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16 results for “Irpex”
FIGURE 3 in Irpex jinshaensis sp. nov. and I. subulatus comb. nov. (Irpicaceae, Polyporales), evidenced by morphological characters and phylogenetic analysis
FIGURE 3. Microscopic structures of Irpex jinshaensis (Holotype, Dai 22402). a Basidiospores; b Basidia and basidioles; c Cystidia; d Hyphae from subiculum; e Hyphae from trama. Drawings by: Zhan-Bo Liu.
FIGURE 2 in Irpex jinshaensis sp. nov. and I. subulatus comb. nov. (Irpicaceae, Polyporales), evidenced by morphological characters and phylogenetic analysis
FIGURE 2. Basidiocarp of Irpex jinshaensis (Holotype, Dai 22402). Scale bar = 1.0 cm. Photo by: Yu-Cheng Dai.
FIGURE 1 in Irpex jinshaensis sp. nov. and I. subulatus comb. nov. (Irpicaceae, Polyporales), evidenced by morphological characters and phylogenetic analysis
FIGURE 1. Phylogeny of Irpex and related species by ML analysis based on combined ITS and nLSU rDNA sequences. Branches are labeled with Maximum Likelihood bootstrap> 50%, parsimony bootstrap proportions> 50%, and Bayesian Posterior Probabilities> 0.90, respectively. New species and combination are in bold.
Fig. 5. Key 1H–1H in Sesquiterpenoids and furan derivatives from the Orychophragmus violaceus (L.) O.E. Schulz endophytic fungus Irpex lacteus OV38
Fig. 5. Key 1H–1H COSY () and HMBC () correlations of compounds 1, 5, 9, 10, 11, 12, 13, 16, and 17.
Fig. 10 in Sesquiterpenoids and furan derivatives from the Orychophragmus violaceus (L.) O.E. Schulz endophytic fungus Irpex lacteus OV38
Fig. 10. Inhibitory effects of compounds 1, 3, 4, 5, 9, 10, 11, 12, 13, 16, and 17 on production of NO in 1 μg/mL LPS-induced RAW 264.7 cells. Values are presented as mean ± SD for three individual experiments. ###p <0.001 vs. blank group. ***p <0.001 vs. model group.
FIGURE 4 in Irpex jinshaensis sp. nov. and I. subulatus comb. nov. (Irpicaceae, Polyporales), evidenced by morphological characters and phylogenetic analysis
FIGURE 4. Basidiocarps of Irpex subulatus (Dai 16719). Photo by: Yu-Cheng Dai.
Fig. 7. Perspective ORTEP drawings for 12 and 13 in Sesquiterpenoids and furan derivatives from the Orychophragmus violaceus (L.) O.E. Schulz endophytic fungus Irpex lacteus OV38
Fig. 7. Perspective ORTEP drawings for 12 and 13.
Fig. 6 in Sesquiterpenoids and furan derivatives from the Orychophragmus violaceus (L.) O.E. Schulz endophytic fungus Irpex lacteus OV38
Fig. 6. Experimental and calculated ECD spectra of compounds 9 and 16.
Fig. 4. Perspective ORTEP drawing for 5 in Sesquiterpenoids and furan derivatives from the Orychophragmus violaceus (L.) O.E. Schulz endophytic fungus Irpex lacteus OV38
Fig. 4. Perspective ORTEP drawing for 5.
Fig. 3 in Sesquiterpenoids and furan derivatives from the Orychophragmus violaceus (L.) O.E. Schulz endophytic fungus Irpex lacteus OV38
Fig. 3. Experimental and calculated ECD spectra of compound 1.
Fig. 9 in Sesquiterpenoids and furan derivatives from the Orychophragmus violaceus (L.) O.E. Schulz endophytic fungus Irpex lacteus OV38
Fig. 9. Experimental and calculated ECD spectra of compounds 3 and 4.
Fig. 1 in Sesquiterpenoids and furan derivatives from the Orychophragmus violaceus (L.) O.E. Schulz endophytic fungus Irpex lacteus OV38
Fig. 1. Chemical structures of compounds 1–17.
Fig. 8. Proposed biosynthetic pathway for compounds 1, 5, 9, 12, 13 and 16 in Sesquiterpenoids and furan derivatives from the Orychophragmus violaceus (L.) O.E. Schulz endophytic fungus Irpex lacteus OV38
Fig. 8. Proposed biosynthetic pathway for compounds 1, 5, 9, 12, 13 and 16.
Fig. 2 in Sesquiterpenoids and furan derivatives from the Orychophragmus violaceus (L.) O.E. Schulz endophytic fungus Irpex lacteus OV38
Fig. 2. Key NOESY () correlations of compounds 1, 5, 9, 12, 13, and 16.
Gene family expansions and transcriptome signatures uncover adaptations to wood decay in basidiomycetes fungi from the order Polyporales [Irpex lacteus]
GEO Series GSE156899. Irpex lacteus. 14 samples. Type: Expression profiling by high throughput sequencing.
Nitrogen source-driven regulation of Irpex lacteus for enhanced lignocellulose degradation and microbial protein production in wheat straw
GEO Series GSE297384. Irpex lacteus. 9 samples. Type: Expression profiling by high throughput sequencing.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.
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.