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Albin Teulet

@albinteulet.bsky.social
356 followers 329 following 14 posts

Researcher at @phimresearch.bsky.social & @ird-fr.bsky.social. Love Science, #PlantScience 🌿/Microbe🦠 interactions and Microbial effectors. PhD

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Reposted by Albin Teulet
Sebastian Schornack @dromius.bsky.social · 13/07/2026
Preprint! How do "friendly" rhizobia build a legume nodule? @albinteulet.bsky.social found that some may carry hidden transcription factors - proteins that mimic DNA-binding folds to enter the plant nucleus and rewrite its developmental program. www.biorxiv.org/content/10.6... (1/6)
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New Phytologist @newphyt.bsky.social · 17/05/2026
#TansleyInsight: Cross-kingdom communication between plants and parasitic nematodes 📖 nph.onlinelibrary.wiley.com/doi/10.1111/... by Bell et al. @WileyPlantSci #PlantScience
Graphic depicting cross-kingdom communication between plants and parasitic nematodes.
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Reposted by Albin Teulet
bioRxiv Plant Bio @biorxiv-plants.bsky.social · 09/05/2026
The common symbiosis pathway controls plant root microbiomes in a host-specific manner www.biorxiv.org/content/10.64898/20…
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Reposted by Albin Teulet
Science Magazine @science.org · 08/05/2026
Carnivorous sundew plants know they’ve trapped their dinner thanks to glutathione, according to a new #ScienceAdvances study. scim.ag/4tlIN4X
scim.ag
Glutathione induces trap closure for carnivory in Cape sundew
The identification of GSH as an important mediator in sundew carnivory unlocks the key mechanism of this captivating behavior.
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IRD @ird-fr.bsky.social · 10/02/2026
🔬🌍 Concours chercheuses-chercheurs #IRD 2026 ouverts 37 postes pour s’engager dans une recherche internationale, partenariale et porteuse de sens. Climat, biodiversité, santé, sociétés, transitions… 📅 Candidatures jusqu’au 10/03/2026 🔗 www.ird.fr/concours-che... @enseignementsup-recherche.gouv.fr
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Tatiana Giraud @tatianagiraud.bsky.social · 10/02/2026
Notre tribune de scientifiques pour alerter sur les dangers de la nouvelle loi d'urgence pour l'agriculture: la science montre que l'urgence est au contraire de transformer le système agricole pour préserver notre santé, la fertilité des sols, une eau disponible et non polluée, et la biodiversité.
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The Sainsbury Laboratory @thesainsburylab.bsky.social · 16/10/2025
Fantastic hosting the @GoogleDeepMind team at TSL with @kamounlab.bsky.social 🌱 From AI in plant health to building scientific capacity, our missions clearly resonate! Tools like AlphaFold can accelerate scientific breakthroughs in our field -holding real promise for global food security 🌍
Sophien Kamoun, the Google DeepMind team and Nick Desnoyer are pictured inside one of The Sainsbury Laboratory’s growth chambers, surrounded by growing plants.Nick Desnoyer is pictured showing the Google DeepMind team growing plants inside one of The Sainsbury Laboratory’s growth chambers.The Google DeepMind team alongside The Sainsbury Laboratory group leaders, GetGenome lead James Canham and members of the Kamoun group.
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Reposted by Albin Teulet
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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Francis M. Martin @fmartin54.bsky.social · 10/10/2025
SALICYLIC ACID SENSOR1 reveals the propagation of an SA hormone surge during plant pathogen advance www.science.org/doi/10.1126/...
science.org
SALICYLIC ACID SENSOR1 reveals the propagation of an SA hormone surge during plant pathogen advance
Salicylic acid (SA) is a key phytohormone that orchestrates immune responses against pathogens, including Pseudomonas syringae bacteria. The timing and extent of SA accumulation are tightly controlled...
