🌱 EPIPLANT is live!
Registration is now open for the EPIPLANT 2026 conference (June 22–24).
We look forward to welcoming you to Nantes, France for an exciting conference on the epigenetics of photosynthetic organisms!
👉 Details & registration: epiplant-2026.sciencesconf.org
06.03.2026 14:21
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Using CG methylation (mCG) of heterochromatic transposons as a trait for GWAS, we identified a major genetic association to an uncharacterized gene: a plant ortholog of vertebrate CDCA7.
07.11.2025 17:01
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This new targeting mode for DNA methylation also opens new avenues for pursuing precise epigenomic editing to correcting DNA methylation defects and or engineer new epialleles for crop improvement.
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11.12.2025 21:58
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This discovery transforms our view of how DNA methylation patterns are regulated in plants—moving from purely chromatin-driven models to an integrated framework where TFs guide methylation reprogramming during development.
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11.12.2025 21:58
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This new TF-based mode of targeting controls the vast majority of siRNAs used by the RNA-directed DNA methylation (RdDM) pathway to target methylation in anthers and ovules, revealing it plays a massive role in shaping the epigenome in plant reproductive tissues.
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11.12.2025 21:58
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Leveraging genome engineering, we demonstrated that the DNA motif bound by a RIM TF is required to target methylation and that mis-expression of this TF can remodel the epigenome in a locus- and tissue-specific manner. In short, the DNA motifs and TFs are necessary AND sufficient.
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11.12.2025 21:57
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Using forward and reverse genetics approaches we identified several REM family TFs that Instruct DNA methylation, designated as RIMs. We showed that different RIMs regulate methylation patterns in male and female reproductive tissues.
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11.12.2025 21:56
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Have you ever wondered how new DNA methylation patterns are established?
Paradigm shift ahead! We discovered a new mode of DNA methylation targeting in plants that relies on transcription factors and sequence motifs rather than chromatin modifications to regulate the methylome. rdcu.be/eQ6L5
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11.12.2025 21:56
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🌿 Join Us for Plant Epigenetics in Fort Collins! 🌿
Excited about the future of plant epigenetics?
Join us at the Keystone Symposium Plant Epigenetics & Epigenome Engineering in Fort Collins, October 13-16, 2025! keystonesymposia-19559593.hs-sites.com/%F0%9F%8C%BF...
Registration is open!
#PlantScience #Epigenetics #KeystoneSymposia
14.04.2025 14:25
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Extensive N4 cytosine methylation is essential for Marchantia sperm function
Global N4 cytosine methylation in Marchantia polymorpha sperm regulates gene expression
and promotes sperm fertility.
I'm thrilled to share that our study is now published in Cell:
Extensive N4 cytosine methylation is essential for Marchantia sperm function.
www.cell.com/cell/fulltex...
This paper confirms our 4mC discovery in Marchantia sperm and takes it much further.
A thread: 0/13
09.04.2025 17:15
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