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Keiko Sugimoto

@keikosugimoto.bsky.social
194 followers 172 following 11 posts
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Reposted by Keiko Sugimoto
Yasin Dagdas @plantophagy.bsky.social · 15/09/2026
@keikosugimoto.bsky.social is showcasing the incredible biology of plant #regeneration & cell fate change underlying this developmental process @cosheidelberg.bsky.social symposium
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Keiko Sugimoto @keikosugimoto.bsky.social · 14/08/2026
理研からのプレスリリースはこちらです! www.riken.jp/press/2026/2...
riken.jp
冬の低温が植物再生を促進する仕組みを解明
理化学研究所(理研)環境資源科学研究センター細胞機能研究チームのフン・フユ訪問研究員(研究当時、現客員研究員)、杉本慶子チームディレクターらの国際共同研究グループは、長期間の低温が植物の再生能力を高める仕組みを発見しました。
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Keiko Sugimoto @keikosugimoto.bsky.social · 14/08/2026
New publication from the lab! Winter cold doesn't just make plants flower. Long cold also primes them to regenerate🌱❄️. We show cold-induced CBFs recruit HAG1 to switch on key regeneration genes like WOX5. Many congrats to @fu-yu-h.bsky.social! www.cell.com/developmenta...
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Reposted by Keiko Sugimoto
Yetkin Caka Ince @yetkincakaince.bsky.social · 29/06/2026
Many thanks to @keikosugimoto.bsky.social for hosting me and for her support and guidance throughout, to all coauthors and collaborators @johannakrahmer.bsky.social, @deveylderlab.bsky.social, and Mitsuhiro Aida for their contributions.
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Reposted by Keiko Sugimoto
Yetkin Caka Ince @yetkincakaince.bsky.social · 29/06/2026
My postdoc preprint is now online @biorxiv-plants.bsky.social. We established HYDRA, a shoot regeneration assay in Arabidopsis without exogenous hormones, and show that photosynthesis-derived carbon drives regeneration via RBR1 pathway–mediated cell cycle activation. www.biorxiv.org/content/10.6...
biorxiv.org
Photosynthesis-derived carbon gates cell cycle activation to enable hormone-autonomous shoot regeneration
Shoot regeneration is a powerful model for cell fate reprogramming but how it occurs in nature remains poorly understood because studies in Arabidopsis thaliana conventionally rely on in vitro assays ...
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Reposted by Keiko Sugimoto
Bruno Ngou @brunongou.bsky.social · 03/06/2026
Excited to share that I will start my lab this summer as an ECL Unit Leader at RIKEN CSRS! We will study perception by cell-surface receptors across diverse plant species. I’ll be recruiting soon, so please reach out if you’re interested!
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Reposted by Keiko Sugimoto
Plant Science Spotlight @plant-sci.bsky.social · 30/05/2026
🌱✂️ Wounding activates HSFA1 to drive reprogramming. HSFA1 turns on WIND1, PLT3, and ZAT6. SUMOylation keeps it in check #plantscience @theplantcell.bsky.social @duncan-coleman.bsky.social @wigge.bsky.social @deveylderlab.bsky.social @keikosugimoto.bsky.social academic.oup.com/plcell/advan...
academic.oup.com
Wounding activates the HSFA1 transcription factors to promote cellular reprogramming in Arabidopsis
The HEAT SHOCK FACTOR A1 transcription factors rapidly accumulate in the nucleus after wounding and directly activate regenerative pathways in plants.
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Reposted by Keiko Sugimoto
Department of Plant Sciences Cambridge @camplantsci.bsky.social · 27/05/2026
Huge congratulations to Beverley Glover & Uta Paszkowski on being elected Fellows of the @royalsociety.org - a wonderful recognition of their significant contributions to plant sciences! 🎉 Read more: tinyurl.com/3vetucr4 @beverleycubg.bsky.social @paszkowskilab.bsky.social 🧪
Professor Beverley Glover (left) and Professor Uta Paszkowski (right) – new Fellows of the Royal Society 2026. Photos © University of Cambridge.
