Sign in

mb_bucherlab

@mb-bucherlab.bsky.social
156 followers 169 following 31 posts

Plant molecular physiologist exploring the microverse and plant nutrition; proud dad, loves badminton, drums and percussion. Views are my own. 🇩🇪🤝🇨🇭🤝🇺🇦

PostsRepliesMedia
mb_bucherlab @mb-bucherlab.bsky.social · 26/02/2026
Highly recommended 👉 Faculty position in Plant Molecular Biology (Associate Professor or Tenure-Track Assistant Professor) at Aarhus University, Denmark mbg.au.dk/aktuelt/ledi...
mbg.au.dk
Faculty position in Plant Molecular Biology (Associate Professor or Tenure-Track Assistant Professor) at Aarhus University, Denmark - Ledig stilling på Aarhus Universitet
Ledig stilling ved Institut for Molekylærbiologi og Genetik - Plantemolekylærbiologi, Aarhus Universitet
000
mb_bucherlab @mb-bucherlab.bsky.social · 07/02/2026
www.broadsheet.com.au/national/foo... and www.nature.com/articles/nbt... 🍅💜 Hot take: The purple tomato isn’t “Frankenfood”. It‘s the Rolls-Royce Tomato. It’s proof that GM crops don’t have to be about chemicals or yield, they can be about nutrition.
broadsheet.com.au
The “Rolls Royce” of Tomatoes Is Coming to Australia
Purple Bliss tomatoes are purple – but they’re also remarkable for being the first genetically modified fresh food approved for sale in Australian grocers.
102
mb_bucherlab @mb-bucherlab.bsky.social · 10/12/2025
Young scientists are invited to join CEPLAS GS!
011
Reposted by mb_bucherlab
Juan Alonso-Serra @jalonsos.bsky.social · 07/10/2025
Really nice work with an adaptive twist on SAM hydraulics. Congrats to @weibingyang.bsky.social and all involved 🌱🌊 #plantscience www.cell.com/developmenta...
cell.com
Epidermal hydrodynamics controls water homeostasis of shoot meristems for plant adaptation to terrestrial environments
Zhu et al. uncover an evolutionarily conserved water transport pathway in the epidermis of plant shoot meristems that maintains water homeostasis and regulates stem cell activity. This epidermal hydro...
145
mb_bucherlab @mb-bucherlab.bsky.social · 30/05/2025
1/“In seconds, our home was gone.” Massive rockslide buried the village of Blatten, Switzerland. One person missing. Around 300 residents lost everything, homes, memories, livelihoods. 💔 But help is coming: 🤝 Emergency support from Caritas, Red Cross, army & local authorities
100
Reposted by mb_bucherlab
Jean-Michel Ané @jeanmichelane.bsky.social · 28/05/2025
Wow... Mycorrhizal fungal highways for plant signals and rhizobia  -> Legume-specific recruitment of rhizobia by hyphae of arbuscular mycorrhizal fungi | The ISME Journal | Oxford Academic
academic.oup.com
Legume-specific recruitment of rhizobia by hyphae of arbuscular mycorrhizal fungi
The legume-rhizobia symbiosis possesses great potential for sustainable agriculture because of its ability to fix atmospheric nitrogen, reducing crop dependence on nitrogen fertilizers. Rhizobia recognize the host legume through flavonoids released by the roots. These signals are detected by bacteria typically over a few millimeters. Recent research has shown that arbuscular mycorrhizal fungi extend this recognition beyond 15 cm by transporting flavonoids along their hyphae. In soil, common mycorrhizal networks linking plants are formed by arbuscular mycorrhizal fungi. We hypothesized that such networks linking different legumes can transmit host-specific signals, guiding rhizobia to their appropriate hosts. Using in vitro and greenhouse microcosms, we linked Medicago truncatula and Glycine max via a common mycorrhizal network of Rhizophagus irregularis and inoculated GFP-labeled Sinorhizobium meliloti and mCherry-labeled Bradyrhizobium diazoefficiens on the hyphae. S. meliloti preferentially migrated towards M. truncatula, whereas B. diazoefficiens preferentially migrated towards G. max (155 ± 8 and 13 ± 3 nodules, respectively). This was confirmed in the greenhouse with a higher concentration of S. meliloti (2.1-2.5 × 105 CFU·g−1) near M. truncatula and a higher concentration of B. diazoefficiens (1.5-1.6 × 105 CFU·g−1) near G. max (71-82 and 15-18 nodules, respectively). Metabolomics revealed host-specific flavonoids in hyphal exudates: M. truncatula-connected hyphae released DL-liquiritigenin, naringenin, sakuranetin, and 3,7-dimethylquercetin, whereas G. max-connected hyphae released daidzin, 6”-O-malonyldaidzin, irilone, and erylatissin A. These findings establish that common mycorrhizal networks constitute a “navigation system”, using chemical signals to orient rhizobia towards their specific hosts, thereby improving nodulation with potential applications in agriculture.
