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March 25, 2026Microorganisms3 citationsOpen Access

Strain Diversity in the Human Microbiome: Personal Variation, Pathobionts, Therapeutics, and Methodological Challenges

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HPHyunjoon ParkHallym UniversityJKJung Soo KimHallym UniversityDKDong Joon KimHallym University

Key Points

  • This research aims to explore the significance of strain diversity within the human microbiome and its implications for health.
  • Analyzing strain-resolved evidence from recent microbiome studies
  • Focusing on personalized strain repertoires and their persistence
  • Evaluating strain-specific traits affecting host pathology
  • Implementing high-resolution profiling and advanced genomics techniques
  • Identified significant individual variations in strain profiles among individuals
  • Demonstrated how strain characteristics influence immune responses and disease risk
  • Revealed potential for personalized microbiome therapeutics based on strain diversity

Abstract

Advances in sequencing technologies have transformed human microbiome research, yet most analyses still rely on species-level profiles. However, strains rather than species represent the true ecological and functional units of the microbiome. Individual strains can vary substantially in gene content, metabolic capacity, virulence factors, antimicrobial resistance, and host-interaction properties. These differences critically influence immune responses, epithelial barrier integrity, disease susceptibility, and therapeutic outcomes. Here, we synthesize recent human microbiome studies that provide robust strain-resolved evidence, focusing on three major themes: (i) the emergence and long-term persistence of personalized strain repertoires, (ii) strain-specific pathobiont traits that drive host pathology, and (iii) the implications of strain-level ecology for the development of next-generation microbiome therapeutics. We also highlight key methodological innovations including high-resolution amplicon profiling, advanced metagenomic and single-cell genomics, and culture-based functional approaches that collectively enable strain-level resolution and are reshaping the field.

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Cite This Study

Park et al. (2026) studied this question.

synapsesocial.com/papers/69c37adcb34aaaeb1a67cd3ahttps://doi.org/10.3390/microorganisms14030720
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