Epigenome guided crop improvement: current progress and future opportunities
Author(s) -
Yan Zhang,
Haylie Andrews,
Judith Eglitis-Sexton,
Ian D. Godwin,
Miloš Tanurdžić,
Peter A. Crisp
Publication year - 2022
Publication title -
emerging topics in life sciences
Language(s) - English
Resource type - Journals
eISSN - 2397-8562
pISSN - 2397-8554
DOI - 10.1042/etls20210258
Subject(s) - epigenome , epigenomics , chromatin , biology , crispr , leverage (statistics) , genome editing , computational biology , dna methylation , epigenetics , genome , microbiology and biotechnology , computer science , genetics , gene , gene expression , artificial intelligence
Epigenomics encompasses a broad field of study, including the investigation of chromatin states, chromatin modifications and their impact on gene regulation; as well as the phenomena of epigenetic inheritance. The epigenome is a multi-modal layer of information superimposed on DNA sequences, instructing their usage in gene expression. As such, it is an emerging focus of efforts to improve crop performance. Broadly, this might be divided into avenues that leverage chromatin information to better annotate and decode plant genomes, and into complementary strategies that aim to identify and select for heritable epialleles that control crop traits independent of underlying genotype. In this review, we focus on the first approach, which we term ‘epigenome guided’ improvement. This encompasses the use of chromatin profiles to enhance our understanding of the composition and structure of complex crop genomes. We discuss the current progress and future prospects towards integrating this epigenomic information into crop improvement strategies; in particular for CRISPR/Cas9 gene editing and precision genome engineering. We also highlight some specific opportunities and challenges for grain and horticultural crops.
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