SEED Subsystems in Agrobacterium fabrum C58

Subsystems are shown if they have at least one gene assigned to them. Because many roles are assigned to more than one subsystem, the subsystem may not be present even if the gene annotation(s) are correct.

Category Subsystem #Genes
Amino Acids and Derivatives L-2-amino-thiazoline-4-carboxylic acid-Lcysteine conversion 2
Amino Acids and Derivatives : Alanine, serine, and glycine Alanine biosynthesis 7
  Glycine Biosynthesis 3
  Glycine and Serine Utilization 24
  Glycine cleavage system 4
  Serine Biosynthesis 16
Amino Acids and Derivatives : Arginine; urea cycle, polyamines Arginine Biosynthesis extended 17
  Arginine Deiminase Pathway 2
  Arginine and Ornithine Degradation 16
  Polyamine Metabolism 23
  Urea decomposition 17
Amino Acids and Derivatives : Aromatic amino acids and derivatives Aromatic amino acid degradation 3
  Chorismate: Intermediate for synthesis of PAPA antibiotics, PABA, anthranilate, 3-hydroxyanthranilate and more. 3
  Chorismate Synthesis 13
  Common Pathway For Synthesis of Aromatic Compounds (DAHP synthase to chorismate) 9
  Phenylalanine and Tyrosine Branches from Chorismate 3
  Tryptophan synthesis 6
Amino Acids and Derivatives : Branched-chain amino acids Branched-Chain Amino Acid Biosynthesis 18
  HMG CoA Synthesis 6
  Isoleucine degradation 10
  Ketoisovalerate oxidoreductase 1
  Leucine Biosynthesis 5
  Leucine Degradation and HMG-CoA Metabolism 9
  Valine degradation 13
Amino Acids and Derivatives : Glutamine, glutamate, aspartate, asparagine; ammonia assimilation Glutamate dehydrogenases 1
  Glutamine, Glutamate, Aspartate and Asparagine Biosynthesis 32
  Glutamine synthetases 3
Amino Acids and Derivatives : Histidine Metabolism Histidine Biosynthesis 11
  Histidine Degradation 12
Amino Acids and Derivatives : Lysine, threonine, methionine, and cysteine Cysteine Biosynthesis 18
  Lysine Biosynthesis DAP Pathway 10
  Methionine Biosynthesis 26
  Methionine Degradation 6
  Threonine anaerobic catabolism gene cluster 2
  Threonine and Homoserine Biosynthesis 13
  Threonine degradation 8
Amino Acids and Derivatives : Proline and 4-hydroxyproline Proline, 4-hydroxyproline uptake and utilization 13
  Proline Synthesis 4
Carbohydrates Lacto-N-Biose I and Galacto-N-Biose Metabolic Pathway 8
Carbohydrates : Aminosugars Chitin and N-acetylglucosamine utilization 12
  N-Acetyl-Galactosamine and Galactosamine Utilization 1
Carbohydrates : CO2 fixation CO2 uptake, carboxysome 1
  Calvin-Benson cycle 9
  Carboxysome 2
  Photorespiration (oxidative C2 cycle) 18
Carbohydrates : Central carbohydrate metabolism Dihydroxyacetone kinases 1
  Entner-Doudoroff Pathway 33
  Glycolate, glyoxylate interconversions 9
  Glycolysis and Gluconeogenesis 13
  Glycolysis and Gluconeogenesis, including Archaeal enzymes 9
  Methylglyoxal Metabolism 17
  Pentose phosphate pathway 12
  Pyruvate Alanine Serine Interconversions 14
  Pyruvate metabolism I: anaplerotic reactions, PEP 5
  Pyruvate metabolism II: acetyl-CoA, acetogenesis from pyruvate 13
  TCA Cycle 18
Carbohydrates : Di- and oligosaccharides Beta-Glucoside Metabolism 1
  Fructooligosaccharides(FOS) and Raffinose Utilization 6
  Lactose and Galactose Uptake and Utilization 12
  Lactose utilization 1
  Maltose and Maltodextrin Utilization 25
  Melibiose Utilization 3
  Sucrose utilization 4
  Sucrose utilization Shewanella 4
  Trehalose Biosynthesis 3
Carbohydrates : Fermentation Acetoin, butanediol metabolism 4
  Acetyl-CoA fermentation to Butyrate 9
  Butanol Biosynthesis 4
  Fermentations: Lactate 1
  Fermentations: Mixed acid 14
