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. 2025 Jun 19;42(2):156–165. doi: 10.17843/rpmesp.2025.422.14299

Table 1. In silico prediction of serotype, sequence type, and point mutations associated with resistance in uropathogenic E. coli (UPEC) genomes, 2018-2023 (n=143).

Pattern number Sequence type Serotype Mutations associated with antimicrobial resistance Types of antibiotics Number of UPEC isolates (%) Countries (n)
1 131 O25:H4 glpT(E448K), gyrA(D87N), gyrA(S83L), parC(E84V), parC(S80I), parE(I529L), pmrB(E123D), ptsI(V25I), uhpT(E350Q) 3 51 (35.7) Paraguay (19) Brazil (16) Colombia (8) Peru (6) Argentina (1) Mexico (1)
2 1193 O75:H5 gyrA(D87N), gyrA(S83L), marR(S3N), parC(S80I), parE(L416F), pmrB(E123D), uhpT(E350Q) 7 16 (11.1) Paraguay (7) Peru (6) Argentina (2) Brazil (1)
3 648 O1:H6 cyaA(S352T), glpT(E448K), gyrA(D87N), gyrA(S83L), parC(S80I), parE(S458A) 2 7 (4.9) Brazil (4) Argentina (1) Colombia (1) Paraguay (1)
4 998 O2:H6 glpT(E448K), marR(S3N), pmrB(E123D) 7 5 (3.5) Paraguay (3) Argentina (1) Brazil (1)