NT genes of 'Histophilus somni strain USDA-ARS-USMARC-63373'


In this species, transformation by exogenous DNA is regulated by the presence of a specific Uptake Signal Sequence (USS) (PMID: 17038178).
Evidence:

Gene name Gene type Function Related MGE Organism Genome accession Locus tag Protein ID
insolico dprA Machinery gene DNA processing - Histophilus somni strain USDA-ARS-USMARC-63373 NZ_CP018807 BTV22_RS02080 WP_075294326.1
insolico pilC Machinery gene DNA binding and uptake - Histophilus somni strain USDA-ARS-USMARC-63373 NZ_CP018807 BTV22_RS02290 WP_012341581.1
insolico ssb Machinery gene DNA processing - Histophilus somni strain USDA-ARS-USMARC-63373 NZ_CP018807 BTV22_RS03360 WP_011609284.1
insolico comE Machinery gene DNA binding and uptake - Histophilus somni strain USDA-ARS-USMARC-63373 NZ_CP018807 BTV22_RS03460 WP_012340255.1
insolico rec2 Machinery gene DNA binding and uptake - Histophilus somni strain USDA-ARS-USMARC-63373 NZ_CP018807 BTV22_RS05420 WP_075294360.1
insolico pilF/pilF2 Machinery gene DNA binding and uptake - Histophilus somni strain USDA-ARS-USMARC-63373 NZ_CP018807 BTV22_RS06550 WP_075294142.1
insolico recA Machinery gene Homologous recombination - Histophilus somni strain USDA-ARS-USMARC-63373 NZ_CP018807 BTV22_RS06810 WP_075293444.1
insolico pilB Machinery gene DNA binding and uptake - Histophilus somni strain USDA-ARS-USMARC-63373 NZ_CP018807 BTV22_RS07795 WP_232451458.1
insolico comM Machinery gene Involve in natural transformation - Histophilus somni strain USDA-ARS-USMARC-63373 NZ_CP018807 BTV22_RS07870 WP_075293636.1
insolico comN Machinery gene DNA binding and uptake - Histophilus somni strain USDA-ARS-USMARC-63373 NZ_CP018807 BTV22_RS08195 WP_011608418.1
insolico pilA Machinery gene DNA binding and uptake - Histophilus somni strain USDA-ARS-USMARC-63373 NZ_CP018807 BTV22_RS08285 WP_075293673.1
insolico comE1/comEA Machinery gene DNA binding and uptake - Histophilus somni strain USDA-ARS-USMARC-63373 NZ_CP018807 BTV22_RS08950 WP_012341067.1
experimental Experimentally validated     insolico Bioinformatically predicted