Basic Information
Gene Structure
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Domain
| Database | EntryID | E-Value | Start | end | InterPro ID | Description |
|---|
Regulation&Interaction
Annotation
Orthologous Group
| Orthologous ID | Species Number | All hits in PereRegDB | Hits of this species | Orthologous Detail |
|---|
Expression Profile
| DataSet | Number of Samples expressed(TPM>1) | Mean | Min | Max | Standard deviation(SD) | Coeffcient variation(CV) |
|---|
Pathway
| GO Term | Description | GO Category |
|---|---|---|
| GO:0000302 | response to reactive oxygen species | BP |
| GO:0003674 | molecular_function | MF |
| GO:0003824 | catalytic activity | MF |
| GO:0004497 | monooxygenase activity | MF |
| GO:0005575 | cellular_component | CC |
| GO:0006950 | response to stress | BP |
| GO:0006979 | response to oxidative stress | BP |
| GO:0008150 | biological_process | BP |
| GO:0008152 | metabolic process | BP |
| GO:0009058 | biosynthetic process | BP |
| GO:0009719 | response to endogenous stimulus | BP |
| GO:0009723 | response to ethylene | BP |
| GO:0009725 | response to hormone | BP |
| GO:0009733 | response to auxin | BP |
| GO:0009987 | cellular process | BP |
| GO:0010033 | response to organic substance | BP |
| GO:0010035 | response to inorganic substance | BP |
| GO:0010038 | response to metal ion | BP |
| GO:0010039 | response to iron ion | BP |
| GO:0016020 | membrane | CC |
| GO:0016491 | oxidoreductase activity | MF |
| GO:0016705 | oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen | MF |
| GO:0016709 | oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen, NAD(P)H as one donor, and incorporation of one atom of oxygen | MF |
| GO:0019748 | secondary metabolic process | BP |
| GO:0032870 | cellular response to hormone stimulus | BP |
| GO:0033554 | cellular response to stress | BP |
| GO:0034599 | cellular response to oxidative stress | BP |
| GO:0034614 | cellular response to reactive oxygen species | BP |
| GO:0035690 | cellular response to xenobiotic stimulus | BP |
| GO:0042221 | response to chemical | BP |
| GO:0042493 | response to xenobiotic stimulus | BP |
| GO:0044550 | secondary metabolite biosynthetic process | BP |
| GO:0050896 | response to stimulus | BP |
| GO:0051716 | cellular response to stimulus | BP |
| GO:0055114 | obsolete oxidation-reduction process | BP |
| GO:0070887 | cellular response to chemical stimulus | BP |
| GO:0071241 | cellular response to inorganic substance | BP |
| GO:0071248 | cellular response to metal ion | BP |
| GO:0071281 | cellular response to iron ion | BP |
| GO:0071310 | cellular response to organic substance | BP |
| GO:0071369 | cellular response to ethylene stimulus | BP |
| GO:0071495 | cellular response to endogenous stimulus | BP |
| GO:0071731 | response to nitric oxide | BP |
| GO:0071732 | cellular response to nitric oxide | BP |
| GO:0097366 | response to bronchodilator | BP |
| GO:1901698 | response to nitrogen compound | BP |
| GO:1901699 | cellular response to nitrogen compound | BP |
| GO:1901700 | response to oxygen-containing compound | BP |
| GO:1901701 | cellular response to oxygen-containing compound | BP |
| GO:1902170 | cellular response to reactive nitrogen species | BP |
| KEGG Term | Name | Description |
|---|---|---|
| map01110 | Biosynthesis of secondary metabolites | - |
| map01100 | Metabolic pathways | - |
| map00905 | Brassinosteroid biosynthesis | Brassinosteroids are a group of plant steroid hormones that regulate growth and development. More than fifty naturally occurring brassinosteroids have been identified in a wide range of plant species. The most abundant and widely occurring brassinosteroids are C28 steroids, and among them brassinolide (BL) is the most biologically active. Plants have multiple pathways for biosynthesis of BL, which are derived from the steroid biosynthetic pathway. Two pathways from campestanol to castasterone (CS), C6 oxidation and the late-C6 oxidation pathways, operate in many plants. Another branching pathway, the early-C22 oxidation pathway, was demonstrated using a brassinosteroid-deficient mutant of Arabidopsis thaliana. Recently, a new shortcut pathway from campesterol to 6-deoxotyphasterol was demonstrated by a functional analysis of cytochrome P450 monooxygenases responsible for brassinosteroid biosynthesis. Thus, at least four pathways are involved in the biosynthesis of CS, and CS is further metabolized to BL by lactonization of the B ring. |

