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Mayuri Sadoine 🧫🌿🔬

@mayurisadoine.bsky.social
1.6K followers 613 following 2 posts

Junior Professor (Tenure Track) & Group Leader I Chair on Interactions between Plants, Microbes & the Environment. Born @ 351.69 ppm CO2 🇪🇺🇺🇦 #newPI mayurisadoine.academicwebsite.com I @spmir.bsky.social

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Reposted by Mayuri Sadoine 🧫🌿🔬
Alex Costa @labcosta.bsky.social · 20h
Too much water can be a challenge for plants, too! 🌱💧 Our new Spotlight in Molecular Plant explores how COSR channels link hypoosmotic stress to Ca²⁺ signaling. Happy to share this piece with Matteo Grenzi and Yang Zhao! doi.org/10.1016/j.mo...
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Reposted by Mayuri Sadoine 🧫🌿🔬
Isabel saur @izzysaurlab.bsky.social · 02/10/2026
Great to present a major update to our manuscript: www.biorxiv.org/content/10.6... In collaboration with @grandpahiro.bsky.social, @sara-stolze.bsky.social, Matthieu Platre & the teams of Götz Hensel & Gunther Döhlemann we demonstrate that….. (1/x)
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Reposted by Mayuri Sadoine 🧫🌿🔬
Fantin Mesny @mesny.bsky.social · 01/10/2026
5 years ago, @hacquardst.bsky.social and I became very interested in 𝑃𝑙𝑒𝑐𝑡𝑜𝑠𝑝ℎ𝑎𝑒𝑟𝑒𝑙𝑙𝑎 𝑐𝑢𝑐𝑢𝑚𝑒𝑟𝑖𝑛𝑎, an emerging fungal pathogen that colonizes the roots of many plants 🌱 🍅 🌾 🆕📝 Final result of a huge team effort to uncover the bases of its multi-host compatibility👇 www.nature.com/articles/s41...
nature.com
Carbohydrate-active enzymes from a core root mycobiota member enable infection of multiple plant hosts - Nature Microbiology
Host-induced fungal CAZymes act as disease determinants and drive multihost compatibility.
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Reposted by Mayuri Sadoine 🧫🌿🔬
Katharina Melkonian @katharinamel1.bsky.social · 28/09/2026
Our story on DELLA in Marchantia paleacea is now published (including few updates): doi.org/10.1111/nph.... Thanks again to all co-authors!! #PlantScience
doi.org
Stepwise evolution of the developmental and symbiotic functions of <fc>DELLA</fc> in land plants
Proposed model for the stepwise evolution of DELLA functions in the green lineage.
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Reposted by Mayuri Sadoine 🧫🌿🔬
André Marques @amarques.bsky.social · 16/09/2026
Out today in Nature: sex without crossovers. Rhynchospora tenuis makes pollen, fertilises and sets seed, yet 0 crossovers in 10,997 pollen nuclei. Chromosome drive and ~87% seed abortion rebuild the mother's genotype, so the offspring are clones. doi.org/10.1038/s415...
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Mariana Schuster @marischuster.bsky.social · 07/09/2026
I'm excited to share that my newly funded #ERCStG FRONTERA is recruiting two postdoctoral researchers at @ipbhalle.bsky.social 🌱🔬 If you are passionate about plant immunity, proteolysis, membrane proteins, or proteomics, I'd love to hear from you. 🧵 Please RT/share!
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Team Thomma @teamthomma.bsky.social · 08/09/2026
📣...and now for something completely different: no plant pathogens, no Verticillium, but lichens! Driven by our lichen king🤴@ciarankelly.bsky.social with help of a.o. @hroevenich.bsky.social @usadellab.bsky.social @vivienrosenthal.bsky.social Watch for more in future! www.biorxiv.org/content/10.6...
biorxiv.org
Decoupled evolution of antimicrobial repertoires in lichen-forming fungi
Lichens are stable multipartite symbioses in which a fungal mycobiont associates with one or more photosynthetic partners while hosting complex microbiomes. Secreted antimicrobial proteins (AMPs) have...
