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Please RT: Registration is ongoing for our International Symposium "Microbial Networking - from organelles to cross-kingdom communities" organized as highlight of the first funding period of CRC 1535 @mibinet.bsky.social www.sfb1535.hhu.de/internationa... @dfg.de, @hhu.de, @fz-juelich.de
Host killing by necrotrophs is really complex. Using a 29-gene knockout series in Botrytis cinerea, we show that removing nearly all known cell death-inducing proteins and major phytotoxins is not sufficient to prevent host necrosis. Check out the paper: www.biorxiv.org/content/10.6...
Our paper "Gene ancestries reveal diverse microbial associations during eukaryogenesis.” is finally out in Nature. Eukaryogenesis was likely a gradual process shaped by multiple microbial partners and virus-mediated gene transfer, rather than a single binary symbiosis. doi.org/10.1038/s415...
📢 new preprint! How do commensal bacteria establish themselves on plant roots despite plant immunity? We identify Cpi1, a conserved membrane-anchored protease inhibitor in Pseudomonas that promotes early root colonization and modulates microbial community assembly. www.biorxiv.org/cgi/content/...
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Botrytis cinerea is a necrotrophic plant pathogen with an extremely wide host range. During invasion, the fungus induces rapid host cell death and proliferates in the necrotic tissue. The mechanisms o...
www.biorxiv.org
Deletion of 29 cell death-inducing proteins and phytotoxin biosynthetic genes does not completely abolish virulence of Botrytis cinerea
Julia Frunzke
Remco Stam
Toni Gabaldón
Johana Misas Villamil
Hiring: Junior Group Leader (f) in Protein Science — CRC 1664 SNP2Prot, MLU Halle. Lead your own group + budget, funded PhD, world-class protein-structure facilities. 5 yrs, E14. Apply by 7 July 2026. snp2prot.uni-halle.de #ProteinScience #SNP2Prot #AcademicJobs
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TL;DR: We've identified more than 100 cases of apparent manipulation in Thermo Fisher Scientific's antibody verification data. @sholtodavid.bsky.social @johanduchene.bsky.social reeserichardson.blog/2026/05/28/h...
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Here we show that low intra-microbiota antagonism underlies stable, protective barley root microbiota. Microbiota function cannot be predicted from beneficial traits of individual strains alone, but depends on compatibility among community members. #Microbiome #Plant www.biorxiv.org/content/10.6...
Happy to share our work! 🍄🍇 Botrytis cinerea grapevine-specialized strains harbor a specific repertoire of transposons. While retrotransposon-derived small RNAs do not appear to play a significant role in virulence on grapevine, a new giant transposon—a #Starship— confers arsenic resistance.
📣Last week another @biorxivpreprint.bsky.social dropped: "A fungal pathogen effector that shapes host plant microbiota kills bacteria through lipoteichoic acid binding and membrane disruption" a joint effort by @nicksnelders.bsky.social & @gabriellapetti.bsky.social www.biorxiv.org/content/10.6...
Finally out in @Cellcellpress! Proteins with long IDRs are prone to misfolding during protein synthesis. This is prevented by mRNA 3′UTRs that act as mRNA-based IDR chaperones. www.cell.com/cell/fulltex...
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We’ve documented more than 100 instances of apparent data manipulation in Thermo’s catalog
reeserichardson.blog
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How much of Thermo Fisher’s antibody data has been manipulated?
www.biorxiv.org
Highly conserved mRNA 3′ UTRs act as co-translational chaperones for intrinsically disordered regions (IDRs), preventing inter-domain misfolding and enabling biogenesis of fully active proteins.www.cell.com
mRNA 3′ UTRs chaperone intrinsically disordered regions to control protein activity
Clémence Marchal
Reese Richardson
Muriel Viaud
Team Thomma
Team_Zuccaro
Christine Mayr
Role of transposons in the specialization of Botrytis cinerea to grapevine: Insights into small RNAs and a new Starship https://www.biorxiv.org/content/10.64898/2026.05.30.728154v1