0137
Reposted by mb_bucherlab
Molecular Plant & Plant Communications @mplantpcom.bsky.social · 29/05/2025
RSPS2025 | Finalist: Dr. Tonni Grube Andersen | Presentation: Jun 4 13:00-13:30 (GMT) | Of bricks and gateways: Rewriting the rules of root barriers | FREE to Watch the Live Streaming via YouTube (youtube.com/@molecularpl...) / WeChat (MolPlant Channel)
03219
Reposted by mb_bucherlab
Marc Somssich @somssich.bsky.social · 28/05/2025
📜 Hormonal regulation of primary root development 🧑‍🔬 Michela De Nittis, Mirko De Vivo, @raffolab.bsky.social, Sabrina Sabatini 📔 @cp-cellreports.bsky.social 🔗 www.cell.com/cell-reports... #️⃣ #PlantScience #RootBiology #PlantRoots #Phytohormones #Auxin #Cytokinin #PlantDevelopment
cell.com
Hormonal regulation of primary root development
Dynamic hormone networks orchestrate Arabidopsis root meristem growth. In this review, Nittis et al. highlight recent advances in how these regulatory systems shape root development and discuss their ...
02512
mb_bucherlab @mb-bucherlab.bsky.social · 28/05/2025
🧪🌱 Interesting study using hypoxia-activated fluorescent probes to detect low oxygen in Arabidopsis cells & tissues. These chemical tools open new ways to study oxygen dynamics in plant development & stress responses. #PlantScience #Hypoxia #Arabidopsis nph.onlinelibrary.wiley.com/doi/10.1111/...
nph.onlinelibrary.wiley.com
Hypoxia‐activated fluorescent probes as markers of oxygen levels in plant cells and tissues
Low oxygen signalling in plants is important in development and stress responses. Measurement of oxygen levels in plant cells and tissues is hampered by a lack of chemical tools with which to reliab.....
020
mb_bucherlab @mb-bucherlab.bsky.social · 21/03/2025
New preprint! We present SSC, a semi-automated method to extract fungal hyphae and their microbiota from natural soils - no glass beads, no artificial conditions. Enables hyphal density quantification & NGS of surface-attached microbes. Read more: doi.org/10.1101/2025...
doi.org
Streamlining the isolation of fungal hyphae: A semi-automated approach for soil substrates
Extracting fungal hyphae with their natural associated microbiota from soil samples presents a significant challenge due to their small size, typically in the micrometer range, and the formation of dy...
030
mb_bucherlab @mb-bucherlab.bsky.social · 07/03/2025
📢 Calling all PhD students, postdocs & early-career scientists! 📢 Join us at the IS-MPMI Congress 2025 in Cologne, Germany 🇩🇪 from July 13-17, 2025! 🔹 Abstract submission deadline: March 11 🔹 Submit here: www.ismpmi.org/Events/2025C...
ismpmi.org
2025 Congress
​​...​​...​2025 IS-MPMI Congress​...​​​Save the Date! Sunday, 13 July – Thursday, 17 July, 2025 Confex Conference and Exhibition Centre, Cologne, Germany​ ​ Mark your calendars for the 2025 IS-MPMI Co...
000
mb_bucherlab @mb-bucherlab.bsky.social · 05/03/2025
Marie-Noëlle Rosso closing the session explored how fungi break down recalcitrant plant tissues, revealing a diverse enzymatic arsenal shaped by 180 million years of evolution. Her team showed that gene family expansions/contractions drive lignocellulose degradation across fungal clades. #ECFG17
020
mb_bucherlab @mb-bucherlab.bsky.social · 05/03/2025
Xin Xiang builds on Ron Morris’ pioneering work on nuclear migration in Aspergillus nidulans. Her talk at #ECFG17 highlights how microtubules and motor proteins orchestrate organelle distribution in fungal hyphae. Fascinating insights into the fungal cytoskeleton! #ECFG2025
020
mb_bucherlab @mb-bucherlab.bsky.social · 05/03/2025
In the morning session we listened to a very interesting talk by Michael Feldbrügge on the mechanistic basis of mRNA transport in polar growth of Ustilago maydis spiced with a pinch of Rhineland humour. 😀 #ECFG17 #ECFG2025
040
mb_bucherlab @mb-bucherlab.bsky.social · 04/03/2025
good news: Trump has refrained from sending arms and ammunition to Russia for now. 👍🏻😂🥲🙏
000
mb_bucherlab @mb-bucherlab.bsky.social · 04/03/2025
Great talk by Aaron Vogan on Starship superfamily and it’s Captain!
