Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

It remains a challenge to obtain the desired phenotypic traits in aquacultural production of Atlantic salmon, and part of the challenge might come from the effect that host-associated microorganisms have on the fish phenotype. To manipulate the microbiota towards the desired host traits, it is critical to understand the factors that shape it. The bacterial gut microbiota composition can vary greatly among fish, even when reared in the same closed system. While such microbiota differences can be linked to diseases, the molecular effect of disease on host-microbiota interactions and the potential involvement of epigenetic factors remain largely unknown. The aim of this study was to investigate the DNA methylation differences associated with a tenacibaculosis outbreak and microbiota displacement in the gut of Atlantic salmon. Using Whole Genome Bisulfite Sequencing (WGBS) of distal gut tissue from 20 salmon, we compared the genome-wide DNA methylation levels between uninfected individuals and sick fish suffering from tenacibaculosis and microbiota displacement. We discovered >19,000 differentially methylated cytosine sites, often located in differentially methylated regions, and aggregated around genes. The 68 genes connected to the most significant regions had functions related to the ulcerous disease such as epor and slc48a1a but also included prkcda and LOC106590732 whose orthologs are linked to microbiota changes in other species. Although the expression level was not analysed, our epigenetic analysis suggests specific genes potentially involved in host-microbiota interactions and more broadly it highlights the value of considering epigenetic factors in efforts to manipulate the microbiota of farmed fish.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.ygeno.2023.110629DOI Listing

Publication Analysis

Top Keywords

atlantic salmon
12
microbiota
8
gut microbiota
8
microbiota composition
8
manipulate microbiota
8
host-microbiota interactions
8
epigenetic factors
8
dna methylation
8
microbiota displacement
8
differentially methylated
8

Similar Publications

Comparative multi-transcriptomic analysis of Atlantic salmon (Salmo salar) under distinct pathogen infections.

Dev Comp Immunol

September 2025

Department of Aquatic Life Medicine, College of Marine Sciences, Gyeongsang National University, Tongyeong, 53064, Republic of Korea. Electronic address:

Atlantic salmon is among the most widely farmed species globally. The large-scale cultivation of salmon inevitably results in the emergence of diverse diseases, highlighting the critical need to investigate host-pathogen interaction. While numerous transcriptomic analyses have been reported for infected Atlantic salmon, there is a notable lack of comprehensive studies directly comparing transcriptomic responses across different pathogens.

View Article and Find Full Text PDF

Atlantic salmon (Salmo salar) aquaculture is a major industry in several countries worldwide and a growing enterprise in others. One of the main challenges the industry faces is infestations with the parasitic copepod Lepeoptheirus salmonis, or salmon lice. Several different chemical and mechanical methods are available for alleviating the problem, but often at cost to salmon welfare and/or the environment.

View Article and Find Full Text PDF

Inbreeding and the associated increase in homozygosity and potential accumulation of deleterious alleles may reduce fitness in a process known as inbreeding depression. Mechanisms to mitigate reproduction between close relatives, ranging from pre-mating mate choice to post-mating gamete selection, have evolved across taxa. In external fertilisers like Atlantic salmon (Salmo salar), where females have limited control over paternity, mechanisms of inbreeding avoidance can be expected to evolve at the gamete level.

View Article and Find Full Text PDF

A new single nucleotide polymorphism (SNP) panel for genetic stock identification in the Teno river Atlantic salmon, Salmo salar L., fishery was developed, with a view to improving on an existing microsatellite panel. Twenty-two genetically differentiated reporting units were proposed based on population genetic analyses of 1212 individuals collected at 37 locations in the river and genotyped for >33,000 genome-wide SNPs.

View Article and Find Full Text PDF

Infectious pancreatic necrosis virus (IPNV) can cause devastating disease in Atlantic salmon (Salmon salar). IPNV has a broad host range and may threaten other aquaculture species. Understanding interspecies transmission of IPNV is crucial for protecting the aquaculture industry.

View Article and Find Full Text PDF