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The Effect of Dietary Texture on the Composition of the Murine Dental Microbiome

机译:饮食质地对小鼠牙科微生物组组成的影响

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摘要

Dental plaque exists as a highly complex biofilm community that is known to lead to various states of dental disease. The pathogenicity of the dental biofilm is directly related to the species residing within the biofilm. While some oral biofilm communities are associated with states of oral health, others are interchangeable with states of dental disease and oral pathology. The microbial community population of the oral cavity is heavily influenced by host diet composition. Diet composition contributes to the establishment of differing microbial communities in terms of relative species abundance and diversity. Some diets are associated with oral bacteria related to a healthy oral environment while others show association with microbes that are related to states of dental disease.;Many studies have focused on the significance of dietary carbohydrate content on dental disease. However, the effect of dietary texture on dental disease has been comparatively overlooked. This study utilizes 16S rRNA analysis to better understand the influence of diet texture on oral microbial populations among the dental enamel surface in terms of microbial diversity and abundance. Four diet groups---1) Base (Control), 2) Base+Fiber, 3) Base+Sugar, and 4) Base+Fiber+Sugar---are used to determine if dietary texture as well as carbohydrate content affects changes within the oral microbiome to potentially influence dental disease. This study ultimately seeks to offer insight into whether the loss of dietary texture in the Western diet has acted as a stimulus towards increased incidence of dental disease over time.;We found that dietary fiber, and not sugar, had a significant effect on dental microbiome alpha and beta diversity at the genus level. Additionally, beta diversity was significantly affected at the phylum level. Consistent with this finding fiber, and not sugar, also explained significant changes in microbial taxonomic abundance at the genus level. These changes were microbe-specific for each dietary group. A general finding was that fiber had a stronger influence on microbial diversity and abundance than did sugar. The only significant effects sugar demonstrated in this experiment were in its interaction with dietary fiber. Further analysis using metagenomic shotgun sequencing should be utilized to better understand the metabolic impact of the changes observed in this preliminary study.
机译:牙菌斑是高度复杂的生物膜群落,已知会导致各种疾病。牙齿生物膜的致病性与生物膜内存在的物种直接相关。虽然某些口腔生物被膜群落与口腔健康状况有关,但其他生物膜与牙齿疾病和口腔病理状况却可以互换。宿主的饮食组成严重影响口腔的微生物群落数量。饮食组成在相对物种丰富度和多样性方面有助于建立不同的微生物群落。一些饮食与与健康口腔环境有关的口腔细菌有关,而另一些饮食则与与牙齿疾病状态有关的微生物有关。;许多研究集中于饮食中碳水化合物含量对牙齿疾病的重要性。然而,饮食质地对牙齿疾病的影响已被相对忽视。这项研究利用16S rRNA分析从微生物多样性和丰度方面更好地了解饮食质地对牙釉质表面口腔微生物种群的影响。四个饮食组--1)基础(对照),2)基础+纤维,3)基础+糖和4)基础+纤维+糖-用于确定饮食结构和碳水化合物含量是否影响变化在口腔微生物组中可能会影响牙齿疾病。这项研究最终旨在提供洞察力,以了解西方饮食中饮食结构的丧失是否已随着时间的推移而对增加牙科疾病的发生率起到了刺激作用。;我们发现膳食纤维而非糖对牙科微生物组具有显着影响在属水平上的alpha和beta多样性。此外,β多样性在门系水平上受到显着影响。与此发现相符的是纤维,而不是糖,也解释了在属水平上微生物生物分类丰度的显着变化。这些变化对于每个饮食组都是特定于微生物的。一个普遍的发现是,纤维对微生物多样性和丰度的影响比糖强。该实验中显示的糖的唯一显着效果是其与膳食纤维的相互作用。应使用宏基因组shot弹枪测序进行进一步分析,以更好地了解此初步研究中观察到的变化对代谢的影响。

著录项

  • 作者

    Sedghi, Lea Maryam.;

  • 作者单位

    Mercer University.;

  • 授予单位 Mercer University.;
  • 学科 Dentistry.;Microbiology.;Evolution development.
  • 学位 M.S.
  • 年度 2018
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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