Chaga · 2016 · Research Support, Non U.S. Gov'T
Low relevanceReversible S-nitrosylation limits over synthesis of fungal styrylpyrone upon nitric oxide burst.
Inonotus obliquus
Metabolic healthSkin & hydration
Metadata-grounded summary
Article summary
Metadata-grounded summary: This research support, non u.s. gov't indexes research on Inonotus obliquus in Applied microbiology and biotechnology in 2016. MycoData maps the paper to metabolic health, skin & hydration based on its title, species context, article metadata, and study classification.
Citation
Zhao Y, He M, Xi Q, Ding J, Hao B, Keller NP, et al. (2016). Reversible S-nitrosylation limits over synthesis of fungal styrylpyrone upon nitric oxide burst. Applied microbiology and biotechnology https://doi.org/10.1007/s00253-016-7442-7 PMID: 27000840
Open citation