Experiment set2IT024 for Pseudomonas sp. RS175

Compare to:

Malonic acid carbon source 10 mM

Group: carbon source
Media: MME_noCarbon + Malonic acid (10 mM), pH=7
Culturing: Pseudomonas_RS175_ML2, 96 deep-well microplate; 1.2 mL volume, Aerobic, at 30 (C), shaken=1200 rpm
By: Joshua Elmore on 1-Jul-22
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 10 genes in this experiment

For carbon source Malonic acid in Pseudomonas sp. RS175

For carbon source Malonic acid across organisms

SEED Subsystems

Subsystem #Specific
Malonate decarboxylase 8
ZZ gjo need homes 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
malonate degradation I (biotin-independent) 3 3 3
malonate decarboxylase activation 2 2 1
fatty acid biosynthesis initiation (type II) 3 3 1
fatty acid biosynthesis initiation (mitochondria) 4 2 1
fatty acid biosynthesis initiation (plant mitochondria) 4 1 1
malonate degradation II (biotin-dependent) 4 1 1
superpathway of fatty acid biosynthesis initiation 5 4 1
pederin biosynthesis 14 2 2
bryostatin biosynthesis 19 2 2
mycobactin biosynthesis 11 3 1
superpathway of fatty acid biosynthesis I (E. coli) 16 15 1
mupirocin biosynthesis 26 2 1
corallopyronin A biosynthesis 30 2 1
superpathway of fatty acid biosynthesis II (plant) 43 38 1
superpathway of fatty acids biosynthesis (E. coli) 53 49 1