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Robertas Ursache

@robertasu.bsky.social
1.1K followers 346 following 21 posts

Group leader at CRAG in Barcelona. Interested in cell wall remodeling, cutin and suberin dynamics, optimizing gene editing and histological techniques

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Reposted by Robertas Ursache
Tonni Andersen @tonnigrubeandersen.bsky.social · 29/09/2026
Do you want to know more about plant barriers? Read our new review, here is probably more than you ever wanted :-) . A very fun writing experience with Gwyneth Ingram: Welcome to The Junction: Polymeric extracellular interfaces and barriers in plant life academic.oup.com/jxb/article/...
academic.oup.com
Validate User
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Reposted by Robertas Ursache
bioRxiv Plant Bio @biorxiv-plants.bsky.social · 22/09/2026
Intronised fluorophores improve reporter output and biosensor expression in plants www.biorxiv.org/content/10.64898/20…
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Tonni Andersen @tonnigrubeandersen.bsky.social · 22/09/2026
Check out our new preprint: a very cool fluorescence tool developed by @samwalds.bsky.social www.biorxiv.org/content/10.6...
biorxiv.org
Intronised fluorophores improve reporter output and biosensor expression in plants
Genetically encoded biosensors are central to plant cell biology, but low reporter signal can limit their use. Here, we developed modular intronised fluorophores to improve reporter output in transien...
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Reposted by Robertas Ursache
Michael Raissig @michaelraissig.bsky.social · 07/08/2026
🌾 We're hiring a postdoc! Join the Stomatal Biology group in beautiful Bern @unibe.ch How do grass leaves spatially coordinate development of veins & stomatal rows? 2 years (plus possible extension), funded by @snsf.ch @dfg.de within @cerealcell.bsky.social RU5325 jobs.unibe.ch/job-vacancie...
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Journal of Experimental Botany @jxbotany.bsky.social · 04/08/2026
🌾✂️ RESEARCH ✂️🌾 The combination of CRISPR and RNAi allows additional reductions in immunogenic gluten, associated with celiac disease, in one generation using doubled haploids - Marín-Sanz et al. 🔗 doi.org/10.1093/jxb/... #PlantScience 🧪
Fig. 1.Structure of α-gliadins targeted by CRISPR/Cas. (A) Schematic structure of α-gliadins. Regions encoding for celiac disease (CD)-related epitopes, p31-43 and 33-mer peptides, are indicated, together with the binding sites for the sgRNAs (sgAlpha1 and sgAlpha2). Primer binding sites for amplicon analysis are also shown (aGli900F1 and 33mer1R2_OK). For the amplicon logo representation, translated consensus sequences of α-gliadins were generated from BW208 clones, the NCBI, and RefSeq v1.1 reference genome annotation of bread wheat reported in Marín-Sanz et al. (2023). (B) Sequences of sgRNAs and CD-related epitopes present in the α-gliadin amplicon.
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Tonni Andersen @tonnigrubeandersen.bsky.social · 07/07/2026
Time for another preprint from the lab: www.biorxiv.org/content/10.6... Led by @yuanyuanzhang.bsky.social and @defengshen.bsky.social. We found some surprising secrets that connect and uncouple root barrier formation with systemic nitrogen signaling in shoots. see the thread below for more details
biorxiv.org
A tunable receptor separates root barrier formation from nutrient signaling through ligand-perception states
In roots, the endodermis controls nutrient entry by forming a barrier known as the Casparian strip. Yet how barrier-associated processes interface with systemic signaling remains unclear. Here, we sho...
