| Pathway | Steps Found | 
|---|
 | superpathway of histidine, purine, and pyrimidine biosynthesis | 42 / 46 | 
 | superpathway of purine nucleotides de novo biosynthesis I | 21 / 21 | 
 | tRNA charging | 21 / 21 | 
 | oleate β-oxidation | 31 / 35 | 
 | superpathway of purine nucleotides de novo biosynthesis II | 24 / 26 | 
 | superpathway of pyrimidine deoxyribonucleotides de novo biosynthesis | 18 / 18 | 
 | superpathway of aromatic amino acid biosynthesis | 17 / 18 | 
 | superpathway of L-tryptophan biosynthesis | 13 / 13 | 
 | peptidoglycan biosynthesis I (meso-diaminopimelate containing) | 12 / 12 | 
 | superpathway of cytosolic glycolysis (plants), pyruvate dehydrogenase and TCA cycle | 19 / 22 | 
 | superpathway of L-phenylalanine biosynthesis | 10 / 10 | 
 | tRNA processing | 10 / 10 | 
 | L-arginine biosynthesis III (via N-acetyl-L-citrulline) | 9 / 9 | 
 | L-lysine biosynthesis I | 9 / 9 | 
 | NAD de novo biosynthesis II (from tryptophan) | 9 / 9 | 
 | lipid IVA biosynthesis (P. gingivalis) | 9 / 9 | 
 | pyrimidine deoxyribonucleotides de novo biosynthesis I | 9 / 9 | 
 | superpathway of pyrimidine ribonucleotides de novo biosynthesis | 9 / 9 | 
 | superpathway of sulfate assimilation and cysteine biosynthesis | 9 / 9 | 
 | superpathway of geranylgeranyl diphosphate biosynthesis II (via MEP) | 11 / 12 | 
 | UDP-N-acetylmuramoyl-pentapeptide biosynthesis I (meso-diaminopimelate containing) | 8 / 8 | 
 | aspartate superpathway | 20 / 25 | 
 | superpathway of fatty acids biosynthesis (E. coli) | 40 / 53 | 
 | chorismate biosynthesis I | 7 / 7 | 
 | pyridoxal 5'-phosphate biosynthesis I | 7 / 7 | 
 | superpathway of pyrimidine deoxyribonucleotides de novo biosynthesis (E. coli) | 12 / 14 | 
 | TCA cycle I (prokaryotic) | 9 / 10 | 
 | superpathway of L-tyrosine biosynthesis | 9 / 10 | 
 | superpathway of heme b biosynthesis from glutamate | 9 / 10 | 
 | superpathway of (Kdo)2-lipid A biosynthesis | 14 / 17 | 
 | L-tryptophan biosynthesis | 6 / 6 | 
 | NAD de novo biosynthesis I | 6 / 6 | 
 | NAD de novo biosynthesis IV (anaerobic) | 6 / 6 | 
 | TCA cycle VIII (Chlamydia) | 6 / 6 | 
 | UMP biosynthesis I | 6 / 6 | 
 | UMP biosynthesis II | 6 / 6 | 
 | inosine-5'-phosphate biosynthesis I | 6 / 6 | 
 | lipid IVA biosynthesis (E. coli) | 6 / 6 | 
 | lipid IVA biosynthesis (H. pylori) | 6 / 6 | 
 | lipid IVA biosynthesis (P. putida) | 6 / 6 | 
 | lipid IVA biosynthesis (Vibrio cholerae serogroup O1 El Tor) | 6 / 6 | 
 | lipid IVA biosynthesis (generic) | 6 / 6 | 
 | phosphatidylglycerol biosynthesis I | 6 / 6 | 
 | phosphatidylglycerol biosynthesis II | 6 / 6 | 
 | ppGpp metabolism | 6 / 6 | 
 | purine deoxyribonucleosides salvage | 6 / 6 | 
 | superpathway of 5-aminoimidazole ribonucleotide biosynthesis | 6 / 6 | 
 | superpathway of guanosine nucleotides de novo biosynthesis I | 6 / 6 | 
 | tetrapyrrole biosynthesis I (from glutamate) | 6 / 6 | 
 | gluconeogenesis I | 11 / 13 | 
 | taxadiene biosynthesis (engineered) | 11 / 13 | 
 | superpathway of unsaturated fatty acids biosynthesis (E. coli) | 16 / 20 | 
 | L-arginine biosynthesis I (via L-ornithine) | 8 / 9 | 
 | TCA cycle II (plants and fungi) | 8 / 9 | 
 | TCA cycle IV (2-oxoglutarate decarboxylase) | 8 / 9 | 
 | TCA cycle V (2-oxoglutarate synthase) | 8 / 9 | 
 | flavin biosynthesis I (bacteria and plants) | 8 / 9 | 
 | folate transformations III (E. coli) | 8 / 9 | 
 | methylerythritol phosphate pathway I | 8 / 9 | 
 | methylerythritol phosphate pathway II | 8 / 9 | 
 | pyrimidine deoxyribonucleotides de novo biosynthesis III | 8 / 9 | 
 | superpathway of coenzyme A biosynthesis I (bacteria) | 8 / 9 | 
 | 2-methylcitrate cycle I | 5 / 5 | 
 | 5-aminoimidazole ribonucleotide biosynthesis I | 5 / 5 | 
 | 5-aminoimidazole ribonucleotide biosynthesis II | 5 / 5 | 
 | CMP-3-deoxy-D-manno-octulosonate biosynthesis | 5 / 5 | 
 | L-arginine degradation II (AST pathway) | 5 / 5 | 
 | L-histidine degradation II | 5 / 5 | 
 | L-ornithine biosynthesis I | 5 / 5 | 
 | L-tryptophan degradation to 2-amino-3-carboxymuconate semialdehyde | 5 / 5 | 
 | adenosylcobalamin salvage from cobalamin | 5 / 5 | 
 | chorismate biosynthesis from 3-dehydroquinate | 5 / 5 | 
 | inosine-5'-phosphate biosynthesis II | 5 / 5 | 
 | polyisoprenoid biosynthesis (E. coli) | 5 / 5 | 
 | superpathway of adenosine nucleotides de novo biosynthesis I | 5 / 5 | 
 | superpathway of coenzyme A biosynthesis III (mammals) | 5 / 5 | 
 | superpathway of L-methionine biosynthesis (by sulfhydrylation) | 10 / 12 | 
 | superpathway of phospholipid biosynthesis III (E. coli) | 10 / 12 | 
 | superpathway of tetrahydrofolate biosynthesis and salvage | 10 / 12 | 
 | superpathway of ubiquinol-8 biosynthesis (early decarboxylation) | 10 / 12 | 
 | L-histidine degradation VI | 7 / 8 | 
 | UDP-N-acetylmuramoyl-pentapeptide biosynthesis II (lysine-containing) | 7 / 8 | 
 | superpathway of guanosine nucleotides de novo biosynthesis II | 7 / 8 | 
 | biotin biosynthesis I | 12 / 15 | 
 | CDP-diacylglycerol biosynthesis I | 4 / 4 | 
 | CDP-diacylglycerol biosynthesis II | 4 / 4 | 
 | L-proline biosynthesis I (from L-glutamate) | 4 / 4 | 
 | NAD biosynthesis from 2-amino-3-carboxymuconate semialdehyde | 4 / 4 | 
 | adenine and adenosine salvage III | 4 / 4 | 
 | assimilatory sulfate reduction I | 4 / 4 | 
 | biotin biosynthesis from 8-amino-7-oxononanoate I | 4 / 4 | 
 | biotin-carboxyl carrier protein assembly | 4 / 4 | 
 | chlorinated phenols degradation | 4 / 4 | 
 | coenzyme A biosynthesis I (bacteria) | 4 / 4 | 
 | coenzyme A biosynthesis II (eukaryotic) | 4 / 4 | 
 | guanosine ribonucleotides de novo biosynthesis | 4 / 4 | 
 | phosphopantothenate biosynthesis I | 4 / 4 | 
 | pyrimidine deoxyribonucleotide phosphorylation | 4 / 4 | 
 | queuosine biosynthesis I (de novo) | 4 / 4 | 
 | reactive oxygen species degradation | 4 / 4 | 
 | siroheme biosynthesis | 4 / 4 | 
 | superpathway of L-serine and glycine biosynthesis I | 4 / 4 | 
 | folate transformations II (plants) | 9 / 11 | 
 | glycolysis II (from fructose 6-phosphate) | 9 / 11 | 
 | superpathway of thiamine diphosphate biosynthesis II | 9 / 11 | 
 | 3-methylbutanol biosynthesis (engineered) | 6 / 7 | 
 | L-lysine biosynthesis III | 6 / 7 | 
 | L-lysine biosynthesis VI | 6 / 7 | 
 | fatty acid β-oxidation I (generic) | 6 / 7 | 
 | pyrimidine deoxyribonucleotides de novo biosynthesis IV | 6 / 7 | 
 | superpathway of adenosine nucleotides de novo biosynthesis II | 6 / 7 | 
 | superpathway of purine nucleotide salvage | 11 / 14 | 
 | 2-oxoglutarate decarboxylation to succinyl-CoA | 3 / 3 | 
 | 2-oxoisovalerate decarboxylation to isobutanoyl-CoA | 3 / 3 | 
 | L-arginine degradation IV (arginine decarboxylase/agmatine deiminase pathway) | 3 / 3 | 
 | L-cysteine degradation II | 3 / 3 | 
 | L-homoserine biosynthesis | 3 / 3 | 
 | L-methionine degradation II | 3 / 3 | 
 | L-ornithine biosynthesis II | 3 / 3 | 
 | L-phenylalanine biosynthesis I | 3 / 3 | 
 | L-proline biosynthesis III (from L-ornithine) | 3 / 3 | 
 | L-serine biosynthesis I | 3 / 3 | 
 | L-serine degradation | 3 / 3 | 
 | L-tryptophan degradation I (via anthranilate) | 3 / 3 | 
 | UTP and CTP de novo biosynthesis | 3 / 3 | 
 | adenosine ribonucleotides de novo biosynthesis | 3 / 3 | 
 | aerobic respiration III (alternative oxidase pathway) | 3 / 3 | 
 | ammonia assimilation cycle III | 3 / 3 | 
 | assimilatory sulfate reduction III | 3 / 3 | 
 | benzoyl-CoA biosynthesis | 3 / 3 | 
 | cardiolipin biosynthesis II | 3 / 3 | 
 | dTMP de novo biosynthesis (mitochondrial) | 3 / 3 | 
 | ethanol degradation II | 3 / 3 | 
 | ethanol degradation IV | 3 / 3 | 
 | fatty acid biosynthesis initiation (type II) | 3 / 3 | 
 | formaldehyde oxidation II (glutathione-dependent) | 3 / 3 | 
 | glycine biosynthesis II | 3 / 3 | 
 | glycine cleavage | 3 / 3 | 
 | glycine degradation | 3 / 3 | 
 | pentose phosphate pathway (partial) | 3 / 3 | 
 | putrescine biosynthesis II | 3 / 3 | 
 | pyruvate decarboxylation to acetyl CoA I | 3 / 3 | 
 | tetrahydrofolate biosynthesis I | 3 / 3 | 
 | L-arginine biosynthesis II (acetyl cycle) | 8 / 10 | 
 | L-histidine biosynthesis | 8 / 10 | 
 | TCA cycle III (animals) | 8 / 10 | 
 | glycolysis IV | 8 / 10 | 
 | isoprene biosynthesis I | 8 / 10 | 
 | superpathway of sulfur amino acid biosynthesis (Saccharomyces cerevisiae) | 8 / 10 | 
 | superpathway of tetrahydrofolate biosynthesis | 8 / 10 | 
 | γ-glutamyl cycle | 5 / 6 | 
 | (5Z)-dodecenoate biosynthesis I | 5 / 6 | 
 | 2-methylcitrate cycle II | 5 / 6 | 
