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Exploring the Dynamic Core Microbiome of Plaque Microbiota during Head-and-Neck Radiotherapy Using Pyrosequencing

机译:利用焦磷酸测序探索头颈部放疗过程中菌斑微生物群的动态核心微生物组

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摘要

Radiotherapy is the primary treatment modality used for patients with head-and-neck cancers, but inevitably causes microorganism-related oral complications. This study aims to explore the dynamic core microbiome of oral microbiota in supragingival plaque during the course of head-and-neck radiotherapy. Eight subjects aged 26 to 70 were recruited. Dental plaque samples were collected (over seven sampling time points for each patient) before and during radiotherapy. The V1–V3 hypervariable regions of bacterial 16S rRNA genes were amplified, and the high-throughput pyrosequencing was performed. A total of 140 genera belonging to 13 phyla were found. Four phyla (Actinobacteria, Bacteroidetes, Firmicutes, and Proteobacteria) and 11 genera (Streptococcus, Actinomyces, Veillonella, Capnocytophaga, Derxia, Neisseria, Rothia, Prevotella, Granulicatella, Luteococcus, and Gemella) were found in all subjects, supporting the concept of a core microbiome. Temporal variation of these major cores in relative abundance were observed, as well as a negative correlation between the number of OTUs and radiation dose. Moreover, an optimized conceptual framework was proposed for defining a dynamic core microbiome in extreme conditions such as radiotherapy. This study presents a theoretical foundation for exploring a core microbiome of communities from time series data, and may help predict community responses to perturbation as caused by exposure to ionizing radiation.
机译:放射疗法是用于头颈癌患者的主要治疗方式,但不可避免地会引起微生物相关的口腔并发症。本研究旨在探讨头颈部放疗过程中龈上菌斑中口腔微生物群的动态核心微生物组。招募了八名年龄在26至70岁之间的受试者。在放射治疗之前和期间收集牙菌斑样品(每个患者超过七个采样时间点)。扩增了细菌16S rRNA基因的V1-V3高变区,并进行了高通量焦磷酸测序。共发现140属13门。在所有受试者中发现了四个门(放线菌,拟杆菌,硬毛菌和变形杆菌)和11个属(链球菌,放线菌,韦永氏菌,Capnocytophaga,德氏菌,奈瑟菌,罗赛亚,普雷沃特氏菌,肉食菌,黄体球菌和小胚芽),支持这一概念。核心微生物组。观察到这些主要核的相对丰度随时间变化,以及OTU数量与辐射剂量之间呈负相关。此外,提出了一种优化的概念框架,用于在极端条件下(例如放疗)定义动态核心微生物组。这项研究为从时间序列数据探索社区的核心微生物组提供了理论基础,并可能有助于预测社区对由于暴露于电离辐射而引起的摄动的反应。

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