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23 results for “lignicolous”
FIG. 2 in New species and records of mostly lignicolous dothideomycetous ascomycetes from Brazil
FIG. 2. — Section through ascoma of Melomastia septemseptata sp. nov. (holo-, CGMS). Scale bar: 200 μm.
FIG. 3 in New species and records of mostly lignicolous dothideomycetous ascomycetes from Brazil
FIG. 3. — Section through ascoma of Melomastia septemseptata sp. nov. (holo-, CGMS). Scale bar: 20 μm.
FIG. 1 in New species and records of mostly lignicolous dothideomycetous ascomycetes from Brazil
FIG. 1. — Habitus of Melomastia septemseptata sp. nov. (holo-, CGMS). Scale bar: 5 mm.
FIG. 4 in New species and records of mostly lignicolous dothideomycetous ascomycetes from Brazil
FIG. 4. — Ascospores of Melomastia septemseptata sp. nov. (holo-, CGMS). Scale bar: 10 μm.
FIGURE 2 in Wongia suae sp. nov., a lignicolous freshwater fungus from Yuanjiang (Red River) Basin, China
FIGURE 2. Wongia fusiformis (KUN-HKAS 102464). (a) Colonies on submerged decaying wood; (b–e) Conidiophores and conidia; (f–h) Conidiogenous cells; (i–n) Conidia; (o) Germinating conidium; (p, q) Culture on PDA from front and reverse. Scale bars: (b–d) 40 µm; (e) 30µm; (f–o) 10 µm.
FIGURE 1 in Wongia suae sp. nov., a lignicolous freshwater fungus from Yuanjiang (Red River) Basin, China
FIGURE 1. RAxML tree based on analysis of combined ITS, LSU, rpb2, SSU and tef1-α dataset. RAxML bootstrap support values equal to or greater than 75% are given before the forward slash. Branches with bayesian posterior probabilities equal to or higher than 0.95 are given after the forward slash. The tree is rooted to Barbatosphaeria barbirostris (AFTOL-ID 967). The ex-type strains are in bold. The newly obtained sequences are indicated in red.
FIGURE 1 in Appendopyricularia guttulata sp. nov., a lignicolous freshwater fungus from Dianchi Lake in Yunnan, China
FIGURE 1. RAxML tree based on analysis of combined ITS and LSU dataset. RAxML bootstrap support values equal to or greater than 75% are given before the forward slash. Branches with Bayesian posterior probabilities equal to or higher than 0.95 are given after the forward slash. The tree is rooted to Distoseptispora thysanolaenae (HKAS 102247) and Di. submersa (MFLUCC 16-0946). The ex-type strains are in bold. The newly obtained sequences are indicated in red.
FIGURE 2 in Khaleijomyces marinus gen. et sp. nov. (Juncigenaceae, Torpedosporales) a new lignicolous marine fungus from Saudi Arabia
FIGURE 2. Khaleijomyces marinus (CBS H–22564, holotype) a Squash of ascoma, asci and ascospores. b Vertical section through ascoma. c,d Vertical section through peridium showing reddish-brown, textura epidermoidea outer layer, and hyaline, textura angularis inner layer. e Vertical section through periphysate neck. f, i–k asci at different stages of maturity. Note: k Catenophyses, arrowed, j,k in toluidine blue. i,m Hyaline, gutulate ascospores. n–q Old, light-brown to brown, septate ascospores. Scale bars: a = 100 μm, b,f = 50 μm, c,d = 25 μm, e, g–q = 15 μm.
FIGURE 1 in Khaleijomyces marinus gen. et sp. nov. (Juncigenaceae, Torpedosporales) a new lignicolous marine fungus from Saudi Arabia
FIGURE 1. Phylogenetic relationships of Khaleijomyces marinus with other genera in Juncigenaceae and related orders based on nucleotide sequences of the combined SSU and LSU rDNA. The maximum likelihood tree (ML) (-ln likelihood = 15791.78) was constructed as described in the text. Bootstrap support on the nodes represent ML and MP ≥ 50%. Branches received Bayesian pp ≥ 95% are in bold. The tree is rooted to Xylariales. Sequences of the new species in the white box.
FIGURE 2. A, B & C in Micarea fennica, a new lignicolous lichen species from Finland
FIGURE 2. A, B & C Micarea fennica sp. nov. (holotype H). A, Stalked pycnidium extruding mesoconidia, scale bar 100 μm; B, Mesoconidia in water, scale bar 10 μm; C, Habit, scale bar 1mm; D, Collection locality of M. fennica in Kalajanvuori old-growth forest in central Finland.
FIGURE 1 in Micarea fennica, a new lignicolous lichen species from Finland
FIGURE 1. Phylogenetic position of Micarea fennica sp. nov. (shown in bold). A maximum likelihood phylogram obtained from RAxML analysis based on the combined ITS, mtSSU and Mcm7 data set. Branches supported with bootstrap values ≥75% in RAxML analyses are shown above nodes.
FIGURE 3 in Phaeoisaria ellipsoidea (Pleurotheciaceae, Pleurotheciales, Sordariomycetes), a new lignicolous freshwater fungus from Xishuangbanna, Yunnan Province, China
FIGURE 3. Sterigmatobotrys rudis (IFRD 500-42) a, b Colonies on natural substrate. c–g Conidiophores with adhering conidia. h Apical region of conidia. i–o Conidia and fragments of conidial chains. p Germinated conidium. q Colony on PDA (from front). r Colony on PDA (from reverse). Scale bars: c = 20 μm, d, f, g = 30 μm, e = 50 μm, h–p = 10 μm.