 | L-leucine biosynthesis | 5 / 6 | 
 | NAD de novo biosynthesis III | 5 / 6 | 
 | UMP biosynthesis III | 5 / 6 | 
 | fatty acid salvage | 5 / 6 | 
 | inosine-5'-phosphate biosynthesis III | 5 / 6 | 
 | lipid IVA biosynthesis (2,3-diamino-2,3-dideoxy-D-glucopyranose-containing) | 5 / 6 | 
 | pentose phosphate pathway (non-oxidative branch) II | 5 / 6 | 
 | superpathway of cardiolipin biosynthesis (bacteria) | 10 / 13 | 
 | 3-dehydroquinate biosynthesis I | 2 / 2 | 
 | 4-amino-2-methyl-5-diphosphomethylpyrimidine biosynthesis I | 2 / 2 | 
 | 4-aminobenzoate biosynthesis I | 2 / 2 | 
 | trans, trans-farnesyl diphosphate biosynthesis | 2 / 2 | 
 | CMP phosphorylation | 2 / 2 | 
 | Kdo transfer to lipid IVA (Brucella) | 2 / 2 | 
 | Kdo transfer to lipid IVA (E. coli) | 2 / 2 | 
 | Kdo transfer to lipid IVA (H. pylori) | 2 / 2 | 
 | Kdo transfer to lipid IVA (P. gingivalis) | 2 / 2 | 
 | Kdo transfer to lipid IVA (P. putida) | 2 / 2 | 
 | Kdo transfer to lipid IVA (generic) | 2 / 2 | 
 | L-cysteine biosynthesis I | 2 / 2 | 
 | L-cysteine biosynthesis III (from L-homocysteine) | 2 / 2 | 
 | L-glutamate biosynthesis I | 2 / 2 | 
 | L-phenylalanine biosynthesis III (cytosolic, plants) | 2 / 2 | 
 | L-threonine degradation II | 2 / 2 | 
 | N-end rule pathway I (prokaryotic) | 2 / 2 | 
 | adenosine deoxyribonucleotides de novo biosynthesis I | 2 / 2 | 
 | ammonia assimilation cycle II | 2 / 2 | 
 | citrate degradation | 2 / 2 | 
 | curcumin degradation | 2 / 2 | 
 | di-trans,poly-cis-undecaprenyl phosphate biosynthesis | 2 / 2 | 
 | flavin salvage | 2 / 2 | 
 | glutathione biosynthesis | 2 / 2 | 
 | glutathione degradation (DUG pathway) | 2 / 2 | 
 | guanosine deoxyribonucleotides de novo biosynthesis I | 2 / 2 | 
 | hydroxymethylpyrimidine salvage | 2 / 2 | 
 | isoniazid activation | 2 / 2 | 
 | lipoate biosynthesis and incorporation I | 2 / 2 | 
 | malate/L-aspartate shuttle pathway | 2 / 2 | 
 | menaquinol-10 biosynthesis | 2 / 2 | 
 | menaquinol-11 biosynthesis | 2 / 2 | 
 | menaquinol-12 biosynthesis | 2 / 2 | 
 | menaquinol-13 biosynthesis | 2 / 2 | 
 | menaquinol-7 biosynthesis | 2 / 2 | 
 | palmitoleate biosynthesis IV (fungi and animals) | 2 / 2 | 
 | phosphatidylserine and phosphatidylethanolamine biosynthesis I | 2 / 2 | 
 | polyphosphate metabolism | 2 / 2 | 
 | sedoheptulose bisphosphate bypass | 2 / 2 | 
 | spermidine biosynthesis I | 2 / 2 | 
 | sulfate activation for sulfonation | 2 / 2 | 
 | superoxide radicals degradation | 2 / 2 | 
 | superpathway of L-asparagine biosynthesis | 2 / 2 | 
 | tetrahydrofolate salvage from 5,10-methenyltetrahydrofolate | 2 / 2 | 
 | thiamine diphosphate biosynthesis I (E. coli) | 2 / 2 | 
 | thiamine diphosphate biosynthesis II (Bacillus) | 2 / 2 | 
 | L-lysine biosynthesis II | 7 / 9 | 
 | flavin biosynthesis III (fungi) | 7 / 9 | 
 | palmitoleate biosynthesis I (from (5Z)-dodec-5-enoate) | 7 / 9 | 
 | superpathway of fatty acid biosynthesis I (E. coli) | 12 / 16 | 
 | 3-hydroxy-4-methyl-anthranilate biosynthesis II | 4 / 5 | 
 | cis-vaccenate biosynthesis | 4 / 5 | 
 | CDP-diacylglycerol biosynthesis III | 4 / 5 | 
 | L-tyrosine degradation I | 4 / 5 | 
 | NAD salvage pathway II (PNC IV cycle) | 4 / 5 | 
 | UDP-N-acetyl-D-glucosamine biosynthesis I | 4 / 5 | 
 | adipate degradation | 4 / 5 | 
 | folate polyglutamylation | 4 / 5 | 
 | pentose phosphate pathway (non-oxidative branch) I | 4 / 5 | 
 | superpathway of L-cysteine biosynthesis (mammalian) | 4 / 5 | 
 | superpathway of fatty acid biosynthesis initiation | 4 / 5 | 
 | thiamine diphosphate salvage II | 4 / 5 | 
 | octanoyl-[acyl-carrier protein] biosynthesis (mitochondria, yeast) | 9 / 12 | 
 | superpathway of glyoxylate bypass and TCA | 9 / 12 | 
 | superpathway of glycolysis, pyruvate dehydrogenase, TCA, and glyoxylate bypass | 19 / 26 | 
 | 3-(4-hydroxyphenyl)pyruvate biosynthesis | 1 / 1 | 
 | 4-hydroxybenzoate biosynthesis II (bacteria) | 1 / 1 | 
 | S-methyl-5'-thioadenosine degradation II | 1 / 1 | 
 | cis-cyclopropane fatty acid (CFA) biosynthesis | 1 / 1 | 
 | ATP biosynthesis | 1 / 1 | 
 | D-alanine degradation | 1 / 1 | 
 | L-alanine biosynthesis III | 1 / 1 | 
 | L-alanine degradation IV | 1 / 1 | 
 | L-asparagine biosynthesis I | 1 / 1 | 
 | L-asparagine biosynthesis II | 1 / 1 | 
 | L-asparagine degradation I | 1 / 1 | 
 | L-aspartate biosynthesis | 1 / 1 | 
 | L-aspartate degradation I | 1 / 1 | 
 | L-cysteine degradation IV | 1 / 1 | 
 | L-glutamate biosynthesis III | 1 / 1 | 
 | L-glutamate biosynthesis V | 1 / 1 | 
 | L-glutamate degradation I | 1 / 1 | 
 | L-glutamine biosynthesis I | 1 / 1 | 
 | L-glutamine degradation I | 1 / 1 | 
 | L-glutamine degradation II | 1 / 1 | 
 | L-malate degradation II | 1 / 1 | 
 | L-phenylalanine degradation I (aerobic) | 1 / 1 | 
 | L-tyrosine biosynthesis IV | 1 / 1 | 
 | NADP biosynthesis | 1 / 1 | 
 | PRPP biosynthesis | 1 / 1 | 
 | S-adenosyl-L-methionine biosynthesis | 1 / 1 | 
 | UDP-α-D-glucuronate biosynthesis (from UDP-glucose) | 1 / 1 | 
 | UDP-N-acetyl-α-D-mannosamine biosynthesis | 1 / 1 | 
 | UDP-N-acetyl-α-D-mannosaminouronate biosynthesis | 1 / 1 | 
 | acetaldehyde biosynthesis I | 1 / 1 | 
 | acetate and ATP formation from acetyl-CoA III | 1 / 1 | 
 | acetate conversion to acetyl-CoA | 1 / 1 | 
 | acyl carrier protein activation | 1 / 1 | 
 | acyl-CoA hydrolysis | 1 / 1 | 
 | adenosine nucleotides degradation III | 1 / 1 | 
 | alanine racemization | 1 / 1 | 
 | arginine dependent acid resistance | 1 / 1 | 
 | betanidin degradation | 1 / 1 | 
 | demethylmenaquinol-4 biosynthesis | 1 / 1 | 
 | demethylmenaquinol-6 biosynthesis I | 1 / 1 | 
 | demethylmenaquinol-8 biosynthesis I | 1 / 1 | 
 | demethylmenaquinol-9 biosynthesis | 1 / 1 | 
 | fatty acid β-oxidation III (unsaturated, odd number) | 1 / 1 | 
 | geranyl diphosphate biosynthesis | 1 / 1 | 
 | geranylgeranyl diphosphate biosynthesis | 1 / 1 | 
 | glycine biosynthesis I | 1 / 1 | 
 | glycine biosynthesis III | 1 / 1 | 
 | glycine biosynthesis IV | 1 / 1 | 
 | glyphosate degradation II | 1 / 1 | 
 | hydrogen production III | 1 / 1 | 
 | hydrogen production VIII | 1 / 1 | 
 | indole-3-acetate biosynthesis V (bacteria and fungi) | 1 / 1 | 
 | long-chain fatty acid activation | 1 / 1 | 
 | menaquinol-4 biosynthesis I | 1 / 1 | 
 | menaquinol-6 biosynthesis | 1 / 1 | 
 | menaquinol-8 biosynthesis | 1 / 1 | 
 | menaquinol-9 biosynthesis | 1 / 1 | 
 | octaprenyl diphosphate biosynthesis | 1 / 1 | 
 | phenol degradation I (aerobic) | 1 / 1 | 
 | phosphonoacetate degradation | 1 / 1 | 
 | sulfide oxidation I (to sulfur globules) | 1 / 1 | 
 | thiosulfate disproportionation IV (rhodanese) | 1 / 1 | 
 | UDP-N-acetylmuramoyl-pentapeptide biosynthesis III (meso-diaminopimelate containing) | 6 / 8 | 
 | partial TCA cycle (obligate autotrophs) | 6 / 8 | 
 | pyrimidine deoxyribonucleotides biosynthesis from CTP | 6 / 8 | 
 | superpathway of heme b biosynthesis from glycine | 6 / 8 | 
 | ubiquinol-8 biosynthesis (early decarboxylation) | 6 / 8 | 
 | Bifidobacterium shunt | 11 / 15 | 
 | peptidoglycan biosynthesis III (mycobacteria) | 11 / 15 | 
 | palmitate biosynthesis III | 21 / 29 | 
 | L-arginine degradation VI (arginase 2 pathway) | 3 / 4 | 
 | L-histidine degradation I | 3 / 4 | 
 | adenosine deoxyribonucleotides de novo biosynthesis II | 3 / 4 | 
 | aerobic respiration I (cytochrome c) | 3 / 4 | 
 | assimilatory sulfate reduction IV | 3 / 4 | 
 | biotin biosynthesis from 8-amino-7-oxononanoate II | 3 / 4 | 
 | cardiolipin and phosphatidylethanolamine biosynthesis (Xanthomonas) | 3 / 4 | 
 | coenzyme A biosynthesis III (archaea) | 3 / 4 | 
 | dipicolinate biosynthesis | 3 / 4 | 
 | dipyrromethane cofactor biosynthesis | 3 / 4 | 
 | formaldehyde oxidation VII (THF pathway) | 3 / 4 | 
 | gondoate biosynthesis (anaerobic) | 3 / 4 | 
 | guanosine deoxyribonucleotides de novo biosynthesis II | 3 / 4 | 
 | heme b biosynthesis I (aerobic) | 3 / 4 | 
 | heme b biosynthesis II (oxygen-independent) | 3 / 4 | 
 | heme b biosynthesis V (aerobic) | 3 / 4 | 
 | homocysteine and cysteine interconversion | 3 / 4 | 
 | phytol degradation | 3 / 4 | 
 | sulfide oxidation III (to sulfite) | 3 / 4 | 
 | superpathway of L-aspartate and L-asparagine biosynthesis | 3 / 4 | 
 | superpathway of pyrimidine nucleobases salvage | 3 / 4 | 
 | tetrapyrrole biosynthesis II (from glycine) | 3 / 4 | 
 | 8-amino-7-oxononanoate biosynthesis I | 8 / 11 | 
 | glycolysis III (from glucose) | 8 / 11 | 
