🆕📰‼️#PaperCBGP 🌱 El momento en que una raíz siente la gravedad determina cómo explorará el suelo. 🔗 Puedes leer la noticia completa aquí: cbgp.upm.es/index.php/es...
Alberto Gonzalez-Delgado
@albertoglezdelgado.bsky.social
PhD Student in Computational Biology in the @wabniklab.bsky.social and the @jimenezgomez.bsky.social at the @cbgpmadrid.bsky.social Trying to understand the photoperiodic regulation of diurnal transcriptomic networks in crops
@kleinevehnlab.bsky.social Congrats to all involved; Sophie, great job!. It was a pleasure to participate in this nice (not-lazy:))story! www.pnas.org/doi/10.1073/...
SHOOT GRAVITROPISM 9 links sensory timing to the initial lateral root growth angle | PNAS
Plants strategically respond to gravity and actively set defined growth angles. These gravitropic set-point angles (GSAs) shape the width and depth...
pnas.org
1/5 Every paper has a story. Ours started with a dataset and ended with a conceptual advance. But what I'm most proud of is the development of the people behind it. www.pnas.org/doi/10.1073/...
SHOOT GRAVITROPISM 9 links sensory timing to the initial lateral root growth angle | PNAS
Plants strategically respond to gravity and actively set defined growth angles. These gravitropic set-point angles (GSAs) shape the width and depth...
pnas.org
I'd like to thank all of the coauthors, who made it possible! @fedegrippo.bsky.social Denisa Oulehlová @albertoglezdelgado.bsky.social @seinabnoura.bsky.social @simamzeinali.bsky.social @wabniklab.bsky.social @matesf.bsky.social @waidhouse.bsky.social @kleinevehnlab.bsky.social 👏 Good job everybody!
Excited to share our latest publication! 🎉 Here @sophiezoe.bsky.social reveals an early developmental time window determining initial growth direction of lateral roots. Wonderful collaboration with @wabniklab.bsky.social and @matesf.bsky.social lab www.pnas.org/doi/10.1073/... @cibss.bsky.social
SHOOT GRAVITROPISM 9 links sensory timing to the initial lateral root growth angle | PNAS
Plants strategically respond to gravity and actively set defined growth angles. These gravitropic set-point angles (GSAs) shape the width and depth...
pnas.org
It was great to have you around! Thank you for your visit and the great discussion about signal oscillation! Curious to see what the collaboration will bring!
Great few days in Freiburg. Thanks to @sophiezoe.bsky.social and @kleinevehnlab.bsky.social for the warm welcome. Beautiful city, great company, and stimulating science. I really enjoyed our scientific (and non-scientific) discussions and hope you did too. Looking forward to what comes next!
The lab of @elkebarbez.bsky.social strikes again 👇 Cell wall charge acts as a tunable electrostatic gate controlling iron availability in roots. Really nice work linking extracellular physics with nutrient homeostasis.
Cell wall charge gates iron availability in plant roots https://www.biorxiv.org/content/10.64898/2026.03.15.711884v1
Cell wall charge gates iron availability in plant roots https://www.biorxiv.org/content/10.64898/2026.03.15.711884v1
This work would not have been possible without the help of: @albertoglezdelgado.bsky.social @wabniklab.bsky.social @cbgpmadrid.bsky.social @csic.es @upm.es @ijpb-versaillescly.bsky.social @spsplantsciences.bsky.social 📄 Read it here: www.biorxiv.org/content/10.6...
biorxiv.org
Our observations fit a model in which evening-phased genes sense photoperiod through coincidence mechanisms and change transcription dynamics of morning-phased genes. All this, brought to you by the incredible @albertoglezdelgado.bsky.social @wabniklab.bsky.social Let us know if you like it!!
biorxiv.org
🌱 New preprint out on bioRxiv! How do plants sense seasonal changes in day length? In our new study, we profiled high resolution (2h) RNA seq time courses in tomato across three photoperiods to uncover how light duration shapes gene expression dynamics. Summary in next post...
biorxiv.org
🆕📰‼️ #PaperCBGP 🔬 New review from CBGP’s @wabniklab.bsky.social group explores how biology, computer science, math & AI are decoding plant patterning 🧬The integrative approach is shaping a new era in plant biology 🌱 📎 More here: shorturl.at/jHEt9
Our recent plant scientist guide to AI and mechanistic modelling in plant science. Have a nice read! Hope it helps #plants #models #AI #bigdata @upm.es @cbgpmadrid.bsky.social 👇 www.sciencedirect.com/science/arti...
From big data to mechanistic insights: decoding plant complexity with models
Recent advances in high-throughput sequencing, imaging, and phenotyping have carried plant science into the era of ‘big data.’ Complex, multi-scale da…
sciencedirect.com
#ResearchCBGP | Photoperiod Insensitivity and Its Role in the Global Expansion of Crops 🇪🇸 - short.upm.es/gt07p 🇬🇧 - short.upm.es/i1jy3 #somosUPM
‼️ #NewCBGPpaper in Science Advances (@science.org)! 🌱 Arabidopsis thaliana adapted to salty soils in Cabo Verde for 6,000+ years 🌊 🧬Researchers found a unique compound & parallel mutations boosting salt resilience. 🔜A step forward for climate-smart crops! 📎Read the story here shorturl.at/kePo3
Thank you again, Krzysztof, for having me and for all the scientific (and non-scientific) discussions with you and @albertoglezdelgado.bsky.social and the others!
Our take on Photoperiod regulation of core clock across plants: www.sciencedirect.com/science/arti...
Regulatory principles of photoperiod-driven clock function in plants
The circadian clock provides a fundamental timing mechanism for plant fitting to seasonal changes in the photoperiod. Although photoperiodic regulatio…
sciencedirect.com