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🔜Two postdoc positions are available in Rouached Lab for a creative individual to lead a project that will explore a new dimension in the field of plant nutrition. Please contact me if you are interested in TOR signaling, epigenetic and/or plant development rouached@msu.edu

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PhDs apply to the Cold Spring Harbor Laboratory course Frontiers & Techniques in Plant Science. 1 month of hands-on training with leading experts. A unique opportunity to explore cutting-edge plant science methods and build your network. 🌱 meetings.cshl.edu/courses.aspx...

Frontiers & Techniques in Plant Science

Cold Spring Harbor Laboratory Meetings & Courses -- a private, non-profit institution with research programs in cancer, neuroscience, plant biology, genomics, bioinformatics.

meetings.cshl.edu

🚨 PhD Position in Plant Molecular Biology 🌱 We are looking for a motivated PhD student to join our team to study root protective barriers. If you are interested in confocal microscopy, cell wall biology, and plant development, this project might be for you! Please share! #PlantScience #PlantSciJob

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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 1/8

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Salk researchers are using a little flowering plant to answer the question: How do cells generate new epigenetic change? The answer marks a major shift in plant biology and may inform future epigenetic engineering strategies with medical and agricultural applications. www.salk.edu/news-release...

Epigenetic changes regulate gene expression, but what regulates epigenetics? - Salk Institute for Biological Studies

LA JOLLA—All the cells in an organism have the exact same genetic sequence. What differs across cell types is their epigenetics—meticulously placed chemical tags that influence which genes are express...

salk.edu

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