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Updated: Jul 27, 2026

DNA Methylation: Bisulphite Modification and Analysis
Published on: October 21, 2011
Approaches for the Analysis and Interpretation of Whole-Genome Bisulfite Sequencing Data
Tim Stuart1, Sam Buckberry1,2, Trung Viet Nguyen1,2
1Australian Research Council Centres of Excellence in Plant Energy Biology and Plants for Space, School of Molecular Sciences, The University of Western Australia, Crawley, WA, Australia.
Abstract:
DNA methylation is a covalent modification of DNA that plays important roles in processes such as the regulation of gene expression, transcription factor binding, and suppression of transposable elements. The use of whole-genome bisulfite sequencing (WGBS) enables the genome-wide identification and quantification of DNA methylation patterns at single-base resolution and is the gold standard for the analysis of DNA methylation. However, the computational analysis of WGBS data can be particularly challenging, as many computationally intensive steps are required. Here, we outline step-by-step an approach for the analysis and interpretation of WGBS data. First, sequencing reads must be trimmed, quality-checked, and aligned to the genome. Second, DNA methylation levels are estimated at each cytosine position using the aligned sequence reads of the bisulfite-treated DNA. Third, regions of differential cytosine methylation between samples can be identified. Finally, these data need to be visualized and interpreted in the context of the biological question at hand.
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