首页> 外文期刊>Frontiers in Microbiology >Differences in Sole Carbon Source Utilization of the Dental Plaque Microbiota Between Caries-Free and Caries-Affected Children
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Differences in Sole Carbon Source Utilization of the Dental Plaque Microbiota Between Caries-Free and Caries-Affected Children

机译:龋齿和龋病影响儿童牙菌斑微生物群唯一碳源利用的差异

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Increasing lines of evidence indicate that while microbial profile might vary, community-level metabolic potential is often more stably correlated with healthy and diseased states. Here, we investigated the community-level metabolic diversity of dental plaque microbiota from caries-free (CF) and caries-affected (CA) children by measuring their sole carbon source utilization using a Biolog assay. The dietary habits of 32 CF and 31 CA children were recorded by a questionnaire. Supragingival plaque samples were collected and inoculated into Biolog AN Microplates to assess the metabolism of sole carbon sources by plaque bacteria. The results revealed significant differences in dietary habits between CF and CA children. Meanwhile, Biolog assay showed consistently higher, albeit not statistically significant, overall metabolic activity as measured by average well color development (AWCD) value in the plaque microbiota from CA group than CF group. Most importantly, the CA group had more than twice as many core-positive carbon sources (defined as being utilized by &90% of plaque microbiota from subjects within the group) as that of the CF group (31 vs. 14), including CA group-specific, cariogenic core-positive carbon sources such as sucrose, glucose and raffinose. Furthermore, CF and CA groups could be well distinguished by cluster and principle component analyses based on the types of sole carbon sources significantly differentially utilized by the two groups. Our results indicate that plaque communities associated with caries state are more metabolically versatile than those associated with healthy state, which could contribute to differential clinical caries states. Meanwhile, Biolog could be an effective tool in revealing the community-level physiological profiles of microbiota associated with different caries states.
机译:增加的证据表明,虽然微生物概况可能变化,但是与健康和患病状态往往更稳定地相关的社区水平代谢潜力。在这里,我们通过使用Biolog测定测量它们的唯一碳源利用,调查了从无龋(CF)和受龋病的(CA)儿童的牙菌斑微生物群的社区水平代谢多样性。问卷记录32米CF和31 CA儿童的饮食习性。收集Supratival斑块样品并接种到Biolog的微孔板中,以评估斑块细菌的唯一碳源的代谢。结果揭示了CF和CA儿童之间的饮食习惯的显着差异。同时,Biolog测定显示始终如一,尽管通过Ca组的平均噬菌体微生物在Ca组中的平均良性显影(AWCD)值测量而不是统计学上显着的整体代谢活性。最重要的是,Ca组具有多于许多核阳性碳源的两倍(定义为来自组中受试者的90%的斑块微生物群),因为CF组(31 vs.14),包括Ca组特异性,致癌核阳性碳源,如蔗糖,葡萄糖和棉子糖。此外,CF和Ca组可以通过簇和基于两组显着差异使用的唯一碳源类型的群体和原理分析分析。我们的研究结果表明,与龋齿状态相关的斑块社区比与健康状态相关的斑块融合,这可能导致差异临床龋齿状态。同时,Biolog可能是揭示与不同龋病相关的微生物群的社区水平生理谱的有效工具。

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