Ajeet Chaudhary
@Ajt_chaudhary
Postdoc @CarnegiePlants @Stanford.Interested in cell wall dynamics in development and defense of plant.
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How do plants control mitotic entry without CDC25 phosphatase (of yeast and animals)? They use BSL1 instead, according to our work just published in Nature Plants: rdcu.be/ePJpv
Published today in @ScienceMagazine: a landmark study led by Microsoft scientists with partners, showing how AI-powered protein design could be misused—and presenting first-of-its-kind red teaming & mitigations to strengthen biosecurity in the age of AI.
Engineered geminivirus replicons enable rapid in planta directed evolution | Science science.org/doi/10.1126/sc…
Localized glutamine leakage drives the spatial structure of root microbial colonization | Science science.org/doi/10.1126/sc…
Very happy to share our latest work “Systematic discovery and engineering of synthetic immune receptors in plants” out in @ScienceMagazine! science.org/doi/10.1126/sc…
Spatial organization and trafficking dynamics of ANX/BUPS-RALF-LLG signaling complexes during pollen tube growth link.springer.com/article/10.100…
An antagonistic peptide preventing hyperactivation of the plant immune system - cool story by the Felix-lab, just published in Cell ! Glad we could contribute. A receptor antagonist counterbalances multiple systemin phytocytokines... sciencedirect.com/science/articl…
This is our new paper reporting the relationship between gall morphology and plant organ. We used @inaturalist data for analysis. Plant organ modulates morphological constraints of insect-induced galls: evidence from citizen science data doi.org/10.1038/s41598…
A Phosphorelay Circuit Drives Extracellular Alkalinization in Plant Receptor Kinase Signaling biorxiv.org/content/10.110… #biorxiv_plants
A unified cell atlas of vascular plants reveals cell-type foundational genes and accelerates gene discovery: Cell cell.com/cell/fulltext/…
Tremendous work by the extremely talented postdocs! @TrALEE_Sci @NatanellaE @nobolly .Thank you for putting in a major effort on this “side project” to develop a power community resource arabidopsisdevatlas.salk.edu
We are thrilled to have our spatial single-cell atlas of the Arabidopsis lifecycle in @NaturePlants. It turns out that it is easy to generate aesthetic images when the spatial expression of 1,000 genes is available! 1/n @NatanellaE @nobolly @JoeEcker nature.com/articles/s4147…
Another ABA receptor !!!!! NRT1.1B acts as an abscisic acid receptor in integrating compound environmental cues for plants: Cell cell.com/cell/fulltext/…
Congratulations @prashant_pawar and everyone involved !!! Interesting work.
Arabidopsis GELP53 overexpression modulates polysaccharide acetylation and defense through oligosaccharide-mediated signaling (Lavi Rastogi , Muhammad-Moazzam Hussain , Shivangi Tyagi , et al) doi.org/10.1093/plcell… #PlantScience
Professor Padmanabhan Babu has—in his quiet and understated manner—had an important impact on developmental biology, only one aspect of which was the isolation of the lin-4 mutant allele (e912), highlighted below in the post by Richard Behringer @rrbehringer and the Society of…
For many years there was only one lin-4 mutant allele (e912) #Celegans which enabled studies reported by Lee et al. 1993, describing 1st microRNA. e912 was isolated by P. Babu in Cambridge, UK. See The Backstory on Dr. Babu. bit.ly/4mAJrZ1 @wormbase @SocDevBio @InSDB_79
Excited to share our #bioRxiv preprint: "Integrative comparative transcriptomics using cultivated & wild rice reveals key regulators of developmental & photosynthetic progression along the rice leaf developmental gradient" .
Integrative comparative transcriptomics using cultivated and wild rice reveals key regulators of developmental and photosynthetic ... biorxiv.org/content/10.110… #biorxiv_plants
The Rapid Mechanically Activated (RMA) channel transduces increases in plasma membrane tension into transient calcium influx biorxiv.org/content/10.110… #biorxiv_plants
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