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Reposted by Mayuri Sadoine 🧫🌿🔬
Jean-Michel Ané @jeanmichelane.bsky.social · 08/09/2026
Latest paper from our lab in collaboration with Jason Wallace and Natalia de Leon -> Genetic determinants of aerial root morphology in Sierra Mixe-derived maize
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Genetic determinants of aerial root morphology in Sierra Mixe-derived maize
Key Message We mapped key regions of the maize genome that influence the formation of aboveground (aerial) roots, which in some varieties have been associated with symbiosis with nitrogen-fixing bacteria. Abstract Modern agriculture relies heavily on chemically synthesized nitrogen fertilizers, which ensure high yields but also carry high economic and environmental costs. Biological nitrogen fixation (BNF) supplies high amounts of nitrogen to legumes, and several avenues of research are underway to extend it to cereal crops. In maize, aerial roots formed in Sierra Mixe landraces have been associated with BNF. However, much of the genetics underlying aerial root morphology remains unknown. Here, we evaluate aerial root morphology traits associated with BNF in three segregating populations derived from crosses between two Midwest-adapted inbred lines and three landraces. Inclusive composite interval mapping (iCIM) with flowering time as a covariate identified 37 quantitative trait loci (QTL) for three aerial root traits (nodes with roots, root size, and roots per node) which exhibit moderately high heritability (H2 = 0.65 to 0.83). The combined proportion of phenotypic variance explained by the detected QTL ranged from 23 to 51%, depending on the trait and population, and potential candidate genes were identified through literature searches, macrosynteny, and gene expression analyses. Introgressing the most relevant aerial root-associated QTL into elite genotypes may provide a path toward achieving meaningful levels of BNF-associated traits in maize, but further work is needed to assess this approach's viability under field conditions.
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Marie-Cécile Caillaud @mc-caillaud.bsky.social · 07/09/2026
@yvonjaillais.bsky.social is opening of the #INTERFACE2026 today at @ensdelyon.bsky.social GDR from @cnrsbiologie.bsky.social @rdplab.bsky.social
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Reposted by Mayuri Sadoine 🧫🌿🔬
Tatsuya Nobori @tatsuyanobori.bsky.social · 03/09/2026
Great work by Ingram & Zipfel labs. Congratulations, everyone! An embryo-derived peptide signal directs endosperm polarity in Arabidopsis www.science.org/doi/10.1126/...
science.org
An embryo-derived peptide signal directs endosperm polarity in Arabidopsis
Angiosperm seed formation requires the coordinated development of the products of double fertilization—the embryo and the endosperm. The endosperm mediates efficient nutrient transfer from surrounding...
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Reposted by Mayuri Sadoine 🧫🌿🔬
IPB Halle @ipbhalle.bsky.social · 03/09/2026
Our junior research group leader, Mariana Schuster, has been awarded the ERC Starting Grant, which comes with a grant of 1.5 million euros. Congratulations @marischuster.bsky.social! #ERCStg @erc.europa.eu More Information: www.ipb-halle.de/en/article/e...
ipb-halle.de
ERC Starting Grant: 1.5 Million Euros for Excellent Research on Plant Immunity
IPB Press Release, September 3, 2026 A great success for plant research at the Leibniz Institute of Plant Biochemistry (IPB) in Halle: The independent junior research group leader Mariana Schuster has been awarded a highly funded ERC Starting Grant from the European Research Council for her FRONTERA project. Over a period of five years and with funding of 1.5 million euros, she and her team will investigate how the targeted cleavage of membrane proteins regulates the immune defense of plants.
