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Kaessmann Lab

@kaessmannlab.bsky.social
754 followers 185 following 165 posts

Our research group is interested in the molecular and cellular origins and evolution of vertebrate organs. Tweets by Henrik, usually in the name of our group. home.kaessmannlab.org

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Kaessmann Lab @kaessmannlab.bsky.social · 09/09/2026
Thanks so much Mari! And many thanks @camilleberthelot.bsky.social for this wonderful JC piece on our paper!!
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Kaessmann Lab @kaessmannlab.bsky.social · 31/08/2026
We’re hiring! Experimental #Postdoc and computational and/or experimental #PhD positions in evolutionary genomics are available in our lab in Heidelberg: home.kaessmannlab.org/openPositions Please repost and spread the word!
home.kaessmannlab.org
Kaessmann Lab
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Kaessmann Lab @kaessmannlab.bsky.social · 13/08/2026
Please check out this exciting work - such a wonderful collaboration!!
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Ioannis Sarropoulos @ioansarr.bsky.social · 06/08/2026
Our study of TE regulatory co-option in the primate cerebellum is now officially out! Proud to have co-supervised the stellar @tyamadat.bsky.social on this project, which builds on our earlier sequence-to-function AI models of the mammalian cerebellum: www.science.org/doi/10.1126/...
science.org
The evolution of gene regulation in mammalian cerebellum development
Gene regulatory changes are considered major drivers of evolutionary innovations, including the cerebellum’s expansion during human evolution, yet they remain largely unexplored. In this study, we com...
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Tetsuya Yamada @tyamadat.bsky.social · 30/07/2026
Our manuscript on the co-option of TEs as cerebellar CREs is now officially published in @natcomms.nature.com! Huge thanks to @kaessmannlab.bsky.social @marisepp.bsky.social, and @ioansarr.bsky.social for the fantastic collaboration throughout this project! www.nature.com/articles/s41...
nature.com
Gene regulatory innovations from transposable elements in primate cerebellum development - Nature Communications
The roles of transposable elements in primate brain development remain underexplored. Here, the authors identify transposable elements with ancestral regulatory potential that have been co-opted as ci...
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Kaessmann Lab @kaessmannlab.bsky.social · 27/05/2026
Thrilled and honored to receive the Ernst Schering Prize 2026!🎉 Also deeply grateful to have been elected to the German Academy of Sciences. Both are recognitions of our whole group – I’m immensely thankful to all team members, past and present!❤️ tinyurl.com/hjrejv3p tinyurl.com/muw7j6mr
tinyurl.com
Ernst Schering Prize 2026 – Schering Stiftung
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Kaessmann Lab @kaessmannlab.bsky.social · 08/05/2026
Huge congrats from our whole lab to Sir David Attenborough on his 100th birthday!!! 🎉🥳❤️ I had the honor of meeting him - and being interviewed by him - in 2013 for his BBC documentary "Rise of Animals: Triumph of the Vertebrates", which featured part of our work.
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Mari Sepp @marisepp.bsky.social · 12/02/2026
It was a wonderful opportunity to reflect on our work on the development of the mammalian cerebellum. We thank our editors, Alexandra Joyner and James Li! Special thanks to Henrik @kaessmannlab.bsky.social for his unwavering support and mentorship!
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Mari Sepp @marisepp.bsky.social · 12/02/2026
How have concerted and mosaic evolutionary mechanisms shaped the expansion of the human cerebellum? Our review with @tyamadat.bsky.social and @ioansarr.bsky.social available free till March 29: authors.elsevier.com/a/1ma2wFzn7a...
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Lena Kutscher @handle.invalid · 10/02/2026
We hope our data can be useful to you, and to increase its usability, we've generated an exploratory web app as a resource and starting point to examine our data on the @kaessmannlab.bsky.social website apps.kaessmannlab.org/HindbrainExp...
apps.kaessmannlab.org
Hindbrain Explorer: A multi-omics atlas of human hindbrain development.
This app accompanies the paper: A multi-omics atlas of human hindbrain development. This interactive application allows users to explore the data presented in the study and use the machine learning mo...
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Lena Kutscher @handle.invalid · 10/02/2026
Excited to share our preprint on our new multi-omic atlas of human hindbrain development. Led by postdoc Piyush Joshi, in collaboration with @kaessmannlab.bsky.social and Pfister labs, our atlas represents the first comprehensive view of human hindbrain development. www.biorxiv.org/content/10.6...
