Information on Organism Streptomyces peucetius subsp. caesius ATCC 27952

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PATHWAY
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KEGG Link
MetaCyc Link
Biosynthesis of secondary metabolites
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Biosynthesis of type II polyketide products
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daunorubicin biosynthesis
1,5-anhydrofructose degradation
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acetone degradation I (to methylglyoxal)
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acetone degradation III (to propane-1,2-diol)
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Amaryllidacea alkaloids biosynthesis
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Aminobenzoate degradation
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Arachidonic acid metabolism
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arachidonic acid metabolism
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bupropion degradation
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Caffeine metabolism
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Drug metabolism - cytochrome P450
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Fatty acid degradation
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Linoleic acid metabolism
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melatonin degradation I
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Metabolic pathways
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Metabolism of xenobiotics by cytochrome P450
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Microbial metabolism in diverse environments
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nicotine degradation IV
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nicotine degradation V
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Retinol metabolism
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Steroid hormone biosynthesis
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Tryptophan metabolism
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vanillin biosynthesis I
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cholesterol biosynthesis
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cholesterol biosynthesis (plants)
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ergosterol biosynthesis II
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Steroid biosynthesis
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glucocorticoid biosynthesis
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mineralocorticoid biosynthesis
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Biosynthesis of 12-, 14- and 16-membered macrolides
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methymycin, neomethymycin and novamethymycin biosynthesis
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narbomycin, pikromycin and novapikromycin biosynthesis
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ethylene biosynthesis III (microbes)
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non-pathway related
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reactive oxygen species degradation
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superoxide radicals degradation
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photosynthesis
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capsaicin biosynthesis
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chlorogenic acid biosynthesis I
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coumarins biosynthesis (engineered)
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Flavonoid biosynthesis
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phenylpropanoid biosynthesis
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Phenylpropanoid biosynthesis
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phenylpropanoid biosynthesis
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phenylpropanoids methylation (ice plant)
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scopoletin biosynthesis
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Stilbenoid, diarylheptanoid and gingerol biosynthesis
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suberin monomers biosynthesis
xanthohumol biosynthesis
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isoprenoid biosynthesis
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methylerythritol phosphate pathway I
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methylerythritol phosphate pathway II
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pyridoxal 5'-phosphate biosynthesis I
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Terpenoid backbone biosynthesis
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Thiamine metabolism
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thiazole biosynthesis I (facultative anaerobic bacteria)
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thiazole biosynthesis II (aerobic bacteria)
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vitamin B1 metabolism
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erythromycin D biosynthesis
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Biosynthesis of various secondary metabolites - part 1
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flaviolin dimer and mompain biosynthesis
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lipid A biosynthesis
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lipid A-core biosynthesis (E. coli K-12)
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mono-trans, poly-cis decaprenyl phosphate biosynthesis
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coenzyme A biosynthesis I (prokaryotic)
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coenzyme A biosynthesis II (eukaryotic)
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coenzyme A metabolism
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Pantothenate and CoA biosynthesis
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phosphopantothenate biosynthesis I
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phosphopantothenate biosynthesis II
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superpathway of coenzyme A biosynthesis III (mammals)
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geosmin biosynthesis
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Sesquiterpenoid and triterpenoid biosynthesis
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Acarbose and validamycin biosynthesis
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Biosynthesis of vancomycin group antibiotics
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dTDP-3-acetamido-3,6-dideoxy-alpha-D-glucose biosynthesis
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dTDP-3-acetamido-alpha-D-fucose biosynthesis
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dTDP-4-O-demethyl-beta-L-noviose biosynthesis
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dTDP-6-deoxy-alpha-D-allose biosynthesis
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dTDP-alpha-D-mycaminose biosynthesis
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dTDP-beta-L-4-epi-vancosamine biosynthesis
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dTDP-beta-L-digitoxose biosynthesis
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dTDP-D-beta-fucofuranose biosynthesis
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dTDP-D-desosamine biosynthesis
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dTDP-D-forosamine biosynthesis
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dTDP-D-olivose, dTDP-D-oliose and dTDP-D-mycarose biosynthesis
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dTDP-D-ravidosamine and dTDP-4-acetyl-D-ravidosamine biosynthesis
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dTDP-L-daunosamine biosynthesis
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dTDP-L-megosamine biosynthesis
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dTDP-L-mycarose biosynthesis
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dTDP-L-olivose biosynthesis
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dTDP-L-rhamnose biosynthesis
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dTDP-N-acetylthomosamine biosynthesis
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dTDP-N-acetylviosamine biosynthesis
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dTDPLrhamnose biosynthesis
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Polyketide sugar unit biosynthesis
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Streptomycin biosynthesis
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gossypol biosynthesis
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lacinilene C biosynthesis
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all-trans-farnesol biosynthesis
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bisabolene biosynthesis (engineered)
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isoprene biosynthesis II (engineered)
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mevalonate metabolism
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mevalonate pathway I
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mevalonate pathway II (archaea)
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mevalonate pathway III (archaea)
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trans, trans-farnesyl diphosphate biosynthesis
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diploterol biosynthesis
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hopanoid biosynthesis (bacteria)
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beta-Alanine metabolism
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pantothenate biosynthesis
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oleandomycin activation/inactivation
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ORGANISM
COMMENTARY hide
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LINKS TO OTHER DATABASES (specific for Streptomyces peucetius subsp. caesius ATCC 27952)