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Baptiste Castel

@baptistebio.bsky.social
238 followers 208 following 38 posts

🌿 Plant biologist 👨‍🔬 Post-doc with Pierre-Marc Delaux and Christophe Jacquet at the LRSV, Toulouse (FR) 🛡️🧬 Interested in the plant immune system and its evolution

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Reposted by Baptiste Castel
Mariana Schuster @marischuster.bsky.social · 27/09/2026
Still one week to apply!
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Clémence Marchal @clemmar.bsky.social · 12/09/2026
Goodbye Norwich! I had such a great time at the @kamounlab.bsky.social Alumni and friends meeting, followed by #ECPP2026 and #BSPP2026, reuniting with old friends, and making new ones. It's always so special to come back to the fine city. Until next time!
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Sorek Lab @soreklab.bsky.social · 23/04/2026
We found that TIR domains in animal immune proteins, including the human TLR4, are enzymes that cleave NAD+ to produce the signaling molecule cADPR Read our new preprint by talented Bohdana Hurieva: “Conserved catalytic activity of immune TIR domains in animals” www.biorxiv.org/content/10.6...
biorxiv.org
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Katharina Melkonian @katharinamel1.bsky.social · 04/03/2026
1/ ✨ New preprint alert ✨ It is my pleasure to share: "Stepwise evolution of the developmental and symbiotic functions of DELLA in land plants" Here we investigated the role of the single GRAS transcription factor DELLA in #MyMarchantia doi.org/10.64898/202... #PlantScience A thread...
doi.org
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Maxime Bonhomme @maximebonhomme.bsky.social · 18/02/2026
Research highlight by @natplants.nature.com on our study at @lrsv-toulouse.bsky.social : Fungi genes to fight fungi ! ⏬️
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Kranzusch Lab @kranzuschlab.bsky.social · 18/02/2026
Congratulations to Sonomi Yamaguchi for her paper at @nature.com. Sonomi discovered Clover defense and explained how nucleotide signals control each step of viral sensing, immune regulation, and viral restriction – named for her beautiful "four-leaf" structures 🍀 www.nature.com/articles/s41...
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Sophien Kamoun @kamounlab.bsky.social · 07/02/2026
Benthamiana rhapsody 🎶 🌱 How benthi is the go-to system for cracking the activation mechanism of an Arabidopsis TIR-NLR immune receptor— that’s the rhapsody. Congrats He Zhao and Selvaraj for this wonderful collaboration 👇🏼 doi.org/10.64898/202...
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Baptiste Castel @baptistebio.bsky.social · 10/02/2026
CPK28 was already present in the first land plant, and presents a paradox: the Marchantia version can perfectly replace the Arabidopsis version for immunity, but does not seem to participate to immunity in Marchantia ... A lot more molecular data here => www.biorxiv.org/content/10.1...
biorxiv.org
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PM Delaux @pierremarcdelaux.bsky.social · 05/02/2026
1/9 Our latest paper on immunity mechanisms in Marchantia just out @pnas.org ! 🔽 Close collaboration between our former PhD students @karimaelm.bsky.social and @chloe-beaulieu.bsky.social ! and the old gard @jacquet-chris.bsky.social @maximebonhomme.bsky.social www.pnas.org/doi/10.1073/...
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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Baptiste Castel @baptistebio.bsky.social · 23/01/2026
Congratulations Sylvain and @nemopeeters.bsky.social !
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Jiorgos Kourelis @jiorgoskourelis.bsky.social · 23/01/2026
📢 2 PhD Positions Available in Plant Immune Receptor Bioengineering at Imperial College London 🌱 Start: Oct 2026 📅 Deadline: 10 Feb 2026 🇬🇧 UK/settled status only 💰 Fully funded (48 months) ℹ️ Info: shorturl.at/po61I #PlantImmunity #PlantPathology #SyntheticBiology 🙏 Share with interested candidates!
imperial.ac.uk
PhD Opportunities | Faculty of Natural Sciences | Imperial College London
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John Innes Centre @johninnescentre.bsky.social · 22/01/2026
VACANCY - We're looking for a Postdoctoral Researcher to join the @philcarella.bsky.social Group, working in the field of Evo-MPMI (Evolutionary Molecular Plant-Microbe Interactions). okt.to/yIlgTU Closing date - 10 February 2026 Salary - £37,500 - £45,350 Contract - Full-time, 3 years
okt.to
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Anna-Liisa Laine @annaliisalaine.bsky.social · 19/01/2026
New paper led by @hannasusi.bsky.social shows biodiversity responses to carbon farming are highly context-dependent—varying by management, index and taxa 🌱🪱🐞🐦. Abundance is the most sensitive early indicator for detecting biodiversity impacts! www.sciencedirect.com/science/arti...
