Photodamage repair pathways contribute to the accurate maintenance of the DNA methylome landscape upon UV exposure

PLoS Genet. 2019 Nov 18;15(11):e1008476. doi: 10.1371/journal.pgen.1008476. eCollection 2019 Nov.

Abstract

Plants are exposed to the damaging effect of sunlight that induces DNA photolesions. In order to maintain genome integrity, specific DNA repair pathways are mobilized. Upon removal of UV-induced DNA lesions, the accurate re-establishment of epigenome landscape is expected to be a prominent step of these DNA repair pathways. However, it remains poorly documented whether DNA methylation is accurately maintained at photodamaged sites and how photodamage repair pathways contribute to the maintenance of genome/methylome integrities. Using genome wide approaches, we report that UV-C irradiation leads to CHH DNA methylation changes. We identified that the specific DNA repair pathways involved in the repair of UV-induced DNA lesions, Direct Repair (DR), Global Genome Repair (GGR) and small RNA-mediated GGR prevent the excessive alterations of DNA methylation landscape. Moreover, we identified that UV-C irradiation induced chromocenter reorganization and that photodamage repair factors control this dynamics. The methylome changes rely on misregulation of maintenance, de novo and active DNA demethylation pathways highlighting that molecular processes related to genome and methylome integrities are closely interconnected. Importantly, we identified that photolesions are sources of DNA methylation changes in repressive chromatin. This study unveils that DNA repair factors, together with small RNA, act to accurately maintain both genome and methylome integrities at photodamaged silent genomic regions, strengthening the idea that plants have evolved sophisticated interplays between DNA methylation dynamics and DNA repair.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Arabidopsis / genetics
  • Arabidopsis / radiation effects
  • Chromatin / genetics
  • Chromatin / radiation effects
  • DNA Damage / genetics*
  • DNA Damage / radiation effects
  • DNA Methylation / genetics*
  • DNA Methylation / radiation effects
  • DNA Repair / genetics*
  • DNA Repair / radiation effects
  • Epigenome / genetics*
  • Epigenome / radiation effects
  • Genome, Plant / genetics
  • Genome, Plant / radiation effects
  • Ultraviolet Rays

Substances

  • Chromatin

Grants and funding

JM was supported by the LABEX NetRNA (ANR‐10‐LABX‐0036_NETRNA) The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript