Experiment set47S232 for Pseudomonas putida KT2440

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mixed carbon sources Trisodium citrate dihydrate 10 mM and L-Meta-tyrosine 10 mM

Group: mixed carbon source
Media: MME_noCarbon + Trisodium citrate dihydrate (10 mM) + L-Meta-tyrosine (10 mM)
Culturing: Putida_ML5_PNNL, 96 deep well, Aerobic, at 30 (C), shaken=1200 rpm
By: Andrew Frank on 11/17/23
Media components: 9.1 mM Potassium phosphate dibasic trihydrate, 20 mM 3-(N-morpholino)propanesulfonic acid, 4.3 mM Sodium Chloride, 10 mM Ammonium chloride, 0.41 mM Magnesium Sulfate Heptahydrate, 0.07 mM Calcium chloride dihydrate, MME Trace Minerals (0.5 mg/L EDTA tetrasodium tetrahydrate salt, 2 mg/L Ferric chloride, 0.05 mg/L Boric Acid, 0.05 mg/L Zinc chloride, 0.03 mg/L copper (II) chloride dihydrate, 0.05 mg/L Manganese (II) chloride tetrahydrate, 0.05 mg/L Diammonium molybdate, 0.05 mg/L Cobalt chloride hexahydrate, 0.05 mg/L Nickel (II) chloride hexahydrate)

Specific Phenotypes

For 9 genes in this experiment

For mixed carbon source Trisodium citrate dihydrate in Pseudomonas putida KT2440

For mixed carbon source Trisodium citrate dihydrate across organisms

SEED Subsystems

Subsystem #Specific
Aromatic amino acid degradation 3
Catechol branch of beta-ketoadipate pathway 1
Chloroaromatic degradation pathway 1
Chorismate Synthesis 1
Common Pathway For Synthesis of Aromatic Compounds (DAHP synthase to chorismate) 1
Protocatechuate branch of beta-ketoadipate pathway 1
Pterin biosynthesis 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
L-phenylalanine degradation I (aerobic) 1 1 1
L-tyrosine biosynthesis IV 1 1 1
3-oxoadipate degradation 2 2 1
3-dehydroquinate biosynthesis I 2 2 1
L-phenylalanine degradation V 3 3 1
catechol degradation III (ortho-cleavage pathway) 6 6 1
superpathway of salicylate degradation 7 7 1
chorismate biosynthesis I 7 7 1
4-methylcatechol degradation (ortho cleavage) 7 5 1
aromatic compounds degradation via β-ketoadipate 9 9 1
superpathway of L-tyrosine biosynthesis 10 10 1
superpathway of L-phenylalanine biosynthesis 10 10 1
toluene degradation III (aerobic) (via p-cresol) 11 7 1
superpathway of L-tryptophan biosynthesis 13 13 1
superpathway of aromatic amino acid biosynthesis 18 18 1
mandelate degradation to acetyl-CoA 18 11 1
superpathway of aerobic toluene degradation 30 13 1
superpathway of aromatic compound degradation via 3-oxoadipate 35 19 1
superpathway of chorismate metabolism 59 42 1