Bioaerosol Sampling Devices and Pretreatment for Bacterial Characterization: Theoretical Differences and a Field Experience in a Wastewater Treatment Plant

Author:

Gaetano Anastasia Serena12ORCID,Semeraro Sabrina12ORCID,Greco Samuele3ORCID,Greco Enrico12ORCID,Cain Andrea4,Perrone Maria Grazia5,Pallavicini Alberto3ORCID,Licen Sabina1ORCID,Fornasaro Stefano1ORCID,Barbieri Pierluigi12ORCID

Affiliation:

1. Department of Chemical and Pharmaceutical Sciences, University of Trieste, Via L. Giorgieri, 1, 34127 Trieste, Italy

2. INSTM National Interuniversity Consortium of Materials Science and Technology, Via G. Giusti, 9, 50121 Firenze, Italy

3. Department of Life Sciences, University of Trieste, Via L. Giorgieri, 5, 34127 Trieste, Italy

4. ACEGAS APS AMGA S.p.a., Via degli Alti Forni, 11, 34121 Trieste, Italy

5. TCR Tecora, Via delle Primule, 16, 20815 Cogliate, MB, Italy

Abstract

Studies on bioaerosol bacterial biodiversity have relevance in both ecological and health contexts, and molecular methods, such as 16S rRNA gene-based barcoded sequencing, provide efficient tools for the analysis of airborne bacterial communities. Standardized methods for sampling and analysis of bioaerosol DNA are lacking, thus hampering the comparison of results from studies implementing different devices and procedures. Three samplers that use gelatin filtration, swirling aerosol collection, and condensation growth tubes for collecting bioaerosol at an aeration tank of a wastewater treatment plant in Trieste (Italy) were used to determine the bacterial biodiversity. Wastewater samples were collected directly from the untreated sewage to obtain a true representation of the microbiological community present in the plant. Different samplers and collection media provide an indication of the different grades of biodiversity, with condensation growth tubes and DNA/RNA shieldTM capturing the richer bacterial genera. Overall, in terms of relative abundance, the air samples have a lower number of bacterial genera (64 OTUs) than the wastewater ones (75 OTUs). Using the metabarcoding approach to aerosol samples, we provide the first preliminary step toward the understanding of a significant diversity between different air sampling systems, enabling the scientific community to orient research towards the most informative sampling strategy.

Funder

European Union Next-Generation EU

Publisher

MDPI AG

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