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Reposted by Keiko Sugimoto
Alexandre Marand @marand-lab.bsky.social · 22/05/2026
Thrilled to announce our newest preprint on #dedifferentiation in Arabidopsis 🧬🌱. We used scRNA-seq and hormone treatments to track transcriptional reprogramming in diverse somatic cell types and found what we think is some pretty cool biology. Feedback welcome! www.biorxiv.org/content/10.6...
biorxiv.org
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Keiko Sugimoto @keikosugimoto.bsky.social · 16/05/2026
Fantastic 2 days to discuss plant cell plasticity and latest single cell & spatial technologies at our ASPIRE & GreenTE gathering 🌱🍃🌿! Many thanks to @PaszkowskiLab & @JST_ASPIRE ❤️.
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Reposted by Keiko Sugimoto
Bert De Rybel @bertderybel.bsky.social · 11/05/2026
Not sure which scRNA-seq platform to use for 🪴 plant samples? How well do doublet detection algorithms really work in 🌱? How can I optimise sample prep ? Find out in our benchmark study! Led by @carogro.bsky.social and @thomaseekhout.bsky.social. Open access at EMBO Journal: doi.org/10.1038/s443...
doi.org
Benchmarking plant single cell RNA-sequencing sample processing strategies - The EMBO Journal
The isolation of single plant cells from complex tissues is prone to selective enrichment and sampling biases, which complicates accurate profiling of the large diversity in cell types. Optimizing methodologies for cell enrichment and single-cell transcriptomics is therefore critical for single-cell studies addressing plant cell heterogeneity. Here, we systematically compared protoplast enrichment technologies (including conventional and image-based flow cytometry, as well as magnetic cell sorting) and single-cell RNA sequencing (scRNA-seq) platforms (10X Genomics Chromium, BD Rhapsody) using Arabidopsis roots. Image-based flow cytometry offered increased precision due to customizable gating strategies, while magnetic sorting provided faster processing and enhanced representation of cell size heterogeneity. Both scRNA-seq platforms captured root cell heterogeneity and yielded reproducible gene expression profiles, but showed platform-associated differences in cell type composition. Notably, single-nucleotide polymorphism analysis of a mixed ecotype sample revealed that, among cells identified as doublets by computational algorithms, two-thirds were likely to have been misclassified. These insights identify key biases in plant cell purification and scRNA-seq workflows and provide practical guidance for improving data quality across plant species.
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Reposted by Keiko Sugimoto
RIKEN @riken-sciverse.bsky.social · 28/04/2026
Are you an aspiring PI? Interested in Japan? It's application season for our ECL program! 🧪 check out the details here: www.riken.jp/en/careers/programs/ri… #sciencejobs #STS #STEMjobs
RIKEN ECL call for applications
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Reposted by Keiko Sugimoto
Chenxin Li, PhD @chenxinli2.bsky.social · 24/04/2026
Really cool paper on somatic mutations during plant yissue culture #PlantScience
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Keiko Sugimoto @keikosugimoto.bsky.social · 23/04/2026
And latest summary on "wound-triggered plasticity in plant regeneration" out in Current Opinion in Genetics and Development. Fun writing with Max Minne www.sciencedirect.com/science/arti...
sciencedirect.com
Wound-triggered plasticity in plant regeneration
Plant regeneration exemplifies the remarkable developmental plasticity of plants, yet how regenerative programs are initiated and spatially restricted…
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Keiko Sugimoto @keikosugimoto.bsky.social · 23/04/2026
Our new preprint! Winter-like extended cold primes plants for regeneration🌱❄️! Work by Fu-Yu Hung, now a new PI in Taiwan!
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Reposted by Keiko Sugimoto
Duncan Coleman @duncan-coleman.bsky.social · 23/04/2026
How do plants respond to wounding? Well it it's not too dissimilar to how they respond to heat. We found that plants utilize the HSFA1 transcription factors to rapidly induce wound-induced regeneration genes after injury. @keikosugimoto.bsky.social @deveylderlab.bsky.social @wigge.bsky.social
doi.org
Wounding activates the HSFA1 transcription factors to promote cellular reprogramming in Arabidopsis
The HEAT SHOCK FACTOR A1 transcription factors rapidly accumulate in the nucleus after wounding and directly activate regenerative pathways in plants.
