Zci_05073.1


Description : no hits & (original description: none)


Gene families : OG_01_0002355 (OrthoFinder output from Ath, Cre, Mpo, Ppa and Zci) Phylogenetic Tree(s): OG0002355_tree

Sequence : coding (download), protein (download)


Note:Only the main profile, including all conditions, is shown. Additional statistics and tissue specific profiles are available here.


Type Description Actions
Neighborhood HRR: Zci_05073.1
Cluster HCCA: Cluster_130

Target Alias Description ECC score Gene Family Method Actions
Pp3c14_24360V3.1 No alias saposin B domain-containing protein 0.02 OrthoFinder output from Ath, Cre, Mpo, Ppa and Zci

Type GO Term Name Evidence Source
BP GO:0006629 lipid metabolic process IEA Interproscan
Type GO Term Name Evidence Source
CC GO:0000813 ESCRT I complex IEP HCCA
MF GO:0003997 acyl-CoA oxidase activity IEP HCCA
MF GO:0004411 homogentisate 1,2-dioxygenase activity IEP HCCA
CC GO:0005777 peroxisome IEP HCCA
BP GO:0006082 organic acid metabolic process IEP HCCA
BP GO:0006558 L-phenylalanine metabolic process IEP HCCA
BP GO:0006559 L-phenylalanine catabolic process IEP HCCA
BP GO:0006570 tyrosine metabolic process IEP HCCA
BP GO:0006631 fatty acid metabolic process IEP HCCA
BP GO:0006635 fatty acid beta-oxidation IEP HCCA
BP GO:0006914 autophagy IEP HCCA
BP GO:0009056 catabolic process IEP HCCA
BP GO:0009062 fatty acid catabolic process IEP HCCA
BP GO:0009063 cellular amino acid catabolic process IEP HCCA
BP GO:0009072 aromatic amino acid family metabolic process IEP HCCA
BP GO:0009074 aromatic amino acid family catabolic process IEP HCCA
BP GO:0016042 lipid catabolic process IEP HCCA
BP GO:0016054 organic acid catabolic process IEP HCCA
BP GO:0016197 endosomal transport IEP HCCA
MF GO:0016627 oxidoreductase activity, acting on the CH-CH group of donors IEP HCCA
MF GO:0016634 oxidoreductase activity, acting on the CH-CH group of donors, oxygen as acceptor IEP HCCA
MF GO:0016701 oxidoreductase activity, acting on single donors with incorporation of molecular oxygen IEP HCCA
MF GO:0016702 oxidoreductase activity, acting on single donors with incorporation of molecular oxygen, incorporation of two atoms of oxygen IEP HCCA
MF GO:0016746 acyltransferase activity IEP HCCA
BP GO:0019395 fatty acid oxidation IEP HCCA
BP GO:0019439 aromatic compound catabolic process IEP HCCA
BP GO:0019752 carboxylic acid metabolic process IEP HCCA
BP GO:0019915 lipid storage IEP HCCA
BP GO:0030258 lipid modification IEP HCCA
BP GO:0032509 endosome transport via multivesicular body sorting pathway IEP HCCA
BP GO:0034440 lipid oxidation IEP HCCA
MF GO:0035673 oligopeptide transmembrane transporter activity IEP HCCA
CC GO:0036452 ESCRT complex IEP HCCA
CC GO:0042579 microbody IEP HCCA
MF GO:0042887 amide transmembrane transporter activity IEP HCCA
BP GO:0043436 oxoacid metabolic process IEP HCCA
BP GO:0044242 cellular lipid catabolic process IEP HCCA
BP GO:0044248 cellular catabolic process IEP HCCA
BP GO:0044282 small molecule catabolic process IEP HCCA
BP GO:0046395 carboxylic acid catabolic process IEP HCCA
MF GO:0046912 acyltransferase, acyl groups converted into alkyl on transfer IEP HCCA
MF GO:0051213 dioxygenase activity IEP HCCA
BP GO:0051235 maintenance of location IEP HCCA
BP GO:0061919 process utilizing autophagic mechanism IEP HCCA
BP GO:0071985 multivesicular body sorting pathway IEP HCCA
BP GO:0072329 monocarboxylic acid catabolic process IEP HCCA
BP GO:1901361 organic cyclic compound catabolic process IEP HCCA
BP GO:1901565 organonitrogen compound catabolic process IEP HCCA
BP GO:1901575 organic substance catabolic process IEP HCCA
BP GO:1901606 alpha-amino acid catabolic process IEP HCCA
BP GO:1902221 erythrose 4-phosphate/phosphoenolpyruvate family amino acid metabolic process IEP HCCA
BP GO:1902222 erythrose 4-phosphate/phosphoenolpyruvate family amino acid catabolic process IEP HCCA
MF GO:1904680 peptide transmembrane transporter activity IEP HCCA
InterPro domains Description Start Stop
IPR008138 SapB_2 328 360
IPR008138 SapB_2 221 252
IPR007856 SapB_1 177 212
IPR007856 SapB_1 288 323
No external refs found!