361377-29-9
Chemical Structure
Fluoxastrobin
- CAS No.: 361377-29-9
- Formula:C21H16ClFN4O5
- Molecular Weight:458.83
IUPAC Name: (E)-(2-((6-(2-chlorophenoxy)-5-fluoropyrimidin-4-yl)oxy)phenyl)(5,6-dihydro-1,4,2-dioxazin-3-yl)methanone O-methyl oxime
InChIKey: UFEODZBUAFNAEU-NLRVBDNBSA-N
SMILES: C(=N\OC)(\C1=C(OC=2C(F)=C(OC3=C(Cl)C=CC=C3)N=CN2)C=CC=C1)/C4=NOCCO4
Biological Activity: Fluoxastrobin is a fungicide. By binding to NAD-dependent epimerase/dehydratase, Fluoxastrobin interferes with electron transport, reduces ATP production and inhibits mycelial growth, thereby effectively controlling foliar diseases of tea plants. Fluoxastrobin induces oxidative stress by increasing ROS levels and lipid peroxidation, causes DNA damage and promotes apoptosis; meanwhile, it shows high acute toxicity to Danio rerio embryos and larvae. Fluoxastrobin can be used in research related to tea foliar diseases (including tea red leaf spot and tea gray leaf spot)[1][2].
| Cat. No. | Product Name | Purity | Description | Pricing | |||||||||||||||||||
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Fluoxastrobin | Fluoxastrobin is a fungicide. By binding to NAD-dependent epimerase/dehydratase, Fluoxastrobin interferes with electron transport, reduces ATP production and inhibits mycelial growth, thereby effectively controlling foliar diseases of tea plants. Fluoxastrobin induces oxidative stress by increasing ROS levels and lipid peroxidation, causes DNA damage and promotes apoptosis; meanwhile, it shows high acute toxicity to Danio rerio embryos and larvae. Fluoxastrobin can be used in research related to tea foliar diseases (including tea red leaf spot and tea gray leaf spot). | |||||||||||||||||||||
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Fluoxastrobin-d4 | Fluoxastrobin-d4 is the deuterium labeled Fluoxastrobin. Fluoxastrobin is a fungicide agent. | |||||||||||||||||||||
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- [1]. Zhang C, et al. Fluoxastrobin-induced effects on acute toxicity, development toxicity, oxidative stress, and DNA damage in Danio rerio embryos. Sci Total Environ. 2020;715:137069. [Content Brief]
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[2]. Rehman AU, et al. NAD-Dependent Epimerase/Dehydratase Serves as a Novel Potential Target for Fluoxastrobin in Pestalotiopsis trachicarpicola, the Causal Agent of Tea Foliar Disease. Phytopathology®. 2025 Jul 14;115(7):794-808.
Keywords