NT genes of 'Chromobacterium violaceum strain FDAARGOS_635'

Evidence:

Gene name Gene type Function Related MGE Organism Genome accession Locus tag Protein ID
insolico recA Machinery gene Homologous recombination - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS01970 WP_043611947.1
insolico pilU Machinery gene DNA binding and uptake - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS09355 WP_168227627.1
insolico pilT Machinery gene DNA binding and uptake - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS09360 WP_011133734.1
insolico pilR Regulator Competence regulation - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS09875 WP_168227660.1
insolico dprA Machinery gene DNA processing - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS10980 WP_168227744.1
insolico pilA2 Machinery gene DNA binding and uptake - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS11315 WP_168227762.1
insolico pilA Machinery gene DNA binding and uptake - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS11350 WP_043614018.1
insolico comM Machinery gene DNA processing - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS12450 WP_168227835.1
insolico pilF Machinery gene DNA binding and uptake - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS13240 WP_168227890.1
insolico pilC Machinery gene DNA binding and uptake - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS13245 WP_011137374.1
insolico rpoN/rpoN1 Machinery gene DNA binding and uptake - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS15780 WP_043614984.1
insolico radA Machinery gene Homologous recombination - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS17735 WP_081572669.1
insolico comL Machinery gene DNA binding and uptake - Chromobacterium violaceum strain FDAARGOS_635 NZ_CP050992 FOB43_RS21735 WP_011135741.1
experimental Experimentally validated     insolico Bioinformatically predicted