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Information on Organism Viola x wittrockiana

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PATHWAY
BRENDA Link
KEGG Link
MetaCyc Link
(S)-reticuline biosynthesis
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(S)-reticuline biosynthesis I
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PWY-3581
(S)-reticuline biosynthesis II
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PWY-6133
Amaryllidacea alkaloids biosynthesis
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PWY-7826
Arginine and proline metabolism
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aromatic biogenic amine degradation (bacteria)
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PWY-7431
aromatic polyketides biosynthesis
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PWY-6316
Biosynthesis of secondary metabolites
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dopamine degradation
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PWY6666-2
Drug metabolism - cytochrome P450
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echinatin biosynthesis
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PWY-6325
Flavone and flavonol biosynthesis
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flavonoid biosynthesis
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PWY1F-FLAVSYN
Flavonoid biosynthesis
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flavonoid biosynthesis (in equisetum)
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PWY-6787
flavonoid di-C-glucosylation
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PWY-7897
flavonol biosynthesis
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PWY-3101
Glycerophospholipid metabolism
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Glycine, serine and threonine metabolism
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Histidine metabolism
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hydroxycinnamic acid tyramine amides biosynthesis
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PWY-5474
isoflavonoid biosynthesis I
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PWY-2002
Isoquinoline alkaloid biosynthesis
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L-phenylalanine degradation IV (mammalian, via side chain)
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PWY-6318
L-tryptophan degradation VI (via tryptamine)
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PWY-3181
L-tryptophan degradation X (mammalian, via tryptamine)
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PWY-6307
leucodelphinidin biosynthesis
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PWY-5152
leucopelargonidin and leucocyanidin biosynthesis
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PWY1F-823
luteolin biosynthesis
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PWY-5060
melatonin degradation II
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PWY-6399
Metabolic pathways
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Methane metabolism
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methanofuran biosynthesis
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PWY-5254
naringenin biosynthesis (engineered)
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PWY-7397
noradrenaline and adrenaline degradation
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PWY-6342
octopamine biosynthesis
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PWY-7297
Phenylalanine metabolism
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phenylethanol biosynthesis
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PWY-5751
phenylethylamine degradation I
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2PHENDEG-PWY
phloridzin biosynthesis
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PWY-6515
pinobanksin biosynthesis
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PWY-5059
putrescine degradation III
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PWY-0
salidroside biosynthesis
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PWY-6802
serotonin degradation
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PWY-6313
serotonin metabolism
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syringetin biosynthesis
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PWY-5391
tricin biosynthesis
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PWY-7995
Tryptophan metabolism
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tryptophan metabolism
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Tyrosine metabolism
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tyrosine metabolism
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xanthohumol biosynthesis
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PWY-5135
ORGANISM
COMMENTARY hide
LITERATURE
UNIPROT
SEQUENCE DB
SOURCE
SOURCE TISSUE
ORGANISM
UNIPROT
COMMENTARY hide
LITERATURE
SOURCE
additional information
enzyme VwTYDC is significantly higher expressed in flowers than stems, and leaves, no expression in roots, tissue expression analysis. In addition, VwTYDC expression are higher in cyanic blotches than those observed in acyanic blotches of petal. Metabolites analysis shows the contents of tyramine in cyanic blotches are also higher than that in acyanic areas. The contents of tyramine in cyanic blotches are also higher than that in acyanic area, expression levels of VwTYDC at six different stages of flower development (1-6 stages) in cyanic blotches and acyanic areas, overview
Manually annotated by BRENDA team
LINKS TO OTHER DATABASES (specific for Viola x wittrockiana)