Experiment set2IT078 for Escherichia coli BL21

Compare to:

lambda1857_phage_12.5_MOI

Group: phage
Media: LB_agar + lambda1857_phage (12.5 MOI) + Kan (50 ug/ml)
Culturing: BL21_ML4, plate, Aerobic, at 37 (C), (Solid)
By: Vivek on 31-Jan-19

Specific Phenotypes

For 13 genes in this experiment

For phage lambda1857_phage in Escherichia coli BL21

For phage lambda1857_phage across organisms

SEED Subsystems

Subsystem #Specific
Maltose and Maltodextrin Utilization 2
Allantoin Utilization 1
Dihydroxyacetone kinases 1
Iron acquisition in Vibrio 1
L-ascorbate utilization (and related gene clusters) 1
Protein chaperones 1
Proteolysis in bacteria, ATP-dependent 1
Siderophore Aerobactin 1
Thioredoxin-disulfide reductase 1
Trehalose Uptake and Utilization 1

Metabolic Maps

Color code by fitness: see overview map or list of maps.

Maps containing gene(s) with specific phenotypes:

MetaCyc Pathways

Pathways that contain genes with specific phenotypes:

Pathway #Steps #Present #Specific
glycerol degradation V 2 2 1
acetoacetate degradation (to acetyl CoA) 2 2 1
5,6-dehydrokavain biosynthesis (engineered) 10 8 4
benzoyl-CoA biosynthesis 3 3 1
polyhydroxybutanoate biosynthesis 3 2 1
ketolysis 3 2 1
(2S)-ethylmalonyl-CoA biosynthesis 4 2 1
oleate β-oxidation 35 32 8
valproate β-oxidation 9 5 2
2-methyl-branched fatty acid β-oxidation 14 9 3
(R)- and (S)-3-hydroxybutanoate biosynthesis (engineered) 5 4 1
pyruvate fermentation to acetone 5 3 1
fatty acid β-oxidation II (plant peroxisome) 5 3 1
glutaryl-CoA degradation 5 3 1
9-cis, 11-trans-octadecadienoyl-CoA degradation (isomerase-dependent, yeast) 10 4 2
isopropanol biosynthesis (engineered) 5 2 1
ketogenesis 5 2 1
4-hydroxybenzoate biosynthesis III (plants) 5 2 1
ethylbenzene degradation (anaerobic) 5 1 1
fatty acid β-oxidation VII (yeast peroxisome) 5 1 1
pyruvate fermentation to hexanol (engineered) 11 8 2
fatty acid salvage 6 5 1
pyruvate fermentation to butanol II (engineered) 6 4 1
L-isoleucine degradation I 6 4 1
propanoate fermentation to 2-methylbutanoate 6 3 1
4-ethylphenol degradation (anaerobic) 6 1 1
10-trans-heptadecenoyl-CoA degradation (MFE-dependent, yeast) 6 1 1
jasmonic acid biosynthesis 19 4 3
fatty acid β-oxidation I (generic) 7 6 1
acetyl-CoA fermentation to butanoate 7 5 1
pyruvate fermentation to butanoate 7 4 1
fatty acid β-oxidation VI (mammalian peroxisome) 7 3 1
mevalonate pathway II (haloarchaea) 7 2 1
mevalonate pathway I (eukaryotes and bacteria) 7 2 1
pyruvate fermentation to butanol I 8 4 1
2-deoxy-D-ribose degradation II 8 3 1
2-methylpropene degradation 8 2 1
mevalonate pathway IV (archaea) 8 2 1
mevalonate pathway III (Thermoplasma) 8 2 1
isoprene biosynthesis II (engineered) 8 2 1
androstenedione degradation I (aerobic) 25 6 3
superpathway of Clostridium acetobutylicum acidogenic fermentation 9 6 1
benzoate biosynthesis I (CoA-dependent, β-oxidative) 9 4 1
4-oxopentanoate degradation 9 1 1
superpathway of testosterone and androsterone degradation 28 6 3
L-glutamate degradation V (via hydroxyglutarate) 10 5 1
3-phenylpropanoate degradation 10 4 1
superpathway of geranylgeranyldiphosphate biosynthesis I (via mevalonate) 10 4 1
L-lysine fermentation to acetate and butanoate 10 4 1
methyl tert-butyl ether degradation 10 2 1
superpathway of cholesterol degradation I (cholesterol oxidase) 42 8 4
(8E,10E)-dodeca-8,10-dienol biosynthesis 11 5 1
ethylmalonyl-CoA pathway 11 2 1
superpathway of cholesterol degradation II (cholesterol dehydrogenase) 47 8 4
L-glutamate degradation VII (to butanoate) 12 5 1
10-cis-heptadecenoyl-CoA degradation (yeast) 12 2 1
10-trans-heptadecenoyl-CoA degradation (reductase-dependent, yeast) 12 2 1
superpathway of Clostridium acetobutylicum solventogenic fermentation 13 7 1
(4Z,7Z,10Z,13Z,16Z)-docosapentaenoate biosynthesis (6-desaturase) 13 2 1
androstenedione degradation II (anaerobic) 27 4 2
superpathway of glyoxylate cycle and fatty acid degradation 14 11 1
docosahexaenoate biosynthesis III (6-desaturase, mammals) 14 2 1
L-tryptophan degradation III (eukaryotic) 15 3 1
glycerol degradation to butanol 16 11 1
crotonate fermentation (to acetate and cyclohexane carboxylate) 16 3 1
superpathway of Clostridium acetobutylicum acidogenic and solventogenic fermentation 17 9 1
benzoate fermentation (to acetate and cyclohexane carboxylate) 17 3 1
cholesterol degradation to androstenedione I (cholesterol oxidase) 17 2 1
3-hydroxypropanoate/4-hydroxybutanate cycle 18 11 1
toluene degradation VI (anaerobic) 18 3 1
sitosterol degradation to androstenedione 18 1 1
cholesterol degradation to androstenedione II (cholesterol dehydrogenase) 22 2 1
superpathway of cholesterol degradation III (oxidase) 49 4 2
photosynthetic 3-hydroxybutanoate biosynthesis (engineered) 26 19 1
platensimycin biosynthesis 26 6 1
superpathway of ergosterol biosynthesis I 26 4 1
1-butanol autotrophic biosynthesis (engineered) 27 19 1
superpathway of cholesterol biosynthesis 38 4 1
superpathway of L-lysine degradation 43 15 1
Methanobacterium thermoautotrophicum biosynthetic metabolism 56 22 1