Gene: CDE06G0251
General Information
Structural Information
- Species Ceratophyllum demersum
- Gene Identifier CDE06G0251
- Transcript Identifier CDE06G0251.1
- Gene Type Coding gene
- Location 4 : 68765053-68766931 : positive
Gene Family Information
- ID HOM05D002193
- #Genes/#Species 306/99
- Phylogenetic origin
- ID ORTHO05D002631
- #Genes/#Species 274/99
- Phylogenetic origin
Gene Duplication Information
- Tandem Duplication Tandem duplicate
- Block Duplication Block duplicate
Labels
Identifiers
- name gene_prefix04823
Descriptions
- Loading (ortholog descriptions from ath)...
Functional Annotation
Biological Process
GO term | Evidence(s) | Provider(s) | Description | Source(s) |
---|---|---|---|---|
GO:0033014 | IEA | InterPro | tetrapyrrole biosynthetic process | |
GO:0015995 | ISO | PLAZA Integrative Orthology | chlorophyll biosynthetic process | AT1G58290 |
GO:0006979 | ISO | PLAZA Integrative Orthology | response to oxidative stress | AT1G09940 |
GO:0006779 | ISO | PLAZA Integrative Orthology | porphyrin-containing compound biosynthetic process | AT1G58290 |
GO:0006783 | ISO | PLAZA Integrative Orthology | heme biosynthetic process | AT1G58290 |
GO:0009416 | ISO | PLAZA Integrative Orthology | response to light stimulus | AT1G58290 |
Molecular Function
GO term | Evidence(s) | Provider(s) | Description | Source(s) |
---|---|---|---|---|
GO:0008883 | IEA | InterPro | glutamyl-tRNA reductase activity | |
GO:0050661 | IEA | InterPro | NADP binding | |
GO:0005515 | ISO | PLAZA Integrative Orthology | protein binding | AT1G58290 |
Cellular Component
GO term | Evidence(s) | Provider(s) | Description | Source(s) |
---|---|---|---|---|
GO:0009507 | ISO | PLAZA Integrative Orthology | chloroplast | AT1G58290 |
GO:0032991 | ISO | PLAZA Integrative Orthology | protein-containing complex | AT1G58290 |
GO:0009536 | ISO | PLAZA Integrative Orthology | plastid | AT1G09940 |
Color Legend
Experimental Evidence |
Computational Reviewed Evidence |
Electronic Evidence |
Mapman id | Description |
---|---|
7.12.1.2 | Coenzyme metabolism.tetrapyrrol biosynthesis.5-aminolevulinic acid formation.glutamyl-tRNA reductase |