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Miguel V. Almeida

@migueldvalmeida.bsky.social
914 followers 771 following 44 posts

Postdoc at the University of Cambridge. Interested in transposons, evolution, epigenetics, worms and African cichlid fishes.

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Reposted by Miguel V. Almeida
Cedric Feschotte @cedricfeschotte.bsky.social · 24/09/2026
Thrilled to see this published today! Truly special because we made the initial discovery >15 yrs ago! We found two copies of a human gene called BC200 embedded in a human poxvirus. BC200 blurs the line between gene & transposon—both functional & mutagenic! www.science.org/doi/10.1126/... 🧵1/n
science.org
Escape of the BC200 gene to a human poxvirus reveals its persistent transposition in primates
Transposable elements mobilize within and occasionally between genomes, including from host to virus. We identified two insertions of the human BC200 noncoding RNA gene in the poxvirus molluscum conta...
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Maya Voichek @mayavoichek.bsky.social · 24/09/2026
Super excited to share my postdoctoral work at @imbavienna.bsky.social @viennabiocenter.bsky.social - We discovered that some retrotransposons, or "jumping genes" 🧬, are able to spread from cell to cell via a new viral infectivity route. A short thread: 🧵👇 (1/7)
AI-generated illustration of the soma-to-germline transmission of retrotransposons described in our work
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George Turner @dlimnothrissa.bsky.social · 15/09/2026
My latest Lake Malawi ID guide, open access 'permanent preprint'. A work in progress. Warning- it is 400 pages long! ecoevorxiv.org/repository/v...
ecoevorxiv.org
Identification of the Cichlid Fishes of Lake Malawi/Nyasa Part 2: Pseudotropheina (the ‘mbuna’ sub-radiation).
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Peter Andersen @germline.bsky.social · 08/09/2026
We are recruiting a PhD student 🥼🙋 Topic: how germ cells bend gene expression dogmas Fly genetics + proteomics + genomics. Fully funded. Aarhus University 🇩🇰 info on the project and how to apply👇 mbg.au.dk/en/peter-and... I'd really appreciate it if you'd help spread the word. Thanks
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René Ketting @reneketting.bsky.social · 03/09/2026
Happy to share PhD work of @shamithagovind.bsky.social She unraveled how GTSF1, a protein known from the Piwi field, regulates RdRP in nematodes. Thanks also to @psarkies.bsky.social @sebastianfalk.bsky.social Ralf Sommer, Falk Butter, @migueldvalmeida.bsky.social link.springer.com/article/10.1...
link.springer.com
An evolutionarily conserved N-terminal domain of RRF-3 governs GTSF-1 binding in nematodes - EMBO Reports
GTSF1 is an essential activating cofactor for PIWI proteins in many metazoans. In the nematode Caenorhabditis elegans, however, GTSF-1 does not bind PIWI, but is associated with the RNA-dependent RNA ...
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Peter Andersen @germline.bsky.social · 02/09/2026
Finally - the 🧵! So, the piRNA pathway defends the animal germline from transposons. But most of what we know comes from narrow developmental windows like late oogenesis, where it's easiest to study. We asked if the pathway is the same across development. It is not! /+
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Peter Andersen @germline.bsky.social · 29/08/2026
We watched piRNAs and transposons across development, saw them dance tightly and wrote a paper about it. It's so cool to see it online and we will make a thread about it all very soon. Stay tuned :-)
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bioRxiv Genetics @biorxiv-genetic.bsky.social · 28/08/2026
Evolution of transposons as controlling elements www.biorxiv.org/content/10.64898/20…
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bioRxiv Evolutionary Biology @biorxiv-evobio.bsky.social · 25/08/2026
Transposable elements drive phenotypic variation and shape the response to environmental changes in Drosophila melanogaster www.biorxiv.org/content/10.64898/20…
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Susanne Bornelöv @susbo.bsky.social · 22/08/2026
Delighted and very proud to see our study (and Anna-Maria's first first-author paper) recently out in PNAS: www.pnas.org/doi/10.1073/... @cambiochem.bsky.social @cruk-ci.bsky.social 1/5
pnas.org
Lifestyles of Gypsy-family transposons shape their regulatory mechanisms | PNAS
Transposable elements (TEs) are a highly diverse group of selfish genomic elements, prevalent across the tree of life, whose uncontrolled propagati...
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Ian Henderson @hendersi.bsky.social · 25/07/2026
CRISPR-mediated centromere fission generates neochromosomes with distorted meiotic inheritance in Arabidopsis biorxiv.org/content/10.6... new preprint from us - includes changing the Arabidopsis karyotype from 5 -> 6 chromosomes using Cas9 & outcomes of 5/6 chromosome hybrid meiosis
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Ben Lehner @benlehner.bsky.social · 03/08/2026
1st genome sequenced (Sanger 1977), 1st genome synthesised (Venter 2003), 1st genome + proteome fully mutated (Huijin Xiangua 2026!) @crg.eu @sangerinstitute.bsky.social Complete Mutagenesis of the Genome and Proteome of ΦX174 www.biorxiv.org/content/10.6...
biorxiv.org
Complete Mutagenesis of the Genome and Proteome of ΦX174
The bacteriophage ΦX174 was the first genome to be sequenced and the first to be chemically synthesised. Here we present a complete map of the consequences of changing every nucleotide in the ΦX174 ge...