 | superpathway of L-lysine, L-threonine and L-methionine biosynthesis I | 13 / 18 | 
 | L-glutamate and L-glutamine biosynthesis | 5 / 7 | 
 | UTP and CTP dephosphorylation I | 5 / 7 | 
 | ethene biosynthesis III (microbes) | 5 / 7 | 
 | pyrimidine deoxyribonucleotides de novo biosynthesis II | 5 / 7 | 
 | thiazole component of thiamine diphosphate biosynthesis II | 5 / 7 | 
 | oleate biosynthesis IV (anaerobic) | 10 / 14 | 
 | superpathway of glyoxylate cycle and fatty acid degradation | 10 / 14 | 
 | 5-(methoxycarbonylmethoxy)uridine biosynthesis | 2 / 3 | 
 | 6-hydroxymethyl-dihydropterin diphosphate biosynthesis IV (Plasmodium) | 2 / 3 | 
 | S-adenosyl-L-methionine salvage II | 2 / 3 | 
 | D-serine degradation | 2 / 3 | 
 | L-arginine degradation I (arginase pathway) | 2 / 3 | 
 | L-asparagine degradation III (mammalian) | 2 / 3 | 
 | L-citrulline degradation | 2 / 3 | 
 | L-cysteine biosynthesis IX (Trichomonas vaginalis) | 2 / 3 | 
 | L-methionine degradation I (to L-homocysteine) | 2 / 3 | 
 | L-phenylalanine degradation V | 2 / 3 | 
 | L-proline degradation I | 2 / 3 | 
 | L-threonine degradation III (to methylglyoxal) | 2 / 3 | 
 | L-tryptophan degradation II (via pyruvate) | 2 / 3 | 
 | L-tyrosine biosynthesis I | 2 / 3 | 
 | NAD salvage pathway III (to nicotinamide riboside) | 2 / 3 | 
 | adenine and adenosine salvage V | 2 / 3 | 
 | aminopropylcadaverine biosynthesis | 2 / 3 | 
 | autoinducer CAI-1 biosynthesis | 2 / 3 | 
 | cardiolipin biosynthesis I | 2 / 3 | 
 | cardiolipin biosynthesis III | 2 / 3 | 
 | cyanate degradation | 2 / 3 | 
 | ethanol degradation III | 2 / 3 | 
 | formaldehyde oxidation V (bacillithiol-dependent) | 2 / 3 | 
 | formate assimilation into 5,10-methylenetetrahydrofolate | 2 / 3 | 
 | gallate biosynthesis | 2 / 3 | 
 | glutathione-peroxide redox reactions | 2 / 3 | 
 | hypotaurine degradation | 2 / 3 | 
 | ketolysis | 2 / 3 | 
 | lipoate biosynthesis and incorporation III (Bacillus) | 2 / 3 | 
 | lipoate biosynthesis and incorporation V (mammals) | 2 / 3 | 
 | methylglyoxal degradation I | 2 / 3 | 
 | methylglyoxal degradation VIII | 2 / 3 | 
 | nitric oxide biosynthesis II (mammals) | 2 / 3 | 
 | oleate biosynthesis III (cyanobacteria) | 2 / 3 | 
 | ophthalmate biosynthesis | 2 / 3 | 
 | prenylated FMNH2 biosynthesis | 2 / 3 | 
 | pyruvate fermentation to (S)-acetoin | 2 / 3 | 
 | pyruvate fermentation to acetate II | 2 / 3 | 
 | pyruvate fermentation to acetate V | 2 / 3 | 
 | scopoletin biosynthesis | 2 / 3 | 
 | seleno-amino acid detoxification and volatilization III | 2 / 3 | 
 | superpathway of acetate utilization and formation | 2 / 3 | 
 | superpathway of ammonia assimilation (plants) | 2 / 3 | 
 | tetrahydrofolate biosynthesis II | 2 / 3 | 
 | thiamine diphosphate salvage V | 2 / 3 | 
 | urea degradation I | 2 / 3 | 
 | Rubisco shunt | 7 / 10 | 
 | superpathway of thiamine diphosphate biosynthesis I | 7 / 10 | 
 | peptidoglycan biosynthesis II (staphylococci) | 12 / 17 | 
 | peptidoglycan biosynthesis IV (Enterococcus faecium) | 12 / 17 | 
 | superpathway of arginine and polyamine biosynthesis | 12 / 17 | 
 | palmitate biosynthesis II (type II fatty acid synthase) | 22 / 31 | 
 | (5Z)-dodecenoate biosynthesis II | 4 / 6 | 
 | 5-oxo-L-proline metabolism | 4 / 6 | 
 | L-histidine degradation III | 4 / 6 | 
 | L-leucine degradation I | 4 / 6 | 
 | biotin biosynthesis II | 4 / 6 | 
 | glyoxylate cycle | 4 / 6 | 
 | hydrogen sulfide biosynthesis II (mammalian) | 4 / 6 | 
 | pyruvate fermentation to butanol II (engineered) | 4 / 6 | 
 | stearate biosynthesis II (bacteria and plants) | 4 / 6 | 
 | stearate biosynthesis IV | 4 / 6 | 
 | superpathway of L-cysteine biosynthesis (fungi) | 4 / 6 | 
 | superpathway of L-threonine biosynthesis | 4 / 6 | 
 | superpathway of heme b biosynthesis from uroporphyrinogen-III | 4 / 6 | 
 | glycolysis I (from glucose 6-phosphate) | 9 / 13 | 
 | β-alanine degradation III | 1 / 2 | 
 | γ-linolenate biosynthesis II (animals) | 1 / 2 | 
 | (3R)-linalool biosynthesis | 1 / 2 | 
 | (3S)-linalool biosynthesis | 1 / 2 | 
 | (Kdo)2-lipid A biosynthesis (E. coli) | 1 / 2 | 
 | 4-aminobenzoate biosynthesis II | 1 / 2 | 
 | 4-aminobutanoate degradation II | 1 / 2 | 
 | 4-aminobutanoate degradation III | 1 / 2 | 
 | 8-amino-7-oxononanoate biosynthesis II | 1 / 2 | 
 | 8-amino-7-oxononanoate biosynthesis III | 1 / 2 | 
 | myo-inositol biosynthesis | 1 / 2 | 
 | CO2 fixation into oxaloacetate (anaplerotic) | 1 / 2 | 
 | Kdo transfer to lipid IVA (Haemophilus) | 1 / 2 | 
 | Kdo transfer to lipid IVA (Vibrio cholerae serogroup O1 El Tor) | 1 / 2 | 
 | Kdo8N transfer to lipid IVA | 1 / 2 | 
 | L-alanine degradation I | 1 / 2 | 
 | L-arginine degradation III (arginine decarboxylase/agmatinase pathway) | 1 / 2 | 
 | L-glutamate degradation II | 1 / 2 | 
 | L-homocysteine biosynthesis | 1 / 2 | 
 | L-lactaldehyde degradation (aerobic) | 1 / 2 | 
 | L-threonine degradation IV | 1 / 2 | 
 | L-tryptophan degradation IV (via indole-3-lactate) | 1 / 2 | 
 | L-tyrosine degradation II | 1 / 2 | 
 | N6-L-threonylcarbamoyladenosine37-modified tRNA biosynthesis | 1 / 2 | 
 | NAD phosphorylation and transhydrogenation | 1 / 2 | 
 | NADH to cytochrome bd oxidase electron transfer I | 1 / 2 | 
 | NADH to cytochrome bo oxidase electron transfer I | 1 / 2 | 
 | NADH to dimethyl sulfoxide electron transfer | 1 / 2 | 
 | NADH to fumarate electron transfer | 1 / 2 | 
 | NADH to hydrogen peroxide electron transfer | 1 / 2 | 
 | NADH to trimethylamine N-oxide electron transfer | 1 / 2 | 
 | UDP-α-D-glucose biosynthesis | 1 / 2 | 
 | UDP-α-D-xylose biosynthesis | 1 / 2 | 
 | acetate and ATP formation from acetyl-CoA I | 1 / 2 | 
 | acetoacetate degradation (to acetyl CoA) | 1 / 2 | 
 | acrylonitrile degradation I | 1 / 2 | 
 | acyl carrier protein metabolism | 1 / 2 | 
 | adenine and adenosine salvage I | 1 / 2 | 
 | ammonia assimilation cycle I | 1 / 2 | 
 | arsenate detoxification III | 1 / 2 | 
 | arsenite to oxygen electron transfer | 1 / 2 | 
 | atromentin biosynthesis | 1 / 2 | 
 | baicalein degradation (hydrogen peroxide detoxification) | 1 / 2 | 
 | cytidylyl molybdenum cofactor sulfurylation | 1 / 2 | 
 | diethylphosphate degradation | 1 / 2 | 
 | dimethyl sulfide biosynthesis from methionine | 1 / 2 | 
 | ethanol degradation I | 1 / 2 | 
 | glycerol-3-phosphate shuttle | 1 / 2 | 
 | glycerophosphodiester degradation | 1 / 2 | 
 | glycine degradation (reductive Stickland reaction) | 1 / 2 | 
 | glycolate and glyoxylate degradation II | 1 / 2 | 
 | guanine and guanosine salvage I | 1 / 2 | 
 | guanine and guanosine salvage II | 1 / 2 | 
 | homoglutathione biosynthesis | 1 / 2 | 
 | hydrogen production VI | 1 / 2 | 
 | indole-3-acetate biosynthesis III (bacteria) | 1 / 2 | 
 | indole-3-acetate biosynthesis IV (bacteria) | 1 / 2 | 
 | linalool biosynthesis I | 1 / 2 | 
 | linoleate biosynthesis II (animals) | 1 / 2 | 
 | methanol oxidation to formaldehyde IV | 1 / 2 | 
 | mevalonate degradation | 1 / 2 | 
 | nitrate reduction VIII (dissimilatory) | 1 / 2 | 
 | oleate β-oxidation (thioesterase-dependent, yeast) | 1 / 2 | 
 | oleate biosynthesis II (animals and fungi) | 1 / 2 | 
 | palmitoleate biosynthesis II (plants and bacteria) | 1 / 2 | 
 | palmitoleate biosynthesis III (cyanobacteria) | 1 / 2 | 
 | periplasmic disulfide bond reduction | 1 / 2 | 
 | phenylmercury acetate degradation | 1 / 2 | 
 | phosphatidylcholine resynthesis via glycerophosphocholine | 1 / 2 | 
 | phospholipid remodeling (phosphatidate, yeast) | 1 / 2 | 
 | pseudouridine degradation | 1 / 2 | 
 | putrescine biosynthesis I | 1 / 2 | 
 | pyruvate fermentation to ethanol II | 1 / 2 | 
 | seleno-amino acid detoxification and volatilization I | 1 / 2 | 
 | spermine biosynthesis | 1 / 2 | 
 | sterculate biosynthesis | 1 / 2 | 
 | succinate to cytochrome bd oxidase electron transfer | 1 / 2 | 
 | succinate to cytochrome bo oxidase electron transfer | 1 / 2 | 
 | superpathway of hydrogen production | 1 / 2 | 
 | tetrahydropteridine recycling | 1 / 2 | 
 | thiamine diphosphate salvage I | 1 / 2 | 
 | thioredoxin pathway | 1 / 2 | 
 | xanthine and xanthosine salvage | 1 / 2 | 
 | TCA cycle VI (Helicobacter) | 6 / 9 | 
 | TCA cycle VII (acetate-producers) | 6 / 9 | 
 | formaldehyde assimilation II (assimilatory RuMP Cycle) | 6 / 9 | 
 | superpathway of S-adenosyl-L-methionine biosynthesis | 6 / 9 | 
 | superpathway of L-methionine biosynthesis (transsulfuration) | 6 / 9 | 
 | 6-hydroxymethyl-dihydropterin diphosphate biosynthesis I | 3 / 5 | 