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Reposted by Keiko Sugimoto
Moi Expósito-Alonso (MOILAB) @mexpositoalonso.bsky.social · 26/03/2026
Our new experimental evolution study across 30+ locations using the plant Arabidopsis thaliana —— we direct "see" adaptation and extinction to different climates at the genetic as it happens! Read it in Science dx.doi.org/10.1126/scie... @ucberkeleyofficial.bsky.social @hhmi-science.bsky.social
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Keiko Sugimoto @keikosugimoto.bsky.social · 26/03/2026
Huge congratulations to Ramin & Birnbaum lab🤩! Very happy we are copublishing complementary work with you guys. Grateful to @JST_ASPIRE for supporting our collaborative efforts in plant regeneration research 🌱.
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Keiko Sugimoto @keikosugimoto.bsky.social · 24/03/2026
www.riken.jp/press/2026/2...
riken.jp
植物再生スイッチの制御原理を解明
理研らの共同研究グループは、植物が傷付いたときなどに組織を再生させる能力のスイッチとして働くWIND1という転写因子が、将来どのような細胞や組織になるかという発生運命を転換する制御原理を発見しました。
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Keiko Sugimoto @keikosugimoto.bsky.social · 24/03/2026
Many congrats to Akira!
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Reposted by Keiko Sugimoto
Nick Talbot @talbotlabtsl.bsky.social · 14/03/2026
Fantastic to see you all together! Have a great evening
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Reposted by Keiko Sugimoto
Dolf Weijers @dolfweijers.bsky.social · 03/03/2026
We are very excited to share a new resource from our team: spatial subcellular proteome maps in plants! We developed an MS-based method that registers localizations of about 8000 proteins in Arabidopsis roots in a single experiment. (1/9) www.biorxiv.org/cgi/content/...
biorxiv.org
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Reposted by Keiko Sugimoto
Momoko Ikeuchi @prunus-persica123.bsky.social · 05/02/2026
I am organizing a concurrent session “Cellular reprogramming and organ regeneration” at #ICAR2026 together with @charlesmelnyk.bsky.social! Submit your abstract by Feb 22 (for oral) and share your exciting science with us🌿 icar2026.sg
icar2026.sg
ICAR 2026
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Reposted by Keiko Sugimoto
Facundo Romani @fromani.bsky.social · 23/01/2026
This is a very special paper for me. I had the idea of combining transcription factor binding with chromatin in 2016/8. It took some time, but thanks to Fred and Vikas, we can finally share the story in @plos.org Genetics looking at chromatin states in Arabidopsis and Marchantia. #PlantScience
journals.plos.org
Chromatin state architecture governs transcription factor accessibility across plant genomes
Author summary In eukaryotes, DNA is tightly associated with histone proteins. Histone covalent modifications and histones isoforms, also called histone variants provide most of the complexity of chro...
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Reposted by Keiko Sugimoto
Paszkowski Lab @paszkowskilab.bsky.social · 06/10/2025
It's been a busy time in the Paszkowski lab! First, a pre-print on how rice distinguishes friend (AM fungi)🍄 from foe (pathogens)👾: doi.org/10.1101/2025... And second, a review on single-cell omic approaches to understand the spatially and temporally complex AM symbiosis 🔬: doi.org/10.1093/jxb/...
doi.org
Defining the pre-symbiotic transcriptional landscape of rice roots
Plants interact with a plethora of organisms in the rhizosphere, with outcomes that range from detrimental to beneficial. Arbuscular mycorrhizal (AM) symbiosis is the most ubiquitous beneficial plant ...
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Reposted by Keiko Sugimoto
Xander Jones @xanderjones.bsky.social · 03/10/2025
Only a few days left to apply! My group is looking for a postdoc to engineer and deploy new tools to precisely manipulate and decode how auxin coordinates plant morphogenesis. @starmorph-syg.bsky.social Research Associate - Reprogramming Development (closes 7 October 2025)
cam.ac.uk
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Reposted by Keiko Sugimoto
Stowers Institute @stowersinstitute.bsky.social · 30/09/2025
(Part 2) “From my first visit, I was struck by the energy and excitement...It feels like being a graduate student again, chasing curiosity wherever it leads." @hhmi.org Investigator David Stern will join the Stowers Institute in Feb. 2026 from @hhmijanelia.bsky.social. Read more: bit.ly/4np96Fb
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Reposted by Keiko Sugimoto
Stowers Institute @stowersinstitute.bsky.social · 30/09/2025
(Part 1) Hear from @hhmi_news Investigator David Stern about his research program and what he's uncovering in the lab. Stern will join the Institute in February 2026, bringing his lab and HHMI appointment to Kansas City. @hhmi.org Read more: bit.ly/4np96Fb
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Keiko Sugimoto @keikosugimoto.bsky.social · 01/10/2025
How do plants regenerate after wounding? Our new work shows that HSFA1 transcription factors are among the earliest wound-activated regulators of cellular reprogramming in plants!
