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Information on Organism Penicillium citrinum

TaxTree of Organism Penicillium citrinum
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PATHWAY
BRENDA Link
KEGG Link
MetaCyc Link
(1,4)-beta-D-xylan degradation
-
-
PWY-6717
(S)-lactate fermentation to propanoate, acetate and hydrogen
-
-
PWY-8086
(S)-propane-1,2-diol degradation
-
-
PWY-7013
1-butanol autotrophic biosynthesis (engineered)
-
-
PWY-6886
2-arachidonoylglycerol biosynthesis
-
-
PWY-8052
3-methylbutanol biosynthesis (engineered)
-
-
PWY-6871
4-hydroxy-2-nonenal detoxification
-
-
PWY-7112
acetaldehyde biosynthesis I
-
-
PWY-6333
acetylene degradation (anaerobic)
-
-
P161-PWY
acrylonitrile degradation I
-
-
PWY-7308
adenosine nucleotides degradation I
-
-
PWY-6596
adenosine nucleotides degradation II
-
-
SALVADEHYPOX-PWY
alanine metabolism
-
-
Alanine, aspartate and glutamate metabolism
-
-
alpha-Linolenic acid metabolism
-
-
alpha-tomatine degradation
-
-
PWY18C3-5
Amino sugar and nucleotide sugar metabolism
-
-
Aminobenzoate degradation
-
-
anaerobic energy metabolism (invertebrates, cytosol)
-
-
PWY-7383
apratoxin A biosynthesis
-
-
PWY-8361
Arginine and proline metabolism
-
-
Arginine biosynthesis
-
-
arginine metabolism
-
-
Ascorbate and aldarate metabolism
-
-
aspartate and asparagine metabolism
-
-
assimilatory sulfate reduction II
-
-
SULFMETII-PWY
assimilatory sulfate reduction III
-
-
PWY-6683
assimilatory sulfate reduction IV
-
-
PWY1ZNC-1
Atrazine degradation
-
-
beta-D-glucuronide and D-glucuronate degradation
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-
PWY-7247
Bifidobacterium shunt
-
-
P124-PWY
Biosynthesis of 12-, 14- and 16-membered macrolides
-
-
Biosynthesis of secondary metabolites
-
-
Butanoate metabolism
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-
butanol and isobutanol biosynthesis (engineered)
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-
PWY-7396
C4 and CAM-carbon fixation
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-
C4 photosynthetic carbon assimilation cycle, NAD-ME type
-
-
PWY-7115
C4 photosynthetic carbon assimilation cycle, PEPCK type
-
-
PWY-7117
Calvin-Benson-Bassham cycle
-
-
CALVIN-PWY
camalexin biosynthesis
-
-
CAMALEXIN-SYN
Caprolactam degradation
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-
Carbon fixation in photosynthetic organisms
-
-
cellulose and hemicellulose degradation (cellulolosome)
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-
PWY-6784
cellulose degradation
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-
cellulose degradation II (fungi)
-
-
PWY-6788
chitin degradation I (archaea)
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-
PWY-6855
chitin degradation II (Vibrio)
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-
PWY-6902
chitin degradation III (Serratia)
-
-
PWY-7822
Chloroalkane and chloroalkene degradation
-
-
coenzyme B biosynthesis
-
-
P241-PWY
coumarin biosynthesis (via 2-coumarate)
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-
PWY-5176
curacin A biosynthesis
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-
PWY-8358
Cyanoamino acid metabolism
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-
Cysteine and methionine metabolism
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-
cytosolic NADPH production (yeast)
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-
PWY-7268
D-glucuronate degradation I
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-
PWY-5525
d-mannose degradation
-
-
d-xylose degradation
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-
D-xylose degradation to ethylene glycol (engineered)