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Phil Carella @philcarella.bsky.social · 14/01/2026
We’re looking for a postdoc to investigate Pseudomonas viridiflava virulence across diverse plant lineages. The 3yr position will combine plant and microbial molecular biology to understand core processes of infection - email for more info & apply online @ www.jic.ac.uk/vacancies/po...
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Ologies with Alie Ward @ologies.bsky.social · 03/12/2025
WE GOT FERNS, folks. I hope you like ferns. If you don’t, just listen and you will like ferns. 🌿🌿🌿 Dr. Li is hilarious and charming and you will love him. And ferns. In conclusion: ferns. www.alieward.com/ologies/pter...
alieward.com
Pteridology (FERNS) with Dr. Fay-Wei Li — alie ward
Fronds. Forest dwellers. Spores. Houseplants. Queer icons. We’ve got ferns. The charming and hilarious professor and author of “Ferns: Lessons in Survival from Earth’s Most Adaptable Plants,” Dr. Fay-...
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bioRxiv Plant Bio @biorxiv-plants.bsky.social · 12/01/2026
A novel pathosystem between Aeschynomene evenia and Aphanomyces euteiches reveals new immune components in quantitative legume root-rot resistance. www.biorxiv.org/content/10.64898/20…
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Erez Yirmiya @erezyirmiya.bsky.social · 04/12/2025
I’m happy to share our new preprint! We uncovered the full diversity of bacterial TIR-based antiviral immune signaling, massively expanded the known diversity of Thoeris systems, and revealed conservation of TIR-derived immune signals across the tree of life. www.biorxiv.org/content/10.6...
biorxiv.org
Systematic discovery of TIR-based immune signaling systems in bacteria
Toll/interleukin-1 receptor (TIR) domains are important for immune signaling across humans, plants and bacteria. These domains were recently found to produce immune signaling molecules in plant immuni...
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Nick Talbot @talbotlabtsl.bsky.social · 28/11/2025
New preprint from our group led by @metalichen.bsky.social on the discovery of a Starship giant transposable element in the genome of a lichen-forming fungus.
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Phil Carella @philcarella.bsky.social · 28/11/2025
PhD opportunity in our lab - deadline passes on Dec 2nd - don’t miss out!
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Leo Castanedo @leocastanedo.bsky.social · 04/11/2025
🛑Exciting update from our work with @pierremarcdelaux.bsky.social team on the ericoid mycorrhizal symbiosis❗❗ 🔥New results support a conserved three-gene module and master regulator for nutrient-responsive intracellular accommodation of fungal symbionts🤯 Check the nice thread below👇🏼 #plantscience
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PM Delaux @pierremarcdelaux.bsky.social · 04/11/2025
Sooo happy to see this preprint out 🍄☘️! Congratulations @leocastanedo.bsky.social @katharinamel1.bsky.social et al. ! It has been a long journey, from developing ericoid-mycorrhizae in the lab (Leo) to the genetics in Marchantia (Katharina), and many other details (#teamwork)
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Baptiste Castel @baptistebio.bsky.social · 04/11/2025
Congratulations!
