Literature DB >> 33126823

Sources of variation of DNA methylation in rainbow trout: combined effects of temperature and genetic background.

Delphine Lallias1, Maria Bernard1,2, Céline Ciobotaru1, Nicolas Dechamp1, Laurent Labbé3, Lionel Goardon3, Jean-Michel Le Calvez3, Marjorie Bideau3, Alexandre Fricot1, Audrey Prézelin4, Mathieu Charles1,2, Marco Moroldo1, Xavier Cousin1, Olivier Bouchez5, Alain Roulet5, Edwige Quillet1, Mathilde Dupont-Nivet1.   

Abstract

Phenotypic plasticity is a key component of the ability of organisms to respond to changing environmental conditions. In this study, we aimed to study the establishment of DNA methylation marks in response to an environmental stress in rainbow trout and to assess whether these marks depend on the genetic background. The environmental stress chosen here was temperature, a known induction factor of epigenetic marks in fish. To disentangle the role of epigenetic mechanisms such as DNA methylation in generating phenotypic variations, nine rainbow trout isogenic lines with no genetic variability within a line were used. For each line, half of the eggs were incubated at standard temperature (11°C) and the other half at high temperature (16°C), from eyed-stage to hatching. In order to gain a first insight into the establishment of DNA methylation marks in response to an early temperature regime (control 11°C vs. heated 16°C), we have studied the expression of 8 dnmt3 (DNA methyltransferase) genes, potentially involved in de novo methylation, and analysed global DNA methylation in the different rainbow trout isogenic lines using LUMA (LUminometric Methylation Assay). Finally, finer investigation of genome-wide methylation patterns was performed using EpiRADseq, a reduced-representation library approach based on the ddRADseq (Double Digest Restriction Associated DNA) protocol, for six rainbow trout isogenic lines. We have demonstrated that thermal history during embryonic development alters patterns of DNA methylation, but to a greater or lesser extent depending on the genetic background.

Entities:  

Keywords:  DNA methylation; EpiRADseq; Temperature; dnmt3; isogenic lines; rainbow trout

Mesh:

Year:  2020        PMID: 33126823      PMCID: PMC8451451          DOI: 10.1080/15592294.2020.1834924

Source DB:  PubMed          Journal:  Epigenetics        ISSN: 1559-2294            Impact factor:   4.528


  67 in total

Review 1.  Environment and plasticity of myogenesis in teleost fish.

Authors:  Ian A Johnston
Journal:  J Exp Biol       Date:  2006-06       Impact factor: 3.312

2.  DNA methylation: A source of random variation in natural populations.

Authors:  Rachel Massicotte; Emma Whitelaw; Bernard Angers
Journal:  Epigenetics       Date:  2011-04       Impact factor: 4.528

3.  Persistent and plastic effects of temperature on DNA methylation across the genome of threespine stickleback (Gasterosteus aculeatus).

Authors:  David C H Metzger; Patricia M Schulte
Journal:  Proc Biol Sci       Date:  2017-10-11       Impact factor: 5.349

4.  Temperature until the 'eyed stage' of embryogenesis programmes the growth trajectory and muscle phenotype of adult Atlantic salmon.

Authors:  Daniel J Macqueen; David H F Robb; Tom Olsen; Linda Melstveit; Charles G M Paxton; Ian A Johnston
Journal:  Biol Lett       Date:  2008-06-23       Impact factor: 3.703

5.  A scaling normalization method for differential expression analysis of RNA-seq data.

Authors:  Mark D Robinson; Alicia Oshlack
Journal:  Genome Biol       Date:  2010-03-02       Impact factor: 13.583

6.  Epigenetic regulation of sex ratios may explain natural variation in self-fertilization rates.

Authors:  Amy Ellison; Carlos Marcelino Rodríguez López; Paloma Moran; James Breen; Martin Swain; Manuel Megias; Matthew Hegarty; Mike Wilkinson; Rebecca Pawluk; Sofia Consuegra
Journal:  Proc Biol Sci       Date:  2015-11-22       Impact factor: 5.349

7.  DNA methyltransferases and stress-related genes expression in zebrafish larvae after exposure to heat and copper during reprogramming of DNA methylation.

Authors:  Jennifer Dorts; Elodie Falisse; Emilie Schoofs; Enora Flamion; Patrick Kestemont; Frédéric Silvestre
Journal:  Sci Rep       Date:  2016-10-12       Impact factor: 4.379

8.  UpSetR: an R package for the visualization of intersecting sets and their properties.

Authors:  Jake R Conway; Alexander Lex; Nils Gehlenborg
Journal:  Bioinformatics       Date:  2017-09-15       Impact factor: 6.937

9.  Effects of dietary arginine supplementation in pregnant mares on maternal metabolism, placental structure and function and foal growth.

Authors:  Morgane Robles; Anne Couturier-Tarrade; Emilie Derisoud; Audrey Geeverding; Cedric Dubois; Michele Dahirel; Josiane Aioun; Audrey Prezelin; Juliane Calvez; Christophe Richard; Laurence Wimel; Pascale Chavatte-Palmer
Journal:  Sci Rep       Date:  2019-04-23       Impact factor: 4.379

10.  Temperature during embryonic development has persistent effects on thermal acclimation capacity in zebrafish.

Authors:  Graham R Scott; Ian A Johnston
Journal:  Proc Natl Acad Sci U S A       Date:  2012-08-13       Impact factor: 11.205

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  3 in total

1.  Thermal regime during parental sexual maturation, but not during offspring rearing, modulates DNA methylation in brook charr (Salvelinus fontinalis).

Authors:  Clare J Venney; Kyle W Wellband; Eric Normandeau; Carolyne Houle; Dany Garant; Céline Audet; Louis Bernatchez
Journal:  Proc Biol Sci       Date:  2022-05-04       Impact factor: 5.530

2.  Integrated Analyses of DNA Methylation and Gene Expression of Rainbow Trout Muscle under Variable Ploidy and Muscle Atrophy Conditions.

Authors:  Mohamed Salem; Rafet Al-Tobasei; Ali Ali; Brett Kenney
Journal:  Genes (Basel)       Date:  2022-06-26       Impact factor: 4.141

Review 3.  Liquid biopsies based on DNA methylation as biomarkers for the detection and prognosis of lung cancer.

Authors:  Peilong Li; Shibiao Liu; Lutao Du; Ghazal Mohseni; Yi Zhang; Chuanxin Wang
Journal:  Clin Epigenetics       Date:  2022-09-24       Impact factor: 7.259

  3 in total

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