@Andrew_Akbashev@AlessandroStru4 This is completely true. In some countries it is more important than in others. It generates enormous amounts of stress and frustration in young scientists.
Our study opens new directions for understanding the molecular basis of extreme trait evolution in land plants 🤓.
Have a read and let us know your thoughts🙂❗
With @PlantAdaptation, Marc Hanikenne, and colleagues.
🛑 Some 🌱 have the remarkable ability to tolerate and accumulate ☣️ metals.
Below 👇🏼 we present evidence that this trait depends on co-option of the circadian 🕰️ machinery❗
Co-option of 🕰️ proteins governs enhanced and time-dependent expression of metal-accumulation genes❗
Very excited that our work on directional symplastic transport in differentiated root is now published!A developmental switch controls cell-to-cell transport in roots via pectin-linked plasmodesmata changes: Molecular Plant https://t.co/IJ3WUZ60eC
🧵1/13 Erinnert Ihr Euch an die KI-Bilder der „All Eyes on Rafah“-Kampagne? Und habt Ihr Euch je gefragt, warum KI-generierter Content auf Social Media so oft antiwestlich, antiisraelisch, antisemitisch & islamistisch daherkommt? Ich glaube, ich kenne den Grund. Es ist ein längerer Lese-Thread. Er lohnt sich.
Planning your ERC proposal? From the next grant competitions, expect changes in:
- proposal structure,
- evaluation process,
- extra funding you can request,
- eligibility for Starting and Consolidator Grants (from 2027).
Learn more 👇👇👇 https://t.co/r6o1ZUUVSL
📗From PCP latest issue: Regular paper💐
✨Featured on the Cover
'Population Genomics Reveals Demographic History and
Climate Adaptation in Japanese #Arabidopsis halleri'
Ryo A. Suda et al.
https://t.co/t8lUjO2W49
#PopulationGenomics#PlantAdaptation#Plantsci
#Diphthamide modification of #eEF2 is important for accurate #proteintranslation. In a recent study, Ulrich Brinkmann et al. show that diphthamide synthesis involves eEF2-interacting co-chaperones Hgh1 and Cpr7. 🧪
Read the article here ➡️ https://t.co/MeRCxIDRtH
Out now: Very excited, congratulations to first author Hongliang and many thanks to our collaborators! Diphthamide formation in Arabidopsis requires DPH1-interacting DPH2 for light and oxidative stress resistance https://t.co/cvUKVh1Qbl
Changing paradigms for the micronutrient zinc, a known protein cofactor, as a signal relaying also cellular redox state | Quantitative Plant Biology | Cambridge Core https://t.co/QyuPHWCjqN
1/9 I am excited to share our pre-print on spatial transcriptomics in wheat spikes in collaboration with @AshleighSLister. Using MERFISH, we resolved the expression of 200 genes to cellular resolution. Check out the pre-print 👉https://t.co/Xt54n76kUX