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Reposted by Mayuri Sadoine 🧫🌿🔬
Remco Stam @rstam.bsky.social · 30/08/2026
New preprint online! We sequenced several hundred Zymoseptoria isolates from different fields through a field epidemic to ask what really drives short-term evolution. Fungicide selection or seasonal epidemic progression? www.biorxiv.org/content/10.6...
biorxiv.org
Standing genetic variation buffers field populations of Zymoseptoria tritici against seasonal and fungicide selection
### Competing Interest Statement AT was funded by BASF under a formal scientific collaboration agreement. BASF did not exert control over the data collection, analysis, or interpretation of results. ...
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Reposted by Mayuri Sadoine 🧫🌿🔬
Charles Roussin-Léveillée @charlesrleveillee.bsky.social · 28/08/2026
Myth busted: immune activation ≠ immunity 🌱⚔️. We found ETI can trigger full cell death without stopping bacterial growth - if water stays in the apoplast. Want to know what immunity is from a physiological standpoint? 👇 A thread🧵
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Katharina Melkonian @katharinamel1.bsky.social · 17/08/2026
Please check out our latest preprint from the team @lrsv-toulouse.bsky.social with @pierremarcdelaux.bsky.social and many more! Happy to have contributed to this really cool story!
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Mary Williams @PlantTeaching @plantteaching.bsky.social · 16/08/2026
The applications are starting to roll in! A sample News and Views must be submitted with the application, so don't procrastinate 😵‍💫 The blog post lists papers you can write on; if you can't access the one you select, I can send it to you. Good luck 🍀 blog.aspb.org/plantphys_af... Please share!
blog.aspb.org
Plant Physiology is recruiting Assistant Features Editors to start in 2027 and 2028 | Plant Science Today
We are now accepting applications to join the Plant Physiology Assistant Features Editor (AFE) program. These are two-year appointments, starting either in January 2027 or 2028. Since 2018…
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Plant Energy Biology Lab @schwarzlanderlab.bsky.social · 13/08/2026
Dry seeds are not waiting to build mitochondria—they come pre-packaged with cristae and full respiratory complexes. ⚡️🌱🌱🌱 Check out the updated growth-and-division model in @currentbiology.bsky.social doi.org/10.1016/j.cu...
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Charlotte Kirchhelle @ckirchhelle.bsky.social · 29/07/2026
Our latest for your summer reading list: how do plants control growth at the organ surface? So proud of @zoenv.bsky.social's magnum opus and grateful to all the other authors, including Annamaria Kiss, @nathan-german.bsky.social, and @moritznowack.bsky.social! www.cell.com/current-biol...
cell.com
Plant cells at the organ surface use mechanical cues to activate a specific growth-control program
Nemec-Venza et al. show how mechanical signals, such as tissue tension, can activate gene expression in epidermal cells at the surface of Arabidopsis roots. The expression of the edge-specific growth ...
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Reposted by Mayuri Sadoine 🧫🌿🔬
Zoe Nemec Venza @zoenv.bsky.social · 29/07/2026
Out now in @currentbiology.bsky.social the improved version of our paper! I am very proud of this work with @ckirchhelle.bsky.social, @nathan-german.bsky.social, Annamaria Kiss, @moritznowack.bsky.social and others! www.sciencedirect.com/science/arti...
sciencedirect.com
Plant cells at the organ surface use mechanical cues to activate a specific growth-control program
During morphogenesis of multicellular organs, cells in distinct positions need to meet specific functional requirements to form the appropriate tissue…
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Reposted by Mayuri Sadoine 🧫🌿🔬
Team Thomma @teamthomma.bsky.social · 28/07/2026
📣 New preprint! 🧵 Fantastic work led by @antonkraege.bsky.social Fact: Cerato-platanins are everywhere in fungi. Found across the fungal kingdom, implicated in everything from development to virulence to immune activation. But what do they *actually* do? We finally found the answer 👇
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Joris Sprakel @jorissprakel.bsky.social · 25/07/2026
How do transcription factors bind DNA strongly, and in a switch like manner, while remaining sequence specific? Our new paper on a canonical plant TF suggests the answer is a previously underappreciated assembly state: transcription factor nanoclusters. www.science.org/doi/10.1126/...
science.org
Nanoclustering of a plant transcription factor enables strong yet specific DNA binding
Transcription factor nanoclusters balance the DNA binding trade-off between weakly binding oligomers and nonspecific condensates.
