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130 results for “Ascomycetes”
FIGURE 1 in The phylogenetic position of Coniarthonia and the transfer of Cryptothecia miniata to Myriostigma (Arthoniaceae, lichenized ascomycetes)
FIGURE 1. Coniarthonia megaspora, isotype (ABL). A. habitus. B. ascospores. C. asci. D. section through apothecium. Scale: A = 0.5 cm, B = 10 μm, C = 20 μm, D = 50 μm.
FIGURE 2 in The phylogenetic position of Coniarthonia and the transfer of Cryptothecia miniata to Myriostigma (Arthoniaceae, lichenized ascomycetes)
FIGURE 2. Myriostigma miniatum, isoepitype (ABL). A. habitus. B. detail showing ascomata. C. ascospore in median optical section showing large lumina in the center and small lumina in the periphery. D. the same ascospore in optical surface view showing only small lumina. Scale: A = 0.5 cm, B = 0.5 mm, C–D = 10 μm.
FIGURE 4 in Multi-locus phylogeny supports the placement of Endocarpon pulvinatum within Staurothele s. str. (lichenised ascomycetes, Eurotiomycetes, Verrucariaceae)
FIGURE 4. Most likely unrooted tree (with BS values) showing the relationships within the genus Staurothele based on nrLSU. The collection number in bold (BMC 12394) represents E. tortuosum (= E. pulvinatum). The scale bar represents the number of nucleotide substitutions/site.
FIGURE 1 in Multi-locus phylogeny supports the placement of Endocarpon pulvinatum within Staurothele s. str. (lichenised ascomycetes, Eurotiomycetes, Verrucariaceae)
FIGURE 1. General habit of Endocarpon pulvinatum. A. Large thalli found on the nunatak Esjubjörg in southeastern Iceland (LA31862). B. Close-up on specimen SH300 collected near a glacier river in Northern Iceland. Bar = 5 mm. Photos Starri Heiðmarsson.
FIGURE 2 in Multi-locus phylogeny supports the placement of Endocarpon pulvinatum within Staurothele s. str. (lichenised ascomycetes, Eurotiomycetes, Verrucariaceae)
FIGURE 2. Phylogenetic placement of E. pulvinatum within the family Verrucariaceae resulting from a Bayesian analysis of a multi-locus dataset (ITS, nrLSU, mtSSU and mcm7). Support values are reported above or below the branches (posterior probability [PP]/bootstrap support [BS]). Internodes with strong support (1.00 PP and 100% BS) are indicated by a black dot. Only values of PP ≥ 0.95 and of BS ≥ 70% are shown. Two species of Capronia were used as an outgroup.
FIGURE 3 in Multi-locus phylogeny supports the placement of Endocarpon pulvinatum within Staurothele s. str. (lichenised ascomycetes, Eurotiomycetes, Verrucariaceae)
FIGURE 3. Most likely unrooted tree (with BS values) showing the relationships within the genus Staurothele based on ITS. The collection number in bold (BMC 12394) represents E. tortuosum (= E. pulvinatum). The scale bar represents the number of nucleotide substitutions/site.
PLATE 1 in Coprophilous ascomycetes with passive ascospore liberation from Brazil
PLATE 1. Coprophilous ascomycetes with passive ascospore liberation recorded in Brazil. Corynascus sepedonium 1. Ascoma, 2. peridium, 3. ascospores and 4. conidium. Kernia nitida 5. Ascoma on dung and 6. hair tip. Leuconeurospora pulcherrima 7. Ascoma, 8. peridium and 9. ascospores. Lophotrichus bartlettii 10. Ascoma on dung, 11. mounted and 12. asci. Melanospora damnosa 13. Ascoma on dung and 14. mounted. M. zamiae 15. Ascoma in mounting and 16. ascospores. Monascus ruber 17. Ascoma in mounting. Mycoarachis inversa 18. Ascoma on incubation paper and 19. mounted, 20. asci and 21. ascospores. Pseudoallescheria boydii 22. Ascoma in mounting, 23. ascus and 24. mature ascospores. Thielavia terrestris 25. Ascomata on dung. 26. mature ascospores. Tripterosporella pakistani 27. Ascoma in mounting, 28. ascus and 29. mature ascospore. Zopfiella erostrata 30. Cleistothecium in mounting. Z. longicaudata 31. Cleistothecium in mounting. Scale bars: 1, 6, 9, 16, 17=10 μm. 2, 21= 2.5 μm. 3, 4, 20, 22, 23, 24, 26= 5 μm. 5=200 μm. 7, 11, 14=50 μm. 8, 12, 13= 20 μm. 15, 18=100 μm. 19=25 μm. 10, 25= 300 μm. Figure: R.F.R. Melo.
FIGURE 7 in Lamprospora sylvatica (Pyronemataceae), a new bryophilous ascomycete on Dicranum montanum
FIGURE 7. Ascospores similar to Lamprospora sylvatica. a. L. cf. areolata (col. no. 34751), SEM of ascospore, b. L. campylopodis (14246), SEM of ascospore, c. L. faroensis (holotype, UPS F-016650), light microscopic image of ascospores, d. L. feurichiana (46313), SEM of ascospore, e. L. kristiansenii (46317), SEM of ascospore, f. L. miniata (43741), SEM of ascospore. Scale bar = 10 μm. Photos J. Eckstein.
