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PMID: 22251412 Published · epublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Dynamic DNA cytosine methylation in the Populus trichocarpa genome: tissue-level variation and relationship to gene expression.

BMC genomics ·Vol. 13 ·2012-01-17 ·Pages 27

Vining KJ, Pomraning KR, Wilhelm LJ, Priest HD, Pellegrini M, Mockler TC, Freitag M, Strauss SH

Abstract

DNA cytosine methylation is an epigenetic modification that has been implicated in many biological processes. However, large-scale epigenomic studies have been applied to very few plant species, and variability in methylation among specialized tissues and its relationship to gene expression is poorly understood. We surveyed DNA methylation from seven distinct tissue types (vegetative bud, male inflorescence [catkin], female catkin, leaf, root, xylem, phloem) in the reference tree species black cottonwood (Populus trichocarpa). Using 5-methyl-cytosine DNA immunoprecipitation followed by Illumina sequencing (MeDIP-seq), we mapped a total of 129,360,151 36- or 32-mer reads to the P. trichocarpa reference genome. We validated MeDIP-seq results by bisulfite sequencing, and compared methylation and gene expression using published microarray data. Qualitative DNA methylation differences among tissues were obvious on a chromosome scale. Methylated genes had lower expression than unmethylated genes, but genes with methylation in transcribed regions ("gene body methylation") had even lower expression than genes with promoter methylation. Promoter methylation was more frequent than gene body methylation in all tissues except male catkins. Male catkins differed in demethylation of particular transposable element categories, in level of gene body methylation, and in expression range of genes with methylated transcribed regions. Tissue-specific gene expression patterns were correlated with both gene body and promoter methylation. We found striking differences among tissues in methylation, which were apparent at the chromosomal scale and when genes and transposable elements were examined. In contrast to other studies in plants, gene body methylation had a more repressive effect on transcription than promoter methylation.

MeSH Terms
Chromosomes, Plant/genetics Cytosine/metabolism DNA Methylation Epigenesis, Genetic Gene Expression Regulation, Plant Populus/genetics,metabolism Promoter Regions, Genetic Sequence Analysis
Chemicals
Cytosine
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Vining Kelly J
Department of Forest Ecosystems and Society, Oregon State University, Corvallis, 97331, USA.
Pomraning Kyle R
Wilhelm Larry J
Priest Henry D
Pellegrini Matteo
Mockler Todd C
Freitag Michael
Strauss Steven H
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Article Info
Journal
BMC genomics
Abbr.
BMC Genomics
ISSN
1471-2164
Published
2012-01-17
Epub
2012-00-17
Pages
27
Language
English
Region
England
NLM ID
100965258
PMCID
PMC3298464
Subset
IM
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