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Gabriel Schaaf @gabrielschaaf.bsky.social · 22/07/2026
Please share! 🌱🤖 Permanent W2 Professorship in crop & plant sciences @ PhenoRob, University of Bonn. Especially encouraged: crop genome engineering, sustainable pest control, or sustainable disease control. Expertise in one area is enough. Apply by Sept. 30, 2026. www.uni-bonn.de/en/universit...
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COST Action PlantWallK @plantwallk.org · 20/07/2026
📢 Two postdoc positions available in @mc-caillaud.bsky.social's group (RDP lab, ENS de Lyon), part of an ERC Consolidator. Project: how plant cells orient their division, combining cell biology, molecular genetics, and mechanical modelling. 📅 Deadline: 1 Oct 26 | Start: Nov 26 onwards Details 🧵👇
Recruitment flyer for two postdoc-funded positions in Marie-Cécile Caillaud's group (RDP laboratory, ENS de Lyon, France). Across the top run six scientific images: a line drawing of an Arabidopsis seedling with roots; a 3D digital reconstruction of a shoot apical meristem with orange and purple sectors marking cell lineages; a confocal microscopy image of plant tissue with green cell outlines and red/orange fluorescent nuclei; two paired 3D cell models in orange/green and yellow/purple showing division plane geometry; and a fluorescence microscopy image of a dividing cell with yellow microtubule-like structures and cyan nuclei on a dark background. Below, the title reads "Two Postdoc-funded positions" with an ERC logo, followed by "Deadline: 1st of Oct 2026" and "Starting date: Nov 2026 and onwards" in a bordered box. The body text is organised into sections: PROJECT (describing research into how plant cells orient their division, combining cell biology, molecular genetics, and multiscale mechanical modelling, with a link to the team website), CANDIDATE (looking for motivated candidates with a strong publication record, prior expertise in plant cell biology or biophysics as a plus, working language English), ENVIRONMENT (describing the ERC Consolidator project, the RDP laboratory hosted at ENS de Lyon, an international and gender-balanced working environment, and the city of Lyon), and RECENT PUBLICATIONS (three pinned references: Goldy et al. 2026 in Science Advances, Gascon et al. 2025 in Current Biology, and Lebecq et al. 2023 in Science Advances). An envelope icon box at the bottom right gives instructions to send a single PDF (cover letter, short summary of previous research, CV with publications, and contact details for two to three referees) to marie-cecile.caillaud@ens-lyon.fr.
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Botany One @botany.one · 18/07/2026
Group Leader in Fundamental Biology of Legumes // John Innes Centre, Norwich www.jobs.ac.uk/job/DSG151/g... The John Innes Centre is seeking a junior or established researcher to lead a research programme in fundamental plant biology relevant to legumes or other rotation crops. #BotanyJobs
jobs.ac.uk
Group Leader in Fundamental Biology of Legumes at John Innes Centre, Norwich
An opportunity for an academic position as a Group Leader in Fundamental Biology of Legumes is available, as advertised on jobs.ac.uk. Apply now and explore other academic job openings.
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Universität Münster @uni-muenster.de · 14/07/2026
Researchers led by Professor Iris Finkemeier @ifink-lab.bsky.social from the Institute of Plant Biology and Biotechnology discovered a specific chemical mark in the ‘histone code’ of thale cress that is responsible for adaptation to salt stress. #Biology
uni-muenster.de
Researchers discover a mechanism for salt tolerance in plants
Researchers led by Professor Iris Finkemeier from the Institute of Plant Biology and Biotechnology discovered a specific chemical mark in the ‘histone code’ of thale cress that is responsible for adap...
