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从日本肉牛中分离出的多重耐药性大肠杆菌的特性分析

Characterization of multi-antibiotic-resistant Escherichia coli Isolated from beef cattle in Japan.

作者信息

Yamamoto Shiori, Nakano Motoki, Kitagawa Wataru, Tanaka Michiko, Sone Teruo, Hirai Katsuya, Asano Kozo

机构信息

Applied Microbiology, Graduate School of Agriculture, Hokkaido University.

出版信息

Microbes Environ. 2014;29(2):136-44. doi: 10.1264/jsme2.me13173. Epub 2014 Apr 30.

DOI:10.1264/jsme2.me13173
PMID:24789986
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4103519/
Abstract

The emergence of multiple-antibiotic-resistance bacteria is increasing, which is a particular concern on livestock farms. We previously isolated 1,347 antimicrobial-resistant (AMR) Escherichia coli strains from the feces of beef cattle on 14 Japanese farms. In the present study, the genetic backgrounds and phylogenetic relationships of 45 AMR isolates were characterized by the chromosome phylotype, AMR phenotype, AMR genotype, and plasmid type. These isolates were classified into five chromosome phylotypes, which were closely linked to the farms from which they were isolated, suggesting that each farm had its own E. coli phylotype. AMR phenotype and plasmid type analyses yielded 8 and 14 types, all of which were associated with the chromosomal phylotype and, thus, to the original farms. AMR genotype analysis revealed more variety, with 16 types, indicating both inter- and intra-farm diversity. Different phylotype isolates from the same farm shared highly similar plasmid types, which indicated that plasmids with AMR genes could be transferred between phylotypes, thereby generating multi-antibiotic-resistant microorganisms. This ecological study demonstrated that the chromosome phylotype was strongly correlated with the farm from which they were isolated, while the AMR phenotype, genotype, and plasmid type were generally correlated with the chromosome phylotype and farm source.

摘要

多重耐药菌的出现日益增多,这在畜牧场中尤为令人担忧。我们之前从日本14个农场的肉牛粪便中分离出了1347株耐抗菌药物(AMR)大肠杆菌菌株。在本研究中,通过染色体系统型、AMR表型、AMR基因型和质粒类型对45株AMR分离株的遗传背景和系统发育关系进行了表征。这些分离株被分为五种染色体系统型,它们与分离自的农场密切相关,这表明每个农场都有其自身的大肠杆菌系统型。AMR表型和质粒类型分析产生了8种和14种类型,所有这些类型都与染色体系统型相关,因此也与原始农场相关。AMR基因型分析显示出更多样性,有16种类型,表明农场间和农场内都存在多样性。来自同一农场的不同系统型分离株共享高度相似的质粒类型,这表明携带AMR基因的质粒可以在系统型之间转移,从而产生多重耐药微生物。这项生态学研究表明,染色体系统型与分离自的农场密切相关,而AMR表型、基因型和质粒类型通常与染色体系统型和农场来源相关。

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