Experiment set10IT061 for Pseudomonas simiae WCS417

Compare to:

soil sample 4; outgrowth in LB

Group: soil
Media:
Culturing: fluoroDangl_ML3, potted plant
By: Dawn Chiniquy on 4-Apr-19

Specific Phenotypes

For 14 genes in this experiment

SEED Subsystems

Subsystem #Specific
Choline and Betaine Uptake and Betaine Biosynthesis 2
Bacterial Chemotaxis 1
Cysteine Biosynthesis 1
Glutamine, Glutamate, Aspartate and Asparagine Biosynthesis 1
Maltose and Maltodextrin Utilization 1
Methionine Biosynthesis 1
Queuosine-Archaeosine Biosynthesis 1
Terminal cytochrome C oxidases 1
Thiamin biosynthesis 1
Threonine and Homoserine Biosynthesis 1
Trehalose 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
3-(4-hydroxyphenyl)pyruvate biosynthesis 1 1 1
L-aspartate biosynthesis 1 1 1
L-aspartate degradation I 1 1 1
L-cysteine biosynthesis I 2 2 1
L-glutamate degradation II 2 2 1
malate/L-aspartate shuttle pathway 2 1 1
L-tyrosine degradation II 2 1 1
L-tryptophan degradation IV (via indole-3-lactate) 2 1 1
arsenite to oxygen electron transfer 2 1 1
atromentin biosynthesis 2 1 1
L-phenylalanine biosynthesis I 3 3 1
L-tyrosine biosynthesis I 3 3 1
L-phenylalanine degradation II (anaerobic) 3 2 1
L-asparagine degradation III (mammalian) 3 2 1
arsenite to oxygen electron transfer (via azurin) 3 1 1
(R)-cysteate degradation 3 1 1
L-tyrosine degradation IV (to 4-methylphenol) 3 1 1
sulfolactate degradation III 3 1 1
indole-3-acetate biosynthesis VI (bacteria) 3 1 1
queuosine biosynthesis I (de novo) 4 4 1
aerobic respiration I (cytochrome c) 4 3 1
aerobic respiration II (cytochrome c) (yeast) 4 3 1
superpathway of L-aspartate and L-asparagine biosynthesis 4 3 1
L-phenylalanine degradation III 4 2 1
L-tyrosine degradation III 4 2 1
L-tryptophan degradation VIII (to tryptophol) 4 1 1
L-tyrosine degradation I 5 5 1
queuosine biosynthesis III (queuosine salvage) 5 3 1
seleno-amino acid biosynthesis (plants) 5 3 1
trans-4-hydroxy-L-proline degradation I 5 3 1
superpathway of plastoquinol biosynthesis 5 2 1
L-phenylalanine degradation VI (reductive Stickland reaction) 5 1 1
4-hydroxybenzoate biosynthesis I (eukaryotes) 5 1 1
L-tryptophan degradation XIII (reductive Stickland reaction) 5 1 1
L-tyrosine degradation V (reductive Stickland reaction) 5 1 1
C4 photosynthetic carbon assimilation cycle, NAD-ME type 11 6 2
superpathway of L-threonine biosynthesis 6 6 1
TCA cycle VIII (Chlamydia) 6 5 1
thiazole component of thiamine diphosphate biosynthesis I 6 4 1
Fe(II) oxidation 6 3 1
superpathway of sulfolactate degradation 6 2 1
hydrogen sulfide biosynthesis II (mammalian) 6 1 1
coenzyme M biosynthesis II 6 1 1
thiazole component of thiamine diphosphate biosynthesis II 7 5 1
C4 photosynthetic carbon assimilation cycle, PEPCK type 14 9 2
anaerobic energy metabolism (invertebrates, cytosol) 7 4 1
superpathway of aromatic amino acid biosynthesis 18 18 2
superpathway of sulfate assimilation and cysteine biosynthesis 9 9 1
superpathway of L-methionine biosynthesis (transsulfuration) 9 7 1
L-phenylalanine degradation IV (mammalian, via side chain) 9 3 1
superpathway of L-tyrosine biosynthesis 10 10 1
superpathway of L-phenylalanine biosynthesis 10 10 1
superpathway of thiamine diphosphate biosynthesis I 10 8 1
rosmarinic acid biosynthesis I 10 2 1
superpathway of thiamine diphosphate biosynthesis II 11 9 1
(S)-reticuline biosynthesis I 11 1 1
superpathway of L-methionine biosynthesis (by sulfhydrylation) 12 12 1
indole-3-acetate biosynthesis II 12 5 1
superpathway of L-isoleucine biosynthesis I 13 13 1
superpathway of rosmarinic acid biosynthesis 14 3 1
superpathway of anaerobic energy metabolism (invertebrates) 17 9 1
superpathway of L-lysine, L-threonine and L-methionine biosynthesis I 18 16 1
superpathway of seleno-compound metabolism 19 8 1
aspartate superpathway 25 22 1
anaerobic aromatic compound degradation (Thauera aromatica) 27 3 1
superpathway of chorismate metabolism 59 44 2
Methanobacterium thermoautotrophicum biosynthetic metabolism 56 20 1