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January 22, 2026The Plant Cell0 citations

Chromatin remodeling at the C-REPEAT BINDING FACTOR cluster controls growth retardation at low ambient temperature

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SKSohyun KimRJRachel E JeongSSSibum Sung

Key Points

  • The aim is to understand how chromatin remodeling influences plant growth retardation at low temperatures.
  • Used transcriptomic profiling to assess gene expression responses to low temperatures.
  • Analyzed the role of VERNALIZATION INSENSITIVE 3-LIKE 1 (VIL1) and C-REPEAT BINDING FACTOR 1 (CBF1) in growth regulation.
  • Examined the chromatin landscape and histone modifications at the CBF locus in Arabidopsis.
  • VIL1 represses growth at low temperatures by enhancing H3K27me3 levels at the CBF locus.
  • Mutants lacking VIL1 exhibited increased growth compared to cbf1 mutants, indicating a complex regulatory balance.
  • Low temperatures induced chromatin opening at the CBF locus, promoting gene activation.

Abstract

Abstract Temperature impacts plant growth and development. However, the molecular mechanisms underlying growth retardation at low ambient temperature remain poorly understood. Here, we identify genetic and epigenetic determinants mediating growth retardation at low ambient temperature in Arabidopsis (Arabidopsis thaliana). Transcriptomic profiling showed that low ambient temperature (12 ℃) upregulates regulatory genes associated with growth inhibition. We uncovered a regulatory network in which a Polycomb-Group (PcG) protein, VERNALIZATION INSENSITIVE 3-LIKE 1 (VIL1), and a transcription factor, C-REPEAT BINDING FACTOR 1 (CBF1) coordinate growth regulation under these conditions. The vil1 mutant displayed enhanced biomass, whereas cbf1 mutants showed the opposite phenotype at low ambient temperature. VIL1 establishes a repressive chromatin environment at the three tandemly clustered CBF locus, via H3K27me3 deposition and maintenance of non-inductive chromatin structure. Upon low ambient temperature exposure, CBF chromatin transiently opens and forms loops to activate CBF genes. Increased VIL1 binding enhances H3K27me3 accumulation, fine-tuning CBF1 expression. Loss of VIL1 leads to reduced H3K27me3, increased chromatin accessibility, and persistent loop formation, resulting in elevated CBF1 expression. Our findings reveal that VIL1 modulates growth at low ambient temperature by regulating chromatin architecture and transcriptional activity, providing insights into how plants reprogram growth in response to low ambient temperature.

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Cite This Study

Kim et al. (2026) studied this question.

synapsesocial.com/papers/6971be50642b1836717e2f52https://doi.org/10.1093/plcell/koag007
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