Physicochemical and Microbiological Water Quality Assessment of a Northwestern Algerian Dam: Detection of Ichtyopathogenic Bacteria

Author:

Boumerdassi Hanane12,Djouadi Lydia Neïla2,Hambli Abderrahmane3,Fardeau Marie-Laure4,Ouzari Hadda-Imen5,Nateche Farida2ORCID

Affiliation:

1. 1 Laboratory of Dynamic and Biodiversity, Faculty of Biological Sciences, University of Science and Technology – Houari Boumediene , Algiers , Algeria

2. 2 Laboratory of Cellular and Molecular Biology, Faculty of Biological Sciences, University of Science and Technology – Houari Boumediene , Algiers , Algeria

3. 3 Central laboratory of Water Quality Control, Boumerdes Unit , Algerian Waters , Algeria

4. 4 Aix-Marseille University, University of South Toulon-Var, CNRS/INSU, IRD, MIO, UM 110 , Marseille , France

5. 5 Laboratory of Microorganisms and Active Biomolecules (LR03ES03), Faculty of Sciences of Tunis, University of Tunis El Manar , Tunis , Tunisia

Abstract

AbstractFreshwater fish are often exposed to threats from anthropogenic or natural origins, such as pathogenic or opportunistic microorganisms responsible for a broad range of severe infections.In this study, we aimed to assess this microbiological threat to fish in an Algerian northwestern dam Sekkak (Tlemcen) by evaluating the diversity of ichtyopathogenic bacteria. In order to determine the water quality, physicochemical analyses of the dam water were carried out in situ. Ichtyopathogenic bacteria were isolated on selective media and identified by API galleries and molecular techniques (PCR and sequencing of the 16S rRNA gene). Besides, the antibiograms were constructed for all the isolates.The physicochemical and bacteriological analyses allowed us to classify the dam water as moderately polluted to polluted. Furthermore, an important diversity of ichtyopathogenic bacterial species was observed asAeromonas hydrophila, Providencia rettgeri, andPseudomonas aeruginosawere retrieved. The antibiogram test revealed notable resistance. The antibiotic family for which most resistances were found was the β-lactam family, followed by aminoglycosides and macrolides. These results indicate that aquatic environments can shelter multidrug-resistant pathogenic bacteria representing a threat to the endemic fauna. Therefore, it is important to closely monitor these waters in order to improve the fish’s living environment and ensure healthier production.

Publisher

Polish Society of Microbiologists

Subject

Microbiology (medical),Applied Microbiology and Biotechnology,General Medicine,Microbiology

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