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Reposted by Keiko Sugimoto
David L. Stern @gallseeker.bsky.social · 30/09/2025
It's official! We are moving to Stowers! Very exciting opportunity to expand our studies of insect-plant interactions. We have many opportunities available in biochemistry, development, behavior, genetics, evolution, genomics, AI, and even pest control. Interested in any of these things? Reach out!
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North American Arabidopsis Steering Committee @naascarabidopsis.bsky.social · 22/09/2025
Please share & RSVP to join the November 25th webinar! Hear from the 2025 Philip N. Benfey Arabidopsis Community Lifetime Achievement Awardees! bit.ly/naascawards @plantevolution.bsky.social
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nikogeldner.bsky.social @nikogeldner.bsky.social · 17/09/2025
We are open to every topic within this field, from research on plant viruses to herbivory! Exclusively apply through the link provided, but feel free to contact me with any questions about the position.
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Natanella Illouz-Eliaz @natanellae.bsky.social · 31/08/2025
Our #research on #drought #recovery, now published with @springernature.com in @natcomms.nature.com: Drought recovery in plants triggers a cell-state-specific immune activation. doi.org/10.1038/s414... Read thread below 👇
doi.org
Drought recovery in plants triggers a cell-state-specific immune activation - Nature Communications
Post-drought rehydration triggers a preventive immune response in plants, revealing targets to enhance crop resilience by linking drought stress recovery with improved pathogen resistance.
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Reposted by Keiko Sugimoto
Dolf Weijers @dolfweijers.bsky.social · 09/04/2025
Previously on @biorxivpreprint.bsky.social now online @currentbiology.bsky.social : auxin responses in the streptophyte alga Penium turn out to be highly similar to tryptophan response…PhD work from the amazing @poletc.bsky.social and with @jorgehg.bsky.social www.sciencedirect.com/science/arti...
sciencedirect.com
Auxin and tryptophan trigger common responses in the streptophyte alga Penium margaritaceum
Auxin is a signaling molecule that regulates multiple processes in the growth and development of land plants. Research gathered from model species, pa…
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Keiko Sugimoto @keikosugimoto.bsky.social · 13/08/2025
Our new work uncovering how WIND1 promotes somatic embryogenesis as a bifunctional chromatic regulator!!!! We knew WIND1 promotes new fate acquisition and now we show WIND1 also helps repressing existing identity!
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Luiselotte Rausch @luiselotterausch.bsky.social · 01/07/2025
The best part of conferences: Meeting old friends and making new ones 😊 @davefaveplants.bsky.social @keikosugimoto.bsky.social @ipgsa2025.bsky.social #IPGSA #plantscience
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Fritz Kragler @fritz-kragler.bsky.social · 09/04/2025
fascinated by grafting plants have a look at new review about grafting and exchange of of information between plants written with Ralph Bock www.nature.com/articles/s41...
nature.com
The biology of grafting and its applications in studying information exchange between plants - Nature Plants
This Review discusses the uses of grafting in basic and applied research and summarizes our current understanding of the mechanisms involved in the exchange of genes, genomes, RNA molecules and protei...
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Bert De Rybel @bertderybel.bsky.social · 02/02/2025
A single-cell and spatial wheat root atlas with cross-species annotations delineates conserved tissue-specific marker genes and regulators: Cell Reports www.cell.com/cell-reports...
cell.com
A single-cell and spatial wheat root atlas with cross-species annotations delineates conserved tissue-specific marker genes and regulators
Accurate scRNA-sequencing cluster annotation in less-studied plant species remains a major challenge due to the lack of validated marker genes. Ke et al. provide an orthology-based annotation pipeline...
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Jose M. Estevez @estevezjosem.bsky.social · 02/12/2024
Happy to share my first Preprint here in the Bluesky sciencephere world! Updated manuscript version currently in revision. Please send good vibes and comments! Here, we discover and charaterize two gene regulatory networks that control root hair growth www.biorxiv.org/content/10.1...
Proposed model of two antagonic GRN1 and GRN2 acting at early times on RH growth at low temperature.
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