Basic Information
Gene ID
Position
hic_scaffold_3:90544332-90548092 (-)
3760bp
Gene Type
gene
Gene Description (Protein Product)
Belongs to the aldehyde dehydrogenase family
Organism
Also AS AT3G48000

Gene Structure

upstream:

Domain
Database EntryID E-Value Start end InterPro ID Description

Regulation&Interaction
Protein-protein interaction (PPI)
PH02Gene32530 Aldehyde dehydrogenase family
PH02Gene42418 Acylphosphatase
PH02Gene27876 Belongs to the class-III pyridoxal-phosphate-dependent aminotransferase family
Regulatory gene
PH02Gene00182 Belongs to the GRAS family
PH02Gene00185 GAGA binding protein-like family
PH02Gene00239 zinc finger

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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
KEGG Term Name Description
map01110 Biosynthesis of secondary metabolites -
map01100 Metabolic pathways -
map00903 Limonene and pinene degradation -
map00770 Pantothenate and CoA biosynthesis -
map00620 Pyruvate metabolism -
map00561 Glycerolipid metabolism -
map00410 beta-Alanine metabolism -
map00380 Tryptophan metabolism -
map00340 Histidine metabolism -
map00330 Arginine and proline metabolism -
map00310 Lysine degradation -
map00280 Valine, leucine and isoleucine degradation -
map00071 Fatty acid metabolism -
map00053 Ascorbate and aldarate metabolism -
map00010 Glycolysis / Gluconeogenesis Glycolysis is the process of converting glucose into pyruvate and generating small amounts of ATP (energy) and NADH (reducing power). It is a central pathway that produces important precursor metabolites: six-carbon compounds of glucose-6P and fructose-6P and three-carbon compounds of glycerone-P, glyceraldehyde-3P, glycerate-3P, phosphoenolpyruvate, and pyruvate [MD:M00001]. Acetyl-CoA, another important precursor metabolite, is produced by oxidative decarboxylation of pyruvate [MD:M00307]. When the enzyme genes of this pathway are examined in completely sequenced genomes, the reaction steps of three-carbon compounds from glycerone-P to pyruvate form a conserved core module [MD:M00002], which is found in almost all organisms and which often corresponds to operon structures in bacterial genomes. Gluconeogenesis is a synthesis pathway of glucose from noncarbohydrate precursors. It is essentially a reversal of glycolysis with minor variations of alternative paths [MD:M00003].