Multiple Copies of Tigecycline Gene Cluster tmexC6D6-toprJ1b in Pseudomonas mendocina in a Swine Farm

文献类型: 外文期刊

第一作者: Wu, Renjie

作者: Wu, Renjie;Che, Yongliang;Wang, Longbai;Chen, Qiuyong;He, Bing;Qiu, Jingli;Wu, Xuemin;Chen, Rujing;Liu, Yutao;Zhou, Lunjiang;Wu, Renjie;Che, Yongliang;Wang, Longbai;Chen, Qiuyong;He, Bing;Qiu, Jingli;Wu, Xuemin;Chen, Rujing;Liu, Yutao;Zhou, Lunjiang

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关键词: tigecycline resistance; efflux pump; Pseudomonas; pig

期刊名称:ANTIBIOTICS-BASEL ( 影响因子:4.6; 五年影响因子:4.9 )

ISSN: 2079-6382

年卷期: 2025 年 14 卷 5 期

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收录情况: SCI

摘要: Background/Objectives: The emergence and transmission of the tigecycline resistance efflux pump gene cluster tmexCD-toprJ among humans, animals and the environment have posed a serious threat to public health. The objective of this study was to characterize Pseudomonas strains carrying multiple copies of tmexC6D6-toprJ1b from a pig farm and illustrate the genetic context of tmexC6D6-toprJ1b in the NCBI database. Methods: The characterization of Pseudomonas strains FJFQ21PNM23 and FJFQ21PNM24 was determined by antimicrobial susceptibility testing, whole-genome sequencing, and RT-qPCR. Results: The tmexCD-toprJ-positive P. mendocina strains FJFQ21PNM23 and FJFQ21PNM24 were isolated from nasal swabs in a pig farm. Sequence analysis showed that the two P. mendocina strains harbored multiple antimicrobial resistance genes, including tigecycline resistance gene tmexC6D6-toprJ1b. WGS analysis indicated that tmexC6D6-toprJ1b gene was located on a classical transferable module (int1-int2-hp1-hp2-tnfxB-tmexCD-toprJ) and a multiresistance region in FJFQ21PNM24 and FJFQ21PNM23, respectively. Further analysis revealed that 39 additional tmexC6D6-toprJ1b genes in the NCBI database were all identified in Pseudomonas spp., and the genetic features of tmexC6D6-toprJ1b were summarized into three distinct structures. Conclusions: This study is the first to identify and report the tigecycline resistance gene tmexCD-toprJ in a swine farm. Our findings summarize the three structures in the genetic context of tmexC6D6-toprJ1b and reveal that Pseudomonas serves as the only known reservoir of tmexC6D6-toprJ1b.

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