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Updated: May 16, 2025

Heuristic Mining of Hierarchical Genotypes and Accessory Genome Loci in Bacterial Populations
Published on: December 7, 2021
Intra-host genomic variation of serologically nontypeable Haemophilus influenzae isolates from otitis media
Randall J Olsen1,2, S Wesley Long1,2, Yuvanesh Vedaraju1
1Department of Pathology and Genomic Medicine, Laboratory for Molecular and Translational Human Infectious Diseases Research, Center for Infectious Diseases, Houston Methodist Research Institute, and Houston Methodist Hospital, Houston, Texas, USA.
Abstract:
Serologically nontypeable Haemophilus influenzae is a human pathogen that causes infections ranging in severity from mild otitis media and sinusitis to life-threatening pneumonia, bacteremia, and meningitis. Although intra-host genomic variation in infected humans has been studied, many important questions remain unanswered. To address this knowledge deficit, we sequenced the genomes of 500 isolates recovered from ear drainage fluid collected from 11 Icelandic children with otorrhea. We discovered substantial genomic diversity among the H. influenzae strains infecting each patient. In total, we identified 88 genes that acquired nonsynonymous (amino acid-changing) or nonsense (protein-truncating) single-nucleotide polymorphisms, insertions, or deletions in at least one isolate. Of these, 13 genes were recurrently polymorphic. The polymorphic genes encoded proteins with varied inferred functions, including carbohydrate metabolism, cell wall biosynthesis, environmental stress response, glycolipid metabolism, iron metabolism, recombination, small molecule transport, and transcription and translation. No amino acid substitutions or protein truncations were identified in proven H. influenzae virulence factors or major transcription regulators. However, many of the polymorphic genes likely contribute to fitness, virulence, or host-pathogen molecular interactions. Our study of intra-host variation in otitis media provides a framework for understanding the genomic adaptability of H. influenzae during human infections.IMPORTANCESerologically nontypeable H. influenzae is a human pathogen responsible for a range of diseases, including mild otitis media (middle ear infection) and sinusitis, and severe pneumonia, bacteremia, and meningitis. While research has begun advancing our understanding of the population genomic structure of H. influenza strains infecting humans, little is known about intra-host genomic variation. To address this knowledge gap, we sequenced the genomes of 500 H. influenzae isolates recovered from ear drainage fluid of Icelandic children diagnosed with otitis media. Our findings revealed that intra-host genomic variation involves many different genes encoding proteins with diverse functions. The data provide novel information bearing on the complexity of intra-host diversity and improve our understanding of H. influenzae strain fitness and molecular pathogenesis. This information could generate new hypotheses bearing on host-pathogen interactions and identify new therapeutic and vaccine targets.
Insights
Genomic sequencing of 500 Haemophilus influenzae isolates from children with otitis media revealed significant intra-host diversity. This study enhances understanding of H. influenzae adaptability and pathogenesis during human infections.
Area of Science:
- Microbiology
- Genomics
- Pathogenesis
Background:
- Serologically nontypeable *Haemophilus influenzae* (*H. influenzae*) causes mild to severe human infections.
- Intra-host genomic variation in *H. influenzae* during human infections is not well understood.
- Otitis media is a common infection caused by *H. influenzae*.
Purpose of the Study:
- To investigate the intra-host genomic diversity of *H. influenzae* during otitis media.
- To identify genes undergoing variation within individual patients.
- To understand the genomic adaptability of *H. influenzae* in the human host.
Main Methods:
- Whole-genome sequencing of 500 *H. influenzae* isolates.
- Isolates were recovered from ear drainage fluid of 11 Icelandic children with otorrhea.
- Analysis focused on single-nucleotide polymorphisms, insertions, and deletions in coding regions.
Main Results:
- Substantial genomic diversity was observed among *H. influenzae* strains within individual patients.
- 88 genes acquired nonsynonymous or nonsense mutations.
- 13 genes showed recurrent polymorphism, involved in diverse functions like metabolism and stress response.
- No mutations were found in known *H. influenzae* virulence factors or major transcription regulators.
Conclusions:
- Intra-host genomic variation in *H. influenzae* involves numerous genes with diverse functions.
- Polymorphic genes likely contribute to bacterial fitness, virulence, and host-pathogen interactions.
- This study provides a framework for understanding *H. influenzae* adaptability and can inform new therapeutic and vaccine development.
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