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Isolation and Characterization of Shiga Toxin–Producing Escherichia coli from Retail Beef Samples from Eight Provinces in China

头孢噻肟 生物 微生物学 大肠杆菌 血清型 环丙沙星 志贺毒素 抗生素耐药性 喹诺酮类 志贺样毒素 头孢菌素 病毒学 抗生素 基因 遗传学
作者
Ying Hu,Cui Guang-qing,Yiling Fan,Yan Liu,Wei Zhou,Shengnan Huo,Xin Wu,Sheng Song,Xuewen Cui,Linna Zhao,Li Bai,Shenghui Cui,Zhifei He
出处
期刊:Foodborne Pathogens and Disease [Mary Ann Liebert, Inc.]
卷期号:18 (8): 616-625 被引量:6
标识
DOI:10.1089/fpd.2021.0005
摘要

While Shiga toxin–producing Escherichia coli (STEC) is a major foodborne pathogen worldwide, data on the molecular and phylogenetic properties of STEC isolates from retail beef samples in China remain scant. Fresh retail beef samples (n = 1062) were collected from eight provinces, and STEC isolates were recovered and characterized. PCR data showed that more than 50% of the samples were stx positive, and 82 STEC isolates were recovered from 14.8% (79/535) stx-positive enriched broths. In contrast, all ciprofloxacin resistant isolates (n = 19) and 13 cefotaxime (CTX) resistant isolates were eae positive and belonged to three serotypes: O111:H8, O26:H11, or O157:H7. Point mutations in quinolone resistance-determining regions and plasmid-mediated quinolone resistance determinants were identified in 16 and 20 isolates, respectively. BlaCTX-M and a point mutation (C-42T) in ampC promoter were detected in 15 and 8 of the CTX resistant isolates, respectively. In addition, macrolide resistance gene mphA was identified in eight azithromycin resistant O111:H8 isolates and one O26:H11 isolate. Single nucleotide polymorphism analysis demonstrated that the O26 and O157 isolates had multiple origins, but the O111 isolates were closely related. Taken together, our data demonstrated that several sequence types associated with hemolytic uremic syndrome from the retail beef samples in China had developed into dangerous multidrug resistant pathogens. The resistant phenotype can facilitate their transmission among the farm animals and human beings when there is an antimicrobial selective pressure.
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