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Pingtao Ding (he/him) @dinglab.bsky.social · 24/10/2025
Humbly share our latest work led by @himanshuchhillar.bsky.social my phd student And thanks to all collaborators Henk-jan @brunongou.bsky.social @jonathandgjones.bsky.social
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Baptiste Castel @baptistebio.bsky.social · 13/10/2025
1\ bmcbiol.biomedcentral.com/articles/10.... 🌿🌿Our article on fern immunity has been peer-reviewed 🌿🌿 Thanks to @madeleinebaker.bsky.social @kellerjeanphd.bsky.social @maximebonhomme.bsky.social @pierremarcdelaux.bsky.social and @jacquet-chris.bsky.social a quick thread 🧵 1/4
bmcbiol.biomedcentral.com
Exploring fern pathosystems and immune receptors to bridge gaps in plant immunity - BMC Biology
Land plants include angiosperms, gymnosperms, bryophytes, lycophytes, and ferns, each of which may deploy distinct strategies to resist pathogens. Here, we investigate fern-pathogen interactions by characterizing novel pathosystems and analyzing the diversity of fern immune receptors. A collection of fern species was inoculated with a diverse set of filamentous microbes, and disease symptoms were assessed. We further leveraged published genome mining tools to analyse the diversity of receptor-like kinases, receptor-like proteins (RLKs/RLPs) and nucleotide-binding and leucine-rich repeats (NLRs), along with key immune signalling components, in ferns. Our results reveal that ferns exhibit a range of responses to pathogens, including putative non-host resistance and more specific resistance mechanisms. Among ten ferns tested, Pteris vittata displays the broadest spectrum of pathogen compatibility. Genome mining indicates that ferns encode a diverse repertoire of putative immune receptors, antimicrobial peptides, and mediators of systemic acquired resistance. Ferns possess numerous RLKs/RLPs, resembling those required for cell-surface immunity in angiosperms. They also encode diverse NLRs, including sub-families lost in flowering plants. These findings provide insights into disease resistance evolution and open promising perspectives for crop protection strategies.
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PM Delaux @pierremarcdelaux.bsky.social · 09/10/2025
A first dive in fern x pathogen interaction! More to come! Congratulations @baptistebio.bsky.social @jacquet-chris.bsky.social et al.!
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Jacquet-chris @jacquet-chris.bsky.social · 09/10/2025
Want to see ferns under attack and how they respond to pathogens? Check out our latest paper! doi.org/10.1186/s129... Congrats on this huge team effort to @baptistebio.bsky.social @madeleinebaker.bsky.social @kellerjeanphd.bsky.social @maximebonhomme.bsky.social @pierremarcdelaux.bsky.social
Various ferns species inoculated with S. sclerotiorum.
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PM Delaux @pierremarcdelaux.bsky.social · 06/10/2025
~12 years after we coined it EPP1 with @oswaldovaldesl.bsky.social one afternoon when we were postdoc with @jeanmichelane.bsky.social! Congrats @melaniekrich.bsky.social @tatiana-vernie.bsky.social et al. for the hard work! EPP1 is the fourth member of the Common Symbiosis Pathway 🍄🌱!
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Baptiste Castel @baptistebio.bsky.social · 06/10/2025
www.biorxiv.org/content/10.1... and www.biorxiv.org/content/10.1... Two papers to tell us more about mysterious EPP1, a protein required for symbiosis. Well done @tatiana-vernie.bsky.social and all co-authors.
biorxiv.org
EPP1 is an ancestral component of the plant Common Symbiosis Pathway
The success of plants on land has been enabled by mutualistic intracellular associations with microbes for 450 million years ([Delaux and Schornack 2021][1]). Because of their intracellular nature, th...
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PM Delaux @pierremarcdelaux.bsky.social · 01/10/2025
...and three more fern genomes @molbioevol.bsky.social ! Not-so-static static lineages! academic.oup.com/mbe/advance-...
academic.oup.com
Resolving the stasis-dynamism paradox: Genome evolution in tree ferns
Abstract. The paradox of evolutionary stasis and dynamism—how morphologically static lineages persist through deep geological periods despite environmental
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John Innes Centre @johninnescentre.bsky.social · 03/10/2025
VACANCY - Independent research fellowships leading to tenured positions We’re inviting applications from outstanding researchers who either hold, or wish to apply for, Independent Research Fellowships. APPLICATION DEADLINE: 10 November 2025 Click here to apply: jic.link/Fellows
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Baptiste Castel @baptistebio.bsky.social · 05/10/2025
www.cell.com/trends/ecolo... Fun read today: Did figs and chilli peppers 'domesticated' humans?
cell.com
Beyond mutualism: the nature of domesticator–domesticate interactions
The literature on domestication commonly calls the association between human domesticators and their plant and animal domesticates mutualistic, yet this designation is rarely examined critically. Here...
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Sandy Hetherington @sandyheth.bsky.social · 21/09/2025
Our recent paper @newphyt.bsky.social @anajusagasti.bsky.social @instmolplantsci.bsky.social is featured today in the Sunday Post! Thanks Sally McDonald for your piece helping to promote and communicate Scotland’s rich fossil heritage nph.onlinelibrary.wiley.com/doi/10.1111/...
Page 11 of the Sunday Post. With story 'Fossil find is modern-day Jurassic spark'. The title image is of dinosaurs and below is an image of fossil wood, and a photograph of Anajú Sagasti and Sandy Hetherington
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Bruno Ngou @brunongou.bsky.social · 04/09/2025
Very happy to share our latest work “Systematic discovery and engineering of synthetic immune receptors in plants” out in @science.org ! www.science.org/doi/10.1126/...
science.org
Systematic discovery and engineering of synthetic immune receptors in plants
Plants deploy a diverse array of pattern recognition receptors (PRRs), which perceive microbe-associated molecular patterns to activate immune responses. Leucine-rich repeat receptor-like kinase subgr...
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Jean-Michel Ané @jeanmichelane.bsky.social · 26/08/2025
Outstanding paper ! -> receptor-like cytoplasmic kinase AeRLCK2 mediates Nod-independent rhizobial symbiosis in Aeschynomene legumes | The Plant Cell | Oxford Academic
sco.lt
receptor-like cytoplasmic kinase AeRLCK2 mediates Nod-independent rhizobial symbiosis in Aeschynomene legumes
Many plants interact symbiotically with arbuscular mycorrhizal fungi to enhance inorganic phosphorus uptake, and legumes also develop a nodule symbiosis with rhizobia for nitrogen acquisition. The establishment and functioning of both symbioses rely on a common plant signaling pathway activated by structurally related Myc and Nod factors. Recently, a SPARK receptor-like kinase (RLK)/receptor-like cytoplasmic kinase (RLCK) complex was shown to be essential for arbuscular mycorrhiza formation in both monocot and dicot plants. Here, we show that in Aeschynomene legumes, the RLCK component of this receptor complex has undergone a gene duplication event and mediates a unique nodule symbiosis that is independent of rhizobial Nod factors. In Aeschynomene evenia, AeRLCK2 is crucial for nodule initiation but not for arbuscular mycorrhiza symbiosis. Additionally, AeRLCK2 physically interacts with and is phosphorylated by the cysteine-rich RLK, AeCRK, which is also required for nodulation. This finding uncovers an important molecular mechanism that controls the establishment of nodulation and is associated with Nod-independent symbiosis.
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Shanshan Wang @shanshanwang3.bsky.social · 04/08/2025
Super excited to share our new preprint! 🎉 This project has been an incredible learning experience, thanks to the amazing lab and wonderful people I get to work with. Huge thanks to my supervisor! @plantevolution.bsky.social
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PlantEvolution 🌱🌾 @plantevolution.bsky.social · 02/08/2025
1/3 New preprint led by Shanshan Wang, in collaboration with the Timmermans lab. Several groups have presented sc/snRNA-seq analyses of Arabidopsis leaves after bacterial infection before. Is there anything left to discover? Turns out: Yes. #plantscience www.biorxiv.org/content/10.1...
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Pingtao Ding (he/him) @dinglab.bsky.social · 23/07/2025
For those who are not familiar with SA research history, we humbly introduce a review we wrote years ago: www.cell.com/trends/plant... @cp-trendsplantsci.bsky.social
cell.com
Stories of Salicylic Acid: A Plant Defense Hormone
Salicylic acid (SA) is a key plant hormone required for establishing resistance to many pathogens. SA biosynthesis involves two main metabolic pathways with multiple steps: the isochorismate and the p...