 | 6-hydroxymethyl-dihydropterin diphosphate biosynthesis III (Chlamydia) | 3 / 5 | 
 | 8-amino-7-oxononanoate biosynthesis IV | 3 / 5 | 
 | ADP-L-glycero-β-D-manno-heptose biosynthesis | 3 / 5 | 
 | L-arginine degradation XIII (reductive Stickland reaction) | 3 / 5 | 
 | adenosine nucleotides degradation II | 3 / 5 | 
 | adenosylcobinamide-GDP salvage from cobinamide I | 3 / 5 | 
 | adipate biosynthesis | 3 / 5 | 
 | biotin biosynthesis from 8-amino-7-oxononanoate III | 3 / 5 | 
 | cyanuric acid degradation II | 3 / 5 | 
 | dZTP biosynthesis | 3 / 5 | 
 | ergothioneine biosynthesis II (fungi) | 3 / 5 | 
 | fatty acid β-oxidation II (plant peroxisome) | 3 / 5 | 
 | fatty acid β-oxidation IV (unsaturated, even number) | 3 / 5 | 
 | fatty acid elongation -- saturated | 3 / 5 | 
 | glutaryl-CoA degradation | 3 / 5 | 
 | octane oxidation | 3 / 5 | 
 | phosphatidate biosynthesis (yeast) | 3 / 5 | 
 | protein S-nitrosylation and denitrosylation | 3 / 5 | 
 | queuosine biosynthesis III (queuosine salvage) | 3 / 5 | 
 | superpathway of sulfide oxidation (Starkeya novella) | 3 / 5 | 
 | uracil degradation III | 3 / 5 | 
 | chorismate biosynthesis II (archaea) | 8 / 12 | 
 | formaldehyde assimilation III (dihydroxyacetone cycle) | 8 / 12 | 
 | homolactic fermentation | 8 / 12 | 
 | superpathway of pyridoxal 5'-phosphate biosynthesis and salvage | 8 / 12 | 
 | L-citrulline biosynthesis | 5 / 8 | 
 | nitrogen remobilization from senescing leaves | 5 / 8 | 
 | superpathway of L-homoserine and L-methionine biosynthesis | 5 / 8 | 
 | superpathway of polyamine biosynthesis II | 5 / 8 | 
 | L-tryptophan degradation III (eukaryotic) | 10 / 15 | 
 | superpathway of L-lysine, L-threonine and L-methionine biosynthesis II | 10 / 15 | 
 | superpathway of fatty acid biosynthesis II (plant) | 30 / 43 | 
 | 2-amino-3-carboxymuconate semialdehyde degradation to 2-hydroxypentadienoate | 2 / 4 | 
 | S-(2-succinyl)-L-cysteine degradation | 2 / 4 | 
 | all-trans-farnesol biosynthesis | 2 / 4 | 
 | L-arginine degradation V (arginine deiminase pathway) | 2 / 4 | 
 | L-cysteine biosynthesis VII (from S-sulfo-L-cysteine) | 2 / 4 | 
 | L-methionine biosynthesis III | 2 / 4 | 
 | L-methionine biosynthesis IV | 2 / 4 | 
 | L-phenylalanine biosynthesis II | 2 / 4 | 
 | L-phenylalanine degradation III | 2 / 4 | 
 | L-tyrosine biosynthesis II | 2 / 4 | 
 | L-tyrosine biosynthesis III | 2 / 4 | 
 | L-tyrosine degradation III | 2 / 4 | 
 | aerobic respiration II (cytochrome c) (yeast) | 2 / 4 | 
 | aminopropanol phosphate biosynthesis II | 2 / 4 | 
 | arsenic detoxification (bacteria) | 2 / 4 | 
 | canavanine biosynthesis | 2 / 4 | 
 | chitin deacetylation | 2 / 4 | 
 | fatty acid α-oxidation I (plants) | 2 / 4 | 
 | fatty acid biosynthesis initiation (mitochondria) | 2 / 4 | 
 | inosine 5'-phosphate degradation | 2 / 4 | 
 | methyl phomopsenoate biosynthesis | 2 / 4 | 
 | phosphatidylcholine acyl editing | 2 / 4 | 
 | phospholipid remodeling (phosphatidylethanolamine, yeast) | 2 / 4 | 
 | phosphopantothenate biosynthesis III (archaea) | 2 / 4 | 
 | pyruvate fermentation to acetate and (S)-lactate I | 2 / 4 | 
 | spermidine biosynthesis II | 2 / 4 | 
 | spermidine biosynthesis III | 2 / 4 | 
 | glycolysis VI (from fructose) | 7 / 11 | 
 | pyruvate fermentation to hexanol (engineered) | 7 / 11 | 
 | tetradecanoate biosynthesis (mitochondria) | 17 / 25 | 
 | CMP-8-amino-3,8-dideoxy-D-manno-octulosonate biosynthesis | 4 / 7 | 
 | L-Nδ-acetylornithine biosynthesis | 4 / 7 | 
 | NAD salvage pathway I (PNC VI cycle) | 4 / 7 | 
 | anaerobic energy metabolism (invertebrates, cytosol) | 4 / 7 | 
 | ergothioneine biosynthesis I (bacteria) | 4 / 7 | 
 | glycine betaine degradation III | 4 / 7 | 
 | lipoate biosynthesis and incorporation IV (yeast) | 4 / 7 | 
 | 2-methyl-branched fatty acid β-oxidation | 9 / 14 | 
 | peptidoglycan recycling I | 9 / 14 | 
 | superpathway of NAD biosynthesis in eukaryotes | 9 / 14 | 
 | β-1,4-D-mannosyl-N-acetyl-D-glucosamine degradation | 1 / 3 | 
 | (R)-cysteate degradation | 1 / 3 | 
 | 1-(sn-glycero-1-phospho)-1D-myo-inositol biosynthesis | 1 / 3 | 
 | 1-(sn-glycero-3-phospho)-1D-myo-inositol biosynthesis | 1 / 3 | 
 | 5,6-dimethylbenzimidazole biosynthesis I (aerobic) | 1 / 3 | 
 | bis(guanylyl molybdopterin) cofactor sulfurylation | 1 / 3 | 
 | CDP-4-dehydro-3,6-dideoxy-D-glucose biosynthesis | 1 / 3 | 
 | CMP-N-acetylneuraminate biosynthesis II (bacteria) | 1 / 3 | 
 | D-myo-inositol (1,4,5)-trisphosphate degradation | 1 / 3 | 
 | GDP-α-D-glucose biosynthesis | 1 / 3 | 
 | L-alanine degradation II (to D-lactate) | 1 / 3 | 
 | L-arginine degradation X (arginine monooxygenase pathway) | 1 / 3 | 
 | L-aspartate degradation II (aerobic) | 1 / 3 | 
 | L-aspartate degradation III (anaerobic) | 1 / 3 | 
 | L-carnitine degradation II | 1 / 3 | 
 | L-isoleucine biosynthesis V | 1 / 3 | 
 | L-isoleucine degradation II | 1 / 3 | 
 | L-leucine degradation III | 1 / 3 | 
 | L-methionine degradation III | 1 / 3 | 
 | L-methionine salvage from L-homocysteine | 1 / 3 | 
 | L-phenylalanine degradation II (anaerobic) | 1 / 3 | 
 | L-selenocysteine biosynthesis I (bacteria) | 1 / 3 | 
 | L-tyrosine degradation IV (to 4-methylphenol) | 1 / 3 | 
 | L-valine degradation II | 1 / 3 | 
 | NAD phosphorylation and dephosphorylation | 1 / 3 | 
 | UTP and CTP dephosphorylation II | 1 / 3 | 
 | acrylate degradation II | 1 / 3 | 
 | adenine salvage | 1 / 3 | 
 | alkane biosynthesis II | 1 / 3 | 
 | ammonia oxidation II (anaerobic) | 1 / 3 | 
 | arsenite to oxygen electron transfer (via azurin) | 1 / 3 | 
 | assimilatory sulfate reduction II | 1 / 3 | 
 | cell-surface glycoconjugate-linked phosphocholine biosynthesis | 1 / 3 | 
 | choline biosynthesis III | 1 / 3 | 
 | ethene biosynthesis I (plants) | 1 / 3 | 
 | ethene biosynthesis IV (engineered) | 1 / 3 | 
 | fatty acid biosynthesis initiation (type I) | 1 / 3 | 
 | gentisate degradation I | 1 / 3 | 
 | glycolate and glyoxylate degradation III | 1 / 3 | 
 | histamine degradation | 1 / 3 | 
 | indole-3-acetate biosynthesis VI (bacteria) | 1 / 3 | 
 | lipoate biosynthesis and incorporation II | 1 / 3 | 
 | methylglyoxal degradation IV | 1 / 3 | 
 | methylglyoxal degradation V | 1 / 3 | 
 | microcin B17 biosynthesis | 1 / 3 | 
 | nitrite-dependent anaerobic methane oxidation | 1 / 3 | 
 | oleate β-oxidation (reductase-dependent, yeast) | 1 / 3 | 
 | oleate biosynthesis I (plants) | 1 / 3 | 
 | ophiobolin F biosynthesis | 1 / 3 | 
 | phosphatidylcholine biosynthesis I | 1 / 3 | 
 | phosphopantothenate biosynthesis II | 1 / 3 | 
 | plastoquinol-9 biosynthesis I | 1 / 3 | 
 | plaunotol biosynthesis | 1 / 3 | 
 | polyhydroxybutanoate biosynthesis | 1 / 3 | 
 | propanoyl CoA degradation I | 1 / 3 | 
 | pyrimidine deoxyribonucleosides degradation | 1 / 3 | 
 | pyrimidine deoxyribonucleotides dephosphorylation | 1 / 3 | 
 | pyruvate fermentation to acetate I | 1 / 3 | 
 | pyruvate fermentation to acetate IV | 1 / 3 | 
 | pyruvate fermentation to acetate VI | 1 / 3 | 
 | pyruvate fermentation to acetate VII | 1 / 3 | 
 | pyruvate fermentation to ethanol I | 1 / 3 | 
 | pyruvate fermentation to ethanol III | 1 / 3 | 
 | quinate degradation I | 1 / 3 | 
 | quinate degradation II | 1 / 3 | 
 | rutin degradation | 1 / 3 | 
 | sulfite oxidation III | 1 / 3 | 
 | sulfolactate degradation III | 1 / 3 | 
 | superpathway of 4-aminobutanoate degradation | 1 / 3 | 
 | superpathway of acrylonitrile degradation | 1 / 3 | 
 | superpathway of guanine and guanosine salvage | 1 / 3 | 
 | superpathway of linalool biosynthesis | 1 / 3 | 
 | taurine biosynthesis III | 1 / 3 | 
 | thiamine diphosphate biosynthesis III (Staphylococcus) | 1 / 3 | 
 | thiamine diphosphate biosynthesis IV (eukaryotes) | 1 / 3 | 
 | trehalose degradation V | 1 / 3 | 
 | triacylglycerol degradation | 1 / 3 | 
 | 5,6-dehydrokavain biosynthesis (engineered) | 6 / 10 | 
 | glycolysis V (Pyrococcus) | 6 / 10 | 
 | photorespiration II | 6 / 10 | 
 | superpathway of sulfide oxidation (Acidithiobacillus ferrooxidans) | 6 / 10 | 
 | peptidoglycan biosynthesis V (β-lactam resistance) | 11 / 17 | 
 | superpathway of chorismate metabolism | 41 / 59 | 
 | 3-hydroxy-4-methyl-anthranilate biosynthesis I | 3 / 6 | 
 | 3-methyl-branched fatty acid α-oxidation | 3 / 6 | 
 | 4-amino-3-hydroxybenzoate degradation | 3 / 6 | 
 | Fe(II) oxidation | 3 / 6 | 
 | L-isoleucine degradation I | 3 / 6 | 
 | L-methionine biosynthesis II | 3 / 6 | 
 | L-threonine degradation I | 3 / 6 | 
