Virulence Traits of Environmental and Clinical Legionella pneumophila Multilocus Variable-Number Tandem-Repeat

Yehonatan Sharaby1, Sarah Rodríguez-Martínez1, Marina Pecellin2

  • 1Department of Evolutionary and Environmental Biology, Faculty of Natural Sciences, University of Haifa, Haifa, Israel.

Insights

Different Legionella pneumophila genotypes show varying virulence. Genotype 4 (Gt4) strains are highly cytotoxic to amoebae and macrophages, posing a significant public health risk in drinking water systems.

Area of Science:

  • Microbiology
  • Environmental Science
  • Public Health

Background:

  • Legionella pneumophila causes severe pneumonia through waterborne infections.
  • MLVA-8 genotypes of L. pneumophila exhibit distinct temperature-dependent growth patterns in water distribution systems.

Purpose of the Study:

  • To compare the pathogenicity potentials of different MLVA-8 genotypes of environmental and clinical Legionella pneumophila strains.
  • To investigate virulence traits including hemolytic activity and cytotoxicity toward amoebae and macrophages.

Main Methods:

  • Comparison of hemolytic activity and cytotoxicity (toward amoebae and macrophages) of environmental and clinical L. pneumophila strains.
  • Analysis of virulence differences among specific environmental MLVA-8 genotypes (Gt4, Gt6, Gt15).

Main Results:

  • Clinical strains were significantly more hemolytic than environmental strains.
  • Genotype 4 (Gt4) strains demonstrated higher cytotoxicity toward amoebae and macrophages and a broader temperature range for amoebal lysis.
  • Gt15 strains showed higher hemolytic activity, while Gt4 and Gt6 strains were more infective toward Acanthamoeba castellanii.

Conclusions:

  • Virulence traits vary significantly among L. pneumophila genotypes, with Gt4 exhibiting notable pathogenicity.
  • Understanding genotype-specific virulence is crucial for assessing public health risks associated with Legionella in drinking water.
  • Gt4 strains represent a significant factor in quantitative microbial risk assessment for Legionella in water systems.

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