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Reposted by Albin Teulet
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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Reposted by Albin Teulet
New Phytologist @newphyt.bsky.social · 06/09/2025
#TansleyReview: Microbial drivers of root plasticity Dini-Andreote, et al. 📖 nph.onlinelibrary.wiley.com/doi/10.1111/... #LatestIssue #PlantScience
Schematic representation of plant–microbe interactions and microbial metabolism that influence root development and nutrient uptake.
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Kumud Saini @sainikumud.bsky.social · 06/09/2025
🚨New Preprint with Old Pals showing a PIF4-CAT2-H2O2 loop in thermomorphogenesis
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Hervé Sanguin @hervesanguin.bsky.social · 05/09/2025
📢🍊#Clementine 🫶🏻 #RejoignezNous ‼️Etudiant.e Ingénieur.e Master #EcologieMicrobienne #Corse #TerreAgrumes #LaureGarnero #maladie #microbiote #IRIS 👥 #MicroQuar @cirad.bsky.social 💻 #Metabarcoding #Nanopore #Biostatistique 📅 Entre octobre 2025 et juin 2026 - stage 4-6 mois ✍ herve.sanguin[at]cirad.fr
Laure Garnero (Terre d'Agrumes)
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Hervé Sanguin @hervesanguin.bsky.social · 29/08/2025
📢Recherche Ingénieur.e/Master en #bioinformatique - stage 6 mois avec #FrédéricMahé 💻Activités: mise en place méta-analyse sur #microbiote #agrumes 🍋 🍊 #Nextflow #bash, #git #python #R 👥 Lieu: #MicroQuar @cirad.bsky.social 📅 Période: octobre 2025 - juin 2026 ✍ Contacts: herve.sanguin[at]cirad.fr
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Jean-Michel Ané @jeanmichelane.bsky.social · 26/08/2025
An NLP-inherited motif confers broad DNA-binding specificity to NIN in root nodule symbiosis | bioRxiv
sco.lt
An NLP-inherited motif confers broad DNA-binding specificity to NIN in root nodule symbiosis
Nitrogen-fixing root nodule symbiosis (RNS) occurs in some eudicots, including legumes, and is regulated by the transcription factor NODULE INCEPTION (NIN), derived from the NIN-LIKE PROTEIN (NLP) family. However, how the NIN protein acquired RNS-specific functions remains unclear. We identify a previously undescribed motif in Lotus japonicus NIN, located downstream of the RWP-RK domain, which we term the FR. This motif broadens the DNA-binding specificity of NIN by stabilizing the RWP-RK dimer interface. nin mutants lacking the FR motif show defective nodulation and impaired nitrogen fixation. Arabidopsis NLP2 carries a NIN-type FR and shares key features with NIN. Furthermore, the NIN-type FR likely originated as early as gymnosperms, suggesting that the molecular feature of NIN for RNS regulation was inherited from ancestral NLPs before RNS emerged.
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Reposted by Albin Teulet
Anja Geitmann @geitmannlab.bsky.social · 14/08/2025
The maintenance of plant cell wall integrity involves complex molecular interactions. In this review, preetmanchanda.bsky.social summarizes the pivotal roles of RALF, LRX, and FERONIA as well as their interactions in different cell and tissue systems. www.sciencedirect.com/science/arti...
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Nick Desnoyer @nickdesnoyer.bsky.social · 11/08/2025
Introducing the 1,000 Flower Collection 🧬🌹 I’m creating 1,000 genetically designed flowers each crafted with new colors, patterns, and shapes. Here’s how I’m making it happen… and how you can join me on this journey 🧵(1/7)
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Sebastian Schornack @dromius.bsky.social · 14/08/2025
Summer poster presentations today @cropscicentre.bsky.social with lots of students from @slcuplants.bsky.social @camplantsci.bsky.social and NIAB - from our team Dylan Rees, Victor Schroeder, Anna Flynn
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Fantin Mesny @mesny.bsky.social · 15/08/2025
📣 NEW PREPRINT 📝 We identified evolutionary origins of many fungal effectors! We show that fungi secrete lots of antimicrobial proteins, and that some of them were repurposed by plant pathogens for host immune suppression. www.biorxiv.org/content/10.1... cc @teamthomma.bsky.social
biorxiv.org
Plant-associated fungi co-opt ancient antimicrobials for host manipulation
Evolutionary histories of effector proteins secreted by fungal pathogens to mediate plant colonization remain largely elusive. While most functionally characterized effectors modulate plant immunity, ...
