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Colonization, Infection, and the Accessory Genome of Klebsiella pneumoniae
Rebekah M Martin1, Michael A Bachman1
1Department of Pathology, Michigan Medicine, University of Michigan, Ann Arbor, MI, United States.
Abstract:
Klebsiella pneumoniae is a Gram-negative pathogen that has a large accessory genome of plasmids and chromosomal gene loci. This accessory genome divides K. pneumoniae strains into opportunistic, hypervirulent, and multidrug-resistant groups and separates K. pneumoniae from two closely related species, Klebsiella variicola and Klebsiella quasipneumoniae. Some strains of K. pneumoniae act as opportunistic pathogens, infecting critically ill and immunocompromised patients. These K. pneumoniae are a common cause of health-care associated infections including pneumonia, urinary tract infections (UTIs), and bloodstream infections. K. variicola and K. quasipneumoniae are often clinically indistinguishable from opportunistic K. pneumoniae. Other strains of K. pneumoniae are hypervirulent, infecting healthy people in community settings and causing severe infections including pyogenic liver abscess, endophthalmitis, and meningitis. A third group of K. pneumoniae encode carbapenemases, making them highly antibiotic-resistant. These strains act as opportunists but are exceedingly difficult to treat. All of these groups of K. pneumoniae and related species can colonize the gastrointestinal tract, and the accessory genome may determine if a colonizing strain remains asymptomatic or progresses to cause disease. This review will explore the associations between colonization and infection with opportunistic, antibiotic-resistant, and hypervirulent K. pneumoniae strains and the role of the accessory genome in distinguishing these groups and related species. As K. pneumoniae infections become progressively more difficult to treat in the face of antibiotic resistance and hypervirulent strains, an increased understanding of the epidemiology and pathogenesis of these bacteria is vital.
Insights
Klebsiella pneumoniae strains are categorized by their accessory genome into opportunistic, hypervirulent, or multidrug-resistant groups. Understanding these distinctions is vital for combating increasingly difficult-to-treat infections.
Area of Science:
- Microbiology and Infectious Diseases
- Genomics and Pathogenesis
Background:
- Klebsiella pneumoniae is a Gram-negative pathogen with a significant accessory genome.
- This accessory genome differentiates K. pneumoniae strains and related species (K. variicola, K. quasipneumoniae).
- Strains include opportunistic, hypervirulent, and multidrug-resistant types, causing various infections.
Purpose of the Study:
- To review the association between colonization and infection in K. pneumoniae.
- To explore the role of the accessory genome in distinguishing K. pneumoniae groups and related species.
- To highlight the impact of antibiotic resistance and hypervirulence on treatment.
Main Methods:
- Literature review of studies on Klebsiella pneumoniae epidemiology and pathogenesis.
- Analysis of the accessory genome's role in strain classification and virulence.
- Examination of clinical and microbiological data distinguishing K. pneumoniae from related species.
Main Results:
- The accessory genome dictates K. pneumoniae strain characteristics, including virulence and antibiotic resistance.
- Opportunistic strains cause healthcare-associated infections, while hypervirulent strains infect healthy individuals.
- Multidrug-resistant strains pose significant treatment challenges.
Conclusions:
- The accessory genome is crucial for understanding K. pneumoniae diversity and pathogenicity.
- Distinguishing between opportunistic, hypervirulent, and antibiotic-resistant strains is vital for effective management.
- Increased knowledge of K. pneumoniae epidemiology and pathogenesis is essential for public health.
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