Stéphane Hacquard

@hacquardst.bsky.social

Research Group Leader at the MPI for Plant Breeding Research. Interested in plant-microbiota interactions.

Super excited and honoured to have been awarded an ERC Starting Grant for CooPAIRation! How do plant immune receptors work together to trigger an immune response? Can we modulate immune responses for disease resistance? We will tackle these questions in CooPAIRation Positions to be announced soon!

European Research Council (ERC)@erc.europa.eu · 12mo ago

📣 The ERC Starting Grant call results are out! Find out which early-career researchers will receive funding this year, what they will be investigating, where they will be based... plus lots of other #ERCStG facts & figures for 2025! ➡️ buff.ly/IsafuFh #FrontierResearch 🇪🇺#EUfunded #HorizonEurope

I'm very happy that this paper is now published in PNAS! Isochorismate-based salicylic acid biosynthesis appears to have emerged in the Brassicales after the divergence of C. papaya, likely within the timeframe between the divergence of B. maritima and R. odorata. www.pnas.org/doi/10.1073/...

Emergence of isochorismate-based salicylic acid biosynthesis within Brassicales | PNAS

Salicylic acid (SA) is a major defense phytohormone. In Arabidopsis thaliana, the isochorismate (IC) pathway is the primary route for pathogen-indu...

pnas.org

Come and work with me! The Nature Micro team is expanding and we're looking for someone to champion microbial ecology, plant micro & related areas for the journal Knowledge of microbial ecology/plant micro is desirable but we're open to applications from all microbiologists Link below 👇

Nature Microbiology@natmicrobiol.nature.com · last yr.

📢We are #hiring a full time editor to handle areas including microbial ecology & plant microbiology🦠🌱 This position will work closely with @naturecomms.bsky.social #microsky #microbiomesky #ecologysky 🧪 Available in NYC, Madrid, or other US offices Read more & apply here: shorturl.at/yvdYJ

Would you like to study metabolite-based microbe-microbe or plant-microbe interactions but do not have the tools to? @chesneau-g.bsky.social came up with a simple solution with great potential! Check out our new publication in @naturecomms.bsky.social and Guillaume’s 🧵 below for details👇

Guillaume Chesneau@chesneau-g.bsky.social · last yr.

🚨Excited to share our new publication! MetaFlowTrain, a highly parallelized and modular fluidic system to study exometabolite interactions between microbes-microbes-plants 🌱 @hacquardst.bsky.social @herpell.bsky.social S.Wolf S.Perin @mpipz.bsky.social www.youtube.com/watch?v=gNUf... 🧵Thread 5/5:

5/5. MetaFlowTrain confirms that specific bacterial exometabolites, not media depletion, drive microbial antagonism. 🦠 Pseudomonas R401 WT suppresses SynCom growth via known inhibitory exometabolites. ❌ A triple mutant loses inhibitory power.

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4/5. MetaFlowTrain dissects inter-kingdom microbial interactions via directional exometabolite flow. 🦠 Bacterial SynComs strongly inhibit fungal growth, even without physical contact. 🚫 Up to 82% growth suppression via exometabolites.

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3/5. MetaFlowTrain reveals how soil conditioning alters microbial assembly/exometabolite output. 🦠 SynComs exposed to plant-conditioned peat undergo major community shifts & consume key metabolites (α-KG, fumarate). 🌱 BF SynCom-derived exometabolites impact Arabidopsis germination & root growth.

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2/5. MetaFlowTrain cultivates diverse microbes & collects their exometabolites under continuous nutrient flow. 🌱 Using sterile peat extract, we grew 11 bacterial & 4 fungal strains from the Arabidopsis root microbiota. 💥 Exometabolite profiles differed significantly by strain.

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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/...

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...

science.org