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Prior-Knowledge Description Expectation Prediction Conclusion Leaf Statistics
VariantPath-1-UPA00618 Both - {{∅},{t,f}} True - {{t}} Ambiguous presence
VariantPath-2-UPA00618 Both - {{∅},{t,f}} True - {{t}} Ambiguous presence
UCR00847 ATP + glycerol = ADP + sn-glycerol 3-phosphate Both - {{∅},{t,f}} True - {{t}} Ambiguous presence
UER00672 sn-glycerol 3-phosphate from glycerol: step 1/1~1 ATP + 1 glycerol => 1 ADP + 1 sn-glycerol 3-phosphate. Both - {{∅},{t,f}} True - {{t}} Ambiguous presence
ULS00330 glycerone phosphate from sn-glycerol 3-phosphate (anaerobic route) Both - {{∅},{t,f}} True - {{t}} Ambiguous presence
ULS00331 glycerone phosphate from sn-glycerol 3-phosphate (aerobic route) Both - {{∅},{t,f}} True - {{t}} Ambiguous presence
ULS00329 sn-glycerol 3-phosphate from glycerol Both - {{∅},{t,f}} True - {{t}} Ambiguous presence
UCR00849 Quinone + sn-glycerol 3-phosphate = Hydroquinone + glycerone phosphate Both - {{∅},{t,f}} None - {{∅}} Ambiguous
MUER9 Meta-UER 9~1 Quinone + 1 sn-glycerol 3-phosphate => 1 Hydroquinone + 1 glycerone phosphate. Both - {{∅},{t,f}} True - {{t}} Ambiguous presence
UPA00618 glycerol degradation via glycerol kinase pathway~In bacteria, glycerol uptake is mediated by the glycerol diffusion facilitator, an integral membrane protein catalyzing the rapid equilibration of concentration gradients of glycerol across the cytoplasmic membrane. Intracellular glycerol is converted to glycerol-3-phosphate that is further metabolized to dihydroxyacetone phosphate (DHAP) by either of two membrane-bound enzymes, depending on the growth conditions. Both - {{∅},{t,f}} True - {{t}} Ambiguous presence