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Gilles van Wezel

@gillesvanwezel.bsky.social
1K followers 401 following 95 posts

Infectious diseases & antibiotics; C4D-global.org; Microbial life; Leiden University; NIOO-KNAW; Imagine; Scientific account; Opinions are my own.

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Reposted by Gilles van Wezel
NL Institute of Ecology NIOO-KNAW @niooknaw.bsky.social · 26/06/2026
New publication: Inducible #CRISPRi enables efficient and high-fidelity #genome editing in #Streptomyces, by @gillesvanwezel.bsky.social and others. #antibiotics doi.org/10.1093/nar/...
Graphical abstract Bai et al. (2026).
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Gilles van Wezel @gillesvanwezel.bsky.social · 25/05/2026
Just submitted a huge systems biology paper we worked on for years, on in vitro binding of all transcription factors of Streptomyces coelicolor and across Actinobacteria. With Hannah Augustijn, Hiroshi Otani, @marnixmedema.bsky.social @nigelmouncey.bsky.social. Deserves a special beer #Hellekapelle
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Reposted by Gilles van Wezel
NL Institute of Ecology NIOO-KNAW @niooknaw.bsky.social · 22/05/2026
New publication: PARAS: High-Accuracy Machine Learning of Substrate Specificities in Nonribosomal Peptide Synthetases, by @gillesvanwezel.bsky.social and others. #bacteria #fungi #antibiotics doi.org/10.1021/jacs...
Graphical abstract Terlouw et al. (2026).
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Julia Lazzari-Dean @jlazzaridean.bsky.social · 12/05/2026
We invented “triplet tumbling microscopy” (TTM) to track protein-protein interactions in living cells! Tag your protein with GFP and see it interact with *untagged* binding partners www.biorxiv.org/content/10.6...
A cartoon overview of triplet tumbling microscopy, comparing data from bound and unbound samples.
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Gilles van Wezel @gillesvanwezel.bsky.social · 11/05/2026
all credits to @sebarigali.bsky.social and Silvia Ribeiro Monteiro for this great tool to predict regulation of biosynthetic gene clusters.
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Reposted by Gilles van Wezel
Ákos T Kovács @evolvedbiofilm.bsky.social · 16/04/2026
Chemical dialogues at the crossroads of host–bacteria interactions @cp-trendsplantsci.bsky.social by Emtinan Diab, Nicola Thome, Somayah Elsayed, @raaijmakersjm.bsky.social and @gillesvanwezel.bsky.social www.cell.com/trends/micro...
cell.com
Chemical dialogues at the crossroads of host–bacteria interactions
Microbiomes are now recognised as the second genome of eukaryotes, providing diverse life-support functions for their hosts. The impact of microbiome members on the growth and health of their hosts is...
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Gilles van Wezel @gillesvanwezel.bsky.social · 12/04/2026
Panorama of Haarlem (aka home)
panorama of Haarlem (aka home)
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Reposted by Gilles van Wezel
Marnix Medema @marnixmedema.bsky.social · 11/04/2026
Now out in @acs.org JACS Au, the manuscript by #BarbaraTerlouw et al. describing PARAS, a high-accuracy machine-learning algorithm to predict substrate specificities of nonribosomal peptide synthetase (NRPS) adenylation domains, key for estimating natural product structures from BGC sequence. 1/n
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Reposted by Gilles van Wezel
NL Institute of Ecology NIOO-KNAW @niooknaw.bsky.social · 07/04/2026
New publication: Plant Coumarins #Modulate Natural Product #Biosynthesis in a #Streptomyces #Root #Endophyte, by @gillesvanwezel.bsky.social and others. doi.org/10.1021/acs....
