Gene: Sopen03g034260
General Information
Structural Information
- Species Solanum pennellii
- Gene Identifier Sopen03g034260
- Transcript Identifier Sopen03g034260.1
- Gene Type Coding gene
- Location Spenn-ch03 : 69436299-69439324 : negative
Gene Family Information
- ID HOM05D000016
- #Genes/#Species 7260/100
- Phylogenetic origin
- ID ORTHO05D000487
- #Genes/#Species 869/95
- Phylogenetic origin
Gene Duplication Information
- Block Duplication Block duplicate
Labels
Identifiers
- tid Sopen03g034260.1
Descriptions
- Description Flavonoid 3-monooxygenase (EC 1.14.13.21) (Flavonoid 3-hydroxylase) (Cytochrome P450 75B2) - Petunia hybrida (Petunia), Required for flavonoid 3 hydroxylase activity. | TRANSPARENT TESTA 7 (TT7) | CONTAINS InterPro DOMAIN/s: Cytochrome P450 , Cytochrome P450, E-class, group I , Cytochrome P450, conserved site | BEST Arabidopsis thaliana protein match is: cytochrome P450, family 706, subfamily A, polypeptide 6
- Loading (ortholog descriptions from ath)...
Functional Annotation
Biological Process
GO term | Evidence(s) | Provider(s) | Description | Source(s) |
---|---|---|---|---|
GO:0009411 | ISO | PLAZA Integrative Orthology | response to UV | AT5G07990 |
GO:0009813 | ISO | PLAZA Integrative Orthology | flavonoid biosynthetic process | AT5G07990 |
GO:0009733 | ISO | PLAZA Integrative Orthology | response to auxin | AT5G07990 |
Molecular Function
GO term | Evidence(s) | Provider(s) | Description | Source(s) |
---|---|---|---|---|
GO:0004497 | IEA | InterPro | monooxygenase activity | |
GO:0005506 | IEA | InterPro | iron ion binding | |
GO:0016705 | IEA | InterPro | oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen | |
GO:0020037 | IEA | InterPro | heme binding | |
GO:0016711 | ISO | PLAZA Integrative Orthology | flavonoid 3'-monooxygenase activity | AT5G07990 |
Color Legend
Experimental Evidence |
Computational Reviewed Evidence |
Electronic Evidence |
Mapman id | Description |
---|---|
9.2.2.5.1 | Secondary metabolism.phenolics.flavonoid biosynthesis.dihydroflavonols.flavonoid 3'-hydroxylase |