FIGURE 1 in Phaeoisaria ellipsoidea (Pleurotheciaceae, Pleurotheciales, Sordariomycetes), a new lignicolous freshwater fungus from Xishuangbanna, Yunnan Province, China
FIGURE 1. Maximum likelihood majority rule consensus tree for Pleurotheciaceae based on a dataset of combined LSU, SSU, ITS and rpb2 sequence data. Bootstrap support values for maximum likelihood (the first value) equal to or greater than 75% and Bayesian posterior probabilities (the second value) equal to or greater than 0.95 are given above the nodes as MLBS/BIPP. The strain numbers are noted after the species names. Newly generated sequences are indicated in red, and ex-type strains are in bold. The tree is rooted with Conioscypha peruviana (ILL 41202) and C. pleiomorpha (FMR 13134).
FIGURE 2 in Phaeoisaria ellipsoidea (Pleurotheciaceae, Pleurotheciales, Sordariomycetes), a new lignicolous freshwater fungus from Xishuangbanna, Yunnan Province, China
FIGURE 2. Phaeoisaria ellipsoidea (IFRD 9462, holotype) a, b Colonies on the natural substratum. c, d Conidiophores with conidia. e, f Conidiogenous cells bearing conidia. g–n Conidia. o Colony on PDA (from front). p Colony on PDA (from reverse). Scale bars: c = 50 μm, d = 80 μm, e = 10 μm, f–n = 2 μm.
FIGURE 1 in A new lignicolous hyphomycete species of Neospadicoides in Xenospadicoidaceae (Xenospadicoidales) from Thailand
FIGURE 1. RAxML tree based on analysis of a combined ITS, LSU, SSU and RPB2 sequences for Xenospadicoidaceae. Bootstrap support values for maximum likelihood (ML) equal to or greater than 75% were given above the nodes (left). Bayesian posterior probability (BIPP) equal to or greater than 0.95 were given above the nodes (right) and hyphen (-) were marked as values below 0.95. The tree was rooted to Ceratostomella cuspidata (ICMP 17629) and C. pyrenaica (CBS 129343) (Réblová et al. 2018). Two new isolates were shown in red.
FIGURE 3 in A new lignicolous hyphomycete species of Neospadicoides in Xenospadicoidaceae (Xenospadicoidales) from Thailand
FIGURE 3. Neospadicoides amphibia sporulation in PDA culture (MFLUCC 21-0167, ex-type). a Germinated conidium. b Colony culture on PDA from surface at 2 weeks. c–e Development of mycelium and conidia in culture. f Conidiophores with conidia. g Conidiogenous cells with sometimes branched conidiophores. h–j Conidia. Scale bars: a, h–j = 10 μm, d, f = 50 μm, e, g = 20 μm.
FIGURE 2 in A new lignicolous hyphomycete species of Neospadicoides in Xenospadicoidaceae (Xenospadicoidales) from Thailand
FIGURE 2. Neospadicoides amphibia (MFLU 21-0108, holotype). a Colonies on substrate. b–d Conidiophores with conidiogenous cells and conidia. e Successive proliferations conidiogenous cells at the apex. f–m Immature and mature conidia. Scale bars: b = 100 μm, c–e = 20 μm, f–m =10 μm.
Figure 3 from: Xu L, Bao D-F, Luo Z-L, Su X-J, Shen H-W, Su H-Y (2020) Lignicolous freshwater ascomycota from Thailand: Phylogenetic and morphological characterisation of two new freshwater fungi: Tingoldiago hydei sp. nov. and T. clavata sp. nov. from Eastern Thailand. MycoKeys 65: 119-138. https://doi.org/10.3897/mycokeys.65.49769
Figure 3 Tingoldiago clavata (MFLU 19–2843, holotype). a–c ascomata on wood d section of ascoma e ostiole f peridium g pseudoparaphyses h–l asci m–r ascospores s vegetative hyphae in culture t, u culture on PDA from surface and reverse. Scale bars: 50 μm (d, e), 20 μm (f–l), 10 μm (m–s).
Figure 2 from: Xu L, Bao D-F, Luo Z-L, Su X-J, Shen H-W, Su H-Y (2020) Lignicolous freshwater ascomycota from Thailand: Phylogenetic and morphological characterisation of two new freshwater fungi: Tingoldiago hydei sp. nov. and T. clavata sp. nov. from Eastern Thailand. MycoKeys 65: 119-138. https://doi.org/10.3897/mycokeys.65.49769
Figure 2 Tingoldiago hydei (MFLU 19–2842, holotype). a–c Ascomata on wood d section of ascoma e peridium f, g pseudoparaphyses h ostiole i–l asci m–r ascospores s germinating ascospore t vegetative hyphae in culture u, v culture on PDA from surface and reverse. Scale bars: 50 μm (d, e, h), 20 μm (f–g, m–t), 30 μm (i–l).
Figure 1 from: Xu L, Bao D-F, Luo Z-L, Su X-J, Shen H-W, Su H-Y (2020) Lignicolous freshwater ascomycota from Thailand: Phylogenetic and morphological characterisation of two new freshwater fungi: Tingoldiago hydei sp. nov. and T. clavata sp. nov. from Eastern Thailand. MycoKeys 65: 119-138. https://doi.org/10.3897/mycokeys.65.49769
Figure 1 Phylogenetic tree based on RAxML analyses of combined LSU, SSU, ITS and TEF1-α sequence data. Bootstrap support values for maximum likelihood (ML, black) and maximum parsimony (MP, red) higher than 75% and Bayesian posterior probabilities (PP, black) greater than 0.95 are indicated above the nodes as MP / ML /PP. The ex-type strains are in bold and the newly obtained isolates are in red. The tree is rooted at Corynespora smithii (CABI5649b) and Corynespora cassiicola (CBS100822).
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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
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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.
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.