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Michael Raissig @michaelraissig.bsky.social · 04/07/2026
🌾 Grass leaves are the photosynthetic powerhouses of human civilisation. @lbmountain.bsky.social's transcriptomic atlas of nearly 70,000 cells from shoot apex to mature leaf follows the genetic programs that form a grass leaf 🧬 paper doi.org/10.1093/plce... expression browser shiny.ips.unibe.ch
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Umeå Plant Science Centre @umeaplantsciencecentre.se · 24/06/2026
🧪🌾VACANCY - How do cell-wall properties shape plant growth?🔬 Join Laura Bacete's group @cellwalldynamics.com as a postdoc and combine plant cell wall biology, biophysics and spatial transcriptomics. Apply by Aug 31👇 www.umu.se/en/work-with...
umu.se
Postdoctoral scholarship (2 years) in Plant Cell Wall Biology, Biophysics, and Spatial Transcriptomics
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Umeå Plant Science Centre @umeaplantsciencecentre.se · 22/06/2026
📆 Deadline approaching today! 🌾Are you interested in how plant cells perceive and respond to mechanical signals?🧪 Apply for this postdoctoral scholarship and join @stephanevrg.bsky.social's group. 👉 See the original post for details and application.
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Marc Somssich @somssich.bsky.social · 28/05/2026
Another #PlantScience job opening here at @kwsgroup.bsky.social! We are looking for a #Phytopathology Scientist at our station in Murcia, Spain. As I have already written in one of last posts: Our vegetable division is expanding & it's a good time to get on board! #PlantSciJobs #PlantScienceJobs
jobs.kws.com
Research Scientist Phytopathology (m/f/d)
Research Scientist Phytopathology (m/f/d)
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Plant Science Spotlight @plant-sci.bsky.social · 31/05/2026
🌿🍃 Upper and lower leaf surfaces host different microbes. Upper leaf degradation pathways. Lower leaf biosynthesis and energy. Leaf asymmetry drives phyllosphere ecology. #plantscience @jxbotany.bsky.social @academic.oup.com academic.oup.com/jxb/advance-...
academic.oup.com
Adaxial–abaxial leaf surface asymmetry is a key ecological driver of the phyllosphere microbiome
Abstract. Microorganism-driven ecosystems on leaf surfaces play pivotal roles in regulating plant health and fitness. While individual leaves provide disti
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KleineVehnLab @kleinevehnlab.bsky.social · 29/05/2026
Wanted: Outstanding plant scientist and fantastic colleague. If your science combines fundamental discovery with future applications, we would love to hear from you @dompsfr.bsky.social @biologyunifreiburg.bsky.social @cibss.bsky.social @uni-freiburg.de uni-freiburg.de/en/job/00005...
uni-freiburg.de
University of Freiburg
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Noel Blanco-Touriñán @noelponte.bsky.social · 28/05/2026
Our latest review on the evolution of molecular networks involved in the development of plant conducting tissues is now out in @jxbotany.bsky.social @ibmcp.bsky.social Check it out here: academic.oup.com/jxb/advance-...
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mariebarberon.bsky.social @mariebarberon.bsky.social · 06/05/2026
Early-bird registration for PADiBa2026 closes in few days (May 15th)! wp.unil.ch/padiba2026/
wp.unil.ch
PADiBa 2026 - 7th International Symposium on Plant Apoplastic Diffusion Barriers - Université de Lausanne
7th International Symposium on Plant Apoplastic Diffusion Barriers | University of Lausanne | 31 August-3 September 2026
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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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Leonardo Jo @leonardojo.bsky.social · 16/04/2026
I'm very excited to announce that the Jo Lab is hiring our FIRST EVER PhD candidate! f you're eager to drive discovery in plants, join us at UU Plants! More info: www.uu.nl/en/organisat... Lab website: thejolab.org #Plantbiology #Phd #Job
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Addgene @addgene.bsky.social · 04/05/2026
A synthetic fluorescent nanobody platform for multicolor imaging - thanks to the de Oliveira, Nimmerjahn, and Verkhusha Labs and the whole team! 🧬Find the plasmids here: www.addgene.org/browse/artic...
addgene.org
Addgene: Synthetic multicolor antigen-stabilizable nanobody platform for intersectional labeling and functional imaging.
