Isoflavonoid biosynthesis (WP5593)
Glycine max
Isoflavonoids are a class of Fabaceae plant secondary metabolites.
For a description of pathway objects, see the WikiPathways Legend.
Authors
RyoMameda and Egon WillighagenActivity
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Organisms
Communities
Annotations
Pathway Ontology
flavonoid biosynthetic pathwayLabel | Type | Compact URI | Comment |
---|---|---|---|
isoliquiritigenin | Metabolite | chebi:310312 | |
naringenin chalcone | Metabolite | chebi:15413 | |
p-coumaroyl-CoA | Metabolite | chebi:15499 | |
daidzein | Metabolite | chebi:28197 | |
genistin | Metabolite | chebi:27514 | genistein 7-O-β-D-glucoside |
daidzin | Metabolite | chebi:42202 | daidzein 7-O-β-D-glucoside |
liquiritigenin | Metabolite | chebi:28777 | |
genistein | Metabolite | chebi:28088 | |
naringenin | Metabolite | chebi:50202 | |
malonyldaidzin | Metabolite | chebi:80371 | daidzein 7-O-(6''-O-malonyl-β-D-glucosides) |
malonylgenistin | Metabolite | chebi:80372 | genistein 7-O-(6''-O-malonyl-β-D-glucosides) |
malonyl-CoA | Metabolite | chebi:15531 | |
4-hydroxychalcone | Metabolite | chebi:34423 | |
flavanone | Metabolite | chebi:28863 | |
isoflavone | Metabolite | chebi:38757 | |
glycosyl isoflavone | Metabolite | chebi:74630 | |
malonyl glycosyl isoflavone | Metabolite | chebi:74630 | |
UGT | GeneProduct | ncbiprotein:NP_00130444 | isoflavone 7-O-glucosyltransferase UGT4 |
CHS | GeneProduct | ncbiprotein:NP_001337038 | Chalcone synthase 1 |
CHI1 | GeneProduct | ncbiprotein:NP_001235219 | Chalcone isomerase 1A |
HID | GeneProduct | ncbiprotein:NP_001237228 | 2-hydroxyisoflavanone dehydratase |
CHR | GeneProduct | ncbiprotein:NP_001353935 | Chalcone redcutase 5 |
CHI2 | GeneProduct | ncbiprotein:NP_001236768 | Chalcone isomerase 2 |
IFS | GeneProduct | ncbiprotein:NP_001238515 | 2-hydroxyisoflavanone synthase |
MaT | GeneProduct | ncbiprotein:NP_001236819 | malonyl-CoA:isoflavone 7-O-glucoside-6''-O-malonyltransferase |
References
- Involvement of chalcone reductase in the soybean isoflavone metabolon: identification of GmCHR5, which interacts with 2-hydroxyisoflavanone synthase. Mameda R, Waki T, Kawai Y, Takahashi S, Nakayama T. Plant J. 2018 Oct;96(1):56–74. PubMed Europe PMC Scholia