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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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Geoff Faulkner @faulknerlab.bsky.social · 30/07/2026
Our study published today @science.org shows that X-chromosome inactivation (XCI) attracts L1 mutations to the human X chromosome: doi.org/10.1126/scie... With outstanding Perspective from @aurelien-doucet.bsky.social & @retrogenomics.bsky.social: doi.org/10.1126/scie...
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Emília Santos @emiliapsantos.bsky.social · 14/07/2026
🎨 job alert 🐠 Come join us! We have two positions open! These are part of our @erc.europa.eu funded project on the mechanisms underpinning convergence of colour patterns in cichlid fishes! Closing date: 16th August. Postdoc: www.cam.ac.uk/jobs/researc... Technician: www.cam.ac.uk/jobs/researc...
static.klipy.com
Callipterus Cichlid Collecting Shell
ALT: Callipterus Cichlid Collecting Shell
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Rebecca Berrens @rberrens.bsky.social · 10/07/2026
Hi #TEsky, please remember that we have an amazing community in the TransposonsWorldWide slack channel (join.slack.com/t/transposon...), which I encourage you to join. Another great resource is tehub.org. Please share !
join.slack.com
Join TransposonsWorldwide on Slack
Slack is a new way to communicate with your team. It’s faster, better organized, and more secure than email.
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Josip Ahel @aheljo.bsky.social · 07/07/2026
1/2 Hot off the press in Molecular Cell! 🎉 Using some genome-editing gymnastics, we show that ChAHP’s chromatin-remodeling activity is critical for transposon repression and antagonizing CTCF recruitment. www.cell.com/molecular-ce... Huge thanks to all the co-authors for the wonderful work! 🙏
cell.com
Remodeling activity of ChAHP restricts transcription factor access to chromatin
Ahel et al. show that the ChAHP complex drives SINE B2 repression independently of HP1 and not through steric occlusion. Instead, CHD4-dependent chromatin-remodeling activity repositions nucleosomes, ...
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Jordana Oliveira @jordanainoliveira.bsky.social · 28/06/2026
It's not too late to share the clicks from the last “RNA-guided genome protection” @embo.org in Switzerland 🇨🇭 what a great time! A dream come true meeting the RNAi guys that I’ve cited in my works since 2016 🥹 #RNAsky #genomeevolution
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Dfam Database of Transposable Elements @dfam.bsky.social · 25/06/2026
A New Open Foundation for TE Research: GIRI is transitioning the full Repbase collection to an open-access license and joining the Dfam effort to help build a unified open resource for transposable element research. Full announcement: tinyurl.com/48665xss
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Toby Baril @tobybarilbio.bsky.social · 17/06/2026
Really great to see this preprint out! Amazing effort by @camillecornet.bsky.social, and a privilege to have been involved in this one, thanks for beginning me back to butterflies, Camille! 😉 #TEsky #TEworldwide #Genomics #Bioinformatics #Chromosome #Evolution #Butterflies
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Marcela Uliano-Silva @marcelauliano.bsky.social · 10/06/2026
High quality genomes for sloths and anteaters and great mammalian biology findings alert! 🦥🧬 @sangerinstitute.bsky.social @ebpgenome.bsky.social @vertebrategenomes.bsky.social link.springer.com/article/10.1...
link.springer.com
Elevated retrocopy burden and sloth-specific expansions illuminate mammalian genome evolution - BMC Biology
Background Xenarthrans, comprising sloths, anteaters, and armadillos, represent one of the most morphologically and physiologically specialized mammalian clades, yet the genomic basis of their adaptat...
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Etienne Bucher 🌾🧬🇪🇺 @plantepigenetics.ch · 05/06/2026
We just published our new paper about an active Helitron transposon in wheat 🌾🧬 We found that it can be mobilised by heat stress when DNA methylation is reduced. We document its full lifecycle: RNA -> circular DNA -> integration www.nature.com/articles/s41... #TEsky
nature.com
An active Helitron transposon family in wheat - Nature Plants
Helitrons are a recently identified category of transposons. This study reveals that heat stress combined with reduced DNA methylation can mobilize a Helitron family in wheat. Its mobilization is gene...
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Dr. Tyler A. Elliott @transposableman.bsky.social · 04/06/2026
#TEsky Transposons drove the evolution of a male sex-determining gene from a female gene with deep introgression across cichlids doi.org/10.1126/scia...
doi.org
Transposons drove the evolution of a male sex-determining gene from a female gene with deep introgression across cichlids
A gene from the female pathway was repurposed to determine male sex in tilapia, revealing an unusual evolutionary mechanism.
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Maxwell Shafer @maxshafer.bsky.social · 02/06/2026
Have you ever wondered if fish yawn? (and if they do, what that tells us about yawning?) The first preprint from the lab and a serendipitous observation ⬇️ www.biorxiv.org/content/10.6...
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Alex de Mendoza @alexdemendoza.bsky.social · 02/06/2026
Capolavoro 🎨 alert 🚨! What is the role of gene body methylation in invertebrates? Despite extensive speculation linking it to plasticity and environmental responses, its mechanistic effects and heritability remain unclear. Our take out in @natecoevo.nature.com: www.nature.com/articles/s41... 1/
nature.com
Gene body methylation suppresses intragenic transcription and permits epigenetic inheritance in a cnidarian - Nature Ecology & Evolution
Experiments in the cnidarian Nematostella vectensis show a role of gene body methylation in transposable element suppression and that epigenetic inheritance is constrained by chromatin context and tra...
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Cedric Feschotte @cedricfeschotte.bsky.social · 29/05/2026
📣 POSTDOC position available in the Feschotte Lab at Cornell to work on #TRANSPOSONS! More details below. Pls send informal application or inquiry ASAP by DM or email to cf458_at_cornell.edu. Pls spread the word 🙏 #TEsky www.thefeschottelabatcornell.com
thefeschottelabatcornell.com
The Feschotte Lab at Cornell
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Cedric Feschotte @cedricfeschotte.bsky.social · 28/05/2026
Wrote a short piece on Transposable Elements as catalysts of evolutionary innovation for a forthcoming special issue of @naturerevgenet.bsky.social on, duh, Evolutionary Innovation! www.nature.com/articles/s41...
nature.com
Transposable elements as catalysts of evolutionary innovation - Nature Reviews Genetics
In this Comment, Cedric Feschotte highlights evidence from diverse lineages showing that transposable elements are key drivers of evolutionary innovation, repeatedly introducing regulatory and coding ...
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The Fromm Lab @frommlab.bsky.social · 22/05/2026
🔥🔥🔥PREPRINT OUT🔥🔥🔥 microRNA annotation gets much easier!!! MirMachine 2 is out! Preprint: doi.org/10.64898/202...
doi.org
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The Cecere Laboratory @cecerelab.bsky.social · 22/05/2026
Our latest work is now online in NSMB: maternal yolk carries microRNAs from the intestine to embryos, shaping gene regulation and stress resilience in the next generation. rdcu.be/fj8Er #Epigenetics #microRNA #Inheritance @pasteur.fr @devstempasteur.bsky.social @erc.europa.eu
nature.com
Soma-to-germline miRNA inheritance through yolk promotes stress resilience in progeny - Nature Structural & Molecular Biology
In this study, the authors use the Caenorhabditis elegans model organism to show that maternal microRNAs are delivered from the intestine to embryos by the yolk, where they regulate gene expression an...
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Molly Schumer @mollyschumer.bsky.social · 12/05/2026
Excited to share this new pre-print from the fantastic @kelsiehunnicutt.bsky.social! Kelsie put together a thoughtful and thorough review on hybridization in animal evolution: ecoevorxiv.org/repository/v.... She tracks notable shifts in perspectives on the study of hybridization through time.
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Peter Ly @peterlylab.bsky.social · 19/05/2026
Excited to share our latest paper! We found that large pieces of the human genome can transfer between cells upon direct contact, endowing recipient cells with heritable phenotypic changes. @cp-cell.bsky.social (1/7) www.cell.com/cell/fulltex...
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Alejandro Burga @arburga.bsky.social · 18/05/2026
🧬 New research from the Burga lab! We took a closer look at a rogue selfish protein and caught evolution in the act of turning something old into something radically new 💡 (a.k.a. neofunctionalization) @imbavienna.bsky.social www.biorxiv.org/content/10.6... Curious? Here’s a breakdown:
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The EMBO Journal @embojournal.org · 18/05/2026
Host-transposable element coexistence: a matter of resistance, tolerance and trade-off Read this new review by Séverine Chambeyron, Charlotte Grimaud, Mikiko Siomi et al link.springer.com/article/10.1...
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Tschopp Lab @tschopplab.bsky.social · 14/05/2026
One of my dream projects, ever since joining here in Basel, out now in @nature.com : single-cells 🤝 eco-morphological proxies rdcu.be/fiyso How cells and tissues adapt to dietary niches... Thanks and congrats to Antoine, Walter, and all the other co-authors for this great collaboration!! 🙏🥳
rdcu.be
Adaptive cellular evolution in the intestine of hyperdiverse cichlid fishes
Nature - Single-cell transcriptomics combined with morphological and ecological data show that the rapid evolutionary radiation of cichlid fishes in Lake Tanganyika was accompanied by dietary...
