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In a clinical isolate of Burkholderia pseudomallei from Hainan, the association between the emergence of ceftazidime resistance and a novel PenA P174L allele was identified for the first time, providing an understanding of one mechanism by which ceftazidime resistance arises in B. pseudomallei.

More information Original publication

DOI

10.1016/j.drup.2024.101121

Type

Journal article

Publication Date

2024-09-01T00:00:00+00:00

Volume

76

Addresses

N, H, C, , K, e, y, , L, a, b, o, r, a, t, o, r, y, , o, f, , T, r, o, p, i, c, a, l, , D, i, s, e, a, s, e, , C, o, n, t, r, o, l, ,, , S, c, h, o, o, l, , o, f, , T, r, o, p, i, c, a, l, , M, e, d, i, c, i, n, e, , a, n, d, , T, h, e, , S, e, c, o, n, d, , A, f, f, i, l, i, a, t, e, d, , H, o, s, p, i, t, a, l, ,, , H, a, i, n, a, n, , M, e, d, i, c, a, l, , U, n, i, v, e, r, s, i, t, y, ,, , H, a, i, k, o, u, ,, , H, a, i, n, a, n, ,, , C, h, i, n, a, .

Keywords

Humans, Burkholderia pseudomallei, Melioidosis, Ceftazidime, Bacterial Proteins, Anti-Bacterial Agents, Microbial Sensitivity Tests, Drug Resistance, Bacterial, Point Mutation, Alleles, China