Pneumococcal‐Driven Genetic Competence: A Key Driver of Pathobiont Adaptation and Disease Potential

ABSTRACT High genetic variability in streptococci is driven by natural competence, specifically in Streptococcus pneumoniae and its close commensal species ( Streptococcus pseudopneumoniae , Streptococcus oralis , and Streptococcus mitis ), which drives rapid Streptococcal evolution. The genome of S. pneumoniae and its close commensal species exhibits high interspecies recombination, an open‐pan genome, and a similar evolutionary origin. Mechanisms of natural competence are a highly regulated process driven by numerous molecular players at different stages. Natural competence in Streptococci drives the shift from commensal to pathogenic state. Streptococcus pneumoniae acquires various virulence and antibiotic‐resistant genes (ARGs) via natural competence and also facilitates immune evasion, the emergence of multidrug‐resistant strains, and capsule switching between strains. Most reports indicated that the natural competence in S. pneumoniae is a one‐way street process; however, a few studies have proved that it is a two‐way street process. The purpose of the current review is to elucidate (i) the genome of S. pneumoniae and its close relatives, (ii) the mechanism of HGT, (iii) HGT in S. pneumoniae and related commensal species, (iv) acquisition of drug‐resistance genes and virulence factors, and (v) the implication of HGT in competence‐driven gene transfer in IPD and interaction between host and pathogens.

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Publication Details

Journal
Molecular Oral Microbiology
Published
2026-10-07
DOI
https://doi.org/10.1111/omi.70041
Primary Topic
Pneumonia and Respiratory Infections
Type
article
Field-Weighted Citation Impact
0.00
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article

Pneumococcal‐Driven Genetic Competence: A Key Driver of Pathobiont Adaptation and Disease Potential

Megh Singh Dhakad, Anushri Keshri, Divakar Sharma, Mirza Masroor Ali Beg et al.
Molecular Oral Microbiology
Pneumonia and Respiratory Infections
article

Pneumococcal‐Driven Genetic Competence: A Key Driver of Pathobiont Adaptation and Disease Potential

Megh Singh Dhakad, Anushri Keshri, Divakar Sharma, Mirza Masroor Ali Beg, Arun Kumar, Indu Prakash Singh, Haritima Singh, Priyanshi Sharma
article en

Abstract

ABSTRACT High genetic variability in streptococci is driven by natural competence, specifically in Streptococcus pneumoniae and its close commensal species ( Streptococcus pseudopneumoniae , Streptococcus oralis , and Streptococcus mitis ), which drives rapid Streptococcal evolution. The genome of S. pneumoniae and its close commensal species exhibits high interspecies recombination, an open‐pan genome, and a similar evolutionary origin. Mechanisms of natural competence are a highly regulated process driven by numerous molecular players at different stages. Natural competence in Streptococci drives the shift from commensal to pathogenic state. Streptococcus pneumoniae acquires various virulence and antibiotic‐resistant genes (ARGs) via natural competence and also facilitates immune evasion, the emergence of multidrug‐resistant strains, and capsule switching between strains. Most reports indicated that the natural competence in S. pneumoniae is a one‐way street process; however, a few studies have proved that it is a two‐way street process. The purpose of the current review is to elucidate (i) the genome of S. pneumoniae and its close relatives, (ii) the mechanism of HGT, (iii) HGT in S. pneumoniae and related commensal species, (iv) acquisition of drug‐resistance genes and virulence factors, and (v) the implication of HGT in competence‐driven gene transfer in IPD and interaction between host and pathogens.

Molecular Oral Microbiology
Graphic Era Hill University, Ala-Too International University (KG), Himalayan University (IN), Maulana Azad Medical College (IN), Graphic Era University (IN), Dehradun Institute of Technology University (IN)
Openalex Percentile: Top 12%
Pneumonia and Respiratory Infections
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