Charting the evolutionary path of the SUMO modification system in plants reveals molecular hardwiring of development to stress adaptation https://t.co/P7TaAW8rD4
Our latest work is now online! First-ever decoding of an entire PTM system in any eukaryote. Huge congrats to the whole team and thanks to @sadanandomlab and @mdelucas80 for this milestone moment. https://t.co/INvph9DnyO
Pleased to share @ThePlantJournal
The rice heat shock transcription factor OsHSFC1b increases seed weight, size, and vigor, but its function is disrupted by isoaspartyl modification - Achary - 2025 - The Plant Journal - Wiley Online Library https://t.co/aZlJw6Yx4m
A new paradigm in auxin biology!
ROS-mediated multimerization blocks IAA3-ARF7 interaction, revealing a novel layer of regulation in root development.
#PlantScience#Auxin#ROS#RedoxBiology 🌱🔬 | Science https://t.co/h7Qpyg4qmn
Excited to share our recent work on how SUMOylated PhyB interacts with NPR1 to drive systemic immunity. Shedding light on the crosstalk between light signaling and immune pathways! 🌱🧬 #PlantScience#Immunity#SUMOylation @sadanandomlab https://t.co/1pJU9rI9cs
New Correspondence: "Time to end the vascular plant chauvinism" https://t.co/2Q2V1YGfnO
The emphasis on vascular plants reveals a bias that leaves the non-vascular plants — the tiny, overlooked, inconspicuous plants — hidden in the shadows, literally.
🎉I am really excited to share that our paper is out in @NAR_Open! We present PHILO ChIP-seq, a user-friendly and cost-effective platform for high-throughput, low-input chromatin profiling in plants!
@Zander_Lab
https://t.co/Kgfg7pyspL