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Rafael D. Acemel

@rdacemel.bsky.social
179 followers 219 following 48 posts

RyC researcher at Centro Andaluz de Biología del Desarrollo (Sevilla/Spain). Trying to apply genomics to understand things about gene regulation and Evo-Devo.

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Reposted by Rafael D. Acemel
José María Santos-Pereira @josemsanper.bsky.social · 28/09/2026
We are looking for motivated students to apply for the FPU scholarships to pursue a PhD in 3D genomics and gene regulation in development and disease. If you're interested, please email me: jsantos2@us.es
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Luis Hernández-Huertas @luisherhuertas.bsky.social · 14/09/2026
I'm really happy about this recognition! Thanks to everyone who contributed to this work at @cabd-upo-csic.bsky.social, with special thanks to @crisprscan.bsky.social and @bazzinilab.bsky.social for all their guidance 👏🏻👏🏻🎉
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Silvia Manrique @tank-silvia.bsky.social · 09/09/2026
‼️ATENCIÓN‼️ Se han liberado a última hora 3 plazas en el curso de epigenómica de la SEG @segenetica.bsky.social que se celebrará del 13 al 16 de septiembre en La Cristalera (Miraflores de la Sierra, Madrid). Interesades pueden contactarme por aquí o por los canales indicados en la página del curso 👇🏼👇🏼
segenetica.es
Curso Nacional Práctico de Genómica: Epigenómica – Sociedad Española de Genética
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Arnaud Krebs @arnaudkr.bsky.social · 12/08/2026
How many TFs to you need to open chromatin at enhancers? Very excited to see this one out! Check out the augmented version with combinatorial motif mutant libraries in Figure 5! Very proud of @guidobarzaghi.bsky.social @valentinabaderna.bsky.social @embl.org
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Rafael D. Acemel @rdacemel.bsky.social · 07/08/2026
Congrats!!! Amazing to be able to read this now!
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Isabel Almudi @isabelalmudi.bsky.social · 07/08/2026
What happens when evolution adds an extra pair of eyes? Male mayflies evolve an extra pair of dorsal compound eyes, the Turbanate eyes, thought to help males detect females during mating swarms. we have investigate how this remarkable evolutionary novelty develops. www.biorxiv.org/content/10.6...
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Rafael D. Acemel @rdacemel.bsky.social · 06/08/2026
Full offer:
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Rafael D. Acemel @rdacemel.bsky.social · 06/08/2026
The Acemel lab is #hiring!! :) We are looking for a PhD student to join us at @cabd-upo-csic.bsky.social to study developmental plasticity, epigenetics and evolution using medaka 🐟 and AI models 💻 . Deadline for applications 4th of September. See more details 👇
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Arnau Sebé-Pedrós @arnausebe.bsky.social · 03/08/2026
Happy to share the final version of our study on the evolution of chromatin states across eukaryotes, out today in @natgenet.nature.com Led by @crisnava.bsky.social and @seanamontgomery.bsky.social www.nature.com/articles/s41... Some highlights below
nature.com
Diversity and evolution of chromatin regulatory states across eukaryotes - Nature Genetics
This study introduces iChIP2, a low-input chromatin immunoprecipitation followed by sequencing method that profiles histone post-translational modifications (hPTMs) simultaneously across diverse eukar...
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Reposted by Rafael D. Acemel
Alex de Mendoza @alexdemendoza.bsky.social · 03/08/2026
Sailing in @biorxivpreprint.bsky.social ready for summer, our study on the iconic Portuguese man o' war 🪼 is out: www.biorxiv.org/content/10.6.... We use (epi)genomics to understand a critter that fascinates me since childhood. Massive team effort with @obog.bsky.social, Cummins and Neely groups. 🧵
the indo-pacific bluebottle (Physalia utriculus)
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Darío Lupiáñez @dariloops.bsky.social · 21/07/2026
🚨 Job Alert - Please share 🙏 Interested in 3D gene regulation in development & evolution? 🤓🧬 💥 Our lab at @cabd-upo-csic.bsky.social is expanding! ✅ 4 years fully funded PhD position 💻🧪 Experimental or computational backgrounds welcome 👇 Details below #PhDPosition #PhDOpportunity #AcademicJobs
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Rafael D. Acemel @rdacemel.bsky.social · 15/07/2026
So exciting!!✊🏽✊🏽Congrats to all!! 😊
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Ctenophores Rock! @ctenophoresrock.bsky.social · 17/06/2026
What is the evolutionary origin of the organizer? New work from @kremnyovs.bsky.social, @tclebedeva.bsky.social & Hejnol Lab @uni-jena.de reports the blastopore lip of the #ctenophore Mnemiopsis leidyi, a member of the evolutionary sister group to all other metazoans, exhibits organizer activity.
nature.com
A blastoporal organizer in a ctenophore - Nature
Experiments using the comb jelly Mnemiopsis leidyi and the sea anemone Nematostella vectensis reveal that the emergence of a core signalling pathway may have been a key innovation enabling the transit...
