Unknown,Transcriptomics,Genomics,Proteomics

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Establishing a reference epigenome in arabidopsis seedlings


ABSTRACT: This SuperSeries is composed of the following subset Series: GSE24646: h3k36me3-Establishing a reference epigenome in arabidopsis seedlings GSE24647: h3k9me2-Establishing a reference epigenome in arabidopsis seedlings GSE24648: h3k4me2-Establishing a reference epigenome in arabidopsis seedlings GSE24649: h3k4me3-Establishing a reference epigenome in arabidopsis seedlings GSE24650: h3k9me3-Establishing a reference epigenome in arabidopsis seedlings GSE24651: h3k27me3-Establishing a reference epigenome in arabidopsis seedlings GSE24652: h3k27me2-Establishing a reference epigenome in arabidopsis seedlings GSE24653: h3k56ac-Establishing a reference epigenome in arabidopsis seedlings GSE24654: h4k20me1-Establishing a reference epigenome in arabidopsis seedlings GSE24655: h3-Establishing a reference epigenome in arabidopsis seedlings GSE24656: h2bub-Establishing a reference epigenome in arabidopsis seedlings GSE24657: h3k27me3_gw-Establishing a reference epigenome in arabidopsis seedlings GSE24658: h3k4me3_gw-Establishing a reference epigenome in arabidopsis seedlings GSE24659: h3k4me2_gw-Establishing a reference epigenome in arabidopsis seedlings GSE24660: 5mc_gw-Establishing a reference epigenome in arabidopsis seedlings GSE24661: h3k36me3_gw-Establishing a reference epigenome in arabidopsis seedlings GSE24662: h3k27me1_gw-Establishing a reference epigenome in arabidopsis seedlings GSE24663: h3_gw-Establishing a reference epigenome in arabidopsis seedlings GSE24664: h3k27me3_roots_gw-Establishing a reference epigenome in arabidopsis seedlings GSE24665: h3k4me3_roots_gw-Establishing a reference epigenome in arabidopsis seedlings Refer to individual Series

ORGANISM(S): Arabidopsis thaliana

SUBMITTER: François ROUDIER 

PROVIDER: E-GEOD-24710 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications


Post-translational modification of histones and DNA methylation are important components of chromatin-level control of genome activity in eukaryotes. However, principles governing the combinatorial association of chromatin marks along the genome remain poorly understood. Here, we have generated epigenomic maps for eight histone modifications (H3K4me2 and 3, H3K27me1 and 2, H3K36me3, H3K56ac, H4K20me1 and H2Bub) in the model plant Arabidopsis and we have combined these maps with others, produced  ...[more]

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