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April 4, 2026Horticulture Research2 citationsOpen Access

Epigenetic orchestration of sugar signaling in plant development and stress adaptation

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PZPing ZhaoYLYi LiuJAJaveria Abid

Key Points

  • The aim is to understand how sugars function as signals to control plant development and stress adaptation through epigenetic mechanisms.
  • Utilized quantitative epigenomic and epitranscriptomic techniques
  • Analyzed epigenetic control points related to pigmentation and stress acclimation
  • Integrated bioinformatics tools for landscape analysis
  • Identified key epigenetic control points like SlDML2 and PH5
  • Showed sugar-epigenome interplay is crucial for phenotypic plasticity
  • Highlighted potential of CRISPR-based methods for enhancing crop resilience

Abstract

Abstract Sugars are not only metabolites but also signals that gate plant growth, fruit ripening, and stress responses. Carbon-sensing pathways (HEXOKINASE 1 perception, TOR-SnRK1, and the sucrose-trehalose-6-phosphate (T6P) pathway) reprogram gene expression by engaging DNA methylation, histone modification, chromatin remodeling, regulatory RNAs, and RNA modifications. Cutting-edge quantitative epigenomic and epitranscriptomic methods, integrated with novel bioinformatics tools, are driving unprecedented resolution in epigenetic landscape analysis. Benefitting from state-of-the-art technologies, we summarize epigenetic control points for pigmentation, softening, sugar-acid balance, and stress acclimation (e.g., SlDML2, PH5, RdDM-ABA modules). This synthesis underscores that decoding the sugar-epigenome interplay is key to understanding plant phenotypic plasticity and improving crop performance. Finally, we explore how leveraging epigenetic regulation via CRISPR-based epigenome editing, transgenerational inheritance patterns, and epigenomic biomarker-based (epibreeding) approaches holds promise for improving crop resilience and productivity.

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Cite This Study

Zhao et al. (2026) studied this question.

synapsesocial.com/papers/69d0afc7659487ece0fa5db4https://doi.org/10.1093/hr/uhag109
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