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January 17, 2024International Journal of Molecular Sciences0 citationsOpen Access

The Effects of DNA Methylation on Cytoplasmic Male Sterility in Sugar Beet

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JWJiamin WengHWHui WangDCDayou Cheng

Key Points

  • Gene expression is influenced by DNA methylation levels, with 75% of differentially methylated genes showing negative feedback.
  • The whole-genome methylation map was constructed using bisulfite transformation techniques for validation.
  • Differential methylation genes were linked to carbohydrate metabolism and pollen wall development in sugar beet.
  • Understanding this mechanism highlights the role of epigenetics in plant male sterility.

Abstract

DNA methylation is widely found in higher plants and can control gene expression by regulation without changing the DNA sequence. In this study, the whole-genome methylation map of sugar beet was constructed by WGBS (whole-genome bisulfite sequencing) technology, and the results of WGBS were verified by bisulfite transformation, indicating that the results of WGBS technology were reliable. In addition, 12 differential methylation genes (DMGs) were identified, which were related to carbohydrate and energy metabolism, pollen wall development, and endogenous hormone regulation. Quantitative real-time PCR (qRT-PCR) showed that 75% of DMG expression levels showed negative feedback with methylation level, indicating that DNA methylation can affect gene expression to a certain extent. In addition, we found hypermethylation inhibited gene expression, which laid a foundation for further study on the molecular mechanism of DNA methylation at the epigenetic level in sugar beet male sterility.

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Cite This Study

Weng et al. (2024) studied this question.

synapsesocial.com/papers/690bdf1abc0568fcd8d51c27https://doi.org/10.3390/ijms25021118
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