Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Comparative genome characterization of the periodontal pathogen Tannerella forsythia

View through CrossRef
Abstract Background Tannerella forsythia is a bacterial pathogen implicated in periodontal disease. Numerous virulence-associated T. forsythia genes have been described, however, it is necessary to expand the knowledge on T. forsythia’s genome structure and genetic repertoire to further elucidate its role within pathogenesis. Tannerella sp. BU063, a putative periodontal health-associated sister taxon and closest known relative to T. forsythia is available for comparative analyses. In the past, strain confusion involving the T. forsythia reference type strain ATCC 43037 led to discrepancies between results obtained from in silico analyses and wet-lab experimentation. Results We generated a substantially improved genome assembly of T. forsythia ATCC 43037 covering 99% of the genome in three sequences. Using annotated genomes of ten Tannerella strains we established a soft core genome encompassing 2108 genes, based on orthologs present in > = 80% of the strains analysed. We used a set of known and hypothetical virulence factors for comparisons in pathogenic strains and the putative periodontal health-associated isolate Tannerella sp. BU063 to identify candidate genes promoting T. forsythia’s pathogenesis. Searching for pathogenicity islands we detected 38 candidate regions in the T. forsythia genome. Only four of these regions corresponded to previously described pathogenicity islands. While the general protein O-glycosylation gene cluster of T. forsythia ATCC 43037 has been described previously, genes required for the initiation of glycan synthesis are yet to be discovered. We found six putative glycosylation loci which were only partially conserved in other bacteria. Lastly, we performed a comparative analysis of translational bias in T. forsythia and Tannerella sp. BU063 and detected highly biased genes. Conclusions We provide resources and important information on the genomes of Tannerella strains. Comparative analyses enabled us to assess the suitability of T. forsythia virulence factors as therapeutic targets and to suggest novel putative virulence factors. Further, we report on gene loci that should be addressed in the context of elucidating T. forsythia’s protein O-glycosylation pathway. In summary, our work paves the way for further molecular dissection of T. forsythia biology in general and virulence of this species in particular.
Title: Comparative genome characterization of the periodontal pathogen Tannerella forsythia
Description:
Abstract Background Tannerella forsythia is a bacterial pathogen implicated in periodontal disease.
Numerous virulence-associated T.
forsythia genes have been described, however, it is necessary to expand the knowledge on T.
forsythia’s genome structure and genetic repertoire to further elucidate its role within pathogenesis.
Tannerella sp.
BU063, a putative periodontal health-associated sister taxon and closest known relative to T.
forsythia is available for comparative analyses.
In the past, strain confusion involving the T.
forsythia reference type strain ATCC 43037 led to discrepancies between results obtained from in silico analyses and wet-lab experimentation.
Results We generated a substantially improved genome assembly of T.
forsythia ATCC 43037 covering 99% of the genome in three sequences.
Using annotated genomes of ten Tannerella strains we established a soft core genome encompassing 2108 genes, based on orthologs present in > = 80% of the strains analysed.
We used a set of known and hypothetical virulence factors for comparisons in pathogenic strains and the putative periodontal health-associated isolate Tannerella sp.
BU063 to identify candidate genes promoting T.
forsythia’s pathogenesis.
Searching for pathogenicity islands we detected 38 candidate regions in the T.
forsythia genome.
Only four of these regions corresponded to previously described pathogenicity islands.
While the general protein O-glycosylation gene cluster of T.
forsythia ATCC 43037 has been described previously, genes required for the initiation of glycan synthesis are yet to be discovered.
We found six putative glycosylation loci which were only partially conserved in other bacteria.
Lastly, we performed a comparative analysis of translational bias in T.
forsythia and Tannerella sp.
BU063 and detected highly biased genes.
Conclusions We provide resources and important information on the genomes of Tannerella strains.
Comparative analyses enabled us to assess the suitability of T.
forsythia virulence factors as therapeutic targets and to suggest novel putative virulence factors.
Further, we report on gene loci that should be addressed in the context of elucidating T.
forsythia’s protein O-glycosylation pathway.
In summary, our work paves the way for further molecular dissection of T.
forsythia biology in general and virulence of this species in particular.

Related Results

Frequency of bspA and mutS Genes in Tannerella forsythia Isolated from Patients with Aggressive Periodontitis: A Cross-sectional Study
Frequency of bspA and mutS Genes in Tannerella forsythia Isolated from Patients with Aggressive Periodontitis: A Cross-sectional Study
Introduction: Tannerella forsythia (T. forsythia) is a predominant periodontal pathogen contributing to the progression of periodontitis. Among its virulence factors, the bspA gene...
Primerjalna književnost na prelomu tisočletja
Primerjalna književnost na prelomu tisočletja
In a comprehensive and at times critical manner, this volume seeks to shed light on the development of events in Western (i.e., European and North American) comparative literature ...
Penyakit Periodontal pada Masa Kehamilan dan Perawatannya
Penyakit Periodontal pada Masa Kehamilan dan Perawatannya
Abstract: Hormonal changes occur during pregnancy and affect the response of periodontal tissue to local factors, therefore, the risk of periodontal disease increases. Dentists hav...
Detection of Tannerella forsythia from saliva samples in different ethnic majority groups in Sarawak
Detection of Tannerella forsythia from saliva samples in different ethnic majority groups in Sarawak
Nowadays racial and ethnic differences in health care has become a growing concern. It is one of the critical determinant in influencing the genotype of the host in which may resul...
Periodontal pathogens and obesity in the context of cardiovascular risks across age groups
Periodontal pathogens and obesity in the context of cardiovascular risks across age groups
BackgroundCardiovascular diseases (CVDs) are the leading cause of mortality and morbidity among noncommunicable diseases. Over the past decade, there has been a notable increase in...
Peptidoglycan synthesis in Tannerella forsythia: Scavenging is the modus operandi
Peptidoglycan synthesis in Tannerella forsythia: Scavenging is the modus operandi
SummaryTannerella forsythia is a Gram‐negative oral pathogen strongly associated with periodontitis. This bacterium has an absolute requirement for exogenous N‐acetylmuramic acid (...

Back to Top