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The supplementation of a prebiotic improves the microbial community in the gut and the skin of Atlantic salmon (Salmo salar)

Aquaculture growth is hindered by an increasing number of challenges, primarily infectious diseases and inappropriate or unsustainable fish nutrition. Hence it is critical to develop novel prevention strategies to minimise infectious diseases and pharmaceutical interventions. Nutritional challenges...

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Detalles Bibliográficos
Autores principales: Baumgärtner, Simon, James, Jack, Ellison, Amy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier, B.V 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9352597/
https://www.ncbi.nlm.nih.gov/pubmed/35957625
http://dx.doi.org/10.1016/j.aqrep.2022.101204
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author Baumgärtner, Simon
James, Jack
Ellison, Amy
author_facet Baumgärtner, Simon
James, Jack
Ellison, Amy
author_sort Baumgärtner, Simon
collection PubMed
description Aquaculture growth is hindered by an increasing number of challenges, primarily infectious diseases and inappropriate or unsustainable fish nutrition. Hence it is critical to develop novel prevention strategies to minimise infectious diseases and pharmaceutical interventions. Nutritional challenges and the health of the fish could be improved by managing their microbial communities. Microbiomes can play a crucial role in fish physiology, particularly in digestion, by metabolizing largely indigestible feed components for the host or synthesis essential micronutrients. Beyond their nutritional role, microbiomes are considered the first line of defence against pathogens. In this study, a novel prebiotic mix (Selectovit), composed of 1,3/1,6-beta glucans, mannan-oligosaccharides, nucleic acids, nucleotides, medium chain fatty acids and single chain fatty acids, was tested at different inclusion levels (0.0; 0.5; 1.0; 2.0 g/kg) in the diet of Atlantic salmon (Salmo salar). Using experimental feed trials and 16 S rRNA microbiome profiling, the impact of the prebiotic blend on fish growth and microbial community within both the gastrointestinal tract and the skin was assessed. Overall, the supplement showed no significant impact on growth. However, we clearly demonstrate that the prebiotic can significantly manipulate the microbial community of the distal intestine and the skin. Several potential beneficial bacteria such as Bacillus and Mycoplasma spp. were significantly more abundant in the prebiotic-fed groups compared to the control. In contrast, putative pathogenic bacteria were less abundant in the salmon fed the prebiotic blend. Interestingly, the supplement induced more changes in the skin than in the gut. There is growing evidence in fish for highly complex interactions between the microbial communities of the digestive system and external mucosa, and with the host immune system. Further research in this field could lead to the creation of novel bacterial biomarkers and new non-invasive strategies for fish digestive health monitoring.
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spelling pubmed-93525972022-08-09 The supplementation of a prebiotic improves the microbial community in the gut and the skin of Atlantic salmon (Salmo salar) Baumgärtner, Simon James, Jack Ellison, Amy Aquac Rep Article Aquaculture growth is hindered by an increasing number of challenges, primarily infectious diseases and inappropriate or unsustainable fish nutrition. Hence it is critical to develop novel prevention strategies to minimise infectious diseases and pharmaceutical interventions. Nutritional challenges and the health of the fish could be improved by managing their microbial communities. Microbiomes can play a crucial role in fish physiology, particularly in digestion, by metabolizing largely indigestible feed components for the host or synthesis essential micronutrients. Beyond their nutritional role, microbiomes are considered the first line of defence against pathogens. In this study, a novel prebiotic mix (Selectovit), composed of 1,3/1,6-beta glucans, mannan-oligosaccharides, nucleic acids, nucleotides, medium chain fatty acids and single chain fatty acids, was tested at different inclusion levels (0.0; 0.5; 1.0; 2.0 g/kg) in the diet of Atlantic salmon (Salmo salar). Using experimental feed trials and 16 S rRNA microbiome profiling, the impact of the prebiotic blend on fish growth and microbial community within both the gastrointestinal tract and the skin was assessed. Overall, the supplement showed no significant impact on growth. However, we clearly demonstrate that the prebiotic can significantly manipulate the microbial community of the distal intestine and the skin. Several potential beneficial bacteria such as Bacillus and Mycoplasma spp. were significantly more abundant in the prebiotic-fed groups compared to the control. In contrast, putative pathogenic bacteria were less abundant in the salmon fed the prebiotic blend. Interestingly, the supplement induced more changes in the skin than in the gut. There is growing evidence in fish for highly complex interactions between the microbial communities of the digestive system and external mucosa, and with the host immune system. Further research in this field could lead to the creation of novel bacterial biomarkers and new non-invasive strategies for fish digestive health monitoring. Elsevier, B.V 2022-08 /pmc/articles/PMC9352597/ /pubmed/35957625 http://dx.doi.org/10.1016/j.aqrep.2022.101204 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Baumgärtner, Simon
James, Jack
Ellison, Amy
The supplementation of a prebiotic improves the microbial community in the gut and the skin of Atlantic salmon (Salmo salar)
title The supplementation of a prebiotic improves the microbial community in the gut and the skin of Atlantic salmon (Salmo salar)
title_full The supplementation of a prebiotic improves the microbial community in the gut and the skin of Atlantic salmon (Salmo salar)
title_fullStr The supplementation of a prebiotic improves the microbial community in the gut and the skin of Atlantic salmon (Salmo salar)
title_full_unstemmed The supplementation of a prebiotic improves the microbial community in the gut and the skin of Atlantic salmon (Salmo salar)
title_short The supplementation of a prebiotic improves the microbial community in the gut and the skin of Atlantic salmon (Salmo salar)
title_sort supplementation of a prebiotic improves the microbial community in the gut and the skin of atlantic salmon (salmo salar)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9352597/
https://www.ncbi.nlm.nih.gov/pubmed/35957625
http://dx.doi.org/10.1016/j.aqrep.2022.101204
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