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Fish Probiotics: Cell Surface Properties of Fish Intestinal Lactobacilli and Escherichia coli

Susanna MirzabekyanDivision of Food Safety and Biotechnology, Armenian National Agrarian University, Yerevan 0009, ArmeniaNatalya HarutyunyanDivision of Food Safety and Biotechnology, Armenian National Agrarian University, Yerevan 0009, ArmeniaAnahit ManvelyanDivision of Food Safety and Biotechnology, Armenian National Agrarian University, Yerevan 0009, ArmeniaLilit MalkhasyanDivision of Food Safety and Biotechnology, Armenian National Agrarian University, Yerevan 0009, ArmeniaMarine BalayanDivision of Food Safety and Biotechnology, Armenian National Agrarian University, Yerevan 0009, ArmeniaShakhlo MiralimovaInstitute of Microbiology, Academy of Sciences of the Republic of Uzbekistan, Tashkent 100125, UzbekistanMichael L. ChikindasCenter for Agrobiotechnology, Don State Technical University, 344002 Rostov-on-Don, RussiaV. A. ChistyakovCenter for Agrobiotechnology, Don State Technical University, 344002 Rostov-on-Don, RussiaAstghik PepoyanDivision of Food Safety and Biotechnology, Armenian National Agrarian University, Yerevan 0009, Armenia
Microorganismsjournal2023en
ABI

Аннотация

The properties of intestinal bacteria/probiotics, such as cell surface hydrophobicity (CSH), auto-aggregation, and biofilm formation ability, play an important role in shaping the relationship between the bacteria and the host. The current study aimed to investigate the cell surface properties of fish intestinal bacteria and probiotics. Microbial adhesion to hydrocarbons was tested according to Kos and coauthors. The aggregation abilities of the investigated strains were studied as described by Collado and coauthors. The ability of bacterial isolates to form a biofilm was determined by performing a qualitative analysis using crystal violet staining based on the attachment of bacteria to polystyrene. These studies prove that bacterial cell surface hydrophobicity (CSH) is associated with the growth medium, and the effect of the growth medium on CSH is species-specific and likely also strain-specific. Isolates of intestinal lactobacilli from fish (Salmo ischchan) differed from isolates of non-fish/shrimp origin in the relationship between auto-aggregation and biofilm formation. Average CSH levels for fish lactobacilli and E. coli might were lower compared to those of non-fish origin, which may affect the efficiency of non-fish probiotics use in fisheries due to the peculiarities of the hosts’ aquatic lifestyles.

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