Clonal expansion of chromosome-borne CTX-M-55 extended-spectrum β-lactamase-producing Salmonella enterica serovar Agona, Taiwan.

IF 4.1 2区 生物学 Q2 MICROBIOLOGY Microbiology spectrum Pub Date : 2025-05-06 Epub Date: 2025-03-19 DOI:10.1128/spectrum.02979-24
Ying-Shu Liao, Yu-Ping Hong, Bo-Han Chen, You-Wun Wang, Ru-Hsiou Teng, Yung-Chen Chien, Shiu-Yun Liang, Hsiao Lun Wei, Jui-Hsien Chang, Ming-Hao Yang, Chi-Sen Tsao, Chien-Shun Chiou
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Abstract

We investigated emerging multidrug-resistant (MDR) Salmonella enterica serovar Agona in Taiwan. These MDR strains commonly harbored the efflux pump activator gene ramAp and up to 15 resistance genes, including aac (3)-IId, aadA22, aph(3')-Ia, aph (6)-Id, arr-2, bla CTX-M-55, bla LAP-2, bla TEM-1, dfrA14, floR, lnu(F), qnrS13, sul2, sul3, and tet(A), within IncHI2-IncHI2A plasmids or diverse chromosomal resistance genomic islands (RGIs). These newly emerging MDR strains comprised 44.9% and 74.4% of S. Agona isolates collected in 2023 and 2024, respectively. Through analysis of chromosomal insertion sites, we identified 11 distinct RGIs. Strains containing RGI_SA11 became predominant, comprising 59.2% of S. Agona isolates collected in 2024.IMPORTANCEThe emergence and clonal expansion of MDR S. Agona represent a growing public health concern. This study identifies a significant shift in resistance mechanisms, driven by chromosomally integrated resistance genomic islands (RGIs), which likely originated from IncHI2-IncHI2A plasmids. The chromosomal integration of antimicrobial resistance genes enhances the evolutionary fitness of these strains, facilitating their persistence and dissemination in both human and animal populations. These findings underscore the urgent need for enhanced surveillance, targeted interventions, and global antimicrobial stewardship to curb the spread of MDR pathogens and safeguard public health.

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产β-内酰胺酶肠沙门氏菌血清型CTX-M-55的克隆扩增。
摘要本研究调查台湾新出现的多重耐药(MDR)肠道沙门氏菌血清型。这些多药耐药菌株通常在IncHI2-IncHI2A质粒或不同的染色体抗性基因组岛(rgi)中携带外排泵激活基因ramAp和多达15个抗性基因,包括aac (3)-IId、aadA22、aph(3’)-Ia、aph(6)-Id、ar -2、blaCTX-M-55、blaLAP-2、blatem1、dfrA14、floR、lnu(F)、qnrS13、sul2、sul3和tet(A)。这些新出现的耐多药菌株分别占2023年和2024年收集的葡萄球菌分离株的44.9%和74.4%。通过分析染色体插入位点,我们确定了11个不同的rgi。含有RGI_SA11的菌株占优势,占2024年收集的葡萄球菌分离株的59.2%。耐多药S. Agona的出现和克隆扩展引起了越来越多的公共卫生关注。该研究确定了抗性机制的重大转变,由染色体整合抗性基因组岛(rgi)驱动,可能起源于IncHI2-IncHI2A质粒。抗微生物药物耐药性基因的染色体整合增强了这些菌株的进化适应性,促进了它们在人类和动物群体中的持续存在和传播。这些发现强调迫切需要加强监测、有针对性的干预措施和全球抗微生物药物管理,以遏制耐多药病原体的传播并保障公众健康。
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来源期刊
Microbiology spectrum
Microbiology spectrum Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
3.20
自引率
5.40%
发文量
1800
期刊介绍: Microbiology Spectrum publishes commissioned review articles on topics in microbiology representing ten content areas: Archaea; Food Microbiology; Bacterial Genetics, Cell Biology, and Physiology; Clinical Microbiology; Environmental Microbiology and Ecology; Eukaryotic Microbes; Genomics, Computational, and Synthetic Microbiology; Immunology; Pathogenesis; and Virology. Reviews are interrelated, with each review linking to other related content. A large board of Microbiology Spectrum editors aids in the development of topics for potential reviews and in the identification of an editor, or editors, who shepherd each collection.
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