Department of Biomedical Sciences, Faculty of Health Sciences, Universidad Cardenal Herrera-CEU, CEU Universities, 46113, Moncada, Valencia, Spain.
Microomics Systems S.L, Barcelona, Spain.
Sci Rep. 2020 Sep 29;10(1):15962. doi: 10.1038/s41598-020-72460-2.
Extrinsic black dental staining is an external dental discoloration of bacterial origin, considered a special form of dental plaque. Currently, there is no definitive therapeutic option for eliminating black stain. This study employed 16S rRNA metagenomics to analyze black stain and white-plaque samples from 27 adult volunteers. Study objectives were to: describe the microbial diversity of adult black stain samples; characterize their taxonomic profile; compare the microbiomes of black stain versus white-plaque from adult volunteers and propose a functional map of the black stain microbiome using PICRUSt2. The black stain microbiome was poorer in species diversity as compared to white-plaque. The five most abundant genera in black stain were Capnocytophaga, Leptotrichia, Fusobacterium, Corynebacterium and Streptococcus. Functional analysis of microbial species revealed conserved and consistent clustering of functional pathways within and between black stain and white-plaque microbiomes. We describe enrichment of heme biosynthetic pathways in black stain. Our results suggest that the dysbiosis in black stain resembles "orally healthy" communities. The increased abundance of heme biosynthetic pathways suggests that heme-dependent iron sequestration and subsequent metabolism are key for black stain formation. Further research should decipher the regulation of heme biosynthetic genes and characterize the temporal sequence leading to colonization and dysbiosis.
外源性黑牙染色是一种由细菌引起的外源性牙齿变色,被认为是一种特殊形式的牙菌斑。目前,尚无消除黑渍的明确治疗方法。本研究采用 16S rRNA 宏基因组学方法,对 27 名成年志愿者的黑染样本和白菌斑样本进行了分析。研究目的是:描述成人黑染样本的微生物多样性;描述其分类特征;比较成人黑染和白菌斑的微生物组,并使用 PICRUSt2 为黑染微生物组提出功能图谱。与白菌斑相比,黑染样本的物种多样性较差。黑染中最丰富的五个属是 Capnocytophaga、Leptotrichia、Fusobacterium、Corynebacterium 和 Streptococcus。微生物物种的功能分析表明,黑染和白菌斑微生物组内和之间的功能途径具有保守和一致的聚类。我们描述了黑染中血红素生物合成途径的富集。我们的结果表明,黑染中的菌群失调类似于“口腔健康”的群落。血红素生物合成途径的丰度增加表明,血红素依赖性铁螯合和随后的代谢是黑染形成的关键。进一步的研究应该阐明血红素生物合成基因的调控,并描述导致定植和菌群失调的时间序列。