TA loci of Escherichia coli strain XH992

Number of TA loci: experimental0; insolico23

TA ID Related MGEs Organism (replicon) Genome accession Toxin Antitoxin Family/Domain
in_silico TA072360 GI IS/Tn Escherichia coli strain XH992 (chromosome) NZ_CP019392 BW707_RS00630 (yjhX) - yjhX-yjhQ/YjhX(toxin)
in_silico TA072361 - Escherichia coli strain XH992 (chromosome) NZ_CP019392 BW707_RS01155 (relE) - relBE/ParE(toxin)
in_silico TA072362 - Escherichia coli strain XH992 (chromosome) NZ_CP019392 BW707_RS01215 (chpB) - chpSB/PRK09812(toxin)
in_silico TA072364 - Escherichia coli strain XH992 (chromosome) NZ_CP019392 BW707_RS05425 (hicA) - hicAB/-
in_silico TA072365 - Escherichia coli strain XH992 (chromosome) NZ_CP019392 BW707_RS07125 (yhaV) - prlF-yhaV (relBE)/YhaV(toxin)
in_silico TA072369 IS/Tn Escherichia coli strain XH992 (chromosome) NZ_CP019392 BW707_RS09760 (mazF) - mazEF/PRK09907(toxin)
in_silico TA072370 - Escherichia coli strain XH992 (chromosome) NZ_CP019392 BW707_RS14295 (TacT2) - tacAT/-
in_silico TA072375 IS/Tn Escherichia coli strain XH992 (chromosome) NZ_CP019392 BW707_RS15840 (hicA) - hicAB/-
in_silico TA072384 - Escherichia coli strain XH992 (chromosome) NZ_CP019392 BW707_RS20355 (relE) - relBE/RelE(toxin)
in_silico TA072385 - Escherichia coli strain XH992 (chromosome) NZ_CP019392 BW707_RS22075 (Hha) - Hha-TomB/-
in_silico TA072386 - Escherichia coli strain XH992 (chromosome) NZ_CP019392 BW707_RS22245 (itaT) - itaRT/-
in_silico TA072388 Plasmid IS/Tn Escherichia coli strain XH992 (plasmid pXH992_3) NZ_CP019393 BW707_RS25065 (TsxA) - TsxAB/-
in_silico TA072389 Plasmid IS/Tn Escherichia coli strain XH992 (plasmid pXH992_1) NZ_CP019394 BW707_RS25455 (hipA) - hipBA/HipA(toxin)
in_silico TA072390 Plasmid IScluster/Tn Escherichia coli strain XH992 (plasmid pXH992_2) NZ_CP019395 BW707_RS26570 (relE) - relBE/ParE(toxin)
in_silico TA072391 Plasmid Escherichia coli strain XH992 (plasmid pXH992_2) NZ_CP019395 BW707_RS26945 (vagD) - vagCD/VapC(toxin)
experimentalExperimentally validated     insolicoBioinformatically predicted