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-
PWY-7178
degradation of aromatic, nitrogen containing compounds
-
-
degradation of sugar acids
-
-
degradation of sugar alcohols
-
-
detoxification of reactive carbonyls in chloroplasts
-
-
PWY-6786
diethylphosphate degradation
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-
PWY-5491
dimethyl sulfide biosynthesis from methionine
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-
PWY-7793
dissimilatory sulfate reduction I (to hydrogen sufide))
-
-
DISSULFRED-PWY
Diterpenoid biosynthesis
-
-
Drug metabolism - cytochrome P450
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-
Drug metabolism - other enzymes
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-
Entner Doudoroff pathway
-
-
Entner-Doudoroff pathway I
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-
PWY-8004
Entner-Doudoroff pathway II (non-phosphorylative)
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-
NPGLUCAT-PWY
Entner-Doudoroff pathway III (semi-phosphorylative)
-
-
PWY-2221
erythritol biosynthesis I
-
-
PWY-8372
erythritol biosynthesis II
-
-
PWY-8373
erythromycin D biosynthesis
-
-
PWY-7106
ethanol degradation I
-
-
ETOH-ACETYLCOA-ANA-PWY
ethanol degradation II
-
-
PWY66-21
ethanol degradation IV
-
-
PWY66-162
ethanol fermentation
-
-
ethanolamine utilization
-
-
PWY0-1477
ethene biosynthesis I (plants)
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-
ETHYL-PWY
ethene biosynthesis III (microbes)
-
-
PWY-6854
ethene biosynthesis V (engineered)
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-
PWY-7124
Ether lipid metabolism
-
-
Fatty acid degradation
-
-
FeMo cofactor biosynthesis
-
-
PWY-7710
ferrichrome A biosynthesis
-
-
PWY-7571
firefly bioluminescence
-
-
PWY-7913
Flavone and flavonol biosynthesis
-
-
Folate biosynthesis
-
-
formaldehyde assimilation I (serine pathway)
-
-
PWY-1622
formaldehyde assimilation III (dihydroxyacetone cycle)
-
-
P185-PWY
formaldehyde oxidation I
-
-
RUMP-PWY
fructan degradation
-
-
PWY-862
Fructose and mannose metabolism
-
-
Galactose metabolism
-
-
ginsenoside metabolism
-
-
gliotoxin biosynthesis
-
-
PWY-7533
gluconeogenesis I
-
-
GLUCONEO-PWY
gluconeogenesis II (Methanobacterium thermoautotrophicum)
-
-
PWY-6142
gluconeogenesis III
-
-
PWY66-399
Glutathione metabolism
-
-
glutathione metabolism
-
-
glutathione-mediated detoxification I
-
-
PWY-4061
glutathione-mediated detoxification II
-
-
PWY-6842
glycerol degradation to butanol
-
-
PWY-7003
Glycerolipid metabolism
-
-
Glycerophospholipid metabolism
-
-
Glycine, serine and threonine metabolism
-
-
glycogen degradation I
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-
GLYCOCAT-PWY
glycogen metabolism
-
-
glycolysis
-
-
Glycolysis / Gluconeogenesis
-
-
glycolysis I (from glucose 6-phosphate)
-
-
GLYCOLYSIS
glycolysis II (from fructose 6-phosphate)
-
-
PWY-5484
glycolysis III (from glucose)
-
-
ANAGLYCOLYSIS-PWY
glycolysis IV
-
-
PWY-1042
glycolysis V (Pyrococcus)
-
-
P341-PWY
Glycosaminoglycan degradation
-
-
Glycosphingolipid biosynthesis - ganglio series
-
-
Glyoxylate and dicarboxylate metabolism
-
-
gossypol biosynthesis
-
-
PWY-5773
guanosine nucleotides degradation I
-
-
PWY-6607
guanosine nucleotides degradation II
-
-
PWY-6606
guanosine nucleotides degradation III
-
-
PWY-6608
heterolactic fermentation
-
-
P122-PWY
IAA biosynthesis
-
-
indole glucosinolate activation (intact plant cell)
-
-
PWYQT-4477
indole-3-acetate biosynthesis II
-
-
PWY-581
indole-3-acetate biosynthesis III (bacteria)
-
-
PWY-3161
indole-3-acetate biosynthesis IV (bacteria)
-
-
PWY-5025
inosine 5'-phosphate degradation
-
-
PWY-5695
Inositol phosphate metabolism