Graphical abstract Diab (2026)
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Ákos T Kovács @evolvedbiofilm.bsky.social · 25/02/2026
Plant Coumarins Modulate Natural Product Biosynthesis in a Streptomyces Root Endophyte Journal of Natural Products by Emtinan Diab, Chao Du, Wendalina Tigani, Somayah Elsayed and @gillesvanwezel.bsky.social #LeidenBiology pubs.acs.org/doi/10.1021/...
pubs.acs.org
Plant Coumarins Modulate Natural Product Biosynthesis in a Streptomyces Root Endophyte
The plant microbiome plays a central role in regulating plant health and resilience, providing eco-friendly alternatives to agrochemicals. Plant-associated Streptomyces species are prolific producers of structurally diverse natural products with a demonstrated role in promoting plant growth. Coumarins are prevalent plant metabolites that shape the root microbiome, but their impact on microbial natural product biosynthesis is poorly understood. Here, we demonstrate that the coumarins scopoletin and its glucoside scopolin remodel specialized metabolism in the Arabidopsis root endophyte Streptomyces sp. ATMOS53. Multiomics analyses revealed that the coumarins activate the biosynthesis of the pyrrolizidine alkaloids bohemamines and alter the balance in anthracycline biosynthesis, with reduced production of late-stage anthracycline congeners and accumulation of shunt metabolites earlier in the pathway. These metabolic shifts resulted in a marked reduction of the antimicrobial activity of ATMOS53 against plant-associated Bacillus and Paenibacillus species. Notably, coumarin-mediated repression of anthracycline production was also observed in the established producers Streptomyces peucetius and Streptomyces galilaeus, indicating that the regulatory effect on anthracycline biosynthesis is conserved in streptomycetes. Our findings highlight coumarins as modulators of specialized metabolism of Streptomyces and show the significance of plant-derived chemicals for the control of the biosynthetic capacity of plant-associated microbes.
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Reposted by Gilles van Wezel
Avril Hanbidge @avhanbidge.bsky.social · 10/02/2026
@gillesvanwezel.bsky.social @marnixmedema.bsky.social @lonegram.bsky.social @medinadiscovery.bsky.social @aberdeenchem.bsky.social @cleverflick.bsky.social @erinninnovation.bsky.social @naturalis.bsky.social @wurplant.bsky.social @bahnestechmann.bsky.social @eu-openscreen.bsky.social @ethz.ch
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Gilles van Wezel @gillesvanwezel.bsky.social · 29/01/2026
Genes for the biosynthesis of plant natural products are clustered on plants, as discussrd (and published) by @anneosbourn.bsky.social
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Gilles van Wezel @gillesvanwezel.bsky.social · 29/01/2026
looking forward to the talk by @anneosbourn.bsky.social on Plant Natural Products and esp triterpenes. Anne is todays speaker in the @led3hub.bsky.social seminar series.
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Stephan Hacker @stephanhacker2.bsky.social · 04/01/2026
2025 was a year full of great scientific discoveries and breakthroughs. Here, I want to highlight 10 papers that got me really excited. Of course, this is a highly subjective selection and I am sure I am forgetting some papers that I would love to include, but here it goes: (1/12)
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Gilles van Wezel @gillesvanwezel.bsky.social · 31/12/2025
last walk of the year in parc Elswout.
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NL Institute of Ecology NIOO-KNAW @niooknaw.bsky.social · 19/12/2025
New publication: Disentangling the molecular mechanisms of disease suppression by endophytic #Flavobacterium sp. 98, by @xinyapan.bsky.social @gillesvanwezel.bsky.social @raaijmakersjm.bsky.social and others. #plantmicrobiome #plantgrowth doi.org/10.1016/j.mi...
Graphical abstract Pan et al. (2026).