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Reposted by Albin Teulet
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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Reposted by Albin Teulet
Darius Kosmützky @dariuskos.bsky.social · 22/07/2025
Last week’s #2025ISMPMI and #OMGN2025 were really fun! My first conference visit in the field of plant microbe interactions, so I learned a lot (brain is still achy)! I’m grateful to @dromius.bsky.social for this opportunity and to the rest of the Schornack batch for awesome company!
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Tolga Bozkurt @tolgaboz.bsky.social · 07/07/2025
Plz RT. We are looking for a postdoc to join our collborative project on AI-guided bioengineering of plant immune receptors @tolgaboz.bsky.social and @jiorgoskourelis.bsky.social labs: www.jobs.ac.uk/job/DNV032/r...
jobs.ac.uk
Research Associate in Programmable Plant Immunity at Imperial College London
Apply for the Research Associate in Programmable Plant Immunity role on jobs.ac.uk, the top job board for academic positions in higher education. View details and apply now.
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Qun Liu @qunliu07.bsky.social · 17/07/2025
Our paper is now online in Science Advances! Congrats @saskiahogenhout.bsky.social @johninnescentre.bsky.social and all coauthors! www.science.org/doi/10.1126/...
science.org
Aphid effectors suppress plant immunity via recruiting defense proteins to processing bodies
Aphids hijack plant immunity via p-bodies, but plants fight back with a heat shock protein in an unexpected twist on defense.
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Albin Teulet @albinteulet.bsky.social · 17/07/2025
#2025ISMPMI Huge congrats to Sebastian Eves-Van Den Akker @sebastianevda.bsky.social on earning the Early Career Achievement Award for his outstanding research on plant-parasitic nematode infection biology 🎉🏆
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Reposted by Albin Teulet
Darius Kosmützky @dariuskos.bsky.social · 16/07/2025
With over 800 posters at #2025ISMPMI it might be tricky to find me. But here’s a little helping video. Come today (Wednesday) between 13:30 and 15:15 to Poster P-425 to hear about #Marchantia #Phytophthora interaction and a GRAS transcription factor!
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Debangana Moitra @debanganamoitra.bsky.social · 16/07/2025
Fascinating talk by Dr. Talia Karasov (University of Utah) on how plant pathogens weaponize phage-derived tailocins to wipe out bacterial rivals. Microbes fighting microbes—nature’s own biotech. #ISMPMI2025 #Tailocins #MicrobialWarfare
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Léa Monge-Waleryszak @lwaleryszak.bsky.social · 26/05/2025
Love uncovering effector virulence strategies! 😀 Our work on PopP2 targeting core components of the PEAT chromatin-remodeling complexes is now out @theplantjournal.bsky.social. doi.org/10.1111/tpj....
doi.org
Three ARID proteins involved in chromatin remodeling PEAT complexes are targeted by the Ralstonia solanacearum effector PopP2 and contribute to bacterial wilt disease
The Ralstonia solanacearum effector PopP2 is a YopJ family acetyltransferase. PopP2 is known to dampen basal immune responses by acetylating defensive WRKY transcription factors, and probably by targ...
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Albin Teulet @albinteulet.bsky.social · 14/07/2025
#2025ISMPMI Benjamin Gourion elucidated the pathogenic molecular mechanism underlying a rare case of rhizobia transitioning from a symbiotic to a pathogenic interaction. Truly fascinating!
