Gene: CSS0019831
General Information
Structural Information
- Species Camellia sinensis var. sinensis
 - Gene Identifier CSS0019831
 - Transcript Identifier CSS0019831.1
 - Gene Type Coding gene
 - Location Chr13 : 20017031-20018036 : positive
 
Gene Family Information
- ID HOM05D001499
 - #Genes/#Species 422/100
 - Phylogenetic origin
 
- ID ORTHO05D001560
 - #Genes/#Species 389/100
 - Phylogenetic origin
 
Gene Duplication Information
- Tandem Duplication Tandem duplicate
 
Labels
Identifiers
- tid CSS0019831.1
 
Descriptions
- Description hypothetical protein MIMGU_mgv1a007539mg [Erythranthe guttata]
 
- Loading (ortholog descriptions from ath)...
 
Functional Annotation
Biological Process
| GO term | Evidence(s) | Provider(s) | Description | Source(s) | 
|---|---|---|---|---|
| GO:0019430 | ISO  | PLAZA Homology (enrichment) | removal of superoxide radicals | HOM05D001499 | 
| GO:0042744 | ISO  | PLAZA Integrative Orthology | hydrogen peroxide catabolic process | Os07g0657900 | 
Molecular Function
| GO term | Evidence(s) | Provider(s) | Description | Source(s) | 
|---|---|---|---|---|
| GO:0016491 | IEA  | InterPro | oxidoreductase activity | |
| GO:0042802 | ISO  | PLAZA Integrative Orthology | identical protein binding | Os07g0657900 | 
| GO:0005515 | ISO  | PLAZA Integrative Orthology | protein binding | Os07g0657900 | 
| GO:0004791 | ISO  | PLAZA Integrative Orthology | thioredoxin-disulfide reductase activity | Os07g0657900 | 
| GO:0016671 | ISO  | PLAZA Integrative Orthology | oxidoreductase activity, acting on a sulfur group of donors, disulfide as acceptor | Os07g0657900 | 
Cellular Component
| GO term | Evidence(s) | Provider(s) | Description | Source(s) | 
|---|---|---|---|---|
| GO:0009507 | ISO  | PLAZA Integrative Orthology | chloroplast | Os07g0657900 | 
| GO:0005737 | ISO  | PLAZA Homology (enrichment) | cytoplasm | HOM05D001499 | 
Color Legend
| Experimental Evidence | 
| Computational Reviewed Evidence | 
| Electronic Evidence | 
| Mapman id | Description | 
|---|---|
| 10.4.1.1 | Redox homeostasis.thiol-based redox regulation.thioredoxin reductase activities.NADPH-dependent thioredoxin reductase |