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Marnix Medema @marnixmedema.bsky.social · 13/12/2025
Kudos to #yijunzhu #hannahaugustijn and #victoriapascal for getting this out, and thanks to @gillesvanwezel.bsky.social #dylandodd and #michaelfischbach for the collaboration! Try it out now on gutsmash.bioinformatics.nl
gutsmash.bioinformatics.nl
gutSMASH
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Ian Lidbury @iandealidbury.bsky.social · 10/12/2025
academic.oup.com/ismej/advanc... Endophytic adaptation in Flavobacterium sp. 98 @xinyapan.bsky.social @vcarryon.bsky.social @gillesvanwezel.bsky.social ✌🏽 lysoPE story could be cool
academic.oup.com
Hypoxia Induces Phenotypic and Metabolic Shifts in Endophytic Flavobacterium sp. 98
Abstract. Oxygen plays a crucial role in shaping microbial physiology, functions, and behavior. Endophytic bacteria, residing within plant tissues, inhabit
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Reposted by Gilles van Wezel
Matt Hutchings @handle.invalid · 30/11/2025
Enrichment of root-associated Streptomyces strains in response to drought is driven by diverse functional traits and does not predict beneficial effects on plant growth journals.plos.org/plosbiology/...
journals.plos.org
Enrichment of root-associated Streptomyces strains in response to drought is driven by diverse functional traits and does not predict beneficial effects on plant growth
Understanding how root microbes respond to drought is crucial for improving crop resilience. This study finds that Streptomyces responses are strain-specific and functionally diverse, with traits and ...
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PLOS Biology @plosbiology.org · 28/11/2025
GlcNAc build-up acts as a key metabolic signal in #Streptomyces, but how does it triggers developmental responses? @gillesvanwezel.bsky.social &co show that the enzyme NagS dehydrates GlcNAc-6P into a reactive intermediate, triggering a toxicity-based checkpoint @plosbiology.org 🧪 plos.io/44pE08I
Top: (Top row) Sensitivity of S. coelicolor mutants to GlcNAc. Spores (5 × 105 CFU) of S. coelicolor M145 and its mutant derivatives ∆nagB, SMA11, ∆nagB∆nagS, ∆nagB∆nagSC (∆nagB∆nagS expressing nagS) and ∆nagB∆nagSE (∆nagB∆nagS with empty plasmid pSET152) were streaked on MM agar plates with 1% mannitol (Mann) and 1% mannitol plus 10 mM GlcNAc (GlcNAc). (Bottom row) NagS and its role in GlcNAc sensing. Spores of M145 and ∆nagS were plated on MM and R5 with 0, 0.001, 0.01, 0.1, 1, 5, 10, 20, 50, 100, 150, and 200 mM GlcNAc. Note that nagS mutants hardly respond to GlcNAc.  Bottom: Model for the metabolic control of development by GlcNAc and NagS. During late vegetative growth of streptomycetes, the old vegetative or substrate hyphae are degraded in a process of programmed cell death (PCD), to produce the nutrients required to build the aerial mycelium (see mycelial drawings on the right). Mycelial lysis results in breakdown of the cell-wall, leading to the accumulation of GlcNAc-6P, which is a major nutritional signal for the onset of development and antibiotic production. NagS converts GlcNAc-6P into 6P-chromogen I (denoted as X-Ac-6P), which in turn is deacetylated by NagA into a toxic metabolite (denoted as X-6P) that resembles ribose. The toxic metabolite promotes cell lysis, thus releasing more GlcNAc-6P that serves as substrate for NagS and NagA. A salvage pathway then switches off the toxic pathway again. For this, GlcNAc-6P is converted by NagA and NagB into Fructose-6P (Fru-6P), which enters the pentose phosphate pathway (PPP), thereby producing 6-phosphogluconate (6-PG), a metabolic inhibitor of NagS. Thus, production of toxic metabolites ceases and the transition to aerial growth can be initiated. Arrows with round ends represent inhibition, dashed arrow shows proposed activity.
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Gilles van Wezel @gillesvanwezel.bsky.social · 28/11/2025
thanks @angelahuttner.bsky.social for a very inspiring talk LUMC Leiden. The house in the image you showex was built in 1612, and Rembrandt van Rhijn was 6 years old by then and lived at the bridge in the back, 200 m away. Always when I see the house I think of how Rembrandt will have painted it!
