, Onygenales) species from China. MycoKeys 47: 1-16. https://doi.org/10.3897/mycokeys.47.30740

Figure 6 Ctenomycesserratus (from strain CGMCC 3.18622) A–E Conidiogenous structures and conidia F, G Colony on PDA at day 14. Scale bars: 10 µm (A–E); 10 mm (F, G).

opencc-by-4.0Feb 2019View details →
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Figure 5 from: Zhang Z-Y, Han Y-F, Chen W-H, Liang Z-Q (2019) Phylogeny and taxonomy of three new Ctenomyces (Arthrodermataceae, Onygenales) species from China. MycoKeys 47: 1-16. https://doi.org/10.3897/mycokeys.47.30740

Figure 5 Ctenomycespeltricolor (from ex-holotype strain CGMCC 3.19229) A–D Conidiogenous structures and conidia E, F Colony on PDA at day 14. Scale bars: 10 µm (A–D); 10 mm (E, F).

opencc-by-4.0Feb 2019View details →
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FIGURE. Chrysosporium fusiforme (holotype). A–B. Conidiogenous structures. C. Conidia. D–E. Colonies (front and reverse) on PDA media. Bars A–C = 20 μm, D–E = 10 mm. in Morphological and phylogenetic characterisations reveal nine new species of Chrysosporium (Onygenaceae, Onygenales) in China

FIGURE. Chrysosporium fusiforme (holotype). A–B. Conidiogenous structures. C. Conidia. D–E. Colonies (front and reverse) on PDA media. Bars A–C = 20 μm, D–E = 10 mm.

opennotspecifiedMar 2022View details →

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Allen Brain Atlas

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DANDI Archive for NWB datasets

DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.

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International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

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Last verified 2026-04-29Open record

OpenNeuro

OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record