 | adenosylcobinamide-GDP biosynthesis from cobyrinate a,c-diamide | 3 / 6 | 
 | adenosylcobinamide-GDP salvage from cobinamide II | 3 / 6 | 
 | arsenate detoxification I | 3 / 6 | 
 | chitin degradation II (Vibrio) | 3 / 6 | 
 | methyl ketone biosynthesis (engineered) | 3 / 6 | 
 | propanoate fermentation to 2-methylbutanoate | 3 / 6 | 
 | purine ribonucleosides degradation | 3 / 6 | 
 | thiazole component of thiamine diphosphate biosynthesis I | 3 / 6 | 
 | Calvin-Benson-Bassham cycle | 8 / 13 | 
 | indole glucosinolate activation (herbivore attack) | 8 / 13 | 
 | photorespiration I | 5 / 9 | 
 | photorespiration III | 5 / 9 | 
 | reductive glycine pathway of autotrophic CO2 fixation | 5 / 9 | 
 | superpathway of pyrimidine deoxyribonucleoside salvage | 5 / 9 | 
 | valproate β-oxidation | 5 / 9 | 
 | (S)-propane-1,2-diol degradation | 2 / 5 | 
 | (R)- and (S)-3-hydroxybutanoate biosynthesis (engineered) | 2 / 5 | 
 | 2-amino-3-carboxymuconate semialdehyde degradation to glutaryl-CoA | 2 / 5 | 
 | 4-hydroxy-2(1H)-quinolone biosynthesis | 2 / 5 | 
 | 4-hydroxybenzoate biosynthesis III (plants) | 2 / 5 | 
 | N-(1-deoxy-D-fructos-1-yl)-L-asparagine degradation | 2 / 5 | 
 | trans-4-hydroxy-L-proline degradation I | 2 / 5 | 
 | Kdo transfer to lipid IVA (Chlamydia) | 2 / 5 | 
 | L-lysine degradation XI | 2 / 5 | 
 | L-methionine biosynthesis I | 2 / 5 | 
 | NAD salvage pathway V (PNC V cycle) | 2 / 5 | 
 | acetylene degradation (anaerobic) | 2 / 5 | 
 | cyanuric acid degradation I | 2 / 5 | 
 | cytosolic NADPH production (yeast) | 2 / 5 | 
 | ectoine biosynthesis | 2 / 5 | 
 | enterobacterial common antigen biosynthesis | 2 / 5 | 
 | ethanolamine utilization | 2 / 5 | 
 | fatty acid β-oxidation V (unsaturated, odd number, di-isomerase-dependent) | 2 / 5 | 
 | felinine and 3-methyl-3-sulfanylbutan-1-ol biosynthesis | 2 / 5 | 
 | galactitol degradation | 2 / 5 | 
 | glucose and glucose-1-phosphate degradation | 2 / 5 | 
 | glucosylglycerol biosynthesis | 2 / 5 | 
 | ketogenesis | 2 / 5 | 
 | lactate biosynthesis (archaea) | 2 / 5 | 
 | mitochondrial NADPH production (yeast) | 2 / 5 | 
 | nitrate reduction I (denitrification) | 2 / 5 | 
 | nitrate reduction VII (denitrification) | 2 / 5 | 
 | protocatechuate degradation III (para-cleavage pathway) | 2 / 5 | 
 | selenate reduction | 2 / 5 | 
 | seleno-amino acid biosynthesis (plants) | 2 / 5 | 
 | sucrose degradation V (sucrose α-glucosidase) | 2 / 5 | 
 | sulfide oxidation IV (mitochondria) | 2 / 5 | 
 | superpathway of L-phenylalanine and L-tyrosine biosynthesis | 2 / 5 | 
 | superpathway of plastoquinol biosynthesis | 2 / 5 | 
 | urea cycle | 2 / 5 | 
 | L-tryptophan degradation IX | 7 / 12 | 
 | superpathway of L-citrulline metabolism | 7 / 12 | 
 | L-mimosine degradation | 4 / 8 | 
 | cobalamin salvage (eukaryotic) | 4 / 8 | 
 | glycine betaine degradation I | 4 / 8 | 
 | pentose phosphate pathway | 4 / 8 | 
 | superpathway of polyamine biosynthesis I | 4 / 8 | 
 | (2S)-ethylmalonyl-CoA biosynthesis | 1 / 4 | 
 | 2'-deoxymugineic acid phytosiderophore biosynthesis | 1 / 4 | 
 | 2-aminophenol degradation | 1 / 4 | 
 | 2-oxobutanoate degradation I | 1 / 4 | 
 | 4-hydroxy-2-nonenal detoxification | 1 / 4 | 
 | 4-sulfocatechol degradation | 1 / 4 | 
 | 6-hydroxymethyl-dihydropterin diphosphate biosynthesis V (Pyrococcus) | 1 / 4 | 
 | 7-(3-amino-3-carboxypropyl)-wyosine biosynthesis | 1 / 4 | 
 | N-3-oxalyl-L-2,3-diaminopropanoate biosynthesis | 1 / 4 | 
 | S-adenosyl-L-methionine salvage I | 1 / 4 | 
 | erythro-tetrahydrobiopterin biosynthesis I | 1 / 4 | 
 | threo-tetrahydrobiopterin biosynthesis | 1 / 4 | 
 | D-galactosamine and N-acetyl-D-galactosamine degradation | 1 / 4 | 
 | GABA shunt II | 1 / 4 | 
 | GDP-D-glycero-α-D-manno-heptose biosynthesis | 1 / 4 | 
 | GDP-mannose biosynthesis | 1 / 4 | 
 | L-asparagine biosynthesis III (tRNA-dependent) | 1 / 4 | 
 | L-selenocysteine biosynthesis II (archaea and eukaryotes) | 1 / 4 | 
 | L-tryptophan degradation VIII (to tryptophol) | 1 / 4 | 
 | L-tryptophan degradation X (mammalian, via tryptamine) | 1 / 4 | 
 | acridone alkaloid biosynthesis | 1 / 4 | 
 | catechol degradation to 2-hydroxypentadienoate II | 1 / 4 | 
 | cytidine-5'-diphosphate-glycerol biosynthesis | 1 / 4 | 
 | ethene biosynthesis II (microbes) | 1 / 4 | 
 | fatty acid biosynthesis initiation (plant mitochondria) | 1 / 4 | 
 | ferulate and sinapate biosynthesis | 1 / 4 | 
 | gentisate degradation II | 1 / 4 | 
 | glutaminyl-tRNAgln biosynthesis via transamidation | 1 / 4 | 
 | glycerol and glycerophosphodiester degradation | 1 / 4 | 
 | glycine betaine degradation II (mammalian) | 1 / 4 | 
 | glycogen biosynthesis I (from ADP-D-Glucose) | 1 / 4 | 
 | glycolate and glyoxylate degradation I | 1 / 4 | 
 | guanosine nucleotides degradation I | 1 / 4 | 
 | guanosine nucleotides degradation II | 1 / 4 | 
 | guanosine nucleotides degradation III | 1 / 4 | 
 | ipsdienol biosynthesis | 1 / 4 | 
 | long chain fatty acid ester synthesis (engineered) | 1 / 4 | 
 | luteolin triglucuronide degradation | 1 / 4 | 
 | methylwyosine biosynthesis | 1 / 4 | 
 | oleate β-oxidation (isomerase-dependent, yeast) | 1 / 4 | 
 | polybrominated phenols biosynthesis | 1 / 4 | 
 | preQ0 biosynthesis | 1 / 4 | 
 | protocatechuate degradation II (ortho-cleavage pathway) | 1 / 4 | 
 | putrescine degradation III | 1 / 4 | 
 | pyruvate fermentation to acetate and lactate II | 1 / 4 | 
 | salidroside biosynthesis | 1 / 4 | 
 | starch degradation III | 1 / 4 | 
 | starch degradation V | 1 / 4 | 
 | sucrose degradation IV (sucrose phosphorylase) | 1 / 4 | 
 | superpathway of L-alanine biosynthesis | 1 / 4 | 
 | superpathway of putrescine biosynthesis | 1 / 4 | 
 | tRNA-uridine 2-thiolation (mammalian mitochondria) | 1 / 4 | 
 | tRNA-uridine 2-thiolation (yeast mitochondria) | 1 / 4 | 
 | taurine biosynthesis II | 1 / 4 | 
 | tetrahydromonapterin biosynthesis | 1 / 4 | 
 | vitamin K-epoxide cycle | 1 / 4 | 
 | wax esters biosynthesis II | 1 / 4 | 
 | xanthommatin biosynthesis | 1 / 4 | 
 | purine nucleotides degradation II (aerobic) | 6 / 11 | 
 | reductive TCA cycle I | 6 / 11 | 
 | superpathway of hexitol degradation (bacteria) | 11 / 18 | 
 | 2-nitrobenzoate degradation I | 3 / 7 | 
 | 3-dehydroquinate biosynthesis II (archaea) | 3 / 7 | 
 | C4 photosynthetic carbon assimilation cycle, NADP-ME type | 3 / 7 | 
 | L-cysteine biosynthesis VI (reverse transsulfuration) | 3 / 7 | 
 | chitin degradation III (Serratia) | 3 / 7 | 
 | diacylglycerol and triacylglycerol biosynthesis | 3 / 7 | 
 | drosopterin and aurodrosopterin biosynthesis | 3 / 7 | 
 | factor 430 biosynthesis | 3 / 7 | 
 | fatty acid β-oxidation VI (mammalian peroxisome) | 3 / 7 | 
 | incomplete reductive TCA cycle | 3 / 7 | 
 | pyruvate fermentation to butanoate | 3 / 7 | 
 | serotonin degradation | 3 / 7 | 
 | superpathway of thiamine diphosphate biosynthesis III (eukaryotes) | 3 / 7 | 
 | thiamine diphosphate salvage IV (yeast) | 3 / 7 | 
 | toxoflavin biosynthesis | 3 / 7 | 
 | Arg/N-end rule pathway (eukaryotic) | 8 / 14 | 
 | L-glutamate degradation V (via hydroxyglutarate) | 5 / 10 | 
 | anaerobic energy metabolism (invertebrates, mitochondrial) | 5 / 10 | 
 | flavin biosynthesis II (archaea) | 5 / 10 | 
 | superpathway of coenzyme A biosynthesis II (plants) | 5 / 10 | 
 | superpathway of pyrimidine ribonucleosides salvage | 5 / 10 | 
 | 5-nitroanthranilate degradation | 2 / 6 | 
 | 6-gingerol analog biosynthesis (engineered) | 2 / 6 | 
 | NAD(P)/NADPH interconversion | 2 / 6 | 
 | UDP-N-acetyl-D-glucosamine biosynthesis II | 2 / 6 | 
 | arsenic detoxification (plants) | 2 / 6 | 
 | bisabolene biosynthesis (engineered) | 2 / 6 | 
 | cyanophycin metabolism | 2 / 6 | 
 | leukotriene biosynthesis | 2 / 6 | 
 | methylgallate degradation | 2 / 6 | 
 | molybdopterin biosynthesis | 2 / 6 | 
 | nitrifier denitrification | 2 / 6 | 
 | norspermidine biosynthesis | 2 / 6 | 
 | palmitoyl ethanolamide biosynthesis | 2 / 6 | 
 | petroselinate biosynthesis | 2 / 6 | 
 | pyridoxal 5'-phosphate salvage I | 2 / 6 | 
 | superpathway of 2,3-butanediol biosynthesis | 2 / 6 | 
 | superpathway of UDP-glucose-derived O-antigen building blocks biosynthesis | 2 / 6 | 
 | superpathway of allantoin degradation in yeast | 2 / 6 | 
 | superpathway of photosynthetic hydrogen production | 2 / 6 | 
 | superpathway of stearidonate biosynthesis (cyanobacteria) | 2 / 6 | 
 | folate transformations I | 7 / 13 | 
 | Entner-Doudoroff pathway I | 4 / 9 | 
 | Entner-Doudoroff pathway III (semi-phosphorylative) | 4 / 9 | 