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PLOS Biology @plosbiology.org · 27/11/2025
GlcNAc build-up acts as a key metabolic signal in #Streptomyces, but how does it triggers developmental responses? @gillesvanwezel.bsky.social &co show that the enzyme NagS dehydrates GlcNAc-6P into a reactive intermediate, triggering a toxicity-based checkpoint @plosbiology.org 🧪 plos.io/44pE08I
Top: (Top row) Sensitivity of S. coelicolor mutants to GlcNAc. Spores (5 × 105 CFU) of S. coelicolor M145 and its mutant derivatives ∆nagB, SMA11, ∆nagB∆nagS, ∆nagB∆nagSC (∆nagB∆nagS expressing nagS) and ∆nagB∆nagSE (∆nagB∆nagS with empty plasmid pSET152) were streaked on MM agar plates with 1% mannitol (Mann) and 1% mannitol plus 10 mM GlcNAc (GlcNAc). (Bottom row) NagS and its role in GlcNAc sensing. Spores of M145 and ∆nagS were plated on MM and R5 with 0, 0.001, 0.01, 0.1, 1, 5, 10, 20, 50, 100, 150, and 200 mM GlcNAc. Note that nagS mutants hardly respond to GlcNAc.  Bottom: Model for the metabolic control of development by GlcNAc and NagS. During late vegetative growth of streptomycetes, the old vegetative or substrate hyphae are degraded in a process of programmed cell death (PCD), to produce the nutrients required to build the aerial mycelium (see mycelial drawings on the right). Mycelial lysis results in breakdown of the cell-wall, leading to the accumulation of GlcNAc-6P, which is a major nutritional signal for the onset of development and antibiotic production. NagS converts GlcNAc-6P into 6P-chromogen I (denoted as X-Ac-6P), which in turn is deacetylated by NagA into a toxic metabolite (denoted as X-6P) that resembles ribose. The toxic metabolite promotes cell lysis, thus releasing more GlcNAc-6P that serves as substrate for NagS and NagA. A salvage pathway then switches off the toxic pathway again. For this, GlcNAc-6P is converted by NagA and NagB into Fructose-6P (Fru-6P), which enters the pentose phosphate pathway (PPP), thereby producing 6-phosphogluconate (6-PG), a metabolic inhibitor of NagS. Thus, production of toxic metabolites ceases and the transition to aerial growth can be initiated. Arrows with round ends represent inhibition, dashed arrow shows proposed activity.
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Christophe 🔬 Leterrier @christlet.bsky.social · 14/11/2025
I enjoyed reading this! www.embopress.org/doi/full/10....
embopress.org
On the role of phase separation in the biogenesis of membraneless compartments | The EMBO Journal
EMBO Press is an editorially independent publishing platform for the development of EMBO scientific publications.
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NL Institute of Ecology NIOO-KNAW @niooknaw.bsky.social · 14/11/2025
New publication: #Serotonin modulation of #metabolism and #stress response in Pseudomonas fluorescens, by @gillesvanwezel.bsky.social and others. doi.org/10.1186/s129...
Figure 2 in Waclawiková and others (2025): "Serotonin metabolism protects P. fluorescens from oxidative stress possibly via upregulation of phenylalanine and tyrosine catabolic pathways. A RNA-seq experimental design. B Heat map of the genes that are significantly regulated (at 10 and 12 h) in the presence of serotonin as compared to the untreated control. Data represent log2(fold change). FDR ≤ 0.05, fold change ≥ 2. GSEA analysis of upregulated genes from stimulation with serotonin (FDR ≤ 0.05, fold change ≥ 2) after 10 h and 12 h. Data show -log2(p value) for specific GO biological pathways (bar graphs on the left); number of genes involved in the regulated pathways (bar graphs in the middle); and, expression patterns of individual genes involved in the regulated pathways (graphs on the right). C Volcano plots of differentially abundant proteins after 12 h (left panel) and 24 h (right panel) of stimulation with serotonin in P. fluorescens. D Overview of phenylalanine, tyrosine and arginine catabolic pathway and its regulation by serotonin on the RNA and protein level"
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Gilles van Wezel @gillesvanwezel.bsky.social · 12/11/2025
@widdowquinn.bsky.social Sandra and I just booked Marillion in Pompeii on 26 July. are you guys going?
