Basic Information
Gene ID
Bpev01.c5581.g0006
Position
Contig5581:3932-5439 (-)
1507bp
Gene Type
gene
Gene Description (Protein Product)
Key enzyme in the regulation of glycerol uptake and metabolism. Catalyzes the phosphorylation of glycerol to yield sn- glycerol 3-phosphate
Organism
Also AS

Gene Structure

upstream:

Domain
Database EntryID E-Value Start end InterPro ID Description


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:0003674 molecular_function MF
GO:0003824 catalytic activity MF
GO:0004370 glycerol kinase activity MF
GO:0005488 binding MF
GO:0005515 protein binding MF
GO:0005575 cellular_component CC
GO:0005622 intracellular anatomical structure CC
GO:0005623 obsolete cell CC
GO:0005737 cytoplasm CC
GO:0005829 cytosol CC
GO:0005975 carbohydrate metabolic process BP
GO:0006066 alcohol metabolic process BP
GO:0006071 glycerol metabolic process BP
GO:0006793 phosphorus metabolic process BP
GO:0006796 phosphate-containing compound metabolic process BP
GO:0006950 response to stress BP
GO:0006974 cellular response to DNA damage stimulus BP
GO:0008150 biological_process BP
GO:0008152 metabolic process BP
GO:0008270 zinc ion binding MF
GO:0009056 catabolic process BP
GO:0009987 cellular process BP
GO:0016052 carbohydrate catabolic process BP
GO:0016301 kinase activity MF
GO:0016310 phosphorylation BP
GO:0016740 transferase activity MF
GO:0016772 transferase activity, transferring phosphorus-containing groups MF
GO:0016773 phosphotransferase activity, alcohol group as acceptor MF
GO:0019400 alditol metabolic process BP
GO:0019405 alditol catabolic process BP
GO:0019563 glycerol catabolic process BP
GO:0019751 polyol metabolic process BP
GO:0033554 cellular response to stress BP
GO:0042802 identical protein binding MF
GO:0043167 ion binding MF
GO:0043169 cation binding MF
GO:0044237 cellular metabolic process BP
GO:0044238 primary metabolic process BP
GO:0044248 cellular catabolic process BP
GO:0044262 cellular carbohydrate metabolic process BP
GO:0044275 cellular carbohydrate catabolic process BP
GO:0044281 small molecule metabolic process BP
GO:0044282 small molecule catabolic process BP
GO:0044424 obsolete intracellular part CC
GO:0044444 obsolete cytoplasmic part CC
GO:0044464 obsolete cell part CC
GO:0046164 alcohol catabolic process BP
GO:0046174 polyol catabolic process BP
GO:0046872 metal ion binding MF
GO:0046914 transition metal ion binding MF
GO:0050896 response to stimulus BP
GO:0051716 cellular response to stimulus BP
GO:0071704 organic substance metabolic process BP
GO:1901575 organic substance catabolic process BP
GO:1901615 organic hydroxy compound metabolic process BP
GO:1901616 organic hydroxy compound catabolic process BP
KEGG Term Name Description
map04626 Plant-pathogen interaction Plants lack animal-like adaptive immunity mechanisms, and therefore have evolved a specific system with multiple layers against invading pathogens. The primary response includes the perception of pathogens by cell-surface pattern-recognition receptors (PRRs) and is referred to as PAMP-triggered immunity (PTI). Activation of FLS2 and EFR triggers MAPK signaling pathway that activates defense genes for antimictobial compounds. The increase in the cytosolic Ca2+ concentration is also a regulator for production of reactive oxygen species and localized programmed cell death/hypersensitive response. The secondary response is called effector-triggered immunity (ETI). Pathogens can acquire the ability to suppress PTI by directly injecting effector proteins into the plant cell through secretion systems. In addition, pathogens can manipulate plant hormone signaling pathways to evade host immune responses using coronatine toxin. Some plants possess specific intracellular surveillance proteins (R proteins) to monitor the presence of pathogen virulence proteins. This ETI occurs with localized programmed cell death to arrest pathogen growth, resulting in cultivar-specific disease resistance.
map01100 Metabolic pathways -
map00561 Glycerolipid metabolism -