NT genes of 'Quatrionicoccus australiensis strain D9'

Evidence:

Gene name Gene type Function Related MGE Organism Genome accession Locus tag Protein ID
insolico dprA Machinery gene DNA processing - Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS00090 WP_226441794.1
insolico comM Machinery gene DNA processing - Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS00220 WP_226441819.1
insolico pilA Machinery gene DNA binding and uptake - Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS02675 WP_226442295.1
insolico pilD Machinery gene DNA binding and uptake - Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS03585 WP_226442470.1
insolico pilC Machinery gene DNA binding and uptake - Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS03590 WP_226442471.1
insolico pilB Machinery gene DNA binding and uptake - Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS03595 WP_226442472.1
insolico radA Machinery gene Homologous recombination - Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS09065 WP_226443699.1
insolico pilR Regulator Competence regulation - Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS16650 WP_226441187.1
insolico ssb Machinery gene DNA processing - Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS17660 WP_226441369.1
insolico pilU Machinery gene DNA binding and uptake ICE Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS18350 WP_319002962.1
insolico pilT Machinery gene DNA binding and uptake ICE Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS18355 WP_226441496.1
insolico pilG Regulator Competence regulation ICE Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS18440 WP_226444310.1
insolico rpoN/rpoN1 Machinery gene DNA binding and uptake - Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS19520 WP_226441722.1
insolico recA Machinery gene Homologous recombination - Quatrionicoccus australiensis strain D9 NZ_CP075188 KI612_RS19535 WP_226441725.1
experimental Experimentally validated     insolico Bioinformatically predicted