首页> 美国卫生研究院文献>Microbes and Environments >Novel Conjugative Transferable Multiple Drug Resistance Plasmid pAQU1 from Photobacterium damselae subsp. damselae Isolated from Marine Aquaculture Environment
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Novel Conjugative Transferable Multiple Drug Resistance Plasmid pAQU1 from Photobacterium damselae subsp. damselae Isolated from Marine Aquaculture Environment

机译:damselae子亚种的新型共轭可转移多重耐药性质粒pAQU1。与海洋水产养殖环境隔离的少女

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摘要

The emergence of drug-resistant bacteria is a severe problem in aquaculture. The ability of drug resistance genes to transfer from a bacterial cell to another is thought to be responsible for the wide dissemination of these genes in the aquaculture environment; however, little is known about the gene transfer mechanisms in marine bacteria. In this study, we show that a tetracycline-resistant strain of Photobacterium damselae subsp. damselae, isolated from seawater at a coastal aquaculture site in Japan, harbors a novel multiple drug resistance plasmid. This plasmid named pAQU1 can be transferred to Escherichia coli by conjugation. Nucleotide sequencing showed that the plasmid was 204,052 base pairs and contained 235 predicted coding sequences. Annotation showed that pAQU1 did not have known repA, suggesting a new replicon, and contained seven drug resistance genes: blaCARB-9-like, floR, mph(A)-like, mef(A)-like, sul2, tet(M) and tet(B). The plasmid has a complete set of genes encoding the apparatus for the type IV secretion system with a unique duplication of traA. Phylogenetic analysis of the deduced amino acid sequence of relaxase encoded by traI in pAQU1 demonstrated that the conjugative transfer system of the plasmid belongs to MOBH12, a sub-group of the MOBH plasmid family, closely related to the IncA/C type of plasmids and SXT/R391 widely distributed among species of Enterobacteriaceae and Vibrionaceae. Our data suggest that conjugative transfer is involved in horizontal gene transfer among marine bacteria and provide useful insights into the molecular basis for the dissemination of drug resistance genes among bacteria in the aquaculture environment.
机译:耐药细菌的出现是水产养殖中的一个严重问题。人们认为,耐药基因从细菌细胞转移到另一个细胞的能力是导致这些基因在水产养殖环境中广泛传播的原因。然而,对于海洋细菌中的基因转移机制知之甚少。在这项研究中,我们显示了对四环素抗性的光合细菌达姆酵母亚种。在日本沿海水产养殖场从海水中分离出的淡水ae(Damselae)带有一种新型的多重耐药质粒。可以通过缀合将该名为pAQU1的质粒转移至大肠杆菌。核苷酸测序表明该质粒为204,052个碱基对,并包含235个预测的编码序列。注释显示pAQU1没有已知的repA,表明是新的复制子,并包含七个耐药基因:blaCARB-9-like,floR,mph(A)-,mef(A)-,sul2,tet(M)和tet(B)。质粒具有完整的基因序列,该基因编码具有唯一重复traA的IV型分泌系统的设备。对pAQU1中由traI编码的松弛酶推导的氨基酸序列的系统进化分析表明,该质粒的共轭转移系统属于MOBH12,MOBH质粒家族的一个亚组,与IncA / C型质粒和SXT密切相关/ R391广泛分布于肠杆菌科和弧菌科。我们的数据表明,共轭转移参与了海洋细菌之间的水平基因转移,并为深入了解水产养殖环境中细菌之间耐药基因的分子基础提供了有用的见识。

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