@jameswalker303.bsky.social

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 1/8

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#PlantBio2025 I’ll be speaking in the final plenary—sharing the story behind this paper and some new, unpublished work from my lab at TSL. Hope people stick around till the end (though a few already warned me they’re leaving early 😅)!

Tatsuya Nobori@tatsuyanobori.bsky.social · 2y ago

New year, new paper! Now published in @nature.com. We identified and characterised diverse immune cell states in plants under pathogen attack. My postdoc work in the Ecker lab at @salkinstitute.bsky.social. A thread (0/n) #PlantScience www.nature.com/articles/s41...

Grateful to share that our study on "The genetic architecture of cell type–specific cis regulation in maize" is now published in @science.org! Huge thank you to all co-authors and the 4 tough, but fair, reviewers who all helped to improve the study 🌽🧬 www.science.org/doi/10.1126/...

The genetic architecture of cell type–specific cis regulation in maize

Gene expression and complex phenotypes are determined by the activity of cis-regulatory elements. However, an understanding of how extant genetic variants affect cis regulation remains limited. Here, ...

science.org

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

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.

cell.com