Experiment set1IT010 for Sinorhizobium meliloti 1021

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L-Rhamnose monohydrate carbon source

Group: carbon source
Media: RCH2_defined_noCarbon + L-Rhamnose monohydrate (20 mM), pH=7
Culturing: Smeli_ML6, 24 deep-well microplate; Multitron, Aerobic, at 30 (C), shaken=750 rpm
Growth: about 5.0 generations
By: Mark on 6/2/2015
Media components: 0.25 g/L Ammonium chloride, 0.1 g/L Potassium Chloride, 0.6 g/L Sodium phosphate monobasic monohydrate, 30 mM PIPES sesquisodium salt, Wolfe's mineral mix (0.03 g/L Magnesium Sulfate Heptahydrate, 0.015 g/L Nitrilotriacetic acid, 0.01 g/L Sodium Chloride, 0.005 g/L Manganese (II) sulfate monohydrate, 0.001 g/L Cobalt chloride hexahydrate, 0.001 g/L Zinc sulfate heptahydrate, 0.001 g/L Calcium chloride dihydrate, 0.001 g/L Iron (II) sulfate heptahydrate, 0.00025 g/L Nickel (II) chloride hexahydrate, 0.0002 g/L Aluminum potassium sulfate dodecahydrate, 0.0001 g/L Copper (II) sulfate pentahydrate, 0.0001 g/L Boric Acid, 0.0001 g/L Sodium Molybdate Dihydrate, 0.003 mg/L Sodium selenite pentahydrate), Wolfe's vitamin mix (0.1 mg/L Pyridoxine HCl, 0.05 mg/L 4-Aminobenzoic acid, 0.05 mg/L Lipoic acid, 0.05 mg/L Nicotinic Acid, 0.05 mg/L Riboflavin, 0.05 mg/L Thiamine HCl, 0.05 mg/L calcium pantothenate, 0.02 mg/L biotin, 0.02 mg/L Folic Acid, 0.001 mg/L Cyanocobalamin)
Growth plate: Smeli_carbon_plate1 B4

Specific Phenotypes

For 10 genes in this experiment

For carbon source L-Rhamnose monohydrate in Sinorhizobium meliloti 1021

For carbon source L-Rhamnose monohydrate across organisms

SEED Subsystems

Subsystem #Specific
L-rhamnose utilization 9
Lactate utilization 1
Respiratory dehydrogenases 1 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-rhamnose degradation I 5 5 4
methylglyoxal degradation V 3 3 2
L-lactaldehyde degradation (aerobic) 2 1 1
superpathway of fucose and rhamnose degradation 12 8 5
methylglyoxal degradation IV 3 2 1
lactate biosynthesis (archaea) 5 3 1
superpathway of methylglyoxal degradation 8 6 1
lactate fermentation to acetate, CO2 and hydrogen (Desulfovibrionales) 8 3 1
L-rhamnose degradation II 8 3 1