Related Experiment Video
Updated: Apr 16, 2026

Oral Biofilm Sampling for Microbiome Analysis in Healthy Children
Published on: December 31, 2017
Comparative genome analysis of Prevotella intermedia strain isolated from infected root canal reveals features
Yunfeng Ruan1,2, Lu Shen3,4, Yan Zou5
1Bio-X Institutes, Key Laboratory for the Genetics of Developmental and Neuropsychiatric Disorders(Ministry of Education, Shanghai Jiao Tong University, 1954 Huashang Road, Shanghai, 200030, China. ryf.alexandria@gmail.com.
Background:
Many species of the genus Prevotella are pathogens that cause oral diseases. Prevotella intermedia is known to cause various oral disorders e.g. periodontal disease, periapical periodontitis and noma as well as colonize in the respiratory tract and be associated with cystic fibrosis and chronic bronchitis. It is of clinical significance to identify the main drive of its various adaptation and pathogenicity. In order to explore the intra-species genetic differences among strains of Prevotella intermedia of different niches, we isolated a strain Prevotella intermedia ZT from the infected root canal of a Chinese patient with periapical periodontitis and gained a draft genome sequence. We annotated the genome and compared it with the genomes of other taxa in the genus Prevotella.
Results:
The raw data set, consisting of approximately 65X-coverage reads, was trimmed and assembled into contigs from which 2165 ORFs were predicted. The comparison of the Prevotella intermedia ZT genome sequence with the published genome sequence of Prevotella intermedia 17 and Prevotella intermedia ATCC25611 revealed that ~14% of the genes were strain-specific. The Preveotella intermedia strains share a set of conserved genes contributing to its adaptation and pathogenic and possess strain-specific genes especially those involved in adhesion and secreting bacteriocin. The Prevotella intermedia ZT shares similar gene content with other taxa of genus Prevotella. The genomes of the genus Prevotella is highly dynamic with relative conserved parts: on average, about half of the genes in one Prevotella genome were not included in another genome of the different Prevotella species. The degree of conservation varied with different pathways: the ability of amino acid biosynthesis varied greatly with species but the pathway of cell wall components biosynthesis were nearly constant. Phylogenetic tree shows that the taxa from different niches are scarcely distributed among clades.
Conclusions:
Prevotella intermedia ZT belongs to a genus marked with highly dynamic genomes. The specific genes of Prevotella intermedia indicate that adhesion, competing with surrounding microbes and horizontal gene transfer are the main drive of the evolution of Prevotella intermedia.
Insights
Prevotella intermedia ZT, a pathogen causing oral and respiratory diseases, has a dynamic genome with strain-specific genes for adhesion and bacteriocin secretion. These genetic variations drive its evolution and adaptation.
Area of Science:
- Microbiology
- Genomics
- Bacterial Pathogenesis
Background:
- Prevotella species are significant oral pathogens linked to various diseases.
- Prevotella intermedia causes oral disorders and is found in the respiratory tract, associated with conditions like cystic fibrosis.
- Understanding genetic diversity in Prevotella intermedia is crucial for explaining its adaptability and pathogenicity.
Purpose of the Study:
- To investigate intra-species genetic differences among Prevotella intermedia strains from diverse ecological niches.
- To analyze the genome of Prevotella intermedia ZT, isolated from a patient with periapical periodontitis.
- To compare the Prevotella intermedia ZT genome with other Prevotella species to understand evolutionary dynamics.
Main Methods:
- Isolation and draft genome sequencing of Prevotella intermedia ZT.
- Genome annotation and comparative genomic analysis with other Prevotella strains and species.
- Phylogenetic analysis to understand the distribution of taxa across different niches.
Main Results:
- The Prevotella intermedia ZT genome yielded 2165 predicted open reading frames (ORFs).
- Approximately 14% of genes were found to be strain-specific, particularly those involved in adhesion and bacteriocin secretion.
- Prevotella genomes exhibit high dynamism, with significant inter-species gene content variation, though some pathways like cell wall biosynthesis are conserved.
Conclusions:
- Prevotella intermedia ZT possesses a dynamic genome characteristic of its genus.
- Strain-specific genes related to adhesion and bacteriocin production are key drivers of Prevotella intermedia evolution.
- Competition with microbes and horizontal gene transfer significantly influence the adaptation and pathogenicity of Prevotella intermedia.
More Related Videos
Related Concept Videos
Genomic DNA in Prokaryotes
Genomic Diversity in Bacteria
Although bacterial genomes are much...
Comparing Mitochondrial, Chloroplast, and Prokaryotic Genomes
Prokaryotic Gene Structure and Organization
Evolution of Microbial Genome
Modern Molecular Taxonomy
Bacterial Phylum Spirochaetes