 | sucrose biosynthesis I (from photosynthesis) | 4 / 9 | 
 | superpathway of Clostridium acetobutylicum acidogenic fermentation | 4 / 9 | 
 | ubiquinol-8 biosynthesis (late decarboxylation) | 4 / 9 | 
 | glycerol degradation to butanol | 9 / 16 | 
 | mixed acid fermentation | 9 / 16 | 
 | 2,3-dihydroxybenzoate degradation | 1 / 5 | 
 | 4-hydroxybenzoate biosynthesis I (eukaryotes) | 1 / 5 | 
 | Escherichia coli serotype O:15 O antigen biosynthesis | 1 / 5 | 
 | N-acetyl-D-galactosamine degradation | 1 / 5 | 
 | S-benzyl-L-cysteine degradation | 1 / 5 | 
 | Salmonella enterica serotype O:54 O antigen biosynthesis | 1 / 5 | 
 | cis-zeatin biosynthesis | 1 / 5 | 
 | CDP-6-deoxy-D-gulose biosynthesis | 1 / 5 | 
 | CMP-N-acetylneuraminate biosynthesis I (eukaryotes) | 1 / 5 | 
 | D-galactose degradation I (Leloir pathway) | 1 / 5 | 
 | L-lysine degradation IV | 1 / 5 | 
 | L-phenylalanine degradation VI (reductive Stickland reaction) | 1 / 5 | 
 | L-tryptophan degradation XIII (reductive Stickland reaction) | 1 / 5 | 
 | L-tyrosine degradation V (reductive Stickland reaction) | 1 / 5 | 
 | benzoate biosynthesis III (CoA-dependent, non-β-oxidative) | 1 / 5 | 
 | dTDP-β-L-rhamnose biosynthesis | 1 / 5 | 
 | dissimilatory sulfate reduction I (to hydrogen sufide)) | 1 / 5 | 
 | dopamine degradation | 1 / 5 | 
 | ethylbenzene degradation (anaerobic) | 1 / 5 | 
 | fatty acid β-oxidation VII (yeast peroxisome) | 1 / 5 | 
 | ferrichrome A biosynthesis | 1 / 5 | 
 | heme b biosynthesis IV (Gram-positive bacteria) | 1 / 5 | 
 | isopropanol biosynthesis (engineered) | 1 / 5 | 
 | lactose degradation I | 1 / 5 | 
 | mono-trans, poly-cis decaprenyl phosphate biosynthesis | 1 / 5 | 
 | phenylethanol biosynthesis | 1 / 5 | 
 | phosphatidate metabolism, as a signaling molecule | 1 / 5 | 
 | phosphatidylcholine biosynthesis II | 1 / 5 | 
 | phospholipases | 1 / 5 | 
 | plastoquinol-9 biosynthesis II | 1 / 5 | 
 | pyrimidine deoxyribonucleosides salvage | 1 / 5 | 
 | pyruvate fermentation to acetone | 1 / 5 | 
 | pyruvate fermentation to isobutanol (engineered) | 1 / 5 | 
 | sucrose degradation II (sucrose synthase) | 1 / 5 | 
 | tRNA-uridine 2-thiolation (thermophilic bacteria) | 1 / 5 | 
 | L-tryptophan degradation XII (Geobacillus) | 6 / 12 | 
 | gluconeogenesis III | 6 / 12 | 
 | reductive TCA cycle II | 6 / 12 | 
 | hexitol fermentation to lactate, formate, ethanol and acetate | 11 / 19 | 
 | methylaspartate cycle | 11 / 19 | 
 | superpathway of anaerobic sucrose degradation | 11 / 19 | 
 | 4-hydroxyphenylacetate degradation | 3 / 8 | 
 | adenosine nucleotides degradation I | 3 / 8 | 
 | butanol and isobutanol biosynthesis (engineered) | 3 / 8 | 
 | glutathione-mediated detoxification I | 3 / 8 | 
 | protocatechuate degradation I (meta-cleavage pathway) | 3 / 8 | 
 | pyruvate fermentation to butanol I | 3 / 8 | 
 | shinorine biosynthesis | 3 / 8 | 
 | stellatic acid biosynthesis | 3 / 8 | 
 | superpathway of NAD/NADP - NADH/NADPH interconversion (yeast) | 3 / 8 | 
 | superpathway of adenosylcobalamin salvage from cobinamide I | 3 / 8 | 
 | superpathway of atrazine degradation | 3 / 8 | 
 | superpathway of methylglyoxal degradation | 3 / 8 | 
 | thiamine diphosphate formation from pyrithiamine and oxythiamine (yeast) | 3 / 8 | 
 | ubiquinol-9 biosynthesis (early decarboxylation) | 3 / 8 | 
 | ubiquinol-9 biosynthesis (late decarboxylation) | 3 / 8 | 
 | (8E,10E)-dodeca-8,10-dienol biosynthesis | 5 / 11 | 
 | O-antigen building blocks biosynthesis (E. coli) | 5 / 11 | 
 | C4 photosynthetic carbon assimilation cycle, NAD-ME type | 5 / 11 | 
 | tRNA-uridine 2-thiolation and selenation (bacteria) | 5 / 11 | 
 | 6-hydroxymethyl-dihydropterin diphosphate biosynthesis II (Methanocaldococcus) | 2 / 7 | 
 | L-glutamate degradation XI (reductive Stickland reaction) | 2 / 7 | 
 | L-isoleucine biosynthesis I (from threonine) | 2 / 7 | 
 | acetyl-CoA fermentation to butanoate | 2 / 7 | 
 | benzoyl-CoA degradation I (aerobic) | 2 / 7 | 
 | capsaicin biosynthesis | 2 / 7 | 
 | ceramide degradation by α-oxidation | 2 / 7 | 
 | cremeomycin biosynthesis | 2 / 7 | 
 | lipoprotein posttranslational modification (Gram-negative bacteria) | 2 / 7 | 
 | pyruvate fermentation to propanoate I | 2 / 7 | 
 | stigma estolide biosynthesis | 2 / 7 | 
 | sulfur oxidation IV (intracellular sulfur) | 2 / 7 | 
 | ureide biosynthesis | 2 / 7 | 
 | 3-phenylpropanoate degradation | 4 / 10 | 
 | 9-cis, 11-trans-octadecadienoyl-CoA degradation (isomerase-dependent, yeast) | 4 / 10 | 
 | [2Fe-2S] iron-sulfur cluster biosynthesis | 4 / 10 | 
 | ephedrine biosynthesis | 4 / 10 | 
 | peptidoglycan recycling II | 4 / 10 | 
 | quinoxaline-2-carboxylate biosynthesis | 4 / 10 | 
 | sphingosine and sphingosine-1-phosphate metabolism | 4 / 10 | 
 | superpathway of geranylgeranyldiphosphate biosynthesis I (via mevalonate) | 4 / 10 | 
 | superpathway of menaquinol-8 biosynthesis I | 4 / 10 | 
 | superpathway of anaerobic energy metabolism (invertebrates) | 9 / 17 | 
 | superpathway of glucose and xylose degradation | 9 / 17 | 
 | superpathway of glycolysis and the Entner-Doudoroff pathway | 9 / 17 | 
 | β-alanine biosynthesis II | 1 / 6 | 
 | 10-trans-heptadecenoyl-CoA degradation (MFE-dependent, yeast) | 1 / 6 | 
 | 4-ethylphenol degradation (anaerobic) | 1 / 6 | 
 | Escherichia coli serotype O:149/Shigella boydii serotype O1 O antigen biosynthesis | 1 / 6 | 
 | Escherichia coli serotype O:177 O antigen biosynthesis | 1 / 6 | 
 | Escherichia coli serotype O:50 O antigen biosynthesis | 1 / 6 | 
 | Escherichia coli serotype O:56 O antigen biosynthesis | 1 / 6 | 
 | Escherichia coli serotype O:77/Salmonella enterica serotype O:6,14 O antigen biosynthesis | 1 / 6 | 
 | Salmonella enterica serotype O:13 O antigen biosynthesis | 1 / 6 | 
 | D-cycloserine biosynthesis | 1 / 6 | 
 | DIBOA-glucoside biosynthesis | 1 / 6 | 
 | L-isoleucine biosynthesis IV | 1 / 6 | 
 | L-lysine degradation III | 1 / 6 | 
 | L-lysine degradation X | 1 / 6 | 
 | UDP-N-acetyl-D-galactosamine biosynthesis III | 1 / 6 | 
 | adlupulone and adhumulone biosynthesis | 1 / 6 | 
 | alkane oxidation | 1 / 6 | 
 | candicidin biosynthesis | 1 / 6 | 
 | coenzyme M biosynthesis II | 1 / 6 | 
 | colupulone and cohumulone biosynthesis | 1 / 6 | 
 | glycogen degradation II | 1 / 6 | 
 | lupulone and humulone biosynthesis | 1 / 6 | 
 | methanogenesis from acetate | 1 / 6 | 
 | paspaline biosynthesis | 1 / 6 | 
 | stearate biosynthesis I (animals) | 1 / 6 | 
 | superpathway of D-myo-inositol (1,4,5)-trisphosphate metabolism | 1 / 6 | 
 | superpathway of guanosine nucleotides degradation (plants) | 1 / 6 | 
 | superpathway of pyrimidine deoxyribonucleosides degradation | 1 / 6 | 
 | superpathway of sulfolactate degradation | 1 / 6 | 
 | superpathway of sulfur metabolism (Desulfocapsa sulfoexigens) | 1 / 6 | 
 | superpathway of thiosulfate metabolism (Desulfovibrio sulfodismutans) | 1 / 6 | 
 | wybutosine biosynthesis | 1 / 6 | 
 | 3-hydroxypropanoate cycle | 6 / 13 | 
 | glyoxylate assimilation | 6 / 13 | 
 | superpathway of L-isoleucine biosynthesis I | 6 / 13 | 
 | 1-butanol autotrophic biosynthesis (engineered) | 16 / 27 | 
 | 1,3-propanediol biosynthesis (engineered) | 3 / 9 | 
 | Entner-Doudoroff pathway II (non-phosphorylative) | 3 / 9 | 
 | L-arginine biosynthesis IV (archaea) | 3 / 9 | 
 | benzoate biosynthesis I (CoA-dependent, β-oxidative) | 3 / 9 | 
 | chitin biosynthesis | 3 / 9 | 
 | jadomycin biosynthesis | 3 / 9 | 
 | nicotine biosynthesis | 3 / 9 | 
 | superpathway of adenosylcobalamin salvage from cobinamide II | 3 / 9 | 
 | superpathway of demethylmenaquinol-8 biosynthesis I | 3 / 9 | 
 | superpathway of fermentation (Chlamydomonas reinhardtii) | 3 / 9 | 
 | 2-allylmalonyl-CoA biosynthesis | 2 / 8 | 
 | 2-deoxy-D-ribose degradation II | 2 / 8 | 
 | 2-methylpropene degradation | 2 / 8 | 
 | 3-hydroxyquinaldate biosynthesis | 2 / 8 | 
 | 4-amino-2-methyl-5-diphosphomethylpyrimidine biosynthesis II | 2 / 8 | 
 | L-isoleucine biosynthesis II | 2 / 8 | 
 | L-rhamnose degradation II | 2 / 8 | 
 | L-valine degradation I | 2 / 8 | 
 | anandamide biosynthesis II | 2 / 8 | 
 | grixazone biosynthesis | 2 / 8 | 
 | sorgoleone biosynthesis | 2 / 8 | 
 | superpathway of polyamine biosynthesis III | 2 / 8 | 
 | ubiquinol-10 biosynthesis (early decarboxylation) | 2 / 8 | 
 | ubiquinol-6 biosynthesis (late decarboxylation) | 2 / 8 | 
 | ubiquinol-7 biosynthesis (early decarboxylation) | 2 / 8 | 
 | ubiquinol-7 biosynthesis (late decarboxylation) | 2 / 8 | 
 | vanchrobactin biosynthesis | 2 / 8 | 
 | L-methionine salvage cycle III | 4 / 11 | 
 | NAD salvage (plants) | 4 / 11 | 
 | 3-hydroxypropanoate/4-hydroxybutanate cycle | 9 / 18 | 
 | ethene biosynthesis V (engineered) | 14 / 25 | 
 | superpathway of Kdo2-lipid A biosynthesis | 14 / 25 | 
 | β-(1,4)-mannan degradation | 1 / 7 | 
 | 2-carboxy-1,4-naphthoquinol biosynthesis | 1 / 7 | 
 | 4-aminobutanoate degradation V | 1 / 7 | 
 | Escherichia coli serotype O:111/Salmonella enterica serotype O:35 O antigen biosynthesis | 1 / 7 | 
 | Escherichia coli serotype O:152 O antigen biosynthesis | 1 / 7 | 
 | Escherichia coli serotype O:157/Salmonella enterica serotype O:30 O antigen biosynthesis | 1 / 7 | 
 | Escherichia coli serotype O:1B/Salmonella enterica serotype O:42 O antigen biosynthesis | 1 / 7 | 
 | Escherichia coli serotype O:2 O antigen biosynthesis | 1 / 7 | 
 | Escherichia coli serotype O:7 O antigen biosynthesis | 1 / 7 | 
 | Escherichia coli serotype O:71/Salmonella enterica serotype O:28ac O antigen biosynthesis | 1 / 7 | 
 | Escherichia coli serotype O:85/Salmonella enterica serotype O:17 O antigen biosynthesis | 1 / 7 | 
 | Salmonella enterica serotype O:18 O antigen biosynthesis | 1 / 7 | 
 | Salmonella enterica serotype O:39 O antigen biosynthesis | 1 / 7 | 
 | Salmonella enterica serotype O:6,7 O antigen biosynthesis | 1 / 7 | 
 | L-lysine degradation I | 1 / 7 | 
 | UDP-N-acetyl-D-galactosamine biosynthesis II | 1 / 7 | 
 | arachidonate biosynthesis III (6-desaturase, mammals) | 1 / 7 | 
 | brassicicene C biosynthesis | 1 / 7 | 
 | catechol degradation II (meta-cleavage pathway) | 1 / 7 | 
 | chitin degradation I (archaea) | 1 / 7 | 
 | glyphosate degradation III | 1 / 7 | 
 | icosapentaenoate biosynthesis II (6-desaturase, mammals) | 1 / 7 | 
 | icosapentaenoate biosynthesis III (8-desaturase, mammals) | 1 / 7 | 
 | limonene degradation IV (anaerobic) | 1 / 7 | 
 | lipid A-core biosynthesis (P. gingivalis) | 1 / 7 | 
 | mevalonate pathway I (eukaryotes and bacteria) | 1 / 7 | 
 | mevalonate pathway II (haloarchaea) | 1 / 7 | 
 | pyoluteorin biosynthesis | 1 / 7 | 
 | retinol biosynthesis | 1 / 7 | 
 | roseoflavin biosynthesis | 1 / 7 | 
 | spongiadioxin C biosynthesis | 1 / 7 | 
 | superpathway of glycol metabolism and degradation | 1 / 7 | 
 | thiocoraline biosynthesis | 1 / 7 | 
 | vitamin E biosynthesis (tocopherols) | 1 / 7 | 
 | C4 photosynthetic carbon assimilation cycle, PEPCK type | 6 / 14 | 
 | L-lysine fermentation to acetate and butanoate | 3 / 10 | 
 | bacilysin biosynthesis | 3 / 10 | 
 | pentachlorophenol degradation | 3 / 10 | 
 | superpathway of enterobacterial common antigen biosynthesis | 3 / 10 | 
 | superpathway of menaquinol-10 biosynthesis | 3 / 10 | 
 | superpathway of menaquinol-11 biosynthesis | 3 / 10 | 
 | superpathway of menaquinol-12 biosynthesis | 3 / 10 | 
 | superpathway of menaquinol-13 biosynthesis | 3 / 10 | 
 | superpathway of menaquinol-6 biosynthesis | 3 / 10 | 
 | superpathway of menaquinol-7 biosynthesis | 3 / 10 | 
 | superpathway of menaquinol-9 biosynthesis | 3 / 10 | 
 | superpathway of vanillin and vanillate degradation | 3 / 10 | 
 | oxygenic photosynthesis | 8 / 17 | 
 | 3,8-divinyl-chlorophyllide a biosynthesis I (aerobic, light-dependent) | 2 / 9 | 
 | 3,8-divinyl-chlorophyllide a biosynthesis II (anaerobic) | 2 / 9 | 
 | 3,8-divinyl-chlorophyllide a biosynthesis III (aerobic, light independent) | 2 / 9 | 
 | cis-geranyl-CoA degradation | 2 / 9 | 
 | L-lysine biosynthesis IV | 2 / 9 | 
 | L-phenylalanine degradation IV (mammalian, via side chain) | 2 / 9 | 
 | acinetobactin biosynthesis | 2 / 9 | 
 | allantoin degradation IV (anaerobic) | 2 / 9 | 
 | gliotoxin biosynthesis | 2 / 9 | 
 | phenylacetate degradation I (aerobic) | 2 / 9 | 
 | pseudomonine biosynthesis | 2 / 9 | 
 | pyridoxal 5'-phosphate salvage II (plants) | 2 / 9 | 
 | superpathway of demethylmenaquinol-6 biosynthesis I | 2 / 9 | 
 | superpathway of demethylmenaquinol-9 biosynthesis | 2 / 9 | 
 | superpathway of menaquinol-8 biosynthesis III | 2 / 9 | 
 | ubiquinol-10 biosynthesis (late decarboxylation) | 2 / 9 | 
 | ubiquinol-6 biosynthesis from 4-aminobenzoate (yeast) | 2 / 9 | 
 | superpathway of L-methionine salvage and degradation | 7 / 16 | 
 | L-glutamate degradation VII (to butanoate) | 4 / 12 | 
 | anandamide biosynthesis I | 4 / 12 | 
 | ergotamine biosynthesis | 4 / 12 | 
 | indole-3-acetate biosynthesis II | 4 / 12 | 
 | purine nucleotides degradation I (plants) | 4 / 12 | 
 | superpathway of nicotine biosynthesis | 4 / 12 | 
 | superpathway of sulfide oxidation (phototrophic sulfur bacteria) | 4 / 12 | 
 | photosynthetic 3-hydroxybutanoate biosynthesis (engineered) | 14 / 26 | 
 | (aminomethyl)phosphonate degradation | 1 / 8 | 
 | Escherichia coli serotype O:104 O antigen biosynthesis | 1 / 8 | 
 | Escherichia coli serotype O:107 O antigen biosynthesis | 1 / 8 | 
 | Escherichia coli serotype O:117 O antigen biosynthesis | 1 / 8 | 
 | Escherichia coli serotype O:127 O antigen biosynthesis | 1 / 8 | 
 | Escherichia coli serotype O:128 O antigen biosynthesis | 1 / 8 | 
 | Escherichia coli serotype O:21/Salmonella enterica serotype O:38 O antigen biosynthesis | 1 / 8 | 
 | Escherichia coli serotype O:49 O antigen biosynthesis | 1 / 8 | 
 | Escherichia coli serotype O:51/Salmonella enterica serotype O:57 O antigen biosynthesis | 1 / 8 | 
 | Escherichia coli serotype O:52 O antigen biosynthesis | 1 / 8 | 
 | Escherichia coli serotype O:55/Salmonella enterica serotype O:50 O antigen biosynthesis | 1 / 8 | 
 | Escherichia coli serotype O:86 O antigen biosynthesis | 1 / 8 | 
 | Shigella boydii serotype 6 O antigen biosynthesis | 1 / 8 | 
 | anguibactin biosynthesis | 1 / 8 | 
 | aromatic biogenic amine degradation (bacteria) | 1 / 8 | 
 | chlorogenic acid biosynthesis I | 1 / 8 | 
 | fusicoccin A biosynthesis | 1 / 8 | 
 | glycogen biosynthesis III (from α-maltose 1-phosphate) | 1 / 8 | 
 | glycogen degradation I | 1 / 8 | 
 | isoprene biosynthesis II (engineered) | 1 / 8 | 
 | lactate fermentation to acetate, CO2 and hydrogen (Desulfovibrionales) | 1 / 8 | 
 | mevalonate pathway III (Thermoplasma) | 1 / 8 | 
 | mevalonate pathway IV (archaea) | 1 / 8 | 
 | polybrominated dihydroxylated diphenyl ethers biosynthesis | 1 / 8 | 
 | sesamin biosynthesis | 1 / 8 | 
 | sucrose biosynthesis II | 1 / 8 | 
 | superpathway of CDP-glucose-derived O-antigen building blocks biosynthesis | 1 / 8 | 
 | tRNA-uridine 2-thiolation (cytoplasmic) | 1 / 8 | 
 | superpathway of N-acetylneuraminate degradation | 11 / 22 | 
 | colanic acid building blocks biosynthesis | 3 / 11 | 
 | enterobactin biosynthesis | 3 / 11 | 
 | superpathway of candicidin biosynthesis | 3 / 11 | 
 | superpathway of ubiquinol-6 biosynthesis (late decarboxylation) | 3 / 11 | 
 | (2S,3E)-2-amino-4-methoxy-but-3-enoate biosynthesis | 2 / 10 | 
 | CMP-legionaminate biosynthesis I | 2 / 10 | 
 | methyl tert-butyl ether degradation | 2 / 10 | 
 | poly(3-O-β-D-glucopyranosyl-N-acetylgalactosamine 1-phosphate) wall teichoic acid biosynthesis | 2 / 10 | 
 | reductive acetyl coenzyme A pathway I (homoacetogenic bacteria) | 2 / 10 | 
 | superpathway of menaquinol-8 biosynthesis II | 2 / 10 | 
 | superpathway of quinolone and alkylquinolone biosynthesis | 2 / 10 | 
 | superpathway of branched chain amino acid biosynthesis | 7 / 17 | 
 | formaldehyde assimilation I (serine pathway) | 4 / 13 | 
 | noradrenaline and adrenaline degradation | 4 / 13 | 
 | superpathway of Clostridium acetobutylicum solventogenic fermentation | 4 / 13 | 
 | 4-nitrotoluene degradation II | 1 / 9 | 
 | 4-oxopentanoate degradation | 1 / 9 | 
 | Escherichia coli serotype O:169 O antigen biosynthesis | 1 / 9 | 
 | Escherichia coli serotype O:183/Shigella boydii serotype O:10 O antigen biosynthesis | 1 / 9 | 
 | Escherichia coli serotype O:8 O antigen biosynthesis | 1 / 9 | 
 | UDP-sugars interconversion | 1 / 9 | 
 | ansatrienin biosynthesis | 1 / 9 | 
 | aromatic compounds degradation via β-ketoadipate | 1 / 9 | 
 | avenanthramide biosynthesis | 1 / 9 | 
 | chloramphenicol biosynthesis | 1 / 9 | 
 | glutathione-mediated detoxification II | 1 / 9 | 
 | myxochelin A and B biosynthesis | 1 / 9 | 
 | p-HBAD biosynthesis | 1 / 9 | 
 | superpathway of L-alanine fermentation (Stickland reaction) | 1 / 9 | 
 | teichuronic acid biosynthesis (B. subtilis 168) | 1 / 9 | 
 | tunicamycin biosynthesis | 1 / 9 | 
 | viridicatumtoxin biosynthesis | 1 / 9 | 