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Gilles van Wezel @gillesvanwezel.bsky.social · 12/11/2025
we just booked this next level @marillion.com concert in #Pompeii
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Ursula von der Leyen @vonderleyen.ec.europa.eu · 10/11/2025
Switzerland is joining Horizon Europe! We are uniting two research powerhouses. For cutting-edge innovation that will boost our energy security, digital transformation, health and so much more. Today is a good day for science, and for our EU-Switzerland partnership.
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Gilles van Wezel @gillesvanwezel.bsky.social · 08/11/2025
in Cordoba, Spain after the excellent #PMS2025 meeting in Antequera. Used a parking app but with wrong (NL) numberplate. We got a fine but amazingly could pay it off by paying 6 euros att the vending machine. Attached some photos from the beautiful Mezquita.
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Gilles van Wezel @gillesvanwezel.bsky.social · 07/11/2025
time for another pint at the Eagle in Cambridge. RIP James Watson and thanks for your inspiration that changed the life of so many scientists.
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Ákos T Kovács @evolvedbiofilm.bsky.social · 07/11/2025
Changsha in 🇨🇳 is selected for the next Plant-Microbiome symposium in 2027 #PMS2025 ➡️ #PMS2027
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Ákos T Kovács @evolvedbiofilm.bsky.social · 07/11/2025
Talk and Poster prizes at #PMS2025 Well done all presenters!!! 👏 including @courtneyherms.bsky.social @hueihsuantsai.bsky.social and @dgarrs.bsky.social
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Asaf Levy @asaflevylab.bsky.social · 07/11/2025
What a fun meeting in Malaga! #pms2025 Thanks for organizing Victor et al.!!!
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Gilles van Wezel @gillesvanwezel.bsky.social · 07/11/2025
the 7th Plant Microbiome Synposium will be held in Changsha, China in 2027. Looking forward to it!
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Gilles van Wezel @gillesvanwezel.bsky.social · 07/11/2025
Jos Raaijmakers thanks @vcarryon.bsky.social and his team for a totally incredible meeting in Antequeran Thanks Vic et al, it was a supermeeting. After ISBA2025 I know how much work it is! Have a well deserved little break.
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Gilles van Wezel @gillesvanwezel.bsky.social · 07/11/2025
@vcarryon.bsky.social closes the #PMS2025 meeting in Antequera, thanking the amazing Cruz Ruiz and her Acoeventis team and his fabulous local scientific team in Malaga.
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Gilles van Wezel @gillesvanwezel.bsky.social · 07/11/2025
The last talk of #PMS2025 by Adam @adamoss.bsky.social from the lab of @vcarryon.bsky.social. Besides a great scientist Adam also organized a lot of the meeting.
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Gilles van Wezel @gillesvanwezel.bsky.social · 07/11/2025
Angela Sessitsch from the Austrian Institute of Technology speaking on harnessing microbiota for the protection of potatoes.
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Leiden Early Drug Discovery & Development (LED3) @led3hub.bsky.social · 07/11/2025
Huge congratulations to @craigmcrews.bsky.social on being awarded the #Havinga medal at the #Reedijk Symposium of the Leiden Institute of Chemistry for his groundbreaking work on induced proximity, including targeted protein degradation, as a new paradigm for #DrugDiscovery. #ChemSky #ChemBio #TPD
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Gilles van Wezel @gillesvanwezel.bsky.social · 07/11/2025
now on, an exciting talk by @cornepieterse.bsky.social pitching the concept of the microbiome as the plant's extended immune system.
