Our study uncovers a new regulatory network where RNA decay, miRNA activity, and transcriptional control converge to fine-tune legume–rhizobia symbiosis.
A big collaborative effort 🇦🇷🇫🇷🇺🇸 to show how plants optimize nitrogen fixation 🌱
Super excited to share that our new paper is published in Plant Physiology! 🎉
🤝 This work was the result of a huge collaborative effort by three amazing groups in Argentina 🇦🇷, France 🇫🇷, and the US 🇺🇸.
👉https://t.co/MRTrTNdiVx
Accordingly, overexpressing a miR172-resistant version of NNC1 drastically reduces nodule formation. Interestingly, this also leads to higher accumulation of miR172, revealing a feedback loop between the miRNA and its target.
Check out our latest preprint on BioRxiv 🌱 on how SUPERKILLER3 mediates miR172-directed cleavage of NNC1 to control nodulation in Medicago truncatula. Read more here: https://t.co/FQmb7alXTA
IPS2 experienced a cyberattack on August 11th, and currently the IPS2 website and email addresses in @universite-paris-saclay.fr are not functional. Please use @cnrs.fr , @inrae.fr, @u-paris.fr, @univ-evry.fr