A PCR-Based Method for Monitoring Legionella pneumophila in Water Samples Detects Viable but Noncultivable Legionellae That Can Recover Their Cultivability

Author:

Dusserre Eric1234,Ginevra Christophe1234,Hallier-Soulier Sylvie5,Vandenesch François1234,Festoc Gabriel5,Etienne Jerome1234,Jarraud Sophie1234,Molmeret Maëlle1234

Affiliation:

1. Université de Lyon

2. Université Lyon 1, Faculté Laennec, F-69008 Lyon

3. INSERM U851, Faculté de Médecine Laennec, Laboratoire de Bactériologie, 7 rue Guillaume Paradin, F-69372 Lyon cedex 08

4. Hospices Civils de Lyon, Centre de Biologie et Pathologie Est, Laboratoire de Bactériologie, Centre National de Référence des Légionelles, F-69677 Bron

5. Société GeneSystems, 1 rue du Courtil, Centre d'Affaires CICEA, Bâtiment 1, F-35170 Bruz, France

Abstract

ABSTRACT Legionella pneumophila is the causative agent of Legionnaires' disease. This bacterium is ubiquitous in aqueous environments and uses amoebae as an intracellular replicative niche. Real-time PCR has been developed for rapid detection of Legionella DNA in water samples. In addition to culturable bacteria, this method may also detect dead and viable but noncultivable (VBNC) legionellae. In order to understand the significance of positive PCR results in this setting, we prepared water samples containing known concentrations of L. pneumophila and analyzed them comparatively by means of conventional culture, real-time PCR, viability labeling, and immunodetection (solid-phase cytometry). We also examined the influence of chlorination on the results of the four methods. The different techniques yielded similar results for nonchlorinated water samples but not for chlorinated samples. After treatment for 24 h with 0.5 and 1 ppm chlorine, all cultures were negative, PCR and immunodetection showed about 10 6 genome units and bacteria/ml, and total-viable-count (TVC) labeling detected 10 5 and 10 2 metabolically active bacteria/ml, respectively. Thus, PCR also detected bacteria that were VBNC. The recoverability of VBNC forms was confirmed by 5 days of coculture with Acanthamoeba polyphaga . Therefore, some TVC-positive bacteria were potentially infective. These data show that L. pneumophila PCR detects not only culturable bacteria but also VBNC forms and dead bacterial DNA at low chlorine concentrations.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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