Accession PRJCA000845
Title Glycine max Epigenomics
Relevance Agricultural
Data types Epigenomics
Organisms Glycine max
Description Cytosine methylation is an important mechanism for dynamical regulation of gene expression and transposon mobility during plant developmental processes. Recently, the variation of DNA methylation has been described between wild type and DNA methylation-related mutants in Arabidopsis thaliana. However, the elaborate representation of soybean DNA methylomes remains lacking. Here, we described the epigenome maps of soybean root, stem, leaf, and cotyledon of developing seed at a single-base resolution. We confirmed the transcription start sites of genes using high-throughput sequencing and reported the DNA methylation patterns in gene and transposon regions. The correlation between gene expression and DNA methylation was revealed through transcriptome sequencing. We found CHH methylation may function in promotion of gene expression and ten cotyledon-preferred genes were identified CHH hypermethylated in cotyledon. Small RNA library sequencing showed that DNA methylation was enhanced by small RNAs not by strand-specific way, and the variation of DNA methylation between the organs was highly related with expression of small RNAs. Overall design: methylomes of roots, stems, leaves, and cotyledons of developing seeds.
Sample scope Multiisolate
Release date 2018-06-30
Publication
PubMed ID Article title Journal name DOI Year
23966636 Genome-wide analysis of DNA methylation in soybean Mol Plant 10.1093/mp/sst123 2013
Accessions in other database
Accession Database name
PRJNA156283 NCBI
Submitter Fang    Liang  (liangf@big.ac.cn)
Organization Beijing Institute of Genomics, Chinese Academy of Sciences
Submission date 2018-04-25

Project Data

Resource name Description
BioSample (4) -
SAMC043665 BS-seq of cotyledons
SAMC043664 BS-seq of leaves
SAMC043663 BS-seq of stems
SAMC043662 BS-seq of roots