Shiva prasad Profile
Shiva prasad

@shivaprasad_pv

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Following
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Joined July 2015
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@VivekHariSunda1
Vivek Hari Sundar
1 month
@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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@shivaprasad_pv
Shiva prasad
1 month
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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@shivaprasad_pv
Shiva prasad
1 month
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
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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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@shivaprasad_pv
Shiva prasad
3 months
Nice logo and well organized content. Loved the mature and the young leaf😃
@TIFR_Bio
DBS TIFR
3 months
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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@shivaprasad_pv
Shiva prasad
4 months
Super. Congratulations Kalika and team.
@kalikapg
Kalika Prasad @kalikaprasad.bsky.social
4 months
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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@shivaprasad_pv
Shiva prasad
4 months
Congratulations Deb and team. Super.
@TheLahaLab
Debabrata Laha
4 months
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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@NaturePlants
Nature Plants
4 months
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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@Mahen_Son
Mahendra Sonawane
4 months
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.
@UllasKolthur
Ullas Kolthur
4 months
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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@shivaprasad_pv
Shiva prasad
4 months
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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@shivaprasad_pv
Shiva prasad
4 months
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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@NYTObits
NYT Obituaries
4 months
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.
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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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@NCBS_Bangalore
National Centre for Biological Sciences
4 months
#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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@NCBS_Bangalore
National Centre for Biological Sciences
5 months
🎉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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@rajusteffi1
Steffi
5 months
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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@NCBS_Bangalore
National Centre for Biological Sciences
5 months
#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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@poonam_thakur6
Poonam Thakur
5 months
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
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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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@hendersi
Ian Henderson
6 months
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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@KurumizakaLab
Kurumizaka Lab
7 months
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
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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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