Legionella 5S rRNA PCR melting temperature analysis discriminates high-risk species associated with disease severity

Aaron M Pulsipher1, Georges Khattar1, Emily Harris2

  • 1Department of Critical Care, Mayo Clinic, Phoenix, Arizona, USA.

Insights

Real-time PCR targeting the Legionella 5S rRNA gene offers superior detection of Legionella pneumonia. Melting temperature analysis differentiates species, identifying L. pneumophila/L. longbeachae infections linked to ICU admission.

Area of Science:

  • Medical Microbiology
  • Infectious Diseases
  • Molecular Diagnostics

Background:

  • Legionella species are significant causes of community-acquired pneumonia.
  • Current diagnostic methods like urine antigen testing and culture have limitations in detection and species identification.

Purpose of the Study:

  • To evaluate the diagnostic performance of a fluorescence resonance energy transfer (FRET)-based real-time PCR assay targeting the Legionella 5S rRNA gene.
  • To assess the utility of melting temperature (Tm) analysis for species differentiation and its association with clinical outcomes.

Main Methods:

  • A retrospective multicenter cohort study of adults with laboratory-confirmed Legionella infection (2019-2025).
  • Analysis of PCR crossing point (Cp) and Tm data, compared with culture results.
  • Multivariable logistic regression to assess associations between Tm and clinical outcomes.

Main Results:

  • Real-time PCR demonstrated the highest diagnostic yield, increasing detection to 100% when combined with urine antigen and culture.
  • Melting temperature (Tm) analysis at a cutoff of ≥66°C accurately discriminated L. pneumophila/L. longbeachae from other Legionella species (AUC, 1.00).
  • Infections due to L. pneumophila/L. longbeachae were independently associated with ICU admission (aOR, 2.85; P = 0.007).

Conclusions:

  • Real-time PCR targeting the Legionella 5S rRNA gene offers superior detection compared to traditional methods.
  • Melting temperature analysis during PCR testing enables species-level inference, aiding in the identification of higher-risk Legionella species.
  • Nearly one-third of infections were caused by non-pneumophila/non-longbeachae species, underscoring the need for improved diagnostic strategies.

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