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Aline Probst @alineprobst.bsky.social · 02/07/2026
Have you ever wondered how the epigenome is modified during the transition from seed to seedling? Here, we show that water uptake by Arabidopsis seeds triggers the eviction of the H2B variant H2B.8, thereby revealing replication-independent chromatin reprogramming. www.nature.com/articles/s41...
nature.com
Replication-independent eviction of the histone variant H2B.8 reveals chromatin reprogramming during seed imbibition - Nature Communications
The transition from seed to seedling requires chromatin reprogramming. By studying the histone variant H2B.8, the authors show that it organizes silent chromatin in dry seeds and reveal that water upt...
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Thomas Ott @ottlab.bsky.social · 08/07/2026
Hey plant colleagues out there! 3 days to go to apply for the plant biotechnology professorship. Great colleagues @biologyunifreiburg.bsky.social, amazing atmosphere @dompsfr.bsky.social, lovely city to settle. And great support by @cibss.bsky.social. www.nature.com/naturecareer...
nature.com
W3 Professorship for Plant Biotechnology - Freiburg im Breisgau, Baden-Württemberg (DE) job with University of Freiburg (Uni Freiburg) | 12859402
The future position holder will lead an internationally recognized research program that combines excellent basic research with clear perspectives for
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Adam Bentham @adamrbentham.bsky.social · 13/07/2026
Excited to see our new preprint on bioRxiv! 🌱🤖 We used AI protein design (RFdiffusion + ProteinMPNN) to build brand-new sensor domains from scratch and installed them in a rice NLR immune receptor engineering recognition of a Fusarium effector FoSSP17
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Michael Raissig @michaelraissig.bsky.social · 08/07/2026
🌾 Every grass leaf shares the same repeating short-long cell pattern in its epidermis. Our new #preprint identifies the protein that builds it. 🔬🧬 📄 preprint: www.biorxiv.org/content/10.6... 🧵⬇️ 1/11
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Christian Kost @kostchristian.bsky.social · 08/07/2026
Very cool work from Gürol Süel's lab: Self-generated hydrogel ejects bacterial cells for localized biofilm dispersion www.nature.com/articles/s41...
nature.com
Self-generated hydrogel ejects bacterial cells for localized biofilm dispersion - Nature Microbiology
Bacillus subtilis biofilms locally disperse by ejecting motile cells through osmotic pressure generated by their poly-γ-glutamic acid hydrogel, a mechanism resembling that through which Cnidaria eject...
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Nick Talbot @talbotlabtsl.bsky.social · 06/07/2026
The mycobiont of the lichen Xanthoria parietina produces the siderophore ferrichrome which enables iron acquisition and nutrient exchange with its algal photobiont. Great collaboration with my group & @metalichen.bsky.social led by Hubertus Haas 👇 www.nature.com/articles/s41...
nature.com
Siderophore production by the lichen fungus Xanthoria parietina supports its algal symbiont - Nature Communications
The mechanisms underlying the adaptation of lichens to nutrient-poor environments are poorly understood. Here, Happacher et al. show that a globally distributed lichen fungus produces an iron-scavengi...
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Ben Engel @cellarchlab.com · 05/07/2026
Happy to help out a bit on this cool study about a membrane-remodeling protein that enables CO2 delivery to Rubisco at the center of the Chlamy pyrenoid, powering efficient carbon fixation 🌍. Great #CryoET work by Hao and Martin — Welcome to #TeamTomo!! ❄️🔬 🧪
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Nick Talbot @talbotlabtsl.bsky.social · 06/07/2026
PhD position in my group for entry in October 2026. Round 3 of the @nrpdtp.bsky.social BBSRC competition. Please RT👇 biodtp.norwichresearchpark.ac.uk/projects/van...