Carbohydrates : Glycoside hydrolases Predicted carbohydrate hydrolases 2
Carbohydrates : Monosaccharides D-Galacturonate and D-Glucuronate Utilization 17
  D-Sorbitol(D-Glucitol) and L-Sorbose Utilization 2
  D-Tagatose and Galactitol Utilization 2
  D-galactarate, D-glucarate and D-glycerate catabolism 7
  D-galactonate catabolism 4
  D-gluconate and ketogluconates metabolism 10
  D-ribose utilization 53
  Deoxyribose and Deoxynucleoside Catabolism 16
  Fructose utilization 8
  L-Arabinose utilization 3
  L-fucose utilization temp 3
  L-rhamnose utilization 15
  Mannose Metabolism 5
  Xylose utilization 13
Carbohydrates : One-carbon Metabolism One-carbon metabolism by tetrahydropterines 8
  Serine-glyoxylate cycle 28
Carbohydrates : Organic acids 2-methylcitrate to 2-methylaconitate metabolism cluster 2
  Isobutyryl-CoA to Propionyl-CoA Module 6
  Lactate utilization 3
  Propionate-CoA to Succinate Module 2
  Propionyl-CoA to Succinyl-CoA Module 3
Carbohydrates : Polysaccharides Glycogen metabolism 6
Carbohydrates : Sugar alcohols Di-Inositol-Phosphate biosynthesis 5
  Erythritol utilization 2
  Glycerol and Glycerol-3-phosphate Uptake and Utilization 44
  Inositol catabolism 25
  Mannitol Utilization 6
  Ribitol, Xylitol, Arabitol, Mannitol and Sorbitol utilization 31
Cell Division and Cell Cycle Bacterial Cytoskeleton 20
  Control of cell elongation - division cycle in Bacilli 1
  Macromolecular synthesis operon 8
  Two cell division clusters relating to chromosome partitioning 10
Cell Wall and Capsule Peptidoglycan Biosynthesis 30
  UDP-N-acetylmuramate from Fructose-6-phosphate Biosynthesis 7
Cell Wall and Capsule : Capsular and extracellular polysacchrides Alginate metabolism 4
  Capsular heptose biosynthesis 4
  Colanic acid biosynthesis 4
  O-Methyl Phosphoramidate Capsule Modification in Campylobacter 1
  Polysaccharide deacetylases 2
  Rhamnose containing glycans 14
  Sialic Acid Metabolism 12
  dTDP-rhamnose synthesis 8
Cell Wall and Capsule : Cell wall of Mycobacteria linker unit-arabinogalactan synthesis 15
  mycolic acid synthesis 28
Cell Wall and Capsule : Gram-Negative cell wall components KDO2-Lipid A biosynthesis 8
  LOS core oligosaccharide biosynthesis 3
  Lipid A modifications 4
  Lipopolysaccharide-related cluster in Alphaproteobacteria 3
Cell Wall and Capsule : Gram-Positive cell wall components Teichoic and lipoteichoic acids biosynthesis 3
Clustering-based subsystems Bacterial Cell Division 27
  Bacterial RNA-metabolizing Zn-dependent hydrolases 10
  CBSS-214092.1.peg.3450 2
  Conserved gene cluster associated with Met-tRNA formyltransferase 14
  LMPTP YfkJ cluster 1
  LMPTP YwlE cluster 5
  NusA-TFII Cluster 4
  Putative hemin transporter 1
  Putative sulfate assimilation cluster 3
Clustering-based subsystems : Clustering-based subsystems CBSS-262719.3.peg.410 3
  Conenzyme B12 related Hypothetical: Clusters with cobST 4
Clustering-based subsystems : Lysine, threonine, methionine, and cysteine YeiH 2
Clustering-based subsystems : proteosome related Cluster-based Subsystem Grouping Hypotheticals - perhaps Proteosome Related 2
Cofactors, Vitamins, Prosthetic Groups, Pigments Thiamin biosynthesis 24
Cofactors, Vitamins, Prosthetic Groups, Pigments : Biotin Biotin biosynthesis 15
Cofactors, Vitamins, Prosthetic Groups, Pigments : Coenzyme A Coenzyme A Biosynthesis 8
Cofactors, Vitamins, Prosthetic Groups, Pigments : Folate and pterines Folate Biosynthesis 20
  Molybdenum cofactor biosynthesis 15
  Pterin biosynthesis 3
  p-Aminobenzoyl-Glutamate Utilization 1
