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首页> 外文期刊>Journal of Biology, Agriculture and Healthcare >Impact of Quorum Sensing Inhibitors on Population Dynamics of Oral Bacteria
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Impact of Quorum Sensing Inhibitors on Population Dynamics of Oral Bacteria

机译:群体感应抑制剂对口腔细菌种群动态的影响

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Quorum sensing (QS) signaling system of bacteria play a crucial role in controlling their population densities and interactions with each other as well as with their environments. The human oral cavity harbors one of the most complex microbiota of which one third of the species are yet cultivated. Isolation and culturing of oral bacteria is critical to understand their impact on health and diseases. In this study, we investigated the effect of QS inhibitors on the cultivability of oral bacteria and their population density by disrupting their QS signals. Oral samples were collected from six healthy individuals and seeded on agar media in the presence of QS inhibitors. Based on colony morphology and Gram staining, 121 colonies grown only on the agar media containing QS inhibitors, but not on the control agar media without QS inhibitors, were picked and characterized using standard bacteriological methods. Of the 121 isolates, 26 strains were further characterized by 16S rRNA sequence analysis, and a phylogenetic tree was constructed. These 26 strains belonged to the phyla of Actinobacteria , Firmicutes , and Proteobacteria . The results of this study indicated that culturing oral bacteria in the presence of QS inhibitors may alter their population densities which in turn promote cultivation and identification of bacteria that may be suppressed in various environments including different parts of the human body.
机译:细菌的群体感应(QS)信号系统在控制其种群密度以及相互之间以及与环境的相互作用中起着至关重要的作用。人的口腔具有最复杂的微生物群之一,其中三分之一的菌群尚未被培养。口腔细菌的分离和培养对于了解其对健康和疾病的影响至关重要。在这项研究中,我们研究了QS抑制剂通过破坏QS信号对口腔细菌的可培养性及其种群密度的影响。从六个健康个体中收集口腔样品,并在存在QS抑制剂的情况下接种在琼脂培养基上。基于菌落形态和革兰氏染色,使用标准细菌学方法挑选并鉴定了仅在含有QS抑制剂的琼脂培养基上而不在没有QS抑制剂的对照琼脂培养基上生长的121个菌落。通过16S rRNA序列分析进一步鉴定了121株菌株中的26株,并构建了系统树。这26个菌株属于放线菌,Firmicutes和Proteobacteria的门。这项研究的结果表明,在存在QS抑制剂的情况下培养口腔细菌可能会改变其种群密度,从而促进细菌的培养和鉴定,而这些细菌可能会在包括人体不同部位在内的各种环境中受到抑制。

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