biodtp.norwichresearchpark.ac.uk
Vanishing Virulence: Investigating pathogenicity loss in a plant pathogenic fungus (TALBOT_S26DTP3) | Doctoral Training Partnership
What makes a plant killer lose its edge? This project will investigate why fungal pathogens lose virulence when they are grown in laboratory culture away from their host plant. Use cutting-edge…
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Reposted by Mayuri Sadoine 🧫🌿🔬
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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Peter Etchells @peteretchells.bsky.social · 22/06/2026
Really pleased to see Qing He’s work out in its final form (www.pnas.org/doi/epdf/10....). My group had previously shown that PXY-mediated regulation of cambium development had an ERECTA-mediated influence, but we didn’t understand the mechanism. 🧵
pnas.org
PNAS
Proceedings of the National Academy of Sciences (PNAS), a peer reviewed journal of the National Academy of Sciences (NAS) - an authoritative source of high-impact, original research that broadly spans...
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Marc Somssich @somssich.bsky.social · 01/07/2026
I can highly recommend Mary-Dell's autobiographical article in @plantphys.bsky.social: "Agrobacterium. A Memoir" academic.oup.com/plphys/artic... It's always best to read about great scientific discoveries from the scientists themselves. #PlantScience
academic.oup.com
Agrobacterium. A Memoir
This little memoir is not a review; the reader is directed to current authoritativeAgrobacterium reviews with genetic (23) or cell biology emphasis (24). L
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Thorsten Langner @thorstenlangner.bsky.social · 01/07/2026
‼️Job altert🚨📢 please spread the word: We're looking for a postdoctoral researcher to join our new department "Phytopathology and Plant Protection" at @unihalle.bsky.social. www.verwaltung.uni-halle.de/DEZERN3/AUSS...
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KunzLab@LMU @kunzlab.bsky.social · 20/06/2026
Super exciting work after many conference talks finally seeing the light. Congrats and kudos to all authors: www.biorxiv.org/content/10.6...
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John Innes Centre @johninnescentre.bsky.social · 18/06/2026
VACANCY - Group Leader in Fundamental Biology of Legumes Closing date: 1 September 2026 Salary: competitive Contract: six-year tenure track or direct appointment, depending on experience Apply now: www.jic.ac.uk/vacancies/gr...
We're hiring for a Group Leader in Fundamental Biology of Legumes
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Plant Energy Biology Lab @schwarzlanderlab.bsky.social · 21/05/2026
The final version of our @annualreviews.bsky.social article is now published OPEN ACCESS www.annualreviews.org/content/jour...
annualreviews.org
In Vivo Monitoring of Energy Metabolism with Genetically Encoded Fluorescent Biosensors
All organisms fuel and build themselves through their energy metabolism. While classic biochemistry conceptualizes the fluxes of energy and matter, our understanding of how energy metabolism works in ...
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Thorsten Langner @thorstenlangner.bsky.social · 08/06/2026
‼️Job alert📢🚨 We are recruiting a Junior Group Leader (f) in Protein Science at Martin Luther University Halle-Wittenberg, jointly hosted by the Institute of Biochemistry and Biotechnology and our Collaborative Research Centre CRC 1664 "Plant Proteoform Diversity – SNP2Prot."
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Sophien Kamoun @kamounlab.bsky.social · 05/06/2026
Second face: AVRcap1b blocks the stepwise assembly of a helper NLR resistosome. Same effector, different trick. Very sneaky potato blight business. www.science.org/doi/10.1126/...
science.org
A plant pathogen effector blocks stepwise assembly of a helper NLR resistosome
An RXLR-LWY effector from Phytophthora infestans interferes with helper NLR resistosome assembly to suppress plant immunity.
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Sophien Kamoun @kamounlab.bsky.social · 05/06/2026
You saw them first on @bioRxiv. Now they’re out in print—back-to-back. Meet AVRcap1b: the two-faced immunosuppressor from the potato blight pathogen Phytophthora infestans. www.science.org/doi/10.1126/...
science.org
A potato late blight pathogen effector interacts with ENTH-domain protein TOL9a and an activated helper NLR to suppress immunity
A plant pathogen effector suppresses an activated helper NLR via a host ENTH domain–containing protein, NbTOL9a.