Cofactors, Vitamins, Prosthetic Groups, Pigments : Lipoic acid Lipoic acid metabolism 2
Cofactors, Vitamins, Prosthetic Groups, Pigments : NAD and NADP NAD and NADP cofactor biosynthesis global 13
  NAD regulation 9
  PnuC-like transporters 1
Cofactors, Vitamins, Prosthetic Groups, Pigments : Pyridoxine Pyridoxin (Vitamin B6) Biosynthesis 21
Cofactors, Vitamins, Prosthetic Groups, Pigments : Quinone cofactors Menaquinone Biosynthesis via Futalosine 1
  Menaquinone and Phylloquinone Biosynthesis 1
  Pyrroloquinoline Quinone biosynthesis 2
  Ubiquinone Biosynthesis 7
Cofactors, Vitamins, Prosthetic Groups, Pigments : Riboflavin, FMN, FAD Riboflavin, FMN and FAD metabolism 3
Cofactors, Vitamins, Prosthetic Groups, Pigments : Tetrapyrroles Cobalamin synthesis 10
  Coenzyme B12 biosynthesis 22
  Experimental tye 16
  Heme and Siroheme Biosynthesis 15
DNA Metabolism DNA structural proteins, bacterial 5
  Restriction-Modification System 1
  YcfH 2
DNA Metabolism : DNA recombination RuvABC plus a hypothetical 3
DNA Metabolism : DNA repair 2-phosphoglycolate salvage 3
  DNA Repair Base Excision 18
  DNA repair, UvrABC system 3
  DNA repair, bacterial 19
  DNA repair, bacterial MutL-MutS system 2
  DNA repair, bacterial RecFOR pathway 7
  DNA repair, bacterial UvrD and related helicases 2
DNA Metabolism : DNA replication DNA-replication 26
  DNA replication, archaeal 2
  DNA topoisomerases, Type I, ATP-independent 1
  DNA topoisomerases, Type II, ATP-dependent 4
  Plasmid replication 12
Fatty Acids, Lipids, and Isoprenoids Polyhydroxybutyrate metabolism 13
Fatty Acids, Lipids, and Isoprenoids : Fatty acids Fatty Acid Biosynthesis FASII 39
Fatty Acids, Lipids, and Isoprenoids : Isoprenoids Archaeal lipids 2
  Carotenoids 3
  Isoprenoid Biosynthesis 8
  Polyprenyl Diphosphate Biosynthesis 2
  polyprenyl synthesis 4
Fatty Acids, Lipids, and Isoprenoids : Phospholipids Glycerolipid and Glycerophospholipid Metabolism in Bacteria 42
Fatty Acids, Lipids, and Isoprenoids : Triacylglycerols Triacylglycerol metabolism 1
Iron acquisition and metabolism Campylobacter Iron Metabolism 15
  Heme, hemin uptake and utilization systems in GramPositives 3
  Hemin transport system 9
  Iron acquisition in Vibrio 24
  Transport of Iron 20
Iron acquisition and metabolism : Siderophores Siderophore Aerobactin 4
Membrane Transport Agrobacterium opine transport 4
  Choline Transport 1
  ECF class transporters 5
  Ton and Tol transport systems 18
  Transport of Manganese 5
  Transport of Molybdenum 4
  Transport of Nickel and Cobalt 3
  Transport of Zinc 9
Membrane Transport : ABC transporters ABC transporter alkylphosphonate (TC 3.A.1.9.1) 6
  ABC transporter branched-chain amino acid (TC 3.A.1.4.1) 20
  ABC transporter dipeptide (TC 3.A.1.5.2) 44
  ABC transporter of unknown substrate X 1
  ABC transporter oligopeptide (TC 3.A.1.5.1) 33
Membrane Transport : Protein and nucleoprotein secretion system, Type IV Type IV pilus 5
  pVir Plasmid of Campylobacter 5
Membrane Transport : Protein secretion system, Type II Widespread colonization island 11
Membrane Transport : Protein translocation across cytoplasmic membrane Twin-arginine translocation system 3
Membrane Transport : Uni- Sym- and Antiporters Sodium Hydrogen Antiporter 12
Metabolism of Aromatic Compounds Aromatic Amin Catabolism 5
  Benzoate transport and degradation cluster 2
  Gentisare degradation 4
Metabolism of Aromatic Compounds : Metabolism of central aromatic intermediates 4-Hydroxyphenylacetic acid catabolic pathway 3
  Catechol branch of beta-ketoadipate pathway 10
  Central meta-cleavage pathway of aromatic compound degradation 2