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-
inulin degradation
-
-
PWY-8314
isoprene biosynthesis II (engineered)
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-
PWY-7391
isoprenoid biosynthesis
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-
Isoquinoline alkaloid biosynthesis
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-
justicidin B biosynthesis
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-
PWY-6824
ketogenesis
-
-
PWY66-367
ketogluconate metabolism
L-alanine biosynthesis II
-
-
ALANINE-SYN2-PWY
L-alanine degradation II (to D-lactate)
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-
ALACAT2-PWY
L-alanine degradation III
-
-
ALANINE-DEG3-PWY
L-alanine degradation V (oxidative Stickland reaction)
-
-
PWY-8189
L-alanine degradation VI (reductive Stickland reaction)
-
-
PWY-8188
L-arabinose degradation II
-
-
PWY-5515
L-arginine degradation X (arginine monooxygenase pathway)
-
-
ARGDEG-V-PWY
L-ascorbate biosynthesis VIII (engineered pathway)
-
-
PWY-7165
L-asparagine biosynthesis I
-
-
ASPARAGINE-BIOSYNTHESIS
L-histidine degradation V
-
-
PWY-5031
L-isoleucine degradation II
-
-
PWY-5078
L-lactaldehyde degradation
-
-
L-leucine degradation III
-
-
PWY-5076
L-lysine biosynthesis IV
-
-
LYSINE-AMINOAD-PWY
L-lysine biosynthesis V
-
-
PWY-3081
L-methionine degradation III
-
-
PWY-5082
L-methionine salvage cycle II (plants)
-
-
PWY-7270
L-phenylalanine degradation III
-
-
PWY-5079
L-serine biosynthesis II
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-
PWY-8011
L-tryptophan degradation V (side chain pathway)
-
-
PWY-3162
L-tryptophan degradation X (mammalian, via tryptamine)
-
-
PWY-6307
L-tyrosine degradation III
-
-
PWY3O-4108
L-valine degradation II
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-
PWY-5057
lactate fermentation
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-
leucine metabolism
-
-
linamarin degradation
-
-
PWY-3121
linustatin bioactivation
-
-
PWY-7091
lipid metabolism
-
-
lotaustralin degradation
-
-
PWY-6002
luteolin triglucuronide degradation
-
-
PWY-7445
Lysine biosynthesis
-
-
lysine metabolism
-
-
macrolide antibiotic biosynthesis
-
-
manganese oxidation I
-
-
PWY-6591
matairesinol biosynthesis
-
-
PWY-5466
Metabolic pathways
-
-
metabolism of disaccharids
-
-
Metabolism of xenobiotics by cytochrome P450
-
-
Methane metabolism
-
-
methane metabolism
-
-
methanol oxidation to formaldehyde IV
-
-
PWY-5506
methionine metabolism
-
-
methylerythritol phosphate pathway I
-
-
NONMEVIPP-PWY
methylerythritol phosphate pathway II
-
-
PWY-7560
mevalonate metabolism
-
-
mevalonate pathway I (eukaryotes and bacteria)
-
-
PWY-922
mevalonate pathway II (haloarchaea)
-
-
PWY-6174
mevalonate pathway III (Thermoplasma)
-
-
PWY-7524
mevalonate pathway IV (archaea)
-
-
PWY-8125
Microbial metabolism in diverse environments
-
-
mixed acid fermentation
-
-
FERMENTATION-PWY
Monobactam biosynthesis
-
-
N-Glycan biosynthesis
-
-
NAD metabolism
-
-
NAD salvage (plants)
-
-
PWY-5381
NAD salvage pathway III (to nicotinamide riboside)
-
-
NAD-BIOSYNTHESIS-II
Naphthalene degradation
-
-
neolinustatin bioactivation
-
-
PWY-7092
Nicotinate and nicotinamide metabolism
-
-
nitrate reduction II (assimilatory)
-
-
PWY-381
nitric oxide biosynthesis II (mammals)
-
-
PWY-4983
Nitrogen metabolism
-
-
nocardicin A biosynthesis
-
-
PWY-7797
non-pathway related
-
-
noradrenaline and adrenaline degradation
-
-
PWY-6342
o-diquinones biosynthesis
-
-
PWY-6752
oleandomycin activation/inactivation
-
-
PWY-6972
Other glycan degradation
-
-
pectin degradation I
-
-
PWY-7246
pectin degradation II
-
-
PWY-7248
pentachlorophenol degradation
-
-
PCPDEG-PWY