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Reposted by Rafael D. Acemel
Darío Lupiáñez @dariloops.bsky.social · 29/05/2026
🚨Preprint🚨 An unexpected source of sex hormones in mammalian gonads: Supporting-like cells (SLCs) 🐇 SLCs have latent steroidogenic potential and may be an ancestral lineage conserved beyond mammals Led by @ivan-barbera-aura.bsky.social & V Chung Bluetorial 1/15👇 www.biorxiv.org/content/10.6...
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Rafael D. Acemel @rdacemel.bsky.social · 29/05/2026
Amazing job by Iván and colleagues! Great insights into the evolution of steroidogenesis and gonadal cell lineages from the rebel rabbits :) Reads well together with our recent work on turtles!!
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Reposted by Rafael D. Acemel
SEBD @sebioldev.bsky.social · 26/03/2026
📣 Congratulations to #SEBD board member @jrmarmor.bsky.social @cabd-upo-csic.bsky.social for being an awardee of this year’s HFSP grant to explore the hidden roles of organs as electrochemical organizers of #morphogenesis with @eliasbarrigalab.bsky.social Charlie Duclut and @djcohen.bsky.social
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Rafael D. Acemel @rdacemel.bsky.social · 26/03/2026
Presenting our latest turtle sex determination preprint at the @biol-vsd.bsky.social meeting in beautiful Crete 😊. Check it out! www.biorxiv.org/content/10.6...
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VSD @biol-vsd.bsky.social · 23/03/2026
HERITAGE NIGHT ! 🤍 We are now celebrating the remarkable careers of wonderful scientists that left a deep print in our community. Thank you for your legacy : Blanche Capel, Arthur Arnold, Jenny Graves, Marilyn Renfree, Tanaka Minoru & Eric Pailhoux ! 🙏 #VSD26 #heritage
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Dario Riccardo Valenzano @dvalenzano.bsky.social · 22/03/2026
Aging killifish show systemic inflammation and accumulating DNA damage in progenitor-like immune cells, offering a window into the evolutionarily conserved mechanisms of vertebrate immune aging. Great work from Gabriele, @mdonertas.bsky.social, and the whole team. www.nature.com/articles/s43...
nature.com
Spontaneous aging-associated inflammation and genome instability in the immune system of turquoise killifish - Nature Aging
Turquoise killifish are naturally short-lived vertebrates that serve as a model system for aging. The authors show that killifish exhibit age-related transformation in the immune system, which rapidly...
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Elzo de Wit lab @ NKI @dewitlab.bsky.social · 18/03/2026
🧵 CTCF is essential for embryonic development, but why has remained unclear. By combining gastruloids with a temporal degron system, we uncovered a surprising dual function — and it changes how we think about CTCF's role in development. 1/8 www.biorxiv.org/content/10.6...
biorxiv.org
A dual role for CTCF in development
CTCF is an essential DNA binding protein whose absence leads to embryonic lethality. CTCF is primarily known for its role in 3D genome organization where its N-terminal domain interacts with cohesin to anchor chromatin loops. How CTCF facilitates proper embryonic development remains unclear, necessitating temporal control to resolve its stage-specific functions. By combining gastruloids, an in vitro model of embryonic development, with a degron system to rapidly deplete CTCF at defined timepoints, we show that early CTCF depletion impairs early gastruloid morphogenesis. Surprisingly, ATAC-seq and time-resolved RNA-seq revealed that differentiation was unaffected. CTCF binding is strongly enriched at promoters of downregulated genes. Re-expression of a CTCF variant with an N-terminal truncation, incapable of looping, was sufficient to rescue the expression of CTCF-promoter bound genes and the defects in morphogenesis. However, extended culture (up to 168 hours) of gastruloids reconstituted with N-terminal truncated CTCF led to their collapse. Our work shows that CTCF has a dual function in early mammalian development: at early stages CTCF regulates developmentally important genes through promoter binding, while at later stages its looping function is required for correct development. ### Competing Interest Statement The authors have declared no competing interest. European Research Council, https://ror.org/0472cxd90, 637587, 865459 Dutch Research Council, https://ror.org/04jsz6e67, 016.161.316, VI.C.222.049 Dutch Cancer Society, https://ror.org/0368jnd28, N/A
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MwahahahahahadScientist @mads100tist.bsky.social · 13/03/2026
Very happy to have contributed to this mastodon of a paper by Yinan @yinanwan.bsky.social. Whole-mount spatial transcriptomics in zebrafish y'all 🐟🧪
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Darío Lupiáñez @dariloops.bsky.social · 12/03/2026
🐟How does the Amazon molly defy all evolutionary odds and overcome the detrimental costs of asexual reproduction?🧬 😊Glad that @rdacemel.bsky.social and I could contribute to this fascinating study, brilliantly led by Ed Ricemeyer @nature.com 👏Congrats to all authors! @cabd-upo-csic.bsky.social
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Rafael D. Acemel @rdacemel.bsky.social · 06/03/2026
Great lab and environment! Apply for PhD and Postdoc 🙂
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Rafael D. Acemel @rdacemel.bsky.social · 05/03/2026
Join Adri!! Nice opportunity 🙂.
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Reposted by Rafael D. Acemel
Adriano Bolondi @adrianobolondi.bsky.social · 05/03/2026
🚨JOB ALERT🚨PLEASE SPREAD and RT Searching for a motivated Master’s student @bokelab.bsky.social @crg.eu @prbb.org to investigate how proteostasis in oocytes influences dormancy and fertility. Reach out to me (adriano.bolondi@crg.es) to join us in sunny Barcelona! See details below👇
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Irene Mota @imotagom.bsky.social · 24/02/2026
🚨 Happy to see that my PhD work is finally published! We present METALoci, a tool that integrates #3Dgenome and #Epigenetics to identify regulatory hubs. Applied to #sexdetermination we uncover: ✔️ Non-coding regulatory region controlling Fgf9 ✔️ Meis genes as key players 👉 rdcu.be/e5sm2
nature.com
Chromatin spatial analysis by METALoci unveils sex-determining 3D regulatory hubs
Nature Structural & Molecular Biology - METALoci, a new three-dimensional genome computational tool, reveals a major rewiring of regulatory interactions during sex determination. By combining...
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Darío Lupiáñez @dariloops.bsky.social · 24/02/2026
🤩💪 Out now! 3D regulatory hubs in sex determination With @mamartirenom.bsky.social & Capel labs, led by @imotagom.bsky.social & @jrotwitguez.bsky.social 1️⃣ METALoci – explore #3DGenome 🧬 2️⃣ Non-coding region controlling Fgf9 🧩 3️⃣ Meis genes = new key players 🌟 👉 rdcu.be/e5sm2 1/n Bluetorial 👇
rdcu.be
Chromatin spatial analysis by METALoci unveils sex-determining 3D regulatory hubs
Nature Structural & Molecular Biology - METALoci, a new three-dimensional genome computational tool, reveals a major rewiring of regulatory interactions during sex determination. By combining...
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Juan Antonio Rodríguez @jrotwitguez.bsky.social · 24/02/2026
🔊💥 How is sex determined? How is it encoded in the #3Dgenome? Read all about it in our last paper! www.nature.com/articles/s41... It’s been looong but feels satisfying to see this finally out. (With CapelLab, @dariloops.bsky.social Lab and @mamartirenom.bsky.social Lab) 🧵👇
nature.com
Chromatin spatial analysis by METALoci unveils sex-determining 3D regulatory hubs - Nature Structural & Molecular Biology
METALoci, a new three-dimensional genome computational tool, reveals a major rewiring of regulatory interactions during sex determination. By combining this method with transgenic models, the authors ...
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Thomas Spruce @tspruce.bsky.social · 20/02/2026
🚨🚨 #Hiring! Funded #phd position open in our lab @cabd-upo-csic.bsky.social to study the role of YAP1 and associated factors in #preimplantation embryo development. 📆 Apply by 6th March 2026 Details below. @sebioldev.bsky.social Please RT!
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Rafael D. Acemel @rdacemel.bsky.social · 19/02/2026
KADISHO?
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Edoardo Gianni @edogia.bsky.social · 13/02/2026
How could a simple self-replicating system emerge at the origins of life? RNA polymerase ribozymes can replicate RNA, but existing ones are so large that their self-replication seems impossible. Could they be smaller? Excited to share our latest work in @science.org on a new small polymerase. 1/n
science.org
A small polymerase ribozyme that can synthesize itself and its complementary strand
The emergence of a chemical system capable of self-replication and evolution is a critical event in the origin of life. RNA polymerase ribozymes can replicate RNA, but their large size and structural ...