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Sebastian Soyk @sebastiansoyk.bsky.social · 22/04/2026
🚨Job alert: We are looking for a #phd student to join us @unil.bsky.social to study the evolution & function of gene regulatory sequences in the context of crop domestication using genomics, genome editing and imaging 🌱🍅🧬. #plantscience #scijobs #plantscijobs. Apply here: tinyurl.com/3u73csma
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mariebarberon.bsky.social @mariebarberon.bsky.social · 17/04/2026
Registrations are open for PADiBa2026!
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Plant Cell Atlas @plantcellatlas.bsky.social · 15/04/2026
We are TWO WEEKS AWAY from the second installment of the Plant Cell Atlas Imaging Workshop Series: Introduction to 2D and 3D Segmentation with MorphoGraphX! Don't forget to register! plantcellatlas.org/events
Promotional image for the PCA Imaging Workshop Webinar Series: Introduction to 2D and 3D Segmentation with MorphoGraphX. The promo has a purple background behind text over a green plant cell graphic with a black background. It also includes the details for the webinar including the date/time.
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plasmidsaurus @plasmidsaurus.bsky.social · 15/04/2026
Plasmidsaurus RNA-Seq is now processed in Cologne for our European customers! Ship at ambient temperature with SEQguard Dino Preserve 🦖 • 3-day turnaround • $50/sample (academia), $80 (industry) • Gene expression analysis • Up to ~10M unique transcript 3’ end reads per sample • Interactive results
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Ignacio_Rubio-Somoza @ignaciorubiosomoza.bsky.social · 15/04/2026
#PlantJob do you have experience in metabolomics and want to help us to get to the next level in our research @cragenomica.bsky.social , if so, please consider applying to this post to manage our facility!, please, help us spread the word! recruitment.cragenomica.es/jobs/genomic...
recruitment.cragenomica.es
Metabolomics Platform Scientific Lead (Ref. 20/2026) | CRAGJobs
CRAG is inviting applications for an Established Researcher (R3) position funded under the ESTAB 2024 programme (Modalitat C) of AGAUR.
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CRAG @cragenomica.bsky.social · 27/03/2026
🌱 CRAG launches an international call for early‑career researchers! We invite young scientists interested in starting their independent research group at CRAG 📅 Deadline - April 26 Apply now 👉 f.mtr.cool/jdwzombrbd
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mariebarberon.bsky.social @mariebarberon.bsky.social · 18/03/2026
The 7th International Symposium on Plant Apoplastic Diffusion Barriers (PADiBa2026) will be held in Lausanne, Switzerland from August 31th to September 3rd 2026. We now have a website: wp.unil.ch/padiba2026/ Registrations will open on April 1st.
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Cezary Waszczak @cezarywaszczak.bsky.social · 17/11/2025
jobs.helsinki.fi/job/Helsinki... Postdoc position available in my lab, please spread the news!
jobs.helsinki.fi
Postdoctoral Researcher in Plant Genetics and Cell Wall Biology
Postdoctoral Researcher in Plant Genetics and Cell Wall Biology
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nikogeldner.bsky.social @nikogeldner.bsky.social · 03/10/2025
A long road to the Cover of Science! www.science.org/doi/10.1126/...
science.org
Localized glutamine leakage drives the spatial structure of root microbial colonization
Plant roots release exudates to encourage microbiome assembly, which influences the function and stress resilience of plants. How specific exudates drive spatial colonization patterns remains largely ...
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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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Science Magazine @science.org · 02/10/2025
Using precise spatial and temporal analysis, researchers in Science provide insight into how bacteria around the root interact both with the plant and with each other. Learn more in this week's issue: scim.ag/3WgNajk
A confocal microscopy image shows root-colonizing bacteria clustering around an emerging lateral root, where localized glutamine leakage induces spatially confined reporter activity.
