Genomic Characteristics of a Carbapenem-Resistant <i>Escherichia coli</i> Co-Carrying <i>bla</i> <sub>NDM-5</sub> and <i>mcr-1.1</i> from a Urinary Tract Infection in China. [PDF]
Jin J, Huang L, Bao D, Fang Y.
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Whole genome sequencing of Salmonella in poultry from China reveals the presence of bla<sub>NDM-5</sub> in different serotypes. [PDF]
Zhou Y +10 more
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High Prevalence and Genomic Characterization of Extended-Spectrum <b>β</b>-Lactamase-Producing <i>Escherichia coli</i> in the Yellow River and Source Water from A One Health Perspective - Henan Province, China, 2023-2024. [PDF]
Tian T +7 more
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A New Challenge of Antibiotic-Resistant Bacteria: Carbapenem-Resistant <i>Enterobacter cloacae</i> Complex in a One Health Perspective. [PDF]
Wang H, Han J, Li Y, Ding D, Li X.
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RamAp Is an Efflux Pump Regulator Carried by an IncHI2 Plasmid
Antimicrobial Agents and Chemotherapy, 2022In investigating the epidemiological trends of Salmonella enterica serovar Goldcoast, we previously identified several closely related strains with different MICs to azithromycin and quinolones. Genome sequencing and comparison of two very similar multidrug-resistant (MDR) strains, R18.0877 and R18.1656, has led to ...
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Arsenical resistance in the IncHI2 plasmids
Plasmid, 2002The IncHI2 plasmid R478, like other arsenic resistance IncH plasmids, provides increased levels of resistance to sodium arsenate (up to 100mM) and sodium arsenite (up to 10mM) to the host cell. An arsenic resistance fragment of R478 was cloned and sequenced revealing four arsenic resistance associated gene homologues, arsR, arsB, arsC, and arsH.
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pIN32: a Cointegrate Plasmid with IncHI2 and IncFII Components
Microbiology, 1986An Enterobacter cloacae strain isolated from the faeces of a child with diarrhoea in Indonesia contained a transferable 216 MDa plasmid, pIN32, exhibiting IncHI2 phenotypic characters, including temperature sensitivity of transfer and the expression of H serotype pili at a repressed level.
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Carbapenemase-producing Enterobacteriaceae (CPE) are an increasingly common cause of healthcare-associated infections and may occasionally be identified in patients without extensive healthcare exposure.
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Incompatibility group IncHI plasmids are important vectors of antibiotic resistance in Enterobacteriaceae. In this study, a scheme for typing IncHI into five separately clustering subgroups, including previously designated IncHI1-3 as well as IncHI4-5, was proposed based on sequenced IncHI plasmids.
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