Published on 01 January 2020

Dietary inclusion of plant ingredients induces epigenetic changes in the intestine of zebrafish

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Anusha Dhanasiri;Xianquan Chen;Dahle, Dalia;Prabhugouda Siriyappagouder;Fæste, Christiane K.;Fernandes, Jorge M. O.

Description

Epigenetic modifications, such as DNA methylation, can be regulated by nutrition and dietary factors. There has been a large increase in the use of sustainable plant-based protein sources in fish feed due to limitations of fishmeal resources, which are needed to sustain a rapidly growing aquaculture industry. With this major transition from marine ingredients to plant-based diets, fish are abruptly introduced to changes in dietary composition and exposed to a variety of phytochemicals, some of which known to cause epigenetic changes in mammals. However, the effect of plant ingredients on the epigenome of fish is barely understood. In the present study, the nutriepigenomic effects of the addition of pea, soy, and wheat gluten protein concentrate to aquafeeds were investigated using zebrafish as a model. A genome-wide analysis of DNA methylation patterns was performed by reduced representation bisulphite sequencing to examine global epigenetic alterations in the mid intestine after a 42-day feeding trial. We found that inclusion of 30% of wheat gluten, pea and soy protein concentrate in the diet induced epigenetic changes in the mid intestine of zebrafish. A large number of genes and intergenic regions were differentially methylated with plant-based diets. The genes concerned were related to immunity, NF‐κB system, ubiquitin-proteasome pathway, MAPK pathway, and the antioxidant defence system. Epigenetic regulation of several biological processes, including neurogenesis, cell adhesion, response to stress and immunity was also observed. Ultimately, the observed epigenetic changes may enable zebrafish to rapidly regulate inflammation and maintain intestinal homoeostasis when fed plant protein–based diets.

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Metrics

Dataset Index

0.3

FAIR Score

13%

Citations

0

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

Taylor & Francis

Assigned Domain

Subfield

Endocrinology, Diabetes and Metabolism

Field

Medicine

Domain

Health Sciences

Confidence Score

72%

Source

Open Alex

Keywords

GeneticsFOS: Biological sciencesMolecular Biology39999 Chemical Sciences not elsewhere classifiedFOS: Chemical sciencesEcology69999 Biological Sciences not elsewhere classified111714 Mental HealthFOS: Health sciencesPlant Biology

Normalization Factors

FT

15.38

CTw

1.00

MTw

1.00