首页> 外文期刊>Research in Veterinary Science >Autoinducer-2 influences tetracycline resistance in Streptococcus suis by regulating the tet(M) gene via transposon Tn916
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Autoinducer-2 influences tetracycline resistance in Streptococcus suis by regulating the tet(M) gene via transposon Tn916

机译:通过通过转座TN916调节TET(M)基因来影响Streptococcus Suis中的四环素抗性

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摘要

The concern over increasing resistance to tetracyclines (TCs), such as tetracycline and chlortetracycline, necessitates exploration of new approaches to combating infection in antimicrobial therapy. Given that bacteria use the chemical language of autoinducer 2 (AI-2) signaling molecules in order to communicate and regulate group behaviors, we asked whether the AI-2 signaling influence the tetracyclines antibiotics susceptibility in S. suis. Our present work demonstrated that MEC increased when exogenous AI-2 was added, when compared to the wild type strain. When grown in the presence of sub-MIC of antibiotics, it has been shown that exogenous AI-2 increases growth rate and biofilm formation. These results suggest that the TCs resistance in S. suis could involve a signaling mechanism. Base on the above observations, transcriptomic analyses showed significant differences in the expression of tet(M) of tetracyclines resistance genes, as well as differences in Tn916 transposon related genes transcription, as judged by RT-PCR. Our results provide strong evidence that AI-2 signaling molecules is may involve in TCs antibiotic resistance in S. suis by regulating tet(M) gene via Tn916 transposon. This study may suggest that targeting AI-2 signaling in bacteria could represent an alternative approach in antimicrobial therapy.
机译:对四环素(TCS)的抗性的担忧,例如四环素和氯化萘氯丁,需要探索抗菌治疗中的感染的新方法。鉴于细菌使用Autuinducer 2(AI-2)的化学语言(AI-2)信号分子以进行通信和调节组行为,我们询问AI-2信号传导是否会影响S Suis中的四环素抗生素易感性。我们现在的工作表明,与野生型菌株相比,在添加外源AI-2时,MEC增加。当在抗生素的亚麦麦米的存在下生长时,已经表明外源AI-2增加了生长速率和生物膜形成。这些结果表明,S Suis中的TCS抗性可能涉及信号机制。基于上述观察结果,转录组分析表明Tetryclines抗性基因的TET(M)表达的显着差异,以及RT-PCR判断的TN916转座子相关基因转录的差异。我们的结果提供了强大的证据,即AI-2信号分子可通过通过TN916转座子调节TET(M)基因来涉及S. Suis中的TCS抗生素抗性。本研究可能表明,靶向细菌中的AI-2信号传导可以代表抗微生物治疗中的替代方法。

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