Brain with puzzle overlay to show that our study provides missing pieces of the puzzle of human brain development by delivering the most comprehensive picture of hindbrain development to date. We have strived to go beyond just another multi-omics atlas to gain deep insights by:
1. Meticulously annotating cell clusters
2. Extracting regulatory programs in terms of coordinated gene sets and accessible regulatory elements
3. Using deep learning to identify regulatory syntax
4. Resolving context-specific TF activity
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Universität Heidelberg @uniheidelberg.bsky.social · 30/01/2026
Using AI to Retrace the Evolution of Genetic Control Elements in the Brain – Researchers map evolutionary changes in the developing mammalian cerebellum www.uni-heidelberg.de/en/newsroom/...
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Kaessmann Lab @kaessmannlab.bsky.social · 29/01/2026
Fantastic opportunity - Mari is an exceptional scientist and person and was an outstanding pillar of our lab!
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Mari Sepp @marisepp.bsky.social · 29/01/2026
I've started my own lab 🎉 PhD/postdoc positions available - reach out if curious about cerebellum evo-devo and autism spectrum disorders. We’re based at Uni Tartu, Institute of Genomics (home to Estonian Biobank), and funded by @simonsfoundation.org @embo.org, and the Estonian Research Council.
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Kaessmann Lab @kaessmannlab.bsky.social · 29/01/2026
We are thrilled that our study on the evolution of gene regulation in mammalian cerebellum development – led by @ioansarr.bsky.social, @marisepp.bsky.social and @tyamadat.bsky.social, in collaboration with @steinaerts.bsky.social – is now out in @ScienceMagazine! www.science.org/doi/10.1126/...
science.org
The evolution of gene regulation in mammalian cerebellum development
Gene regulatory changes are considered major drivers of evolutionary innovations, including the cerebellum’s expansion during human evolution, yet they remain largely unexplored. In this study, we com...
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Kaessmann Lab @kaessmannlab.bsky.social · 16/10/2025
Did transposable elements shape brain evolution — and if so, which ones, and in which cell states and lineages? Led by @tyamadat.bsky.social, we explored this question in cerebellum development using sequence-based deep learning models! www.biorxiv.org/content/10.1...
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Kaessmann Lab @kaessmannlab.bsky.social · 15/10/2025
We are thrilled to share our new preprint entitled “The origin and molecular evolution of the mammalian liver cell architecture” www.biorxiv.org/content/10.1...
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Kaessmann Lab @kaessmannlab.bsky.social · 11/09/2025
👇 !!!
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Idoia Quintana-Urzainqui @idoiaeu.bsky.social · 02/09/2025
🧠🦈Excited to present our latest work🧠🦈Interested in brain evolution? And shark embryos? Then read on… Our work sheds light on the deep origins of our brain’s most complex regions.
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ZMBH @zmbh.uni-heidelberg.de · 17/07/2025
@kaessmannlab.bsky.social has for the first time shown in an international collaboration, that survival of male birds crucially depends on a micro RNA for sex chromosome dosage compensation. The paper just has been published by Nature. www.nature.com/articles/s41...
nature.com
A male-essential miRNA is key for avian sex chromosome dosage compensation - Nature
Birds have evolved a unique sex chromosome dosage compensation mechanism involving the male-biased microRNA (miR-2954), which is essential for male survival by regulating the expression of dosage-sens...
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Universität Heidelberg @uniheidelberg.bsky.social · 16/07/2025
How a Tiny Gene Ensures the Survival of Male Birds – Researchers from Heidelberg and Edinburgh identify a mechanism that balances the genetic disparity between sex chromosomes www.uni-heidelberg.de/en/newsroom/...
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Kaessmann Lab @kaessmannlab.bsky.social · 16/07/2025
Our study on a male-essential microRNA and the evolution of other dosage compensation mechanisms in birds is now out in Nature! www.nature.com/articles/s41...
nature.com
A male-essential miRNA is key for avian sex chromosome dosage compensation - Nature
Birds have evolved a unique sex chromosome dosage compensation mechanism involving the male-biased microRNA (miR-2954), which is essential for male survival by regulating the expression of dosage-sens...