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Nick Talbot @talbotlabtsl.bsky.social · 04/06/2026
Peer-reviewed version of our study led by @aliceeseola.bsky.social first seen on @biorxiv-cellbio.bsky.social showing the exquisite level of control of organelle trafficking & autophagy exerted during plant infection by the blast fungus. Thanks to all co-authors. www.cell.com/cell-reports...
cell.com
Synchronous spatiotemporal control of autophagy and organelle trafficking is necessary for infection by Magnaporthe oryzae
The blast fungus forms a force-generating appressorium for plant infection. Eseola et al. show how individual spore cells adopt distinct fates, trafficking organelles to the appressorium or undergoing...
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Isabel saur @izzysaurlab.bsky.social · 04/06/2026
We have an open PhD position in our Mol. Biochemistry of Plant-Microbe Interactions Lab Saurlab.com. Please see details below, share and consider applying. jobportal.uni-koeln.de/ausschreibun...
jobportal.uni-koeln.de
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Charlotte Kirchhelle @ckirchhelle.bsky.social · 16/04/2026
I am thrilled and beyond grateful to receive a CNRS bronze medal this year - this is an incredible honour especially for an INRAE researcher like myself! A big thanks to my amazing team and the research community @RDP for all the great science we have done together!
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Charlotte Kirchhelle @ckirchhelle.bsky.social · 15/05/2026
Incredibly proud of this paper showing how plants couple vesicle delivery and phragmoplast expansion during division. This project started in the lab of the great and late Ian Moore, and it was a joy to finish it with @liamelliottplants.bsky.social et al! link.springer.com/article/10.1...
link.springer.com
A Rab/Kinesin-12/kinase module couples vesicle delivery and phragmoplast dynamics during plant cell cytokinesis - The EMBO Journal
Cytokinesis is a key process in the development of multicellular organisms, through both formative and proliferative divisions. In land plants, successful cytokinesis requires precise targeting of Gol...
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Reposted by Mayuri Sadoine 🧫🌿🔬
Sjon Hartman @hartman-plantlab.com · 05/05/2026
So happy and proud to share our lab’s first #plantscience research article, revealing that angiosperms have the capacity to encode memory of flooding stress. A heroic effort by @aidamaric.bsky.social in collaboration with @djgibbs.bsky.social and others. A brief 🧵 www.biorxiv.org/content/10.6...
biorxiv.org
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Reposted by Mayuri Sadoine 🧫🌿🔬
Sjon Hartman @hartman-plantlab.com · 02/06/2026
Excited to see our #plantscience review published in @jxbotany.bsky.social! It really captures our lab’s perspective on how plants use spatiotemporal signaling under environmental contexts when floods occur, to coordinate acclimation responses and achieve stress tolerance. doi.org/10.1093/jxb/...
doi.org
Anticipate, acclimate, recuperate and remember: How spatiotemporal signal integration controls flooding stress resilience in plants
Abstract. Flooding is a major abiotic stress that restricts terrestrial plant growth and survival. A plant tissue’s ability to avoid or sustain critical ox
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Reposted by Mayuri Sadoine 🧫🌿🔬
Mary Williams @PlantTeaching @plantteaching.bsky.social · 21/05/2026
Social Identity Matters in Mentoring: Applications are NOW OPEN for the Fall SI-MI Mentoring Course. This is a free, online training aimed to help plant scientists be more effective mentors, emphasizing how social identity impacts the mentoring relationship. rootandshoot.org/simi2026/
Social Identity Matters in Mentoring: Applications are NOW OPEN for the Fall SI-MI Mentoring Course. 
The SI-MI Mentoring (Social Identity Matters in Mentoring) Program has been developed by a cross-Society group of plant scientists at all career stages. 
This is a free, online training aimed to help plant scientists be more effective mentors, emphasizing how social identity impacts the mentoring relationship. Through guided readings, reflective homework, and live virtual discussions, participants will explore how identity, power, and culture shape mentoring interactions in academic and professional environments. Spaces are limited, applications close on July 20.
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