Any feedback?
Please rate this page
(organism.php)
(0/150)

BRENDA support

Information on Organism Taxus brevifolia

TaxTree of Organism Taxus brevifolia
Please wait a moment until all data is loaded. This message will disappear when all data is loaded.
PATHWAY
BRENDA Link
KEGG Link
MetaCyc Link
(1,4)-beta-D-xylan degradation
-
-
PWY-6717
(S)-reticuline biosynthesis
-
-
(S)-reticuline biosynthesis I
-
-
PWY-3581
(S)-reticuline biosynthesis II
-
-
PWY-6133
abietic acid biosynthesis
-
-
PWY-5411
Amaryllidacea alkaloids biosynthesis
-
-
PWY-7826
Amino sugar and nucleotide sugar metabolism
-
-
arachidonate metabolites biosynthesis
-
-
PWY-8397
Arachidonic acid metabolism
-
-
arachidonic acid metabolism
-
-
Arginine and proline metabolism
-
-
Arginine biosynthesis
-
-
aromatic polyketides biosynthesis
-
-
PWY-6316
bacterial bioluminescence
-
-
PWY-7723
baicalein degradation (hydrogen peroxide detoxification)
-
-
PWY-7214
beta-carboline biosynthesis
-
-
PWY-5877
Betalain biosynthesis
-
-
betanidin degradation
-
-
PWY-5461
betaxanthin biosynthesis
-
-
PWY-5426
betaxanthin biosynthesis (via dopamine)
-
-
PWY-5403
Biosynthesis of secondary metabolites
-
-
brassicicene C biosynthesis
-
-
PWY-7517
C20 prostanoid biosynthesis
-
-
PWY66-374
carnosate bioynthesis
-
-
PWY-7680
Carotenoid biosynthesis
-
-
carotenoid biosynthesis
-
-
catecholamine biosynthesis
d-xylose degradation
-
-
dehydroabietic acid biosynthesis
-
-
PWY-5421
di-homo-gamma-linolenate metabolites biosynthesis
-
-
PWY-8396
diethylphosphate degradation
-
-
PWY-5491
Diterpenoid biosynthesis
-
-
dTMP de novo biosynthesis (mitochondrial)
-
-
PWY66-385
ent-kaurene biosynthesis I
-
-
PWY-5032
ethanol degradation IV
-
-
PWY66-162
ethene biosynthesis III (microbes)
-
-
PWY-6854
farnesene biosynthesis
-
-
PWY-5725
flavonoid biosynthesis
-
-
PWY1F-FLAVSYN
Flavonoid biosynthesis
-
-
flavonoid biosynthesis (in equisetum)
-
-
PWY-6787
flavonoid di-C-glucosylation
-
-
PWY-7897
Folate biosynthesis
-
-
folate transformations II (plants)
-
-
PWY-3841
folate transformations III (E. coli)
-
-
1CMET2-PWY
fusicoccin A biosynthesis
-
-
PWY-6659
germacrene biosynthesis
-
-
PWY-5733
glucosylglycerol biosynthesis
-
-
PWY-7902
Glutathione metabolism
-
-
glutathione-peroxide redox reactions
-
-
PWY-4081
Glyoxylate and dicarboxylate metabolism
-
-
hydroxycinnamic acid serotonin amides biosynthesis
-
-
PWY-5473
hydroxycinnamic acid tyramine amides biosynthesis
-
-
PWY-5474
icosapentaenoate metabolites biosynthesis
-
-
PWY-8399
indole-3-acetate biosynthesis II
-
-
PWY-581
isopimaric acid biosynthesis
-
-
PWY-5422
isoprenoid biosynthesis
-
-
Isoquinoline alkaloid biosynthesis
-
-
justicidin B biosynthesis
-
-
PWY-6824
L-dopa degradation II (bacterial)
-
-
PWY-8110
L-lactaldehyde degradation
-
-
L-lactaldehyde degradation (aerobic)
