Insights into the Evolution of Ohnologous Sequences and Their Epigenetic Marks Post-WGD in Malus Domestica

Author:

Lallemand Tanguy1,Leduc Martin1,Desmazières Adèle1,Aubourg Sébastien1,Rizzon Carène2,Landès Claudine1,Celton Jean-Marc1ORCID

Affiliation:

1. Université d’Angers, Institut Agro, INRAE, IRHS, SFR QUASAV , Angers , France

2. Laboratoire de Mathématiques et Modélisation d’Evry (LaMME), UMR CNRS 8071, ENSIIE, USC INRA, Université d’Evry Val d’Essonne , Evry , France

Abstract

Abstract A Whole Genome Duplication (WGD) event occurred several Ma in a Rosaceae ancestor, giving rise to the Maloideae subfamily which includes today many pome fruits such as pear (Pyrus communis) and apple (Malus domestica). This complete and well-conserved genome duplication makes the apple an organism of choice to study the early evolutionary events occurring to ohnologous chromosome fragments. In this study, we investigated gene sequence evolution and expression, transposable elements (TE) density, and DNA methylation level. Overall, we identified 16,779 ohnologous gene pairs in the apple genome, confirming the relatively recent WGD. We identified several imbalances in QTL localization among duplicated chromosomal fragments and characterized various biases in genome fractionation, gene transcription, TE densities, and DNA methylation. Our results suggest a particular chromosome dominance in this autopolyploid species, a phenomenon that displays similarities with subgenome dominance that has only been described so far in allopolyploids.

Funder

Objectif Végétal, Research

Education and Innovation in Pays de la Loire

French Region Pays de la Loire

Angers Loire M´etropole

European Regional Development Fund

INRAE

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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