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用于监测地表水中耐万古霉素和替考拉宁细菌的靶向vanA的寡核苷酸DNA探针。

vanA-targeted oligonucleotide DNA probe designed to monitor vancomycin- and teicoplanin-resistant bacteria in surface waters.

作者信息

Nakipoglu Mustafa, Yilmaz Fadime, Icgen Bulent

机构信息

Department of Biotechnology, Middle East Technical University, 06800, Ankara, Turkey.

Department of Environmental Engineering, Middle East Technical University, 06800, Ankara, Turkey.

出版信息

Environ Monit Assess. 2016 Oct;188(10):569. doi: 10.1007/s10661-016-5578-7. Epub 2016 Sep 17.

Abstract

The glycopeptide antibiotics teicoplanin and vancomycin are common to treat severe Gram-positive bacterial infections. The gene vanA confers high-level resistance to these antibiotics, and these phenomena have been shown to be transferable. Release of vancomycin- and teicoplanin-resistant bacteria to surface waters is, therefore, of particular concern since they might proliferate and spread in different environments. Monitoring of the fate of vanA gene in these waters provides information on the exposure and potential threats of those bacteria for the environment and public health. Therefore, this study aimed at preparing a 25-mer-oligonucleotide DNA probe based on the 909 bp BamHI-ClaI fragment from Enterococcus faecium plasmids pVEF1 and pVEF2 through the use of Vector NTI Express Software. The newly designed vanA probe displayed highly specific hybridization with vanA-positive Enterococcus faecalis tested at 46 °C, 55 % formamide, and 0.020 M NaCl stringency conditions. In situ fluorescein hybridizations under the same stringency conditions were also used to monitor river water samples by using fluorescein microscopy. The results showed that the vanA-targeted oligonucleotide DNA probe prepared was not only highly specific but also quantitative tool for monitoring vancomycin- and teicoplanin-resistant bacteria in surface waters.

摘要

糖肽类抗生素替考拉宁和万古霉素常用于治疗严重的革兰氏阳性细菌感染。vanA基因赋予对这些抗生素的高水平抗性,并且这些现象已被证明是可转移的。因此,耐万古霉素和耐替考拉宁的细菌释放到地表水中特别令人担忧,因为它们可能在不同环境中增殖和传播。监测这些水体中vanA基因的归宿可为这些细菌对环境和公众健康的暴露及潜在威胁提供信息。因此,本研究旨在通过使用Vector NTI Express软件,基于来自粪肠球菌质粒pVEF1和pVEF2的909 bp BamHI-ClaI片段制备一种25聚体寡核苷酸DNA探针。新设计的vanA探针在46°C、55%甲酰胺和0.020 M NaCl严格条件下与vanA阳性粪肠球菌显示出高度特异性杂交。在相同严格条件下的原位荧光素杂交也用于通过荧光素显微镜监测河水样本。结果表明,所制备的靶向vanA的寡核苷酸DNA探针不仅具有高度特异性,而且是监测地表水中耐万古霉素和耐替考拉宁细菌的定量工具。

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