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Aude Bernheim @audeber.bsky.social · 24/07/2025
🦠🧍‍♀️From bacterial to human immunity. We report in @science.org the discovery of a human homolog of SIR2 antiphage proteins that participates in the TLR pathway of animal innate immunity. Co-led wt @enzopoirier.bsky.social by D. Bonhomme and @hugovaysset.bsky.social www.science.org/doi/10.1126/...
science.org
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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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Léa Monge-Waleryszak @lwaleryszak.bsky.social · 15/07/2025
Are chromatin remodelling complexes targets of bacterial effectors PopP2 & XopJ6 ? Check out our work at #2025ISMPMI ! P-163 presented Wednesday afternoon by my amazing PhD supervisors Laurent Deslandes & Valerie Pacquit. @lipme-toulouse.bsky.social @ismpmi.bsky.social
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Şuayb Üstün @suaybuestuen.bsky.social · 16/07/2025
@charlesrleveillee.bsky.social is introducing the concept of „EDEN“ in his talk in the concurrent session „local and inter-organ signaling“ #2025ISMPMI see also his great review: www.nature.com/articles/s41...
nature.com
Extracellular niche establishment by plant pathogens - Nature Reviews Microbiology
In this Review, Roussin-Léveillée, Mackey and colleagues examine microorganism interaction with and manipulation of the plant apoplast. Effector-driven extracellular niche establishment is conceptuali...
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Dani Stevens, Ph.D. @danimstevens.bsky.social · 16/07/2025
#2025ISMPMI 📣 In silico screening of PRR-epitope interactions is now possible! Here, we developed mamp-ml to predict their immunogenic outcomes without structural context. Let's accelerate engineering plant receptors for robust resistance! 🚀🌱 Small 🧵 www.biorxiv.org/content/10.1...
biorxiv.org
mamp-ml: A deep learning approach to epitope immunogenicity in plants
Eukaryotes detect biomolecules through surface-localized receptors, key signaling components. A subset of receptors survey for pathogens, induce immunity, and restrict pathogen growth. Comparative gen...
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Baptiste Castel @baptistebio.bsky.social · 14/07/2025
@federicalocci.bsky.social presents the fonction of non canonical TIR immune receptors #2025ismpmi
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Baptiste Castel @baptistebio.bsky.social · 14/07/2025
Full room for @keehoonsohn.bsky.social presentation #2025ismpmi
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Şuayb Üstün @suaybuestuen.bsky.social · 14/07/2025
Fantastic plenary talk by Nuria Coll @bactodeath.bsky.social on how to use metabolic engineering to make plants resistant to vascular pathogens #2025ISMPMI
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Frank Menke @frankmenke.bsky.social · 14/07/2025
Poster at #ISMPMI2025 from collaborations with @sainburylab.bsky.social #Proteomics group: P011 ( @isabelmonte.bsky.social ), P073 ( @HeeKungAng group), P086 & P034 (Zipfel group) P101 ( @tolgaboz.bsky.social ) and P130 ( @jonathandgjones.bsky.social and XiaoLin)
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Baptiste Castel @baptistebio.bsky.social · 14/07/2025
@geminiteamlab.bsky.social reminds us the importance of virology in plant immunity research #2025ismpmi
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Laura Medina-Puche @lauramepul.bsky.social · 13/07/2025
Interested on (gemini)viral peptides? 🦠🍅 ➡️ Come see my poster at #2025ISMPMI @geminiteamlab.bsky.social 🧾 Poster P-003: Mon 14th, Session 1 #unpublished-results #I’lldraw’em4U 💥
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Josie Maidment @jmaidment.bsky.social · 13/07/2025
Looking forward to the start of #2025ISMPMI today! If you're interested in structural studies of effector/host target complexes, come talk to me! 🗣️ Talk: Thurs 17th 16:25 Concurrent session "Structure Informed Synthetic Biology: From Design To Function" 📄 Poster: P-212, Thurs 17th 13:30-15:15 🌱🦠
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Şuayb Üstün @suaybuestuen.bsky.social · 13/07/2025
If you’re interested in the role of #proteostasis in plant immunity and how pathogens manipulate it visit our contributions at #2025ISMPMI @manuelgonzalezfuen.bsky.social will talk on Tuesday in the effector interference session @shanshuo.bsky.social (P-432) @margotraffeiner.bsky.social (P-405)
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