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Antonio Martínez Ron @aberron.bsky.social · 06/02/2026
Para el turno de tarde: Preocupación por las expectativas creadas por Barbacid sobre el cáncer de páncreas: “El anuncio se ha salido de madre” www.eldiario.es/1_c5dac3?utm...
eldiario.es
Preocupación por las expectativas creadas por Barbacid sobre el cáncer de páncreas: “El anuncio se ha salido de madre”
Varios centros de investigación están recibiendo una avalancha de peticiones tras un anuncio que, según muchos especialistas, ha sido mal comunicado: ni Barbacid ha encontrado la cura del cáncer de pá...
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Rafael D. Acemel @rdacemel.bsky.social · 04/02/2026
Thanks!!! 😊
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Martínez Morales Lab @jrmarmor.bsky.social · 02/02/2026
And finally, we have It out! Do not miss It, If you are into early eye development, GRNs, and eye malformations. Thanks to Javier Macho and the rest of the authors for a terrific job.
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Darío Lupiáñez @dariloops.bsky.social · 03/02/2026
🚨 1/ Preprint Alert! Sex determination outcome is conserved across vertebrates (i.e. generating 2 compatible sexes) ♀️♂️ But are the cell types and gene programs behind them conserved too? 🧬 Spoiler: not really 👀 Find out in our new preprint ⬇️ www.biorxiv.org/content/10.6...
biorxiv.org
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
In depth analysis and more nuanced discussions can be found in the paper. Thanks again to all the authors. We are eager to receive feedback!
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
Based on this, we propose that supporting cells from Pax2-positive cells is an ancestral feature of Archelosauria, and those cells might be more prone to become steroidogenic. In contrast, in mammals supporting cells derive mostly from cells from the coelomic epithelium.
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
In fact, #BorisTezak immunos on T. scripta confirmed the coexpression of Pax2 and Sox9.
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
We performed PAGA trajectory analysis, which are consistent with the idea that supporting cells in turtles (granulosa and Sertoli) derive mostly from Pax2-positive mesenchymal cells.
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
Indeed, supporting cells in mice and chickens are thought to come from different progenitors. In mouse they mostly derive from coelomic epithelium cells, while in chicken mainly from a Pax2-positive mesenchymal population.
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
But if non-mammalian supporting cells are steroidogenic, then are they really homologous to mammalian supporting cells? And where do they come from?
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
Our data supports a model in which fetal Leydig cells (interstitially derived) could be a mammalian innovation. In fact, in mammals, androgens are dispensable for sex determination and only required to fully masculinize the embryo. Outside mammals, androgens are produced by supporting lineage cells!
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
Again, #BorisTezak performed some nice immunos validating the colocalization of the steroidogenic gene Cyp11a1 with supporting cells that are also Sox9 positive.
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
We checked in turtles, and bingo! Androgen producing enzymes such as Cyp11a1 are produced by cells of the supporting lineage in T. scripta. Then, exclusively in ovaries, as in chicken, the aromatase Cyp19a1 converts androgens into estrogens in granulosa cells.
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
While fetal Leydig cells and theca cells have been identified in chicken, these steroidogenic populations derive from supporting cells, not interstitial cells!
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
However, we could not find interstitial cells expressing steroidogenic enzymes in T. scripta. This was puzzling: androgens and estrogens are critical for sex determination in turtles. However we think there is a catch!
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
But this was not the only surprise. Given the conservation of main gonadal lineages, we expected to find the equivalent of fetal Leydig cells in mammals: a population mainly derived from interstitial cells and in charge of producing androgens.
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
To explore this relationship closer #BorisTezak did some beautiful immunos showing the transient coexpression of Twist1 and Sox9 followed by the downregulation of the latter in female gonads of T. scripta.
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
Twist1 is the first transcription factor differentially expressed in female cells. It is not expressed there either in mouse or chicken and has never been implicated in sex determination before! However, Twist1 has been shown to antagonize Sox9, a pro-testicular gene, but in mouse chondrogenesis 👀.
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Rafael D. Acemel @rdacemel.bsky.social · 02/02/2026
Thus, to identify new factors involved in sex determination in turtles we looked for genes differentially expressed in supporting cell progenitors at either MPT and FPT. We did not find many, but one of them caught our attention: Twist1.
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