  Homogentisate pathway of aromatic compound degradation 8
  Protocatechuate branch of beta-ketoadipate pathway 12
  Salicylate and gentisate catabolism 5
Metabolism of Aromatic Compounds : Peripheral pathways for catabolism of aromatic compounds Benzoate degradation 2
  Chloroaromatic degradation pathway 5
  Naphtalene and antracene degradation 2
  Quinate degradation 3
  Salicylate ester degradation 1
  n-Phenylalkanoic acid degradation 5
  p-Hydroxybenzoate degradation 1
Miscellaneous Muconate lactonizing enzyme family 2
  YbbK 2
  ZZ gjo need homes 14
Miscellaneous : Plant-Prokaryote DOE project Conserved gene cluster possibly involved in RNA metabolism 3
  Synechocystis experimental 1
Motility and Chemotaxis Bacterial Chemotaxis 33
Motility and Chemotaxis : Flagellar motility in Prokaryota Flagellar motility 21
  Flagellum 41
  Flagellum in Campylobacter 9
Nitrogen Metabolism Allantoin Utilization 7
  Ammonia assimilation 19
  Cyanate hydrolysis 1
  Denitrification 11
  Dissimilatory nitrite reductase 3
  Nitrate and nitrite ammonification 15
  Nitric oxide synthase 2
  Nitrosative stress 4
Nucleosides and Nucleotides Adenosyl nucleosidases 2
  Hydantoin metabolism 7
  Ribonucleotide reduction 6
Nucleosides and Nucleotides : Detoxification Nudix proteins (nucleoside triphosphate hydrolases) 10
Nucleosides and Nucleotides : Purines De Novo Purine Biosynthesis 14
  Purine Utilization 4
  Purine conversions 24
Nucleosides and Nucleotides : Pyrimidines De Novo Pyrimidine Synthesis 10
  Pyrimidine utilization 14
Phages, Prophages, Transposable elements : Bacteriophage structural proteins Phage capsid proteins 1
Phages, Prophages, Transposable elements, Plasmids : Pathogenicity islands Staphylococcal pathogenicity islands SaPI 5
Phages, Prophages, Transposable elements, Plasmids : Phages, Prophages Staphylococcal phi-Mu50B-like prophages 1
Phages, Prophages, Transposable elements, Plasmids : Transposable elements Tn552 1
Phosphorus Metabolism Alkylphosphonate utilization 14
  High affinity phosphate transporter and control of PHO regulon 8
  Phosphate metabolism 29
Potassium metabolism Glutathione-regulated potassium-efflux system and associated functions 1
  Potassium homeostasis 12
Protein Metabolism : Protein biosynthesis Ribosome LSU bacterial 29
  Ribosome SSU bacterial 21
  Ribosome activity modulation 1
  Ribosome biogenesis bacterial 9
  Trans-translation by stalled ribosomes 1
  Translation elongation factor G family 2
  Translation elongation factors eukaryotic and archaeal 1
  Translation initiation factors eukaryotic and archaeal 1
  Universal GTPases 14
Protein Metabolism : Protein degradation Proteasome bacterial 8
  Protein degradation 4
  Proteolysis in bacteria, ATP-dependent 12
Protein Metabolism : Protein folding GroEL GroES 2
  Peptidyl-prolyl cis-trans isomerase 2
  Periplasmic disulfide interchange 4
  Protein chaperones 6
Protein Metabolism : Protein processing and modification N-linked Glycosylation in Bacteria 9
  Ribosomal protein S12p Asp methylthiotransferase 2
  Ribosomal protein S5p acylation 2
  Signal peptidase 2
Protein Metabolism : Secretion Protein secretion by ABC-type exporters 1
Protein Metabolism : Selenoproteins Glycine reductase, sarcosine reductase and betaine reductase 3
RNA Metabolism : RNA processing and modification ATP-dependent RNA helicases, bacterial 2
  Polyadenylation bacterial 3
  Queuosine-Archaeosine Biosynthesis 24
  RNA processing and degradation, bacterial 4
  Ribonuclease H 3
  Wyeosine-MimG Biosynthesis 4
  tRNA nucleotidyltransferase 1
  tRNA processing 7