000
mb_bucherlab @mb-bucherlab.bsky.social · 04/03/2025
At #ECFG17, like at all major scientific conferences worldwide, the talks highlight how science thrives on global collaboration. Borders don’t define discovery - diversity and cooperation do. Meanwhile, U.S. policies seem to be moving in the opposite direction.
072
Reposted by mb_bucherlab
Jeremy Berg @jeremymberg.bsky.social · 10/02/2025
A useful tool and a great thing to do... 5calls.org/issue/nih-ns...
5calls.org
Save NIH and NSF Research Funding ⭑ 5 Calls
On February 7, the Trump administration moved to cut billions of dollars in funding from the National Institutes of Health (NIH) and National Science …
0177139
mb_bucherlab @mb-bucherlab.bsky.social · 08/02/2025
Mein Wort fürs Wochenende: glottaler Plosiv oder Glottisschlag (Student:innen, Spiegelei…) 🍳
010
mb_bucherlab @mb-bucherlab.bsky.social · 26/01/2025
Germany's debt brake ensures low national debt - but at the expense of the EU: low wages and export surpluses are driving neighbouring countries into debt. Time for more investment and higher wages to bring Europe back into economic balance. #Schuldenbremse #EU
000
mb_bucherlab @mb-bucherlab.bsky.social · 26/01/2025
If you see this quote with flowers from your gallery. We can all use some beauty right now. (Lilium martagon (Türkenbund Lilie) in Lötschental, 🇨🇭)
000
Reposted by mb_bucherlab
Chenxin Li, PhD @chenxinli2.bsky.social · 26/01/2025
Tagging thread for #PlantScience feed.
0135
Reposted by mb_bucherlab
German Society for Plant Sciences (DBG) @plantsciencedbg.bsky.social · 23/01/2025
Who else is joining #MBP2025 in Hennef? The conference Molecular Biology of Plants 🌱🌿 of our Section Plant Physiology and Molecular Biology in February?
9153
mb_bucherlab @mb-bucherlab.bsky.social · 26/01/2025
1/The debt brake is slowing down university construction in 🇩🇪: renovation backlog, delayed new buildings and outdated infrastructure are jeopardising education and research. Without exemptions for investments, the science location 🇩🇪 loses competitiveness. #Schuldenbremse
110
mb_bucherlab @mb-bucherlab.bsky.social · 05/01/2025
We’re ready for the Three Wise Men! 👑✨ Freshly baked King Cake to celebrate Epiphany in style. Who will find the lucky figurine? 🎂 #Epiphany #KingCake
000
Reposted by mb_bucherlab
Marc Somssich @somssich.bsky.social · 02/01/2024
I have written a couple of threads 🧵 on "classic" #PlantScience papers. I always tag them with #PlantScienceClassics , but will also compile them here in this thread: 👇
46537
mb_bucherlab @mb-bucherlab.bsky.social · 20/11/2024
Probiotic model for studying rhizosphere interactions of root exudates and the functional microbiome academic.oup.com/ismej/articl...
academic.oup.com
Probiotic model for studying rhizosphere interactions of root exudates and the functional microbiome
Abstract. Root exudates are important mediators of plant–microbiome interactions. Recent pioneering studies on various aerial root plants, including cereal
010
mb_bucherlab @mb-bucherlab.bsky.social · 20/11/2024
Hello everyone! I'm excited to increase my presence on Bluesky, as it proves to be an increasingly attractive platform for scientific exchange. Bluesky now has 20 million users and is attracting more prominent figures. Let's build a vibrant community here together! 🌐 #ScienceCommunication #Bluesky
030
Reposted by mb_bucherlab
Andreas P.M. Weber 🌾🌱🧬 @apmweber.bsky.social · 20/11/2024
Registration for the 2nd PlantACT! conference 7-9 April 2025 is open, check out the conference website. Great lineup of speakers. www.plantactconference2025.cbgp.upm.es
https://www.plant-act.org
02114