Basic Information
Gene ID
Position
hic_scaffold_14:36136801-36144103 (-)
7302bp
Gene Type
gene
Gene Description (Protein Product)
Belongs to the cytochrome P450 family
Organism
Also AS AT5G09260

Gene Structure

upstream:

Domain
Database EntryID E-Value Start end InterPro ID Description

Regulation&Interaction
Protein-protein interaction (PPI)
PH02Gene50772 Belongs to the GMC oxidoreductase family
PH02Gene50192 Caleosin related protein
PH02Gene50009 Caleosin related protein
Regulatory gene
PH02Gene00233 Auxin response factors (ARFs) are transcriptional factors that bind specifically to the DNA sequence 5'-TGTCTC-3' found in the auxin-responsive promoter elements (AuxREs)
PH02Gene00239 zinc finger
PH02Gene00349 Auxin response factors (ARFs) are transcriptional factors that bind specifically to the DNA sequence 5'-TGTCTC-3' found in the auxin-responsive promoter elements (AuxREs)

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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:0000038 very long-chain fatty acid metabolic process BP
GO:0005575 cellular_component CC
GO:0005622 intracellular anatomical structure CC
GO:0005623 obsolete cell CC
GO:0005737 cytoplasm CC
GO:0005783 endoplasmic reticulum CC
GO:0006082 organic acid metabolic process BP
GO:0006629 lipid metabolic process BP
GO:0006631 fatty acid metabolic process BP
GO:0006633 fatty acid biosynthetic process BP
GO:0006725 cellular aromatic compound metabolic process BP
GO:0008150 biological_process BP
GO:0008152 metabolic process BP
GO:0008610 lipid biosynthetic process BP
GO:0009058 biosynthetic process BP
GO:0009698 phenylpropanoid metabolic process BP
GO:0009699 phenylpropanoid biosynthetic process BP
GO:0009987 cellular process BP
GO:0010345 suberin biosynthetic process BP
GO:0012505 endomembrane system CC
GO:0016053 organic acid biosynthetic process BP
GO:0019438 aromatic compound biosynthetic process BP
GO:0019748 secondary metabolic process BP
GO:0019752 carboxylic acid metabolic process BP
GO:0032787 monocarboxylic acid metabolic process BP
GO:0042761 very long-chain fatty acid biosynthetic process BP
GO:0043226 organelle CC
GO:0043227 membrane-bounded organelle CC
GO:0043229 intracellular organelle CC
GO:0043231 intracellular membrane-bounded organelle CC
GO:0043436 oxoacid metabolic process BP
GO:0044237 cellular metabolic process BP
GO:0044238 primary metabolic process BP
GO:0044249 cellular biosynthetic process BP
GO:0044255 cellular lipid metabolic process BP
GO:0044281 small molecule metabolic process BP
GO:0044283 small molecule biosynthetic process BP
GO:0044424 obsolete intracellular part CC
GO:0044444 obsolete cytoplasmic part CC
GO:0044464 obsolete cell part CC
GO:0044550 secondary metabolite biosynthetic process BP
GO:0046394 carboxylic acid biosynthetic process BP
GO:0071704 organic substance metabolic process BP
GO:0072330 monocarboxylic acid biosynthetic process BP
GO:1901360 organic cyclic compound metabolic process BP
GO:1901362 organic cyclic compound biosynthetic process BP
GO:1901576 organic substance biosynthetic process BP
KEGG Term Name Description
map04144 Endocytosis Endocytosis is a mechanism for cells to remove ligands, nutrients, and plasma membrane (PM) proteins, and lipids from the cell surface, bringing them into the cell interior. Transmembrane proteins entering through clathrin-dependent endocytosis (CDE) have sequences in their cytoplasmic domains that bind to the APs (adaptor-related protein complexes) and enable their rapid removal from the PM. In addition to APs and clathrin, there are numerous accessory proteins including dynamin. Depending on the various proteins that enter the endosome membrane, these cargoes are sorted to distinct destinations. Some cargoes, such as nutrient receptors, are recycled back to the PM. Ubiquitylated membrane proteins, such as activated growth-factor receptors, are sorted into intraluminal vesicles and eventually end up in the lysosome lumen via multivesicular endosomes (MVEs). There are distinct mechanisms of clathrin-independent endocytosis (CIE) depending upon the cargo and the cell type.