FIGURE 2 in Lamprospora sylvatica (Pyronemataceae), a new bryophilous ascomycete on Dicranum montanum
FIGURE 2. Lamprospora sylvatica (a–b, e–i. holotype, PRM 946415, c–d. PRM 946419) a–c. ascospores stained with cotton blue, d. ascospores in water, e. young asci, f. upper part of paraphyses, g. cross section of an apothecium showing hymenium, subhymenium, medullary and ectal excipulum, h. cross section showing subhymenium, medullary and ectal excipulum, i. marginal hyphae of an apothecium. Scale bars: a–f, i = 20 μm; g = 100 μm; h = 50 μm. Photos Z. Egertová.
FIGURE 3 in Lamprospora sylvatica (Pyronemataceae), a new bryophilous ascomycete on Dicranum montanum
FIGURE 3. Lamprospora sylvatica (a–b. B Eckstein-43421, c, d. PRM 946416) SEM of ascospores. Scale bars: a–d = 10 μm. Photos J. Eckstein.
FIGURE 1 in Lamprospora sylvatica (Pyronemataceae), a new bryophilous ascomycete on Dicranum montanum
FIGURE 1. Lamprospora sylvatica (a. PRM 946419, b. B Eckstein-43421, c. holotype, PRM 946415, d. PRM 946418). a. typical habitat—a moss covered rotten conifer log, b, c, d. apothecia between shoots of Dicranum montanum. Scale bar: b = 1 mm. Photos M. Sochor (a), J. Eckstein (b), Z. Egertová (c, d).
FIGURE 6 in Lamprospora sylvatica (Pyronemataceae), a new bryophilous ascomycete on Dicranum montanum
FIGURE 6. Bayesian inference phylogeny trees based on LSU and ITS loci; posterior probabilities shown above branches. Note that basal splits in the ITS tree may be influenced by its hypervariability in the group and ambiguous alignment. Collection numbers are given after underscores.
FIGURE 5 in Lamprospora sylvatica (Pyronemataceae), a new bryophilous ascomycete on Dicranum montanum
FIGURE 5. Lamprospora sylvatica (PRM 946416) drawings of two infectious structures in optical section. Scale bar = 50 μm. Illustrated by J. Eckstein.
FIGURE 4 in Lamprospora sylvatica (Pyronemataceae), a new bryophilous ascomycete on Dicranum montanum
FIGURE 4. Lamprospora sylvatica (a–b. PRM 946416) a. shoot of Dicranum montanum with infections on rhizoids indicated by arrows, b. microscopic image of an infection, note the cluster of thick-walled cells, the brown short-celled hyphae at bottom (arrows) do not belong to L. sylvatica. Scale bars: a = 1 mm; b = 50 μm. Photos J. Eckstein.
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 1 in Fusiconidium indicum (Melanommataceae) a novel species of asexual Ascomycetes
FIGURE 1. Maximum likelihood (ML) tree inferred from ITS and LSU showing the relationship of Fusiconidium in family Melanommataceae (Pleosporales). The species from the present study is in red (Fusiconidium indicum NFCCI 4039).
FIGURE 3 in Pararhexoacrodictys (Incertae sedis, Ascomycetes) gen. nov., new combinations and new records of hyphomycetes from Brazil
FIGURE 3. New records for Brazil: A Pseudoacrodictys aquatica HUEFS 203037. B, Pseudoacrodictys limoniaceae HUEFS 203038. C- E Shrungabeeja varijadencens HUEFS 216690: C, conidial bottom with striations from side and bottom view; hyaline septate hyphae observed in conidia initials (D) and in a fully development conidia (E). Scale bars: A–C, E, F= 20 μm; D= 30 μm.
FIGURE 2 in Pararhexoacrodictys (Incertae sedis, Ascomycetes) gen. nov., new combinations and new records of hyphomycetes from Brazil
FIGURE 2. Pararhexoacrodictys minima (HUEFS 225278, holotype). A: conidia; B- E conidiophores and conidia; G. Bar =20 μm.
FIGURE 1 in Pararhexoacrodictys (Incertae sedis, Ascomycetes) gen. nov., new combinations and new records of hyphomycetes from Brazil
FIGURE 1. Pararhexoacrodictys catolensis: A–D, G, H conidia; E, F, I, J conidiophores and conidia; G: collapsed conidia showing cracked and peeled-off walls. (A, B, E from paratype HUEFS 216699; C, D, F- J from holotype HUEFS 203035). Arrows showing slightly-pigmented secession zone. Bars =20 μm.
FIGURE 1 in Four new species of Arthothelium (Arthoniales, Ascomycetes) from Africa and Socotra
FIGURE 1. New species of Arthothelium from Africa. Arthothelium atrorubrum (A−E, holotype), Arthothelium aurantiacopruinosum (F−J, holotype), A−B, F−G. Thallus with apothecia. C−E, I & J. Ascospores. H. Ascus in water. Scale in A, F = 1000 μm, in B = 500 μm, in C−E, I & J = 10 μm, in G = 250 μm, in H = 20 μm.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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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.
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.
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.