-
-
PWY0-1317
L-phenylalanine degradation IV (mammalian, via side chain)
-
-
PWY-6318
L-rhamnose degradation II
-
-
PWY-6713
L-tryptophan degradation VI (via tryptamine)
-
-
PWY-3181
L-tryptophan degradation X (mammalian, via tryptamine)
-
-
PWY-6307
lactate biosynthesis (archaea)
-
-
PWY-5197
levopimaric acid biosynthesis
-
-
PWY-5412
lipid A biosynthesis
-
-
lipid IVA biosynthesis (2,3-diamino-2,3-dideoxy-D-glucopyranose-containing)
-
-
PWY2B4Q-4
lipid IVA biosynthesis (E. coli)
-
-
NAGLIPASYN-PWY
lipid IVA biosynthesis (generic)
-
-
PWY-8283
lipid IVA biosynthesis (H. pylori)
-
-
PWYI-14
lipid IVA biosynthesis (P. gingivalis)
-
-
PWY-8245
lipid IVA biosynthesis (P. putida)
-
-
PWY-8073
lipid IVA biosynthesis (Vibrio cholerae serogroup O1 El Tor)
-
-
PWY2G6Z-2
Lipopolysaccharide biosynthesis
-
-
luteolin triglucuronide degradation
-
-
PWY-7445
matairesinol biosynthesis
-
-
PWY-5466
Metabolic pathways
-
-
methanofuran biosynthesis
-
-
PWY-5254
methanol oxidation to formaldehyde IV
-
-
PWY-5506
methylglyoxal degradation V
-
-
PWY-5458
Microbial metabolism in diverse environments
-
-
naringenin biosynthesis (engineered)
-
-
PWY-7397
neoabietic acid biosynthesis
-
-
PWY-5413
nitric oxide biosynthesis II (mammals)
-
-
PWY-4983
non-pathway related
-
-
o-diquinones biosynthesis
-
-
PWY-6752
octopamine biosynthesis
-
-
PWY-7297
One carbon pool by folate
-
-
ophiobolin F biosynthesis
-
-
PWY-7720
palustric acid biosynthesis
-
-
PWY-5414
Phenylalanine metabolism
-
-
phenylethanol biosynthesis
-
-
PWY-5751
Phenylpropanoid biosynthesis
-
-
phloridzin biosynthesis
-
-
PWY-6515
psilocybin biosynthesis
-
-
PWY-7936
Pyruvate metabolism
-
-
reactive oxygen species degradation
-
-
DETOX1-PWY-1
resveratrol biosynthesis
-
-
PWY-84
salidroside biosynthesis
-
-
PWY-6802
secologanin and strictosidine biosynthesis
-
-
PWY-5290
serotonin and melatonin biosynthesis
-
-
PWY-6030
serotonin metabolism
-
-
sesamin biosynthesis
-
-
PWY-5469
Sesquiterpenoid and triterpenoid biosynthesis
-
-
Stilbenoid, diarylheptanoid and gingerol biosynthesis
-
-
sulfopterin metabolism
-
-
superoxide radicals degradation
-
-
DETOX1-PWY
taxadiene biosynthesis (engineered)
-
-
PWY-7392
taxol biosynthesis
tetrahydrofolate biosynthesis I
-
-
PWY-6614
tetrahydrofolate metabolism
-
-
Thiamine metabolism
-
-
Tryptophan metabolism
-
-
tryptophan metabolism
-
-
Tyrosine metabolism
-
-
xanthohumol biosynthesis
-
-
PWY-5135
xanthommatin biosynthesis
-
-
PWY-8249
SOURCE TISSUE
ORGANISM
UNIPROT
COMMENTARY hide
LITERATURE
SOURCE
LOCALIZATION
ORGANISM
UNIPROT
COMMENTARY hide
GeneOntology No.
LITERATURE
SOURCE
-
70% activity resides in light membrane fraction, approx. 25% in dense membrane fraction
-
Manually annotated by BRENDA team
LINKS TO OTHER DATABASES (specific for Taxus brevifolia)