High-resolution methylome analysis uncovers stress-responsive genomic hotspots and drought-sensitive transposable element superfamilies in the clonal Lombardy poplar

Author:

Peña-Ponton Cristian12ORCID,Diez-Rodriguez Barbara345ORCID,Perez-Bello Paloma6ORCID,Becker Claude78ORCID,McIntyre Lauren M9ORCID,van der Putten Wim H110ORCID,De Paoli Emanuele11ORCID,Heer Katrin34ORCID,Opgenoorth Lars312ORCID,Verhoeven Koen J F1ORCID

Affiliation:

1. Department of Terrestrial Ecology, Netherlands Institute of Ecology (NIOO-KNAW) , Droevendaalsesteeg 10, 6708 PB Wageningen , The Netherlands

2. Laboratory of Molecular Biology, Wageningen University & Research , 6708 PB Wageningen , The Netherlands

3. Department of Biology, Philipps-University Marburg , Karl-von-Frisch Strasse 8, D-35043 Marburg , Germany

4. Eva Mayr-Stihl professorship of Forest Genetics, Albert-Ludwigs-Universität Freiburg , Bertoldstraße 17, 79098 Freiburg i. Br. , Germany

5. Natural Resources and Climate Area, CARTIF Technology Centre , 47151 Boecillo, Valladolid , Spain

6. IGA Technology Services Srl. Via Jacopo Linussio 51 , 33100 Udine UD , Italy

7. Gregor Mendel Institute of Molecular Plant Biology, Austrian Academy of Sciences, Vienna BioCenter (VBC) , 1030 Vienna , Austria

8. LMU Biocenter, Faculty of Biology, Ludwig-Maximilians-University Munich , 82152 Martinsried , Germany

9. Department of Molecular Genetics and Microbiology, University of Florida , Gainesville, FL 32611 , USA

10. Department of Nematology, Wageningen University & Research , Wageningen 6700 ES , The Netherlands

11. Department of Agri-Food, Environmental and Animal Sciences, University of Udine, via delle Scienze 206 , 33100 Udine , Italy

12. Biodiversity and Conservation Biology, Swiss Federal Research Institute WSL , Zürcherstrasse 111, CH-8903 Birmensdorf , Switzerland

Abstract

Abstract DNA methylation is environment-sensitive and can mediate stress responses. In trees, changes in the environment might cumulatively shape the methylome landscape over time. However, because high-resolution methylome studies usually focus on single environmental cues, the stress-specificity and long-term stability of methylation responses remain unclear. Here, we studied the methylome plasticity of a Populus nigra cv. ‘Italica’ clone widely distributed across Europe. Adult trees from different geographic locations were clonally propagated in a common garden experiment and exposed to cold, heat, drought, herbivory, rust infection, and salicylic acid treatments. Whole-genome bisulfite sequencing revealed stress-induced and naturally occurring DNA methylation variants. In CG/CHG contexts, the same genomic regions were often affected by multiple stresses, suggesting a generic methylome response. Moreover, these variants showed striking overlap with naturally occurring methylation variants between trees from different locations. Drought treatment triggered CHH hypermethylation of transposable elements, affecting entire superfamilies near drought-responsive genes. Thus, we revealed genomic hotspots of methylation change that are not stress-specific and that contribute to natural DNA methylation variation, and identified stress-specific hypermethylation of entire transposon superfamilies with possible functional consequences. Our results underscore the importance of studying multiple stressors in a single experiment for recognizing general versus stress-specific methylome responses.

Funder

EU Horizon 2020 program

Publisher

Oxford University Press (OUP)

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