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🇨🇳Professor@HZAU←🇩🇪GL@MPIPZ←🇺🇸PD@UofMinnesota←🇯🇵PhD/MS/BS@HokkaidoU Plant-microbe interactions Highly Cited Researcher (ISI Web of Science) Chinese Government Friendship Award and Chime Bell Award https://plantimmunity.hzau.edu.cn/ Star Trek, football lover
Kenichi Tsuda









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Amazing! This report suggests that a gall aphid injects into their plant host an enzyme that manipulates auxin levels in the host and thereby induces galls. #plantscience #plantsci www.biorxiv.org/content/10.6...
Coming soon...! Hear from PCP's very own Editor-in-Chief, Tetsuya Higashiyama - one of tomorrow's plenary speakers at #icar2026, with news of our special issue on #PlantReproduction (out later this year)! Want to know more? See also, academic.oup.com/pcp/pages/sp...
11d
15h
First 👀 on @biorxivpreprint.bsky.social, now online in @natureportfolio.nature.com Nature Communications: A structurally unique effector shared between vascular wilt fungi drives cotton and olive defoliation #Verticillium #Fusarium @lfaino.bsky.social www.nature.com/articles/s41...
Our lab website has been renewed! More updates to come. Check it out: noborilab.org
How do pathogens disarm plant immunity? We discovered a widespread strategy used by plant bacterial pathogens: they directly cleave a conserved immune signaling molecule produced by plant immune receptors. www.biorxiv.org/content/10.6...
15h
🌱🧬Pathogens manipulate the apoplast by controlling pH, water & nutrients. Plants fight back with oxidative bursts, toxins & hydrolases. Adapted pathogens disarm these defenses & hide from detection Molecular arms race outside the cell @annualreviews.bsky.social www.annualreviews.org/content/jour...
3mo
6d
Preprint: Plant pathogens cleave 2’cADPR to suppress TIR immune signaling Inspired by knowledge on how phages inhibit bacterial immunity, we now show that disease-causing bacteria inhibit plant immunity in a similar way. A 🧵 www.biorxiv.org/content/10.6...
9d
PlantEvolution 🌱🌾
5d
Decoding the molecular and cellular basis of plant-microbe interactions. Single-cell and spatial omics of plant immunity. Led by Tatsuya Nobori at TSL, Norwich, UK.
noborilab.org
Nobori Lab | The Sainsbury Laboratory
www.biorxiv.org
📣 We are hiring! In the collaborative research center 'Plant Ecological Genetics' @teamthomma.bsky.social searches a PhD candidate to study the role of plant-associated microbiota in plant density responses and inter-plant competition. See project A07. Deadline July 10!
Plant & Cell Physiology
Extracellular Antagonists: Offense and Counter-Defense in the Apoplast
Extracellular interactions are pivotal in the plant–pathogen arms race. Fungal, bacterial, and oomycete pathogens manipulate the apoplast to control pH, water soaking, sugar levels, and nutrient avail...
www.annualreviews.org
3d
📣 We are hiring! In the collaborative research center 'Plant Ecological Genetics' @teamthomma.bsky.social searches a PhD candidate to study the role of plant-associated microbiota in plant density responses and inter-plant competition. See project A07: sl1nk.com/b7z0doc Deadline July 10!
Small molecules produced by TIR (Toll-interleukin-1 receptor) domains are essential for plant immune signaling. A central TIR-derived signal is 2'cADPR, a cyclic ADP-ribose (ADPR) molecule that is gen...
www.biorxiv.org
Plant pathogens cleave 2'cADPR to suppress TIR immune signaling
As seen on @biorxivpreprint.bsky.social: our story on how the dreaded late blight pathogen hijacks a helper NLR pathway is now out in its final form! 🎉 Meet AVRcap1b: the two-faced effector 🧵👇 www.science.org/doi/10.1126/...
Ohad Roth
Team Thomma
Tatsuya Nobori
Global Plant Science Spotlight
3d
13d
Sorek Lab
Team Thomma
A potato late blight pathogen effector interacts with ENTH-domain protein TOL9a and an activated helper NLR to suppress immunity
A plant pathogen effector suppresses an activated helper NLR via a host ENTH domain–containing protein, NbTOL9a.
www.science.org
Encurtador de Link | O melhor encurtador de links e urls gratuito da internet.
sl1nk.com
Encurtador de Link
Team Thomma
Here the authors report a pair of identical effector genes in different fungal pathogens that cause vascular wilt diseases to cause defoliation in crops. Removing these genes stops disease, and mobile...
www.nature.com
A structurally unique effector shared between vascular wilt fungi drives cotton and olive defoliation - Nature Communications
Mauricio Contreras
📣 Our latest story just dropped on bioRxiv:: A structurally unique effector shared between Verticillium dahliae and Fusarium oxysporum is involved in cotton defoliation and virulence on other hosts www.biorxiv.org/content/10.6... 🧵
4mo
We are hiring! The CRC TRR 341 "Plant Ecological Genetics" is looking for a new scientific coordinator for the next funding period🌱 Please find more information including how to apply here: jobportal.uni-koeln.de/ausschreibun...
Team Thomma
7d
CRC TRR 341 "Plant Ecological Genetics"
www.biorxiv.org
jobportal.uni-koeln.de