Hyperosmotic stress memory in Arabidopsis is mediated by distinct epigenetically labile sites in the genome and is restricted in the male germline by DNA glycosylase activity


Autoria(s): Wibowo, Anjar; Becker, Claude; Marconi, Gianpiero; Durr, Julius; Price, Jonathan; Hagmann, Jorg; Papareddy, Ranjith; Putra, Hadi; Kageyama, Jorge; Becker, Jorg; Weigel, Detlef; Gutierrez-Marcos, Jose
Data(s)

08/06/2016

08/06/2016

31/05/2016

Resumo

Inducible epigenetic changes in eukaryotes are believed to enable rapid adaptation to environmental fluctuations. We have found distinct regions of the Arabidopsis genome that are susceptible to DNA (de)methylation in response to hyperosmotic stress. The stress-induced epigenetic changes are associated with conditionally heritable adaptive phenotypic stress responses. However, these stress responses are primarily transmitted to the next generation through the female lineage due to widespread DNA glycosylase activity in the male germline, and extensively reset in the absence of stress. Using the CNI1/ATL31 locus as an example, we demonstrate that epigenetically targeted sequences function as distantly-acting control elements of antisense long non-coding RNAs, which in turn regulate targeted gene expression in response to stress. Collectively, our findings reveal that plants use a highly dynamic maternal 'short-term stress memory' with which to respond to adverse external conditions. This transient memory relies on the DNA methylation machinery and associated transcriptional changes to extend the phenotypic plasticity accessible to the immediate offspring.

Royal Society grant: (IE150496); ESF/RTD Framework COST action: (FA0903); Biotechnology and Biological Sciences Research Council grant: (BB/F008082); Deutsche Forschungsgemeinschaft grant: (SFB 1101 - Project C01); Max-Planck-Gesellschaft; ERA-CAPs project: (EVOREPRO).

Identificador

eLife 2016;5:e13546

http://hdl.handle.net/10400.7/629

10.7554/eLife.13546

Idioma(s)

eng

Publicador

Elife Sciences Publications

Relação

info:eu-repo/grantAgreement/EC/FP7/226477/EU

https://elifesciences.org/content/5/e13546

Direitos

openAccess

http://creativecommons.org/licenses/by/4.0/

Palavras-Chave #DNA #memory #genome #adaptation #Arabidopsis #Hyperosmotic stress #epigenetic
Tipo

article