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The Centre for Organismal Studies (COS) Heidelberg studies organismic biology beyond the borders of organisational levels. Part of @uniheidelberg.bsky.social. https://www.cos.uni-heidelberg.de/en
COS Heidelberg









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New paper from the Yasin Dagdas (@plantophagy.bsky.social) group, this time in @science.org, on how plant cells cope with viral infection and how selective autophagy delays cell death to give plants a chance to survive. Chapeau and congratulations to all the authors! www.science.org/doi/10.1126/...
17d
„Ideale Räume für eine zeitgemäße Lehre“: Neues Hörsaal- und Lernzentrum audiMAX auf dem Campus Im Neuenheimer Feld mit einer Festveranstaltung offiziell eröffnet www.uni-heidelberg.de/de/newsroom/...
New paper from the Storelli group @cosheidelberg.bsky.social showing that endocrine signaling reprograms intestinal metabolism to support growth of Drosophila larvae. www.nature.com/articles/s41...
1mo
RNA viruses co-opt host endomembranes to form replication complexes, often triggering cellular stress and immune responses. Here, we show that Arabidopsis thaliana activates selective autophagy to res...
Selective autophagy fine-tunes plant immunity to promote cell survival during viral infection
www.science.org
2mo
Very happy to share that I have joined the Heidelberg CRC/SFB 1324 “Mechanisms and Functions of Wnt Signalling” as a DFG Mercator Fellow. Looking forward to linking our work @lsiexeter.bsky.social with @cosheidelberg.bsky.social. Wonderful to hear Gemma's excellent presentation on cytonemes.
Super stimulating talk by Olivier Hamant from @rdplab.bsky.social on the tradeoff between efficiency and systemic robustness in biology and beyond. And on how we define societal progress.
COS Heidelberg
1mo
Drosophila larvae grow a hundredfold within a few days. Lefranc et al. reveal that gut metabolism is transiently reprogrammed to support unbridled juvenile growth but also adult fitness, showing that ...
www.nature.com
1mo
Transient remodeling of gut metabolism supports juvenile growth and adult fitness in Drosophila - Nature Communications
Universität Heidelberg
A new publication from the Aissam Ikmi (@aikmi.bsky.social, @embl.org) and Suat Özbek (@cosheidelberg.bsky.social) groups on the cnidarian mesoglea: www.science.org/doi/full/10....
COS Heidelberg
1mo
🎉 Our paper on the first reference genome of 𝘛𝘳𝘰𝘱𝘢𝘦𝘰𝘭𝘶𝘮 𝘵𝘶𝘣𝘦𝘳𝘰𝘴𝘶𝘮 has been accepted in @genomebiolevol.bsky.social This has been a great collaboration and a rewarding outcome of this work. @cosheidelberg.bsky.social @greenrobust.de @klaus-tschira-stiftung.de @gso-forresearchers.bsky.social
Steffen Scholpp
WIR STELLEN EIN: Stabsstelle #Exzellenzstrategie an der #UniversitätHeidelberg Referent*in, 100% E13, entfristet, zum nächstmöglichen Zeitpunkt Gerne weiterverteilen! #Heidelberg #Stellenausschreibung adb.zuv.uni-heidelberg.de/info/INFO_FD...
Now online at @natplants.nature.com ‼️ Led by Jierui Zhao, a former PhD student @gmivienna.bsky.social & together w/ @moritznowack.bsky.social lab, we uncover how #autophagy shapes salt stress tolerance and lifespan. www.nature.com/articles/s41... www.nature.com/articles/s41... A short 🧵👇
1mo
A pressure-release valve at the aboral pole of a sea anemone redefines body openings as hydraulic regulators, not just guts.
www.science.org
Mesoglea biogenesis reveals a cryptic aboral valve for pressure regulation in cnidarian morphogenesis
COS Heidelberg
14d
1mo
GreenRobust
Infosystem der ZUV
adb.zuv.uni-heidelberg.de
Stellenausschreibungen an der Universität Heidelberg
This study reveals that enhanced autophagy in root-hair-forming cells helps Arabidopsis store excess sodium, control oxidative stress and tolerate salt stress.
www.nature.com
Cell-type-specific autophagy in root-hair-forming cells is essential for salt stress tolerance in Arabidopsis thaliana - Nature Plants
Rebekka Weinel
Absolutely ❤️ this slide from Olivier Hamant about the role of inefficiency in biological robustness. Thx @maizel-lab.org for bringing him to @cosheidelberg.bsky.social
1mo
Pascal Hunziker
Yasin Dagdas
Yasin Dagdas
Abstract. Tropaeolum tuberosum is a tuber-forming crop native to the Andes, valued for its nutritional content, pest resistance and adaptation to high-alti
academic.oup.com
Reference genome assembly of a tetraploid accession of the tuber crop Tropaeolum tuberosum
Großes Interesse an der Timeline Evolution am @cosheidelberg.bsky.social zum Internationalen Museumstag mit Führung durch die Schausammlung und wunderbaren Einblicken in die Lehrsammlung durch Katharina Brotzmann und Alexandra Kerbl!
28d
Roland Gromes