 | L-tryptophan degradation XI (mammalian, via kynurenine) | 11 / 23 | 
 | L-methionine salvage cycle I (bacteria and plants) | 3 / 12 | 
 | arsenic detoxification (yeast) | 3 / 12 | 
 | indole glucosinolate activation (intact plant cell) | 3 / 12 | 
 | peptidoglycan maturation (meso-diaminopimelate containing) | 3 / 12 | 
 | superpathway of C1 compounds oxidation to CO2 | 3 / 12 | 
 | superpathway of fucose and rhamnose degradation | 3 / 12 | 
 | syringate degradation | 3 / 12 | 
 | L-glutamate degradation VIII (to propanoate) | 2 / 11 | 
 | cytochrome c biogenesis (system I type) | 2 / 11 | 
 | ethylmalonyl-CoA pathway | 2 / 11 | 
 | gallate degradation III (anaerobic) | 2 / 11 | 
 | nicotine degradation II (pyrrolidine pathway) | 2 / 11 | 
 | poly(glycerol phosphate) wall teichoic acid biosynthesis | 2 / 11 | 
 | superpathway of L-arginine, putrescine, and 4-aminobutanoate degradation | 2 / 11 | 
 | superpathway of phenylethylamine degradation | 2 / 11 | 
 | heterolactic fermentation | 7 / 18 | 
 | superpathway of L-threonine metabolism | 7 / 18 | 
 | superpathway of the 3-hydroxypropanoate cycle | 7 / 18 | 
 | Escherichia coli serotype O:9 O antigen biosynthesis | 1 / 10 | 
 | Escherichia coli serotype O:9a O antigen biosynthesis | 1 / 10 | 
 | meta cleavage pathway of aromatic compounds | 1 / 10 | 
 | NiFe(CO)(CN)2 cofactor biosynthesis | 1 / 10 | 
 | clorobiocin biosynthesis | 1 / 10 | 
 | curcuminoid biosynthesis | 1 / 10 | 
 | justicidin B biosynthesis | 1 / 10 | 
 | matairesinol biosynthesis | 1 / 10 | 
 | nucleoside and nucleotide degradation (archaea) | 1 / 10 | 
 | petrobactin biosynthesis | 1 / 10 | 
 | phenylpropanoids methylation (ice plant) | 1 / 10 | 
 | rosmarinic acid biosynthesis I | 1 / 10 | 
 | starch biosynthesis | 1 / 10 | 
 | peptido-conjugates in tissue regeneration biosynthesis | 6 / 17 | 
 | (S)-lactate fermentation to propanoate, acetate and hydrogen | 3 / 13 | 
 | coumarins biosynthesis (engineered) | 3 / 13 | 
 | superpathway of L-arginine and L-ornithine degradation | 3 / 13 | 
 | 10-cis-heptadecenoyl-CoA degradation (yeast) | 2 / 12 | 
 | 10-trans-heptadecenoyl-CoA degradation (reductase-dependent, yeast) | 2 / 12 | 
 | bacillibactin biosynthesis | 2 / 12 | 
 | camalexin biosynthesis | 2 / 12 | 
 | poly(ribitol phosphate) wall teichoic acid biosynthesis I (B. subtilis) | 2 / 12 | 
 | superpathway of seleno-compound metabolism | 7 / 19 | 
 | (S)-reticuline biosynthesis I | 1 / 11 | 
 | L-methionine salvage cycle II (plants) | 1 / 11 | 
 | mycobactin biosynthesis | 1 / 11 | 
 | pyochelin biosynthesis | 1 / 11 | 
 | toluene degradation III (aerobic) (via p-cresol) | 1 / 11 | 
 | tropane alkaloids biosynthesis | 1 / 11 | 
 | gluconeogenesis II (Methanobacterium thermoautotrophicum) | 6 / 18 | 
 | hypoglycin biosynthesis | 3 / 14 | 
 | superpathway of GDP-mannose-derived O-antigen building blocks biosynthesis | 3 / 14 | 
 | tetrahydromethanopterin biosynthesis | 3 / 14 | 
 | superpathway of Clostridium acetobutylicum acidogenic and solventogenic fermentation | 5 / 17 | 
 | (4Z,7Z,10Z,13Z,16Z)-docosapentaenoate biosynthesis (6-desaturase) | 2 / 13 | 
 | cob(II)yrinate a,c-diamide biosynthesis II (late cobalt incorporation) | 2 / 13 | 
 | guadinomine B biosynthesis | 2 / 13 | 
 | anteiso-branched-chain fatty acid biosynthesis | 17 / 34 | 
 | even iso-branched-chain fatty acid biosynthesis | 17 / 34 | 
 | odd iso-branched-chain fatty acid biosynthesis | 17 / 34 | 
 | ceramide and sphingolipid recycling and degradation (yeast) | 4 / 16 | 
 | superpathway of choline biosynthesis | 1 / 12 | 
 | superpathway of phosphatidylcholine biosynthesis | 1 / 12 | 
 | cob(II)yrinate a,c-diamide biosynthesis I (early cobalt insertion) | 3 / 15 | 
 | purine nucleobases degradation I (anaerobic) | 3 / 15 | 
 | superpathway of ergotamine biosynthesis | 5 / 18 | 
 | docosahexaenoate biosynthesis III (6-desaturase, mammals) | 2 / 14 | 
 | firefly bioluminescence | 2 / 14 | 
 | pederin biosynthesis | 2 / 14 | 
 | phytate degradation I | 2 / 14 | 
 | poly(ribitol phosphate) wall teichoic acid biosynthesis II (S. aureus) | 2 / 14 | 
 | nicotine degradation I (pyridine pathway) | 4 / 17 | 
 | type I lipoteichoic acid biosynthesis (S. aureus) | 4 / 17 | 
 | 2,5-xylenol and 3,5-xylenol degradation | 1 / 13 | 
 | L-tryptophan degradation V (side chain pathway) | 1 / 13 | 
 | superpathway of benzoxazinoid glucosides biosynthesis | 1 / 13 | 
 | toluene degradation IV (aerobic) (via catechol) | 1 / 13 | 
 | crotonate fermentation (to acetate and cyclohexane carboxylate) | 3 / 16 | 
 | jasmonic acid biosynthesis | 5 / 19 | 
 | superpathway of ergosterol biosynthesis II | 10 / 26 | 
 | salinosporamide A biosynthesis | 2 / 15 | 
 | superpathway of phylloquinol biosynthesis | 2 / 15 | 
 | sporopollenin precursors biosynthesis | 4 / 18 | 
 | superpathway of purines degradation in plants | 4 / 18 | 
 | crotonyl-CoA/ethylmalonyl-CoA/hydroxybutyryl-CoA cycle (engineered) | 1 / 14 | 
 | pyrrolomycin biosynthesis | 1 / 14 | 
 | superpathway of rosmarinic acid biosynthesis | 1 / 14 | 
 | Ac/N-end rule pathway | 6 / 21 | 
 | superpathway of phospholipid biosynthesis II (plants) | 11 / 28 | 
 | benzoate fermentation (to acetate and cyclohexane carboxylate) | 3 / 17 | 
 | purine nucleobases degradation II (anaerobic) | 8 / 24 | 
 | streptorubin B biosynthesis | 15 / 34 | 
 | plasmalogen biosynthesis I (aerobic) | 2 / 16 | 
 | superpathway of hyoscyamine (atropine) and scopolamine biosynthesis | 2 / 16 | 
 | cyclosporin A biosynthesis | 1 / 15 | 
 | monolignol biosynthesis | 1 / 15 | 
 | superpathway of CMP-sialic acids biosynthesis | 1 / 15 | 
 | superpathway of bitter acids biosynthesis | 3 / 18 | 
 | toluene degradation VI (anaerobic) | 3 / 18 | 
 | cholesterol degradation to androstenedione I (cholesterol oxidase) | 2 / 17 | 
 | cutin biosynthesis | 1 / 16 | 
 | sulfazecin biosynthesis | 1 / 16 | 
 | tRNA methylation (yeast) | 1 / 16 | 
 | superpathway of UDP-N-acetylglucosamine-derived O-antigen building blocks biosynthesis | 6 / 24 | 
 | suberin monomers biosynthesis | 3 / 20 | 
 | aliphatic glucosinolate biosynthesis, side chain elongation cycle | 10 / 30 | 
 | bryostatin biosynthesis | 2 / 19 | 
 | adenosylcobalamin biosynthesis II (aerobic) | 12 / 33 | 
 | sitosterol degradation to androstenedione | 1 / 18 | 
 | streptomycin biosynthesis | 1 / 18 | 
 | type IV lipoteichoic acid biosynthesis (S. pneumoniae) | 1 / 18 | 
 | androstenedione degradation I (aerobic) | 6 / 25 | 
 | superpathway of polybrominated aromatic compound biosynthesis | 2 / 20 | 
 | superpathway of dTDP-glucose-derived O-antigen building blocks biosynthesis | 1 / 19 | 
 | platensimycin biosynthesis | 6 / 26 | 
 | Spodoptera littoralis pheromone biosynthesis | 3 / 22 | 
 | superpathway of bacteriochlorophyll a biosynthesis | 5 / 26 | 
 | cholesterol degradation to androstenedione II (cholesterol dehydrogenase) | 2 / 22 | 
 | adenosylcobalamin biosynthesis I (anaerobic) | 12 / 36 | 
 | H. pylori 26695 O-antigen biosynthesis | 1 / 21 | 
 | superpathway of methanogenesis | 1 / 21 | 
 | superpathway of testosterone and androsterone degradation | 6 / 28 | 
 | androstenedione degradation II (anaerobic) | 4 / 27 | 
 | phenolphthiocerol biosynthesis | 1 / 23 | 
 | superpathway of ergosterol biosynthesis I | 3 / 26 | 
 | phosalacine biosynthesis | 2 / 25 | 
 | phosphinothricin tripeptide biosynthesis | 2 / 25 | 
 | mupirocin biosynthesis | 2 / 26 | 
 | superpathway of mycolyl-arabinogalactan-peptidoglycan complex biosynthesis | 6 / 33 | 
 | anaerobic aromatic compound degradation (Thauera aromatica) | 1 / 27 | 
 | corallopyronin A biosynthesis | 2 / 30 | 
 | superpathway of aerobic toluene degradation | 2 / 30 | 
 | superpathway of aromatic compound degradation via 3-oxoadipate | 5 / 35 | 
 | colibactin biosynthesis | 7 / 38 | 
 | superpathway of L-lysine degradation | 9 / 43 | 
 | superpathway of cholesterol degradation I (cholesterol oxidase) | 8 / 42 | 
 | superpathway of aromatic compound degradation via 2-hydroxypentadienoate | 6 / 42 | 
 | Methanobacterium thermoautotrophicum biosynthetic metabolism | 16 / 56 | 
 | superpathway of cholesterol biosynthesis | 3 / 38 | 
 | superpathway of cholesterol degradation II (cholesterol dehydrogenase) | 8 / 47 | 
 | superpathway of cholesterol degradation III (oxidase) | 4 / 49 | 
 | arachidonate metabolites biosynthesis | 3 / 74 | 
 | mycolate biosynthesis | 16 / 205 | 
 | superpathway of mycolate biosynthesis | 17 / 239 |