  tRNA splicing 1
RNA Metabolism : Transcription RNA polymerase bacterial 4
  Rrf2 family transcriptional regulators 10
  Transcription factors bacterial 9
  Transcription factors cyanobacterial RpoD-like sigma factors 1
  Transcription initiation, bacterial sigma factors 8
Regulation and Cell signaling CytR regulation 1
  DNA-binding regulatory proteins, strays 6
  Orphan regulatory proteins 7
  Oxygen and light sensor PpaA-PpsR 2
  Sex pheromones in Enterococcus faecalis and other Firmicutes 12
  Stringent Response, (p)ppGpp metabolism 1
  Two-component regulatory systems in Campylobacter 5
  cAMP signaling in bacteria 16
Regulation and Cell signaling : Programmed Cell Death and Toxin-antitoxin Systems MazEF toxin-antitoxing (programmed cell death) system 2
  Murein hydrolase regulation and cell death 2
Regulation and Cell signaling : Quorum sensing and biofilm formation Autoinducer 2 (AI-2) transport and processing (lsrACDBFGE operon) 1
  Quorum Sensing: Autoinducer-2 Synthesis 1
Respiration Biogenesis of c-type cytochromes 13
  Biogenesis of cbb3-type cytochrome c oxidases 3
  Biogenesis of cytochrome c oxidases 7
  Formate hydrogenase 7
  Soluble cytochromes and functionally related electron carriers 4
Respiration : ATP synthases F0F1-type ATP synthase 6
Respiration : Electron accepting reactions Anaerobic respiratory reductases 8
  Terminal cytochrome C oxidases 12
  Terminal cytochrome O ubiquinol oxidase 4
  Terminal cytochrome d ubiquinol oxidases 5
  Terminal cytochrome oxidases 9
  Ubiquinone Menaquinone-cytochrome c reductase complexes 3
  trimethylamine N-oxide (TMAO) reductase 1
Respiration : Electron donating reactions Respiratory Complex I 15
  Respiratory dehydrogenases 1 16
  Succinate dehydrogenase 4
Secondary Metabolism : Bacterial cytostatics, differentiation factors and antibiotics Phenazine biosynthesis 2
Secondary Metabolism : Plant Hormones Auxin biosynthesis 4
  Auxin degradation 1
Stress Response Bacterial hemoglobins 10
  Hfl operon 4
  SigmaB stress responce regulation 1
  Universal stress protein family 1
Stress Response : Acid stress Acid resistance mechanisms 1
Stress Response : Detoxification Glutathione-dependent pathway of formaldehyde detoxification 2
Stress Response : Heat shock Heat shock dnaK gene cluster extended 16
Stress Response : Osmotic stress Choline and Betaine Uptake and Betaine Biosynthesis 42
Stress Response : Oxidative stress Glutaredoxins 3
  Glutathione: Biosynthesis and gamma-glutamyl cycle 5
  Glutathione: Non-redox reactions 15
  Glutathione: Redox cycle 4
  Oxidative stress 29
  Redox-dependent regulation of nucleus processes 3
  Rubrerythrin 2
Sulfur Metabolism Galactosylceramide and Sulfatide metabolism 3
  Sulfur oxidation 4
  Thioredoxin-disulfide reductase 7
Sulfur Metabolism : Organic sulfur assimilation Alkanesulfonate assimilation 14
  Alkanesulfonates Utilization 11
  Utilization of glutathione as a sulphur source 14
Virulence : Type III, Type IV, Type VI, ESAT secretion systems Type 4 secretion and conjugative transfer 12
Virulence, Disease and Defense : Detection MLST 3
Virulence, Disease and Defense : Resistance to antibiotics and toxic compounds Arsenic resistance 6
  Beta-lactamase 5
  Cobalt-zinc-cadmium resistance 15
  Copper homeostasis 6
  Copper homeostasis: copper tolerance 4
  Mercuric reductase 1
  Methicillin resistance in Staphylococci 3
  Multidrug Resistance, Tripartite Systems Found in Gram Negative Bacteria 2
  Multidrug Resistance Efflux Pumps 17
  Multidrug efflux pump in Campylobacter jejuni (CmeABC operon) 6
  Resistance to fluoroquinolones 4