| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| AIL98496.1 | flaA | DU99_03425 | DU99_03420 | Flagellin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Flagellin; Flagellin is the subunit protein which polymerizes to form the filaments of bacterial flagella. Homopolymer of FlaA is able to form a functional filament. | 0.937 |
| AIL98496.1 | flaF | DU99_03425 | DU99_03485 | Flagellin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Flagellar biosynthesis regulator FlhF; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.936 |
| AIL98496.1 | flgB | DU99_03425 | DU99_03370 | Flagellin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Flagellar basal body rod protein FlgB; Structural component of flagellum, the bacterial motility apparatus. Part of the rod structure of flagellar basal body. | 0.958 |
| AIL98496.1 | flgC | DU99_03425 | DU99_03375 | Flagellin; Derived by automated computational analysis using gene prediction method: Protein Homology. | With FlgF and B makes up the proximal portion of the flagellar basal body rod; Bradyrhizobium have one thick flagellum and several thin flagella; the protein in this cluster is associated with the thin flagella; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.921 |
| AIL98496.1 | flgD | DU99_03425 | DU99_03495 | Flagellin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Acts as a scaffold for the assembly of hook proteins onto the flagellar basal body rod; Yersinia, Vibrio parahaemolyticus, Bradyrhizobium and other organisms have 2 copies of some flagellar genes; Bradyrhizobium has one thick flagellum and several thin flagella; the protein in this cluster is associated with the thin flagella; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.912 |
| AIL98496.1 | flgE | DU99_03425 | DU99_03470 | Flagellin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Flagellar hook protein FlgE; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.939 |
| AIL98496.1 | flgH | DU99_03425 | DU99_03405 | Flagellin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Flagellar L-ring protein FlgH; Assembles around the rod to form the L-ring and probably protects the motor/basal body from shearing forces during rotation. | 0.908 |
| AIL98496.1 | flgK | DU99_03425 | DU99_03475 | Flagellin; Derived by automated computational analysis using gene prediction method: Protein Homology. | With FlgL acts as a hook filament junction protein to join the flagellar filament to the hook; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.945 |
| AIL98496.1 | fliE | DU99_03425 | DU99_03380 | Flagellin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Flagellar hook-basal body protein FliE; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.921 |
| AIL98496.1 | motB | DU99_03425 | DU99_03445 | Flagellin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Flagellar motor protein MotB; With MotA forms the ion channels that couple flagellar rotation to proton/sodium motive force across the membrane and forms the stator elements of the rotary flagellar machine; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.903 |
| flaA | AIL98496.1 | DU99_03420 | DU99_03425 | Flagellin; Flagellin is the subunit protein which polymerizes to form the filaments of bacterial flagella. Homopolymer of FlaA is able to form a functional filament. | Flagellin; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.937 |
| flaA | flaF | DU99_03420 | DU99_03485 | Flagellin; Flagellin is the subunit protein which polymerizes to form the filaments of bacterial flagella. Homopolymer of FlaA is able to form a functional filament. | Flagellar biosynthesis regulator FlhF; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.936 |
| flaA | flgB | DU99_03420 | DU99_03370 | Flagellin; Flagellin is the subunit protein which polymerizes to form the filaments of bacterial flagella. Homopolymer of FlaA is able to form a functional filament. | Flagellar basal body rod protein FlgB; Structural component of flagellum, the bacterial motility apparatus. Part of the rod structure of flagellar basal body. | 0.974 |
| flaA | flgC | DU99_03420 | DU99_03375 | Flagellin; Flagellin is the subunit protein which polymerizes to form the filaments of bacterial flagella. Homopolymer of FlaA is able to form a functional filament. | With FlgF and B makes up the proximal portion of the flagellar basal body rod; Bradyrhizobium have one thick flagellum and several thin flagella; the protein in this cluster is associated with the thin flagella; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.949 |
| flaA | flgD | DU99_03420 | DU99_03495 | Flagellin; Flagellin is the subunit protein which polymerizes to form the filaments of bacterial flagella. Homopolymer of FlaA is able to form a functional filament. | Acts as a scaffold for the assembly of hook proteins onto the flagellar basal body rod; Yersinia, Vibrio parahaemolyticus, Bradyrhizobium and other organisms have 2 copies of some flagellar genes; Bradyrhizobium has one thick flagellum and several thin flagella; the protein in this cluster is associated with the thin flagella; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.939 |
| flaA | flgE | DU99_03420 | DU99_03470 | Flagellin; Flagellin is the subunit protein which polymerizes to form the filaments of bacterial flagella. Homopolymer of FlaA is able to form a functional filament. | Flagellar hook protein FlgE; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.942 |
| flaA | flgH | DU99_03420 | DU99_03405 | Flagellin; Flagellin is the subunit protein which polymerizes to form the filaments of bacterial flagella. Homopolymer of FlaA is able to form a functional filament. | Flagellar L-ring protein FlgH; Assembles around the rod to form the L-ring and probably protects the motor/basal body from shearing forces during rotation. | 0.945 |
| flaA | flgK | DU99_03420 | DU99_03475 | Flagellin; Flagellin is the subunit protein which polymerizes to form the filaments of bacterial flagella. Homopolymer of FlaA is able to form a functional filament. | With FlgL acts as a hook filament junction protein to join the flagellar filament to the hook; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.970 |
| flaA | fliE | DU99_03420 | DU99_03380 | Flagellin; Flagellin is the subunit protein which polymerizes to form the filaments of bacterial flagella. Homopolymer of FlaA is able to form a functional filament. | Flagellar hook-basal body protein FliE; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.947 |
| flaA | motB | DU99_03420 | DU99_03445 | Flagellin; Flagellin is the subunit protein which polymerizes to form the filaments of bacterial flagella. Homopolymer of FlaA is able to form a functional filament. | Flagellar motor protein MotB; With MotA forms the ion channels that couple flagellar rotation to proton/sodium motive force across the membrane and forms the stator elements of the rotary flagellar machine; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.954 |