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Steen Dobloug, M.

Publications and source records attributed to Steen Dobloug, M..

2 recordsLinked to original sources

Long-Term Colonization Dynamics of Probiotic Aliivibrio spp. in Atlantic Salmon (Salmo salar) Following Bath Administration

Ulcerative conditions present a major challenge in Norwegian salmon farming. Probiotic Aliivibrio species have previously been demonstrated to provide health benefits in both Atlantic salmon and lumpfish, although the underlying mechanisms and the host-bacteria interactions remain unclear. This study aimed to investigate whether these bacteria could colonize Atlantic salmon following bath administration, determine the tissue tropism, and assess the duration of colonization. We examined the host microbiota using culture-based methods, qPCR and immunohistochemistry techniques specifically designed to target the applied Aliivibrio strains. Our findings reveal that the probiotic bacteria can successfully colonize Atlantic salmon and persist for at least nine months post-administration. We identified the administered strains in the skin and underlying tissue with all three methods. The probiotics were also identified in the distal intestine and the visceral organs. Additionally, we isolated the probiotic Aliivibrio species from mixed cultures in ulcerated areas. While viable bacteria were recoverable from recently euthanized fish, tissue decay promoted bacterial recovery of the administered species across all experiments. Given prior evidence on ulcer reduction associated with these probiotics, competitive exclusion appears to be a plausible mechanism of action, though further investigation is warranted.

microbiology↗

Antagonistic mechanisms of probiotic Aliivibrio sp. strain Vl2 against Moritella viscosa: Evidence from co-cultivation and transcriptomic analysis

Winter ulcers are a significant challenge to the Norwegian aquaculture industry and the primary causative agent is Moritella viscosa. Control measures are limited due to the lack of effective vaccines and limited use of antibiotics, reflecting the global effort to combat antibiotic resistance. It was recently demonstrated that probiotic Aliivibrio spp. colonize the skin and ulcers of Atlantic salmon and their association with a reduced prevalence of winter ulcers. These observations suggest that M. viscosa and Aliivibrio spp. may interact within ulcers in vivo. In this study, we have investigated how the probiotic Aliivibrio sp. strain Vl2 modulates M. viscosa in vitro, using both co-cultures and CHSE cell cultures. We found that the probiotic strain exhibits antagonistic effects against M. viscosa, reducing its growth and pathogenicity toward salmonid cells. Transcriptome analysis of Aliivibrio Vl2 revealed potential mechanisms impeding the growth of the competing pathogen. Together, our findings demonstrate how the probiotic bacterium can inhibit M. viscosa in vitro and suggests potential mechanisms that may explain the reduced prevalence of winter ulcers observed in the field.

microbiology↗