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首次在中国和泰国的零售蔬菜中检测到携带tet(X4)的肠杆菌科细菌,以及产Tet(X4)的大肠杆菌ST195在动物、食品和人类中的克隆传播。

First detection of tet(X4)-positive Enterobacterales in retail vegetables and clonal spread of Escherichia coli ST195 producing Tet(X4) in animals, foods, and humans across China and Thailand.

作者信息

Yue Chao, Gao Xun, Lu Litao, Liu Yi-Yun, Lv Lu-Chao, He Xiaotong, Gao Guolong, Jiao Yanxiang, Yue Huiying, Lin Wannan, Liu Jian-Hua

机构信息

College of Veterinary Medicine, Key Laboratory of Zoonosis of Ministry of Agricultural and Rural Affairs, National Risk Assessment Laboratory for Antimicrobial Resistant of Microorganisms in Animals, Guangdong Provincial Key Laboratory of Veterinary Pharmaceutics Development and Safety Evaluation, South China Agricultural University, Guangzhou, Guangdong 510642, China.

College of Veterinary Medicine, Key Laboratory of Zoonosis of Ministry of Agricultural and Rural Affairs, National Risk Assessment Laboratory for Antimicrobial Resistant of Microorganisms in Animals, Guangdong Provincial Key Laboratory of Veterinary Pharmaceutics Development and Safety Evaluation, South China Agricultural University, Guangzhou, Guangdong 510642, China; Guangdong Laboratory for Lingnan Modern Agriculture, Guangzhou, Guangdong 510642, China.

出版信息

Int J Food Microbiol. 2023 Apr 16;391-393:110145. doi: 10.1016/j.ijfoodmicro.2023.110145. Epub 2023 Feb 21.

Abstract

The mobile tigecycline-resistant gene tet(X4), which confers resistance to all tetracyclines, has been identified in bacterial isolates from various sources. However, there are no reports on the occurrence of tet(X4) in bacterial isolates of ready-to-eat fresh vegetables. In this study, 113 vegetable samples from farmers' markets were screened for tigecycline-resistant strains. Ten Escherichia coli (two ST195, two ST48, and one ST10, ST58, ST88, ST394, ST641, and ST101) and one Klebsiella pneumoniae (ST327) recovered from nine vegetable samples (7.96 %) were identified as carrying tet(X4). The core genome sequences of the two E. coli ST195 isolates showed a close relationship (14-41 single-nucleotide polymorphisms) with 31 tet(X4)-bearing E. coli ST195 isolates from humans, pigs, pork, and bird in China and Thailand, and the 33 E. coli ST195 isolates producing Tet(X4) shared similar resistance genes and plasmid replicons. Nanopore sequencing and conjugation experiments confirmed that the tet(X4) genes were located on the hybrid plasmids IncFIA-HI1A-HI1B (n = 6), IncX1 (n = 3), and IncFII2 (n = 1) in E. coli, and IncFII plasmid in K. pneumoniae. IncFIA-HI1A-HI1B and IncX1 plasmids shared highly similar structures with plasmids from various sources in the GenBank database. This is the first study to report the observation of tet(X4)-positive bacteria in retail vegetables. The epidemic clones and plasmids contribute to tet(X4) dissemination in vegetables. The clonal spread of Tet(X4)-producing E. coli ST195 across multiple niches and countries could pose a potential threat to public health.

摘要

可赋予对所有四环素耐药性的移动性四环素耐药基因tet(X4)已在来自各种来源的细菌分离株中被鉴定出来。然而,关于即食新鲜蔬菜细菌分离株中tet(X4)的出现情况尚无报道。在本研究中,对来自农贸市场的113份蔬菜样本进行了耐替加环素菌株筛查。从9份蔬菜样本(7.96%)中分离出的10株大肠杆菌(2株ST195、2株ST48以及1株ST10、ST58、ST88、ST394、ST641和ST101)和1株肺炎克雷伯菌(ST327)被鉴定为携带tet(X4)。两株大肠杆菌ST195分离株的核心基因组序列与来自中国和泰国的人类、猪、猪肉及禽类的31株携带tet(X4)的大肠杆菌ST195分离株显示出密切关系(14 - 41个单核苷酸多态性),并且这33株产生Tet(X4)的大肠杆菌ST195分离株具有相似的耐药基因和质粒复制子。纳米孔测序和接合实验证实,tet(X4)基因位于大肠杆菌中的IncFIA - HI1A - HI1B(n = 6)、IncX1(n = 3)和IncFII2(n = 1)杂交质粒以及肺炎克雷伯菌中的IncFII质粒上。IncFIA - HI1A - HI1B和IncX1质粒与GenBank数据库中来自各种来源的质粒具有高度相似的结构。这是首次报道在零售蔬菜中观察到tet(X4)阳性细菌的研究。流行克隆和质粒促成了tet(X4)在蔬菜中的传播。产生Tet(X4)的大肠杆菌ST195在多个生态位和国家的克隆传播可能对公众健康构成潜在威胁。

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