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Dan Kliebenstein @spicybotrytis.bsky.social · 24/09/2025
Fun review of Arabidopsis anti-pathogen metabolism with @somssich.bsky.social and @tonnigrubeandersen.bsky.social. Started to make a complete catalogue and had to focus. Even with all this knowledge, we still haven't studied most Arabidopsis enzymes or metabolites doi.org/10.1093/plph...
doi.org
Guns in Rosettes: The Arabidopsis chemical weapons arsenal
Arabidopsis remains one of the best studied models today and has a number of remarkable chemical defense systems which actively engage, interact and preven
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New Phytologist @newphyt.bsky.social · 08/08/2025
#TansleyReview: Mechanisms driving functional divergence of #TranscriptionFactor paralogs Isabella J. Higgins, Sarah G. Choudury & Aman Y. Husbands 👇 📖 nph.onlinelibrary.wiley.com/doi/10.1111/...
Mechanisms leading to paralog-specific binding profiles.
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Yan Ma @yanma-fungalls.bsky.social · 21/07/2025
First Ma lab #GMI paper is now online! It‘s a mini-review on insect-induced plant #galls —their coolness and research potential! Plant galls induced by insects: Coordinated developmental reprogramming and defence manipulation www.sciencedirect.com/science/arti...
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Ari Pekka Mähönen @apmahonen.bsky.social · 02/07/2025
How plants sense injury in their barrier tissue, periderm? Painstakingly detailed and amazing work by post doc Hiroyuki Iida shows that wounding is sensed by the diffusion of two gases: ethylene and oxygen. @treebiocoe.bsky.social‬ @erc.europa.eu‬ 1/x 🧵 www.nature.com/articles/s41...
nature.com
Plants monitor the integrity of their barrier by sensing gas diffusion - Nature
A study using Arabidopsis shows that plants can monitor the integrity of their outer barriers by sensing gas diffusion, enabling them to initiate wound repair to prevent water loss and pathogen entry.
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Journal of Experimental Botany @jxbotany.bsky.social · 01/07/2025
🌱🧬 SPECIAL ISSUE REVIEW 🌱🧬 Tremblay & Qüesta discuss how examining the seed-to-seedling transition can reveal how non-coding RNAs and epigenetic changes regulate transcription during developmental transitions. 🔗 doi.org/10.1093/jxb/... #PlantScience 🧪 @jiquesta.bsky.social‬
Figure 2 (shortened, see paper for full legend): Long non-coding RNAs participate in both activation and repression of genes preventing germination. (A) Under red and far-red light conditions, phytochrome B (phyB) promotes accumulation of the HIDDEN TREASURE 1 (HID1) lncRNA in the radicle of germinating seeds to repress transcription of genes which slow germination. For the repressor PHYTOCHROME-INTERACTING FACTOR 3 (PIF3), HID1 RNA directly interacts with the chromatin in its promoter region, repressing transcription. For other genes such as the ABA biosynthesis gene 9-CIS-EPOXYCAROTENOID DIOXYGENASE (NCED9), HID1 not only interacts with the chromatin in its promoter region, but also with the histone methylase ARABIDOPSIS TRITHORAX-RELATED7 (ATXR7) to suppress its ability to deposit the activating gene body mark H3K4me3, thus reducing transcription of NCED9. (B) Transcription of the dormancy-promoting gene DELAY OF GERMINATION1 (DOG1) is induced and repressed by different lncRNAs.
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nikogeldner.bsky.social @nikogeldner.bsky.social · 05/06/2025
Check out our latest work, featuring beautiful, first-of-their-kind cryo-tomograms of crucial plant cell wall modifications, Casparian strips, suberin lamellae, lignified xylem walls and more! From our Electron Microscopy Facility led by @chgenoud.bsky.social www.biorxiv.org/content/10.1...
biorxiv.org
Imaging of specialized plant cell walls by improved cryo-CLEM and cryo-electron tomography
Cryo-focused ion beam scanning electron microscopy (cryo-FIBSEM) has become essential for preparing electron-transparent lamellae from cryo-plunged and high-pressure frozen specimens. However, targeti...
