The Dental Plaque Microbiome in Health and Disease
Микробиом зубного налёта при здоровье и заболевании
2013-03-08
SCID: 54.1/fb7fcxdv
Discuss with AI
16S rDNA profilingdental cariesdental plaque microbiomemicrobial signaturesoperational taxonomic units
Figures from the paper
Abstract (AI)
Dental decay is one of the most prevalent chronic diseases worldwide. A variety of factors, including microbial, genetic, immunological, behavioral and environmental, interact to contribute to dental caries onset and development. Previous studies focused on the microbial basis for dental caries have identified species associated with both dental health and disease. The purpose of the current study was to improve our knowledge of the microbial species involved in dental caries and health by performing a comprehensive 16S rDNA profiling of the dental plaque microbiome of both caries-free and caries-active subjects. Analysis of over 50,000 nearly full-length 16S rDNA clones allowed the identification of 1,372 operational taxonomic units (OTUs) in the dental plaque microbiome. Approximately half of the OTUs were common to both caries-free and caries-active microbiomes and present at similar abundance. The majority of differences in OTU's reflected very low abundance phylotypes. This survey allowed us to define the population structure of the dental plaque microbiome and to identify the microbial signatures associated with dental health and disease. The deep profiling of dental plaque allowed the identification of 87 phylotypes that are over-represented in either caries-free or caries-active subjects. Among these signatures, those associated with dental health outnumbered those associated with dental caries by nearly two-fold. A comparison of this data to other published studies indicate significant heterogeneity in study outcomes and suggest that novel approaches may be required to further define the signatures of dental caries onset and progression.
Key Findings
1
Approximately half of plaque microbiome OTUs were shared by caries-free and caries-active subjects at similar abundance.
2
Comprehensive profiling of over 50,000 nearly full-length 16S rDNA clones identified 1,372 operational taxonomic units in dental plaque microbiomes.
3
Marked heterogeneity across published studies suggests that novel approaches are needed to define microbial signatures of dental caries onset and progression.
4
Most differences between health- and disease-associated microbiomes involved very low-abundance phylotypes.
5
The study identified 87 phylotypes over-represented in either caries-free or caries-active subjects, with health-associated signatures nearly twice as numerous as caries-associated signatures.
Research Object
Dental plaque microbiome in caries-free and caries-active subjects
Research Subject
Microbial community structure and microbial signatures associated with dental health, dental caries onset, and progression
Publication Details
Publication Date
2013-03-08
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest