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March 15, 2026Science Advances0 citationsOpen Access

Modifying meiotic recombination by targeting chromatin regulators to crossover hotspots in Arabidopsis

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MSMaja Szymanska-LejmanWDWojciech DzięgielewskiAWAnna Wilhelm

Key Points

  • To investigate how targeting chromatin regulators affects meiotic recombination and transcription in Arabidopsis.
  • Used a dCas9-based system to recruit JMJ14 and VP64 to specific genomic loci in Arabidopsis.
  • Measured changes in histone modifications, specifically H3K4me3 levels, crossover frequency, and lncRNA expression.
  • Analyzed the effect on both targeted and untargeted crossover hotspots.
  • Recruitment of JMJ14 decreased H3K4me3 levels and crossover frequency at specific loci.
  • Targeting VP64 increased lncRNA expression, elevated H3K4me3 levels, and enhanced crossover frequency.
  • Demonstrated a causal link between H3K4me3 levels, transcription, and recombination frequency.

Abstract

The impact of specific chromatin modifications on meiotic crossover frequency has typically been inferred from correlative studies, leaving the question of causality unresolved. To directly test this, we used a catalytically inactive CRISPR-associated protein 9 (dCas9)–based system to recruit the histone demethylase JMJ14 to defined genomic loci. Recruitment of JMJ14 led to a reduction in local histone H3 lysine 4 trimethylation (H3K4me3) levels and a decrease in crossover frequency within the targeted interval. This was accompanied by reduced expression of a long noncoding RNA (lncRNA) at the hotspot and altered crossover topology. Suppressed recombination was also observed at neighboring, untargeted hotspots. In contrast, targeting the transcriptional activator VP64 to the same region increased lncRNA expression, elevated crossover frequency, and raised H3K4me3 levels. Together, these findings establish a causal link between H3K4me3, transcription, and local crossover activity, demonstrating that H3K4me3 levels are closely associated with both transcriptional output and recombination frequency at specific genomic loci.

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Cite This Study

Szymanska-Lejman et al. (2026) studied this question.

synapsesocial.com/papers/69b606d583145bc643d1d277https://doi.org/10.1126/sciadv.aeb2890
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