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Identifying Low pH Active and Lactate-Utilizing Taxa within Oral Microbiome Communities from Healthy Children Using Stable Isotope Probing Techniques

机译:使用稳定同位素探测技术从健康儿童的口腔微生物组群落中鉴定低pH活性和乳酸利用分类单元

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摘要

BackgroundMany human microbial infectious diseases including dental caries are polymicrobial in nature. How these complex multi-species communities evolve from a healthy to a diseased state is not well understood. Although many health- or disease-associated oral bacteria have been characterized in vitro, their physiology within the complex oral microbiome is difficult to determine with current approaches. In addition, about half of these species remain uncultivated to date with little known besides their 16S rRNA sequence. Lacking culture-based physiological analyses, the functional roles of uncultivated species will remain enigmatic despite their apparent disease correlation. To start addressing these knowledge gaps, we applied a combination of Magnetic Resonance Spectroscopy (MRS) with RNA and DNA based Stable Isotope Probing (SIP) to oral plaque communities from healthy children for in vitro temporal monitoring of metabolites and identification of metabolically active and inactive bacterial species.
机译:背景技术包括龋齿在内的许多人类微生物感染性疾病本质上都是多微生物的。这些复杂的多物种社区如何从健康状态转变为疾病状态,这一点尚未得到很好的了解。尽管已经对许多与健康或疾病相关的口腔细菌进行了体外表征,但目前的方法很难确定其在复杂口腔微生物组中的生理学。此外,迄今为止,这些物种中约有一半仍未耕种,除了其16S rRNA序列外鲜为人知。缺乏基于培养物的生理分析,尽管其明显的疾病相关性,但未培养物种的功能作用仍将是难以捉摸的。为了解决这些知识空白,我们将磁共振波谱(MRS)与基于RNA和DNA的稳定同位素探测(SIP)相结合,对健康儿童的口腔斑块社区进行了代谢物的体外时间监测以及代谢活性和非活性代谢的鉴定细菌种类。

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