NEW ONLINE: Phosphorylation networks as regulatory hubs in plant stress signaling: kinase dynamics, crosstalk, and network plasticity https://t.co/leFWxKL1ez
CSHL’s Saket Navlakha (@navlakha_lab) and former grad student Cici Zheng (@CiCiZheng3) discovered a naturally occurring Voronoi diagram in Chinese money plant leaves. Their work could help explain how plants solve complex problems in nature and may one day help make sense of the math underlying life itself. Read more here: https://t.co/7VP7gWEnEp
#InspiringDiscovery #ScienceMakesLifeBetter
@NSF, @NSERC_CRSNG, @NatureComms, @SimonsFdn
Read manuscript from @prabodhslab on regulatory role of miRNA-encoded peptide (miPEP858). C-terminus interacts with miR858 promoter & regulates it's expression. First report eluciditing mode of action by miPEPs. @CSIRCIMAP@CSIR_IND@micropep@AcSIR_India
https://t.co/Tvq2uPxWIY
Congratulations! Dr.@PrabodhTrivedi@DirectorCimap & team for research article on regulatory mode of action by miRNA-encoded peptide(miPEP858) published in Plant Physiology.
The first report eluciditing mode of action by miPEPs.@CSIR_IND@DrNKalaiselvi
https://t.co/xN3P6TtXM2
Phloem companion cells (CCs) may play a key role in shoot-to-root signaling under phosphorus deficiency. TRAP-Seq analysis in Arabidopsis reveals that CCs exhibit strong molecular responses and may influence root growth.
https://t.co/eo2ChDJ3gQ @wileyplantsci #OpenAccess
New paper out! 🚨
We explored pollen grain development, pollen tube growth, and the role of arabinogalactan proteins (AGPs) in these processes 🌿 congratulations Sara Mendes and the whole team for the great work! 🎉 https://t.co/dGvd0GYoQQ
Explore the world of #plant#hormone interactions in a new review by Tian et al. describing the many roles of #SalicylicAcid in plant #immunity and the pairwise interactions of SA with other major plant hormones.
https://t.co/X6qXmBaz9H @wileyplantsci #PlantSci#JIPB
#TansleyReview Historic rewiring of grass flowering time pathways and implications for crop improvement under climate change
Verrico and Preston
📖 https://t.co/klP9TzkpOG
Citation: Corona-Carrillo, J.I.;
González, S.; Chávez Nájera, G.;
Díaz-Pontones, D. Antioxidant System
of Scutellum During Germination and
Early Growth of Maize Seedlings.
Agriculture 2024, 14, 2025. https://
https://t.co/7hjLZxhQvr
Join @NAPlantBreeders and the Education Committee as Dr. Jeff Ross-Ibarra presents his recent work on the Origins of Modern Maize.
Date: Thursday, November 21st at 11 am PST || 2 pm EST.
Register here: https://t.co/2VFQB3ptaf.
In our (@hardtke_lab) latest work at @NaturePlants , we reveal a molecular-genetic framework for CLE signaling pathways in the root that is fundamentally different from the wiring described in the shoot apical meristem. https://t.co/CAM1xWsILZ (1/3)
📰A new version of https://t.co/2TXxfGppva is out! We used GPT-4o to read >71,000 papers and build knowledge graphs. Use it to study how genes, metabolites, organs, treatments and other entities are related. Here we look at PPI networks... #plantsci https://t.co/jsHtFNNfqh 1/2