Shiva prasad
@shivaprasad_pv
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Joined July 2015
https://t.co/7XNFF8N6kI Congratulations to the team! @harshithcy @Dipasmit_pc @rajusteffi1 , RijuDey @shivaprasad_pv
@NCBS_Bangalore @TIFRScience @ThePlantJournal @WileyGlobal @DAEIndia
onlinelibrary.wiley.com
Wound response in plants is a dynamic event involving a significant transcriptional reprogramming. Monocots display distinct phenotypes upon wounding, and the molecular mechanism involved in early...
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@NCBS_Bangalore @harshithcy @shivaprasad_pv Congratulations to @harshithcy and @shivaprasad_pv. This work bridges the gap in understanding of how wounding responses are articulated in plants through a transcriptional network.
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This follows our earlier work where we showed how early signalling involving peptides-PEP and PSK, dictated quick growth transition post wounding. Here we show how WRKY53 manages this growth vs defence balance. Thanks to all coauthors. Many thanks to @NCBS_Bangalore @TIFRScience
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Paper alert! Second first author paper from super talented @harshithcy now in @plantjournal OsWRKY53 dictates wound responses in rice through fine-tuning crosstalk between PEP and PSK-mediated signalling - PubMed
pubmed.ncbi.nlm.nih.gov
Wounding is a major event during the multitude of stresses that plants face in their natural environment. Wound response is very dynamic and involves the integration of various regulatory networks...
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Nice logo and well organized content. Loved the mature and the young leaf😃
Presenting to you our new department website — a vibrant reflection of our community and its spirit. Designed entirely by our student- @SumitSen616, the site carries a beautiful ethnic touch that makes it truly unique. @TIFRScience @IndiaBioscience
https://t.co/cxn9aLCXVh
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Super. Congratulations Kalika and team.
Our new paper is out! 1/16 How does an organ rebuild its shape after injury? It's not just about making new cells, but aligning them in the right direction — like bricks shaping a structure. https://t.co/oZ4zLCOVCm
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Congratulations Deb and team. Super.
Deeighted to share our on "GA-independent DELLA regulation by inositol pyrophosphate in a nonvascular land plant", published now in Nature Chemical Biology @nchembio. Excellent efforts by @Priyans73221614 Priyanshi, a brilliant graduate student in my lab.
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New OA Article: "Water availability positions auxin response maxima to determine plant regeneration fates" https://t.co/yhFv9197kM High water availability induces root regeneration whereas low water availability triggers callus formation via stress hormones...
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This will be an exciting opportunity for basic biologist and clinical researchers working in the areas of metabolic health, nutritional epidemiology, and development. Please join.
Join ARUMDA symposium; share ur work; collaborate; discovery science & clinical research; national missions; Aug 1-2; RT; #publichealth #Nutrition #Metabolism #Malnutrition #NCDs @TIFRScience @TIFRH_buzz @Mahen_Son
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OsCLY4 regulates RdDM and neighboring genes at several sites, but its silencing also led to hypermethylation that we also saw in OsCLSY3 mis-expression lines. What is not under CLY3 control is under CLSY4 control. See what OsCLSY3 does here
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Preprint alert! Here is the second chapter from @AvikKumarPal1, a fantastic PhD student. We show endosperm-specific roles of OsCLSY4 chromatin remodeler especially its involvement in grain quality. Comments welcome @NCBS_Bangalore @TIFRScience @DAEIndia
https://t.co/WlCtFgxqmO
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Franklin W. Stahl, a molecular biologist who helped create a methodology to confirm how DNA replicates so elegant that the research has been remembered for more than five decades as “the most beautiful experiment in biology,” has died at 95.
nytimes.com
He and a colleague proved a theory advanced by the Nobel Prize winners James Watson and Francis Crick, who discovered DNA’s helical structure.
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#AwardHighlight!🏆 Steffi Raju, graduate student from @shivaprasad_pv lab was one among the ten Early Career Researchers to receive the travel award from @AABiologists to attend the International Conference on Arabidopsis Research at Ghent, Belgium 🎉Congratulations @rajusteffi1!
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I'm so happy to see our new paper out @NatureComms. Check it out! We found nucleosome dynamics linked to local #chromatin transitions. https://t.co/8fZA2YOizy
nature.com
Nature Communications - Montez et al. show that cold induces local nucleosome dynamics mediated by a non-sequence-specific DNA-binding protein important for controlling flowering time in plants....
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🎉We are very excited and proud to share that Prof. Uma Ramakrishnan, Professor at @NCBS_Bangalore, has been elected as an Associate Member of @EMBO ! 🌟Congratulations Prof. @uramakri ! 🔗 https://t.co/qv5F7QdBSc
#EMBOMembers2025
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It has been a great week of phenomenal science and amazing discussions I am glad to receive travel award from Association of Applied Biologists @AABiologists to attend and present at #ICAR2025 Big thanks to @shivaprasad_pv, @NCBS_Bangalore, @Infy_Foundation for all the support.
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#ResearchExplained! In a first, @VivekHariSunda1 & team from Dr @shivaprasad_pv's group at NCBS has identified a new H4 histone variant in rice which may have helped semi-aquatic rice varieties adapt to changing environments.🌾 Read here: https://t.co/qSdVksCjht By @Rupsykhurana
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Excited to share our new preprint! α-Synuclein misfolding is a key event in #Parkinson disease. But what happens when it gets glycated—a non-enzymatic change promoted by high sugar levels in #diabetes or hyperglycemia? https://t.co/QJ4qORSYrd
biorxiv.org
Alpha-synuclein (α-Syn) misfolding and aggregation are key drivers of Parkinson’s disease (PD) pathology. Mutations and certain post-translational modifications impact its aggregation propensity and...
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A three year postdoctoral position is available in my group, investigating plant centromere structure, function and evolution @plantsci
https://t.co/mW072iZPGz
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Check out our paper on the cryo-EM analysis of chromatin derived from human cells! We have established a technically accessible method for analyzing the chromatin structure prepared from human cells. https://t.co/jWpzRJ8XHW
onlinelibrary.wiley.com
We have established a method for the cryo-EM structural analysis of native mono- and poly-nucleosomes extracted from human cells. Single particle cryo-EM and cryo-electron tomography analyses have...
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