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Kaessmann Lab @kaessmannlab.bsky.social · 07/07/2025
Great work from our wonderful new lab member Anamaria and colleagues in Arnau's lab!
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Anamaria Elek @aelek.bsky.social · 06/07/2025
I am very happy to have posted my first bioRxiv preprint. A long time in the making - and still adding a few final touches to it - but we're excited to finally have it out there in the wild: www.biorxiv.org/content/10.1... Read below for a few highlights...
biorxiv.org
Decoding cnidarian cell type gene regulation
Animal cell types are defined by differential access to genomic information, a process orchestrated by the combinatorial activity of transcription factors that bind to cis -regulatory elements (CREs) to control gene expression. However, the regulatory logic and specific gene networks that define cell identities remain poorly resolved across the animal tree of life. As early-branching metazoans, cnidarians can offer insights into the early evolution of cell type-specific genome regulation. Here, we profiled chromatin accessibility in 60,000 cells from whole adults and gastrula-stage embryos of the sea anemone Nematostella vectensis. We identified 112,728 CREs and quantified their activity across cell types, revealing pervasive combinatorial enhancer usage and distinct promoter architectures. To decode the underlying regulatory grammar, we trained sequence-based models predicting CRE accessibility and used these models to infer ontogenetic relationships among cell types. By integrating sequence motifs, transcription factor expression, and CRE accessibility, we systematically reconstructed the gene regulatory networks that define cnidarian cell types. Our results reveal the regulatory complexity underlying cell differentiation in a morphologically simple animal and highlight conserved principles in animal gene regulation. This work provides a foundation for comparative regulatory genomics to understand the evolutionary emergence of animal cell type diversity. ### Competing Interest Statement The authors have declared no competing interest. European Research Council, https://ror.org/0472cxd90, ERC-StG 851647 Ministerio de Ciencia e Innovación, https://ror.org/05r0vyz12, PID2021-124757NB-I00, FPI Severo Ochoa PhD fellowship European Union, https://ror.org/019w4f821, Marie Skłodowska-Curie INTREPiD co-fund agreement 75442, Marie Skłodowska-Curie grant agreement 101031767
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Kaessmann Lab @kaessmannlab.bsky.social · 20/06/2025
We are delighted to share our new preprint “The evolution of gene regulatory programs controlling gonadal development in primates” www.biorxiv.org/content/10.1...
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Kaessmann Lab @kaessmannlab.bsky.social · 07/04/2025
A great article highlighting the broader implications of the three parallel recent papers from our group and our wonderful colleagues in Spain and Belgium...
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Stein Aerts @steinaerts.bsky.social · 16/03/2025
Fantastic study and collaboration led by stellar postdoc @ioansarr.bsky.social, it was a pleasure to host you in the lab (& thanks to @embo.org for the visiting fellowship)
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Kaessmann Lab @kaessmannlab.bsky.social · 16/03/2025
How does gene regulation shape brain evolution? Our new preprint dives into this question in the context of mammalian cerebellum development! rb.gy/dbcxjz Led by @ioansarr.bsky.social, @marisepp.bsky.social and @tyamadat.bsky.social, in collaboration with @steinaerts.bsky.social
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ME Torres-Padilla @metorrespadilla.bsky.social · 21/02/2025
Paper out !!🥳big thanks to all authors @marliesoomen.bsky.social @diego-rt.bsky.social @kaessmannlab.bsky.social @jonathangoeke.bsky.social @lorenzamottes.bsky.social & 'bluesky-less' Lots of interesting new TE (& genes) biology Data fully browsable💻 👉 embryo.helmholtz-munich.de/shiny_embryo/
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Kaessmann Lab @kaessmannlab.bsky.social · 18/02/2025
Great colleague/lab and great opportunity!
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Sebastiaan van Heesch @sebastiaanvheesch.bsky.social · 18/02/2025
Hi everyone! We are still welcoming applicants for a computational postdoc position. If your profile fits our lab interests, please do reach out to me for more information or apply directly via the link below. I'm looking forward to reading your application! www.academictransfer.com/en/jobs/3488...
academictransfer.com
Postdoc Computational Genomics of ORFs & Microproteins
The Princess Máxima Center for pediatric oncology is a unique interdisciplinary institute that brings together all the highly complex care, research, and education to provide the best possible care fo...
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Ismael Hernández Núñez @ismaelhdeznunez.bsky.social · 07/02/2025
Two days after our preprint in the role of active DNA methylation in retinal development... Happy to share our last paper from my former lab. SnRNA-seq atlas of the postnatal shark retina!! www.nature.com/articles/s41...
nature.com
A single-nucleus RNA sequencing atlas of the postnatal retina of the shark Scyliorhinus canicula - Scientific Data
Scientific Data - A single-nucleus RNA sequencing atlas of the postnatal retina of the shark Scyliorhinus canicula
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Mari Sepp @marisepp.bsky.social · 14/02/2025
A big cheer for Bassi @bassi-z.bsky.social, the newest doctor in the @kaessmannlab.bsky.social! An absolute inspiration!
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Bastienne Zaremba @bassi-z.bsky.social · 14/02/2025
What a week! I defended my PhD on Monday, and now my first first-author paper was published in @science.org. shorturl.at/fvIGZ I am so incredibly grateful to everyone who made this possible! Especially @kaessmannlab.bsky.social and the García-Moreno lab 💛
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Universität Heidelberg @uniheidelberg.bsky.social · 14/02/2025
Komplexe Evolution: Fortgeschrittene kognitive Fähigkeiten bei Vögeln – Heidelberger Forscher kartieren verantwortliche Gehirnregionen und gewinnen neue Erkenntnisse zu ihrer embryonalen und evolutionären Entwicklung www.uni-heidelberg.de/de/newsroom/...
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Stein Aerts @steinaerts.bsky.social · 14/02/2025
.. and what an honour to be jointly published with two other papers from the @kaessmannlab.bsky.social and the Fernando García-Moreno lab - all of this summarized in a great perspective by Maria Tosches and @giacomogattoni.bsky.social www.science.org/doi/10.1126/...
science.org
Constrained roads to complex brains
Neural development and brain circuit evolution converged in birds and mammals
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Moritz Mall @moritzmall.bsky.social · 13/02/2025
#CellPlasticity—the ability of cells to change their identity—is vital for tissue growth and repair. But when it goes unchecked, it can fuel #cancer. Our latest study examines how to block #LiverCancer by actively suppressing plasticity. www.nature.com/articles/s41... #CancerBiology
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Cedric Boeckx @cedricboeckx.bsky.social · 14/02/2025
Three fantastic @science.org papers on convergent development & evolution of neurons + their connections in the bird & mammalian pallia, by @kaessmannlab.bsky.social @steinaerts.bsky.social & Fernando García-Moreno. Expertly synthesised by @giacomogattoni.bsky.social & Maria Antonietta Tosches 🧪🧠
science.org
Constrained roads to complex brains
Neural development and brain circuit evolution converged in birds and mammals
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Kaessmann Lab @kaessmannlab.bsky.social · 13/02/2025
And please check out the wonderful Perspective by Maria Tosches and Giacomo Gattoni on our paper and the two related ones by the groups of @steinaerts.bsky.social and Fernando Garcia-Moreno!! www.science.org/doi/10.1126/...
science.org
Constrained roads to complex brains
Neural development and brain circuit evolution converged in birds and mammals
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Kaessmann Lab @kaessmannlab.bsky.social · 13/02/2025
So excited to announce that our study on the development and evolution of pallial cell types and structures in birds, led by @bassi-z.bsky.social, is now out in @science.org! www.science.org/doi/10.1126/...
science.org
Developmental origins and evolution of pallial cell types and structures in birds
Innovations in the pallium likely facilitated the evolution of advanced cognitive abilities in birds. We therefore scrutinized its cellular composition and evolution using cell type atlases from chick...
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Teleman Lab @telemanlab.bsky.social · 07/02/2025
The Teleman Lab and the Kaessmann lab @kaessmannlab.bsky.social are jointly hiring a postdoc through the Health + Life Science Alliance @hlsalliance.bsky.social to study translation and evolution. Check out the post here www.health-life-sciences.de/opportunitie...
health-life-sciences.de
HEALTH + LIFE SCIENCE ALLIANCE | Interinstitutional Postdocs
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Kaessmann Lab @kaessmannlab.bsky.social · 06/02/2025
Check out this attractive call and especially the collaborative project (No. 51) offered by our lab and that of Aurelio Teleman with the aim to scrutinize the evolution of X chromosome dosage compensation through translational upregulation in mammals, based on our previous findings (bit.ly/3CtEGzr)!
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