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595 results for “Aspergillus”
Fig. 26 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 26. Biosynthesis of aflatrem and β-aflatrem in A. oryzae.
Fig. 25 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 25. Structures of meroterpenoids 269–288.
Fig. 24. Postulated biogenetic pathway for insuetolides A–C in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 24. Postulated biogenetic pathway for insuetolides A–C (260–262).
Fig. 21. Postulated biogenetic pathway for aspertetranones A-D in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 21. Postulated biogenetic pathway for aspertetranones A-D (230–233).
Fig. 20. Postulated biogenetic pathway for yaminterritrems A in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 20. Postulated biogenetic pathway for yaminterritrems A (228) and B (229).
Fig. 18 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 18. Structures of triterpenoids 214–222.
Fig. 16. Postulated biogenetic pathway for asperterpenoid A in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 16. Postulated biogenetic pathway for asperterpenoid A (208).
Fig. 17. Postulated biogenetic pathway for aspterpenacids A in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 17. Postulated biogenetic pathway for aspterpenacids A (212) and B (213).
Fig. 27 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 27. Biosynthesis of ophiobolin F catalyzed by AcOS.
Fig. 13 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 13. Structures of ophiobolin-type sesterterpenoids 167–201.
Fig. 12 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 12. Structure of indole-type diterpenoids 152–166.
Fig. 14 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 14. Structures of asperane-type sesterterpenoids 202–207.
Fig. 15 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 15. Structures of other sesterterpenoids 208–213.
Fig. 19 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 19. Structures of meroterpenoids 223–243.
Fig. 10. Postulated biogenetic pathway for aspergiloid I in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 10. Postulated biogenetic pathway for aspergiloid I (121).
Fig. 8 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 8. Structures of labdane-type diterpenoids 111–118.
Fig. 9 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 9. Structures of isopimaric-type diterpenoids 119–144.
Fig. 11 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 11. Structures of cleistanthane-type diterpenoids 145–151.
Fig. 7 in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 7. Structures of other-type sesquiterpenoids 104–110.
Fig. 5. Structures and postulated biogenetic pathway for ochracenes A I in Recent studies on terpenoids in Aspergillus fungi: Chemical diversity, biosynthesis, and bioactivity
Fig. 5. Structures and postulated biogenetic pathway for ochracenes A I (92–100).
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
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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.