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nikogeldner.bsky.social @nikogeldner.bsky.social · 30/05/2025
We have a unique opportunity for a junior researcher, PhD student or postdoc, to use a revolutionary technique for mineral nutrient imaging and tracing in plants. Please re-post! Interested candidates should apply through the portal at the link below: career5.successfactors.eu/career?compa...
career5.successfactors.eu
Career Opportunities: Postdoc or PhD student position in Plant Physiology (22260)
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CRAG @cragenomica.bsky.social · 08/05/2025
🌱 Join us tomorrow at 12:00h for a seminar by Rochus Benni Franke from the University of Bonn in Germany (@unibonn.bsky.social)✨ 📍 CRAG Auditorium 💡 Free entry 👉 www.cragenomica.es/events/crosstalk…
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Kaisa Kajala @kaisakajala.bsky.social · 01/05/2025
Our work on MYBs and WRKY regulating suberin in tomato exodermis is now out in @jxbotany.bsky.social! 🍅 doi.org/10.1093/jxb/... 👩‍🔬 @leonardojo.bsky.social @riannekluck.bsky.social @marianasartur.bsky.social Sara Buti, Alex Cantó-Pastor @bradylabs.bsky.social 🌱 #PlantScience
doi.org
Transcription factors SlMYB41, SlMYB92 and SlWRKY71 regulate gene expression in the tomato exodermis
Abstract. Root barrier cell types, like the endodermis and exodermis, are crucial for plant acclimation to environmental stresses. Deposition of suberin, a
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Brady Lab @bradylabs.bsky.social · 19/04/2025
We have a postdoc position that just opened up in the Brady lab on reprogramming tomato root system architecture in response to changes in nutrient availability - please consider applying! recruit.ucdavis.edu/JPF07095
recruit.ucdavis.edu
Postdoctoral Researcher- Brady Lab
University of California, Davis is hiring. Apply now!
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Lothar Kalmbach @lkalmbach.bsky.social · 11/04/2025
🌱 🔬 🚨 There is a 2-year postdoc position available in my group in Neuchâtel 🚨 Please share! Details here: www.unine.ch/biologie/wp-...
unine.ch
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Rodrigo Reis @rodrigoreislab.com · 10/04/2025
Excellent resource for plant biologists. I hope the plasmids are in @addgene.bsky.social academic.oup.com/plcell/advan...
academic.oup.com
A comprehensive all-in-one CRISPR toolbox for large-scale screens in plants
An all-in-one CRISPR toolbox is developed to aid guide RNA library-based loss-of-function and gain-of-function screens in plants.
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Marc Somssich @somssich.bsky.social · 10/04/2025
📜 Bright and photostable yellow fluorescent proteins for extended imaging 🧑‍🔬 Jihwan Lee, Shujuan Lai, François St-Pierre, et al. 📔 @naturecomms.bsky.social 🔗 www.nature.com/articles/s41... #️⃣ #Microscopy #Imaging #BiologicalImaging #BioImaging #Fluorophores #FluorescentProteins #YFP
nature.com
Bright and photostable yellow fluorescent proteins for extended imaging - Nature Communications
Yellow fluorescent proteins (YFPs) photobleach rapidly, restricting microscopy experiments. Here, the authors report mGold2s and mGold2t, YFPs that extend imaging durations up to 25 times longer than ...
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Tonni Andersen @tonnigrubeandersen.bsky.social · 21/03/2025
Finally! Im so excited to present to culmination of many years of work from the fantastic Defeng Shen and some great collaborators. For details, I have made a digested thread below, but if you are more interested feel free to reach out (and read the paper of course). www.science.org/doi/10.1126/...
science.org
Apoplastic barriers are essential for nodule formation and nitrogen fixation in Lotus japonicus
Establishment of the apoplastic root barrier known as the Casparian strip occurs early in root development. In legumes, this area overlaps with nitrogen-fixing nodule formation, which raises the possi...