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Albin Teulet @albinteulet.bsky.social · 14/07/2025
Sebastian Schornack @dromius.bsky.social kicks off the 'Microbial Infection Strategies' session with insights into symbiotic and pathogenic interactions in the vascular and non-vascular plants. #2025ISMPMI
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Darius Kosmützky @dariuskos.bsky.social · 11/07/2025
First batch of Team Schornack @dromius.bsky.social have just landed in Cologne for plant-microbe chat at #2025ISMPMI! @ic416.bsky.social @matt-macleod.bsky.social
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David Hoey @davidjhoey.bsky.social · 25/06/2025
A masterclass in microscopy & cell biology from @alexguyon.bsky.social and @dromius.bsky.social - congrats on the pre-print!
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Alex Guyon @alexguyon.bsky.social · 24/06/2025
1/🚨 New preprint alert! Can mutualists and pathogens co-colonise the same living plant cell and what does that do to the plant membranes that surround these microbes?
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Eve Teyssier @eveteyssier.bsky.social · 12/06/2025
I’m very happy that my main PhD work, under the supervision of @malick-mbengue.bsky.social, found a home in @pnas.org Two days before my PhD defence! 🎉 (1/6)
pnas.org
A plant Lysin Motif Receptor-Like Kinase plays an ancestral function in mycorrhiza | PNAS
Arbuscular mycorrhiza (AM) with soilborne Glomeromycota fungi was pivotal in the conquest of land by plants almost half a billion years ago. In flo...
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Vasilis Kokkoris @vkokkoris.bsky.social · 10/06/2025
📢Our synthesis of current knowledge on the fascinating cell of #arbuscular #mycorrhizal fungi is out @currentbiology.bsky.social, part of the special #fungi issue. With @rachaelcargill.bsky.social @tobykiers.bsky.social @thomasshimizu.bsky.social Open access link: www.cell.com/current-biol... 1/4
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Jean-Michel Ané @jeanmichelane.bsky.social · 06/06/2025
The latest publication from our lab! The famous "glomalin" from arbuscular mycorrhizal (AM) fungi is not a protein but a polysaccharide from AM fungi, so we renamed it "glomalose". Glomalin-related proteins are bacterial proteins stuck in this glomalose. nph.onlinelibrary.wiley.com/doi/10.1111/...
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Eoghan King @eoghan-king.bsky.social · 02/06/2025
The white lupin CCR1 receptor-like kinase controls systemic Autoregulation of Cluster Root and Nodule Development
pnas.org
The white lupin CCR1 receptor-like kinase controls systemic Autoregulation of Cluster Root and Nodule Development | PNAS
Root development is tightly regulated in plants to optimize nutrient acquisition and interactions with soil microorganisms. In legumes, the Autoreg...
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Sainsbury Laboratory Cambridge University (SLCU) @slcuplants.bsky.social · 20/05/2025
We are thrilled to have been awarded a silver-gilt medal at our first Chelsea Flower Show! 🪻 An enormous thank you to everyone who contributed to this success - @eng.cam.ac.uk, Darwin Nurseries and Oakington Garden Centre! #RHSChelsea @cambridgeuni.bsky.social
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Bat Bor @batbilegbor.bsky.social · 04/12/2024
Excited to share our new preprint on the detailed investigation of Type 4 pili in epibiont oral Saccharibacteria! Led by Alex Grossman from our lab, and with Jun Liu (Yale), Jeff McLean (UW) and Xuesong He. Check it out: biorxiv.org/content/10.1...