Pentose and glucuronate interconversions
-
-
Pentose phosphate pathway
-
-
pentose phosphate pathway
-
-
pentose phosphate pathway (oxidative branch) I
-
-
OXIDATIVEPENT-PWY
phenol degradation
-
-
Phenylalanine metabolism
-
-
phenylalanine metabolism
-
-
phenylethanol biosynthesis
-
-
PWY-5751
Phenylpropanoid biosynthesis
-
-
phospholipases
-
-
LIPASYN-PWY
phosphopantothenate biosynthesis II
-
-
PWY-3961
photosynthesis
-
-
photosynthetic 3-hydroxybutanoate biosynthesis (engineered)
-
-
PWY-7218
phytate degradation I
-
-
PWY-4702
phytol degradation
-
-
PWY66-389
plasmalogen biosynthesis I (aerobic)
-
-
PWY-7782
plasmalogen degradation
-
-
PWY-7783
Porphyrin and chlorophyll metabolism
-
-
Propanoate metabolism
-
-
propanol degradation
-
-
protein N-glycosylation processing phase (endoplasmic reticulum, yeast)
-
-
PWY-7918
protein N-glycosylation processing phase (plants and animals)
-
-
PWY-7919
Purine metabolism
-
-
purine metabolism
-
-
Pyrimidine metabolism
-
-
pyrimidine metabolism
-
-
pyruvate fermentation to (R)-lactate
-
-
PWY-8274
pyruvate fermentation to (S)-lactate
-
-
PWY-5481
pyruvate fermentation to butanol I
-
-
PWY-6583
pyruvate fermentation to ethanol I
-
-
PWY-5480
pyruvate fermentation to ethanol II
-
-
PWY-5486
pyruvate fermentation to ethanol III
-
-
PWY-6587
pyruvate fermentation to isobutanol (engineered)
-
-
PWY-7111
Pyruvate metabolism
-
-
reactive oxygen species degradation
-
-
DETOX1-PWY-1
retinol biosynthesis
-
-
PWY-6857
Retinol metabolism
-
-
Rubisco shunt
-
-
PWY-5723
salidroside biosynthesis
-
-
PWY-6802
selenate reduction
-
-
PWY-6932
seleno-amino acid detoxification and volatilization I
-
-
PWY-6931
seleno-amino acid detoxification and volatilization III
-
-
PWY-6933
Selenocompound metabolism
-
-
serine metabolism
-
-
serotonin degradation
-
-
PWY-6313
serotonin metabolism
-
-
sesamin biosynthesis
-
-
PWY-5469
Sphingolipid metabolism
-
-
Starch and sucrose metabolism
-
-
starch degradation
-
-
starch degradation I
-
-
PWY-842
Styrene degradation
-
-
sucrose biosynthesis I (from photosynthesis)
-
-
SUCSYN-PWY
sucrose degradation III (sucrose invertase)
-
-
PWY-621
sucrose degradation V (sucrose alpha-glucosidase)
-
-
PWY66-373
sulfate activation for sulfonation
-
-
PWY-5340
sulfate reduction
-
-
sulfite oxidation III
-
-
PWY-5278
sulfopterin metabolism
-
-
Sulfur metabolism
-
-
superoxide radicals degradation
-
-
DETOX1-PWY
superpathway of fermentation (Chlamydomonas reinhardtii)
-
-
PWY4LZ-257
superpathway of glucose and xylose degradation
-
-
PWY-6901
superpathway of glycolysis and the Entner-Doudoroff pathway
-
-
GLYCOLYSIS-E-D
Terpenoid backbone biosynthesis
-
-
Thiamine metabolism
-
-
traumatin and (Z)-3-hexen-1-yl acetate biosynthesis
-
-
PWY-5410
triacylglycerol degradation
-
-
LIPAS-PWY
tRNA processing
-
-
PWY0-1479
Tryptophan metabolism
-
-
tunicamycin biosynthesis
-
-
PWY-7821
Tyrosine metabolism
-
-
tyrosine metabolism
-
-
UMP biosynthesis I
-
-
PWY-5686
urea cycle
-
-
urea degradation II
-
-
PWY-5704
UTP and CTP dephosphorylation I
-
-
PWY-7185
valine metabolism
-
-
Valine, leucine and isoleucine degradation
-
-
vancomycin resistance I
-
-
PWY-6454
Various types of N-glycan biosynthesis
-
-
xylitol degradation I
-
-
LARABITOLUTIL-PWY
xyloglucan degradation II (exoglucanase)
-
-
PWY-6807
SOURCE TISSUE
ORGANISM
UNIPROT
COMMENTARY hide
LITERATURE
SOURCE
the extracellular peptidase production reaches a peak after 168 h and 30°C with 760 U/ml, growth on casein or peptone and crushed feathers
Manually annotated by BRENDA team
LOCALIZATION
ORGANISM
UNIPROT
COMMENTARY hide
GeneOntology No.
LITERATURE
SOURCE
LINKS TO OTHER DATABASES (specific for Penicillium citrinum)