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Aissam Ikmi

@aikmi.bsky.social
418 followers 208 following 15 posts

Group Leader @EMBL. We study the design principles of "early" animals using cnidarians.

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Reposted by Aissam Ikmi
Gaurav Vaidya @gvaidya.bsky.social · 01/07/2026
The first preprint from my PhD is out! :thread: How does an animal choose between two completely different reproductive fates? Here’s how one planarian does it :point_down: www.biorxiv.org/content/10.6...
biorxiv.org
Life-cycle trajectory inference links temperature-gated progenitors to reproductive fate
Temperature shapes reproductive strategies across animals, yet how individuals switch between sexual and asexual reproduction remains unknown. We establish the planarian Phagocata morgani as a model f...
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Nicoletta Petridou @nicolettapetridou.bsky.social · 23/06/2026
Double preprint! 👇 Check out our latest studies on timing, heterogeneity and collective behaviour (with a fun tiny bonus on evolution!) 1. www.biorxiv.org/content/10.6... 2. arxiv.org/abs/2605.13234
biorxiv.org
Cellular timing heterogeneity regulates phase transitions in living matter
Rigidity transitions govern tissue organization in ways reminiscent of inert materials. Yet, living tissues are composed of active units with autonomous timing mechanisms, raising the question whether...
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Mike Dorrity @mwdorr.bsky.social · 19/06/2026
First pre-print from the lab, a collaborative effort led by Jess Bourn @bournsupremacy.bsky.social, a fantastic PhD in my group. We resolve a key problem in development + evolution: how do we quantify heterochrony and link temporal variation to phenotype? www.biorxiv.org/content/10.6...
biorxiv.org
Quantitative mapping of heterochrony to species-specific phenotypes
The genetic program of animal development is conserved, but its rate of execution varies across species. Heterochrony, shifts in the relative timing of developmental events, generates phenotypic varia...
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cnidofest.bsky.social @cnidofest.bsky.social · 18/06/2026
Hi Cnidarian Enthusiasts! Friendly reminder that Cnidofest 2026 will take place at the Marine Biological Laboratory in Woods Hole, MA, September 23-27. The abstract submission deadline is July 1 and the registration deadline is September 2. Submit and find full details at www.cnidofest.org
cnidofest.org
Cnidofest
Cnidofest is a biennial meeting of scientists interested in developing and using cnidarians as model systems to study molecular and cellular biology, developmental biology, neurobiology, and comparati...
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Pawel Burkhardt @pawelburkhardt.bsky.social · 16/06/2026
How ancient are the building blocks of animal sensory systems? Key components of animal sensory systems evolved before animals. We find that choanoflagellates possess diverse & spatially segregated TRP channels, pointing to ancient origins of sensory specialization. doi.org/10.64898/202...
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Pawel Burkhardt @pawelburkhardt.bsky.social · 23/05/2026
A fossil nervous system meets modern neurobiology. We found that a living comb jelly preserves neural architecture remarkably similar to those inferred from Cambrian fossils over 500 million years old 🤩. www.biorxiv.org/content/10.6...
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Nicoletta Petridou @nicolettapetridou.bsky.social · 15/05/2026
Glad to see this out in its final form! www.nature.com/articles/s41... What changed since the preprint? Wonderful experiments disentangling the effect of receptor binding vs tissue porosity on Nodal diffusion, plus one of the smoothest review experiences! Thanks @natcellbio.nature.com & reviewers 🙏
nature.com
Tissue rigidity phase transition shapes morphogen gradients - Nature Cell Biology
Autorino et al. report a feedback loop between Nodal signalling and tissue phase transitions in zebrafish embryos. Nodal alters adhesion, triggering tissue rigidification and reduced porosity, which l...
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Nisha Veits @nveits.bsky.social · 16/05/2026
Really happy to share my PhD story about the regulation of developmental speed in the Drosophila eye 🪰😃👀, which is now published @embojournal.org: link.springer.com/article/10.1... Grateful to everyone who make this possible, particularly F. Schweisguth @pasteur.fr @devstempasteur.bsky.social
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Jaroslav Icha @ichajaroslav.bsky.social · 19/04/2026
21st century dev bio at its best! I can't help but point out that not one but two Bruker microscopes (Acquifer IM, MuVi) were used for gentle&long term time lapse imaging of developing Nematostella here. No need to mount your invertebrate (cnidaria, planaria, crustaceans), we can do the time lapse!
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Aissam Ikmi @aikmi.bsky.social · 18/04/2026
Now published. Congrats to Soham and all co-authors! www.science.org/doi/10.1126/.... @embl.org
science.org
Science | AAAS
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Biology-UNIGE @biology-unige.bsky.social · 24/03/2026
Congratulations Guillaume #Salbreux and collaborator @aikmi.bsky.social groups for your latest publication in @cellcellpress.bsky.social: Deciphering #mechanical determinants of morphological #evolution @genevunige.bsky.social @sciencesunige.bsky.social #UNIGE 👉 www.cell.com/cell/fulltex...
cell.com
Deciphering mechanical determinants of morphological evolution
A comparative analysis of cnidarian larval morphogenesis combined with active surface theory identifies a set of mesoscale mechanical modules that predict species-specific shapes. Manipulating these m...
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Aissam Ikmi @aikmi.bsky.social · 23/03/2026
A press release on our latest work on shape diversity in cnidarians. @embl.org
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epithelial mechanics fan club @epimechfc.bsky.social · 22/03/2026
Hello epithelia enthusiasts! I’m @inesfournon.bsky.social and I study epithelial mechanics in sea anemones 🪼 Did you know epithelial cell extrusion had never been described outside bilaterian animals before? Well… not anymore 👀 Read ⬇️🧵1/9
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Roy Zang @cellulo-evo.bsky.social · 18/02/2026
How do #sponges coordinate their bodies despite lacking neurons and true muscles? We show that sponges use monoamines to control water flow in their canals — reminiscent of how adrenaline regulates blood vessels. My PhD story, now on BioRxiv: www.biorxiv.org/content/10.6... #Evolution
Evolution of monoamine reception and its role in cellular contractility.
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Thibaut Brunet @thibautbrunet.bsky.social · 20/03/2026
Expansion microscopy of a loricate choanoflagellate, generated by Mylan Ansel in our lab 🤩 (yes, the lorica expands. No, we don't understand how either)
Credit: Mylan Ansel
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Kristina Stapornwongkul @kstapornwongkul.bsky.social · 20/03/2026
We’re looking for a new team member! 🚀 Only 3 more weeks to apply to the fantastic Vienna BioCenter PhD program
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EMBL DB unit @embldbunit.bsky.social · 20/03/2026
🔥Exciting new paper from the Ikmi group @embl.org! The authors identified a set of mesoscale mechanical modules that can be used to predict species-specific shapes by combining a comparative analysis of cnidarian larval morphogenesis with active surface theory #morphogenesis #cnidaria
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Cell - a Cell Press journal @cp-cell.bsky.social · 20/03/2026
Now online! Deciphering mechanical determinants of morphological evolution
dlvr.it
Deciphering mechanical determinants of morphological evolution
A comparative analysis of cnidarian larval morphogenesis combined with active surface theory identifies a set of mesoscale mechanical modules that predict species-specific shapes. Manipulating these modules reprograms morphology, revealing how variation in tissue-scale mechanics underlies morphological diversity.
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Diana Khoromskaia @dianakhorom.bsky.social · 20/03/2026
Amazing to see this study finally out! Proud to have contributed to the active surface modelling of cnidaria morphogenesis across species and huge congrats to Richard, Nicolas, and all authors! #morphogenesis #activematter #nematicorder #evolution
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Aissam Ikmi @aikmi.bsky.social · 20/03/2026
Our study on shape diversity in cnidarians is now published. The final version includes extensive new data that substantially extend the original bioRxiv preprint. Congrats to everyone who contributed to this work! www.cell.com/cell/fulltex... @embl.org
cell.com
Deciphering mechanical determinants of morphological evolution
A comparative analysis of cnidarian larval morphogenesis combined with active surface theory identifies a set of mesoscale mechanical modules that predict species-specific shapes. Manipulating these m...
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Reposted by Aissam Ikmi
Justin Crocker @justinmcrocker.bsky.social · 19/03/2026
New Preprint! When one enhancer allele changes another's regulatory output, is that bad? We found it could be a feature — interallelic cis-regulatory dominance buffers outputs AND enables evolutionary innovation. Two for one! Led by @ottilie.bsky.social from @embl.org doi: doi.org/10.64898/202...
doi.org
Interallelic cis-regulatory dominance promotes robustness and evolutionary innovation
Dominance is a central principle of genetics, yet the mechanistic basis and the evolutionary consequences of dominance arising from cis-regulatory variation remain poorly understood. We examined the evolutionary trajectories of a pleiotropic developmental enhancer in Drosophila . A genotype–phenotype map between D. melanogaster and D. simulans enhancer sequences reveals extensive epistasis, and many homozygous evolutionary paths reduce transcriptional output. In heterozygotes, however, regulatory dominance masks variants that reduce gene expression, potentially relaxing evolutionary constraints. Using allele-specific reporters and imaging, we show that this dominance arises from interallelic interactions (also known as transvection) reinforced by transcriptional hubs. Importantly, this enhancer dominance is cell-type specific, raising the possibility that it conceals deleterious effects in essential tissues while revealing novel, ectopic activity in others. Interallelic regulatory hubs may therefore expand the range of mutational paths available to diploid genomes while preserving essential transcriptional output. ### Competing Interest Statement The authors have declared no competing interest.
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MadScientist @mads100tist.bsky.social · 16/03/2026
It's out! Happy to present ITEC, a semi supervised algorithm with an extremely low error rate that can track cells in files of any size (think Terabytes!). We used it in many organisms, including zebrafish, to study how organs form and linked it to gene expression www.biorxiv.org/content/10.6... +🧪
biorxiv.org
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Fabian Rentzsch @fabianrentzsch.bsky.social · 18/11/2025
Our paper on the role of neurons in Nematostella head regeneration is now out at @currentbiology.bsky.social Big thank you to all collaborators, it was a pleasure! Ectopic head regeneration after nervous system ablation in a sea anemone: Current Biology www.cell.com/current-biol...
cell.com
Ectopic head regeneration after nervous system ablation in a sea anemone
Via genetic ablation of neurons, Mazloumi Gavgani et al. show that the nervous system is essential for defining axial polarity during whole-body regeneration in the sea anemone Nematostella vectensis.
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Nicoletta Petridou @nicolettapetridou.bsky.social · 07/11/2025
Only a few days left for abstract submission at the brand new EMBO|EMBL Symposium Collectivity in living systems: emergence, function and evolution. We have stellar speakers in cell, animal collectives & beyond @priscaliberali.bsky.social @icouzin.bsky.social @ricardsole.bsky.social Join us!
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Development @dev-journal.bsky.social · 03/11/2025
Our Special Issue on Lifelong Development #LifelongDevSI is now complete! Guest edited by Meri Huch and Mansi Srivastava, it contains 26 research and review-type articles. On the cover: the dorsal vasculature of an adult zebrafish's first gill arch. See Preußner et al. doi.org/10.1242/dev....
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Development @dev-journal.bsky.social · 03/11/2025
Also in #LifelongDevSI : ▪️Editorial ▪️Hypothesis on phenotypic plasticity ▪️2 interviews with our guest editors ▪️3 Reviews ▪️17 Research Articles and Reports ▪️3 Techniques and Resources Full table of content: journals.biologists.com/dev/issue/15...
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Aissam Ikmi @aikmi.bsky.social · 03/11/2025
Great having you at @embl.org, Michel! Inspiring science, great discussions, and a fantastic perspective on quantitative evo-devo.
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Aissam Ikmi @aikmi.bsky.social · 31/10/2025
Had the pleasure of working with @mohannad-dardiry.bsky.social to rethink what it means to develop for life. Many thanks to @dev-journal.bsky.social! @embl.org #LifelongDevSI
dardiry.bsky.social
Bluesky
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Thibaut Brunet @thibautbrunet.bsky.social · 05/10/2025
Latest from ours: www.cell.com/cell-reports... This is two stories in one: a case study/cautionary tale on developing genetic tools in new organisms, and the first hint at a gene regulatory network for choanoflagellate multicellular development (which turn out to involve a Hippo/YAP/ECM loop!) A 🧵
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ulrichtechnau.bsky.social @ulrichtechnau.bsky.social · 29/08/2025
Finally, the excellent postdoc work of Emmanuel Haillot is out, where he dissected the integration of Wnt, MAPK and Notch signaling in defining mesoderm and endoderm identities in the diploblast Nematostella. Strikingly similar to sea urchins. www.nature.com/articles/s41...
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Gautam Dey @gautamdey.bsky.social · 22/08/2025
Want to help us image and understand those incredible samples Felix just collected at UBC - and many more? 2 more days to apply! embl.wd103.myworkdayjobs.com/en-US/EMBL/j... #ExM #PlanetaryCellBiology 🧪🧬🔬🌍🌱🦠
embl.wd103.myworkdayjobs.com
Research Technician - Expansion Microscopy
We are seeking a highly motivated research technician to join the Dey Group. The Dey Group studies the evolution and diversity of cell division mechanisms across the eukaryotic tree, using comparative...
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Gautam Dey @gautamdey.bsky.social · 07/08/2025
Want to acquire #ExM images like this and help us understand the true extent of cytoskeletal diversity across the tree of life? This position might be for you! embl.wd103.myworkdayjobs.com/en-US/EMBL/j... With @dudinlab.bsky.social @embl.org @biology-unige.bsky.social @moorefound.bsky.social
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Michalis Averof @michalis-averof.bsky.social · 08/08/2025
Latest paper elifesciences.org/articles/107... closes an important cycle in our efforts to study regeneration: week-long recordings allow us to observe the behaviour of cells during the entire course of regeneration in a crustacean leg – bright objects in movie are fluorescent nuclei of cells. 1/6
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Georgia Rapti @georgiarapti.bsky.social · 08/08/2025
drive.google.com/file/d/1CLIx...
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Pawel Burkhardt @pawelburkhardt.bsky.social · 07/08/2025
Ctenophores possess a unique aboral organ that acts as a multisensory center, controlling complex behaviors. We’ve now created a ctenophore model integrated with our 3D volume EM data. Puts it into perspective. Check out our recent work here: www.biorxiv.org/content/10.1... #ctenophores #volumeEM
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Katerina Ragkousi @ragkousik.bsky.social · 06/08/2025
our unexpected results on the importance of a neural cell adhesion molecule in sea anemone epithelialization and gastrulation are just posted in the following preprint. www.biorxiv.org/content/10.1...
biorxiv.org
Depletion of a neural cell adhesion molecule disrupts both epithelial and germ layer identity in sea anemone embryos
Assembly of cells into epithelial layers marks the early steps of tissue organization and embryonic development in most animals. Although several conserved proteins are known to be essential for epith...
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Nicoletta Petridou @nicolettapetridou.bsky.social · 11/06/2025
Here our latest work on how morphogens trigger tissue phase transitions to tune their own length-scales and time-scales - An exciting collaboration with @zhvas.bsky.social @dianakhorom.bsky.social Bernat Corominas-Murtra and heroic experiments by the incredible @cami-autorino.bsky.social @embl.org
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genikhovich.bsky.social @genikhovich.bsky.social · 09/06/2025
The last part of @paulknabl.bsky.social 's PhD is now available at www.biorxiv.org/content/10.1... Paul showed that BMP signaling is active in the diffuse nervous system of the sea anemone Nematostella and the box jellyfish Tripedalia. Moreover, suppression of BMP signaling in Nematostella leads...
biorxiv.org
The anti-neural role of BMP signaling is a side effect of its global function in dorsoventral patterning
In Bilateria with centralized nervous systems (e.g. in vertebrates or arthropods), the minimum of the BMP signaling activity gradient defines the position of the central nervous system. BMP-dependent ...
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Aissam Ikmi @aikmi.bsky.social · 28/05/2025
We thought we were just studying mesoglea biogenesis…Turns out Nematostella has been hiding a sophisticated backup pressure valve! Work driven by the talented PhD student Soham Basu! @embl.org‬ www.biorxiv.org/content/10.1...
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EMBL @embl.org · 29/11/2024
EMBL scientists have used sea anemones to study how animals restore their shape following major injuries. The results show how, in regenerating animals, systemic molecular and cellular changes help in regaining the original shape. 🪄 www.embl.org/news/science... 🧪 #MolBiol
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