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bioRxiv Bioinfo @biorxiv-bioinfo.bsky.social · 14/05/2025
SoftAlign: End-to-end protein structures alignment www.biorxiv.org/content/10.1101/202…
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Marc Buée 🇨🇵 🇪🇺 🇺🇦 @mrmbuee.bsky.social · 09/05/2025
New PhD position in our lab (IAM Unit): Elucidating the roles of trees’ Small Secreted Peptides in regulating ectomycorrhizal symbiosis in response to biotic and abiotic nutritional signals. Contacts: clemence.bonnot@inrae.fr et claire.veneault-fourrey@inrae.fr
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Sebastian Schornack @dromius.bsky.social · 24/04/2025
Read & RP. New preprint by Alex Gavrin from his time in our team - Inactivation of Medicago Glucan binding protein 1 (GBP1) offers: An approach to enhance symbiotic nitrogen fixation. www.biorxiv.org/content/10.1...
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Albin Teulet @albinteulet.bsky.social · 25/04/2025
🚨 New preprint! Alex Gavrin & co. identify a symbiosis-specific GBP1 gene whose inactivation boosts nitrogen fixation - without altering nodule number or development. A promising route to engineer more productive legumes! 🌱✨Congrats to all involved! @au.dk @slcuplants.bsky.social
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Albin Teulet @albinteulet.bsky.social · 16/04/2025
🎉 Thrilled to share that our article on the discovery of MycFOLD effectors in symbiotic fungi ranks among the most viewed papers in @newphyt.bsky.social in 2023! Grateful for the interest - Let’s keep the momentum going! #TopViewedArticle doi.org/10.1111/nph....
doi.org
A pathogen effector FOLD diversified in symbiotic fungi
Pathogenic fungi use secreted effector proteins to suppress immunity and support their infection, but effectors have also been reported from fungi that engage in nutritional symbioses with plants....
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Eoghan King @eoghan-king.bsky.social · 07/04/2025
Interested in a PhD project on the role of arbuscular mycorrhizal fungi in the recruitment of maize root microbiota under low-input agroecological practices? 🌽🍄🦠 shorturl.at/TThqZ Apply to Ecole Doctorale Sciences du Végétal yearly competition (deadline 7th May) ! shorturl.at/JnNTZ
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Lionel Moulin @lionel-moulin.bsky.social · 05/04/2025
My team propose 3 phd topics at Gaia in Montpellier, France. Postulate on line on adum.fr website. On plant cry4help: adum.fr/as/ed/voirpr... On phyllosphere microbiota to biocontrol phytopathogens: adum.fr/as/ed/voirpr... On suppressive soils microbiota against nematodes: adum.fr/as/ed/voirpr...
adum.fr
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Julien Luneau @juliensluneau.bsky.social · 04/04/2025
Very happy I could contribute to the story with some single-cell imaging to look at the heterogeneity in flagellar expression and quantify its cost 🔬 I always love these movies, so mesmerizing 🤩
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Phil Carella @philcarella.bsky.social · 01/04/2025
Conserved effectors underpin the virulence of liverwort-isolated Pseudomonas in divergent plants Very happy to share the published version of our work on natural Marchantia-Pseudomonas interactions. Out now in Current Biology: www.cell.com/current-biol...
cell.com
Conserved effectors underpin the virulence of liverwort-isolated Pseudomonas in divergent plants
Robinson et al. identify pathogenic Pseudomonas viridiflava in wild Marchantia polymorpha liverworts and interrogate the mechanisms enabling virulence in non-flowering and flowering plants. Their resu...
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Jim Rowe @botanicaljim.bsky.social · 01/04/2025
We wrote a review about how #fluorescent #biosensors are illuminating #PlantScience accross scales to let us ask new questions. @maxjosse.bsky.social @bijuntang.bsky.social @xanderjones.bsky.social Get it here (Open access): doi.org/10.1146/annu...
doi.org
Quantifying Plant Biology with Fluorescent Biosensors | Annual Reviews
Plant biology is undergoing a spatial omics revolution, but these approaches are limited to snapshots of a plant's state. Direct, genetically encoded fluorescent biosensors complement the omics a...
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