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KleineVehnLab @kleinevehnlab.bsky.social · 17/03/2025
We are excited to update you on two distinct auxin oscillations (local & systemic), revealing how root architecture adapts to fluctuating conditions! @cibss.bsky.social @biologyunifreiburg.bsky.social @cbgpmadrid.bsky.social www.biorxiv.org/content/10.1...
biorxiv.org
Two distinct oscillatory auxin signals define the plasticity of lateral rooting in Arabidopsis thaliana
The phytohormone auxin defines lateral root pre-branch sites (PBS) in the growing primary root tip. How PBS contribute to the plasticity of the root system architecture remains incompletely understood...
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Robertas Ursache @robertasu.bsky.social · 15/03/2025
Coming back from an amazing trip to Toulouse. Many thanks for inviting and organizing @stevenmoussu.bsky.social! Exciting discussions with @583original.bsky.social @pierremarcdelaux.bsky.social @mattbnt.bsky.social and everyone else.
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Joop Vermeer @joopvermeer.bsky.social · 26/02/2025
We are hiring! Are you interested in lateral root development and the cellular processes that accommodate these newly formed organs? If yes, apply! We are recruiting a Post-doc (from May 2025) and a PhD student (from September 2025). www.unine.ch/lbmc/jobs/
unine.ch
Jobs - Laboratory of cell and molecular biology
Join Our Team – Open Positions at the LBMC, Vermeer Lab.   We are excited to announce two open positions, please get in touch with Prof. Dr. Joop Vermeer: josephus.vermeer@unine.ch Applications open f...
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ACYR @acyr-crag.bsky.social · 20/02/2025
🎊 We can finally show the program for the ACYR 2025!​ Come to @cragenomica and be part of this edition. Special thanks to our sponsors and collaborators: @agrisera.bsky.social #SemillasFitó @novogene-europe.bsky.social #NZYTech #Sarstedt #VidraFoc #Werfen #CosmoCaixa
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Emmanuelle Bayer @emmanuellebayer.bsky.social · 20/02/2025
Great collaboration with @yvonjaillais.bsky.social 🌱 Plants use membrane contact sites (MCS) for cell-to-cell signaling! ➡️ MCTP tethers & PI4P regulate ER-PM contacts in plasmodesmata, impacting trafficking. ➡️ MCS roles span intra- and intercellular communication. www.cell.com/cell/abstrac...
cell.com
Plasmodesmata act as unconventional membrane contact sites regulating intercellular molecular exchange in plants
Plant intercellular communication is regulated via tubular ER-PM membrane contact through PI4P and MCTP protein tethers.
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Yasin Dagdas @plantophagy.bsky.social · 07/02/2025
Happy to see that our Cell wall integrity #CWI & #ATG8ylation #preprint found a home @natureplants www.nature.com/articles/s41... Congrats Jose, Peng, Alessia & everyone involved. Stay tuned for exciting updates on this story…
nature.com
ATG8ylation of vacuolar membrane protects plants against cell wall damage - Nature Plants
ATG8ylation of the tonoplast, triggered by cell wall damage, acts as a vital vacuolar quality control mechanism that safeguards vacuolar integrity and ensures cell survival under stress.
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Stéphanie Robert @srobertgroup.bsky.social · 16/01/2025
Please spread the word, PhD position in our group! www.slu.se/en/about-slu...
slu.se
Jobs and vacancies at SLU. | slu.se
Jobs and vacancies at SLU. Read more about each job by clicking the job title. Please, follow the instructions closely when applying.
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nikogeldner.bsky.social @nikogeldner.bsky.social · 16/01/2025
Very proud and happy to have contributed to this amazing story led by @priyaramakrishna.bsky.social www.nature.com/articles/s41... @nature.com 🧪
nature.com
Elemental cryo-imaging reveals SOS1-dependent vacuolar sodium accumulation - Nature
This study demonstrates that cryo nanoscale secondary ion mass spectrometry (CryoNanoSIMS) enables direct multi-elemental imaging at subcellular resolution of macro- and micronutrients or trace elemen...
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