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Gilles van Wezel @gillesvanwezel.bsky.social · 07/11/2025
here is @VivianeCordovez.bsky.social from @niooknaw.bsky.social speaking on the biosynthetic potential of yeasts, including FungiSmash analysis. Part of the work was done by young doctor Linda Gouka (still catching cereal killers 🙂). Lab of Jos Raaijmakers.
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MicroSOS @microsos.bsky.social · 05/11/2025
Day 3 of #PMS2025 starts with Session 3: Plant Microbiome Interactions (sponsored by Microbioma CSIC)
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Gilles van Wezel @gillesvanwezel.bsky.social · 06/11/2025
now on @evolvedbiofilm.bsky.social on Bacillus biofilms and their role in the soil community and plant health. Bartje was also there but I missed him.
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Wiep Klaas Smits (ExpBac/CMAT) @smitslab.bsky.social · 06/11/2025
🚨 Publication alert! We are stoked to report the structural basis for activity of a novel class of antimicrobials targeting Gram positive priority pathogens in @natcomms.nature.com. There is something for everyone on this paper, and I will highlight a few things below 👇 1/9 doi.org/10.1038/s414...
doi.org
A unique inhibitor conformation selectively targets the DNA polymerase PolC of Gram-positive priority pathogens - Nature Communications
In this work, Urem et al. characterize the mode of action as well as mechanism of reduced susceptibility related to a class of antimicrobials that is in development for the treatment of infections wit...
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Gilles van Wezel @gillesvanwezel.bsky.social · 06/11/2025
Eiko Kuramae from @niooknaw.bsky.social speaking on the importance and diversity of nitrogen fixing microbes in the rice microbiome.
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Gilles van Wezel @gillesvanwezel.bsky.social · 06/11/2025
molecules and streptomycetes at the 6th plant microbiome meeting in Antequera. Excellent story on protection against plant drought stress by Ling Ding from DTU
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Courtney Herms @courtneyherms.bsky.social · 04/11/2025
Streptomyces secondary metabolites into focus from @gillesvanwezel.bsky.social #PMS2025
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Ákos T Kovács @evolvedbiofilm.bsky.social · 28/10/2025
Paenitracin - NRP discovery from Nataliia Machushynets at @gillesvanwezel.bsky.social laboratory 👇🏼
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Leiden Early Drug Discovery & Development (LED3) @led3hub.bsky.social · 11/10/2025
Hoe zou #antibioticaonderzoek er in de toekomst uit kunnen zien? Hoe kan de ontwikkeling van #antibiotica economisch aantrekkelijker worden gemaakt? Als u geïnteresseerd bent in deze vragen, lees dan het interview met @gillesvanwezel.bsky.social www.sciencelink.net/verdieping/p... #Chemie #ChemBio
sciencelink.net
‘Prioriteren is het sleutelwoord’
De 'stille pandemie' van antibioticaresistentie kruipt verontrustend voort. Ondanks dat de farmaceutische industrie weinig interesse toont in het ontwikkelen van nieuwe antibiotica, zijn er genoeg ini...
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Stephan Hacker @stephanhacker2.bsky.social · 11/10/2025
Great interview with my @led3hub.bsky.social colleague @gillesvanwezel.bsky.social in C2W mens & molecule. He talks about new developments in #antibiotic #DrugDiscovery, the applications of #AI and opportunities to foster antibiotic development. www.sciencelink.net/verdieping/p... #ChemSky #ChemBio
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John Innes Centre @johninnescentre.bsky.social · 03/10/2025
Shortlisted candidates will be invited to give a seminar at the Fellows Conference, which will be held on 10 March 2026. Candidates who win Fellowships will be offered a Tenure Track Group Leader position from the outset, initially for 5 years. Find out more: www.jic.ac.uk/training-car...
jic.ac.uk
Independent Research Fellowships Leading to Tenured Faculty Positions | John Innes Centre
The John Innes Centre (JIC), is a world leading centre of excellence in plant and microbial sciences based on the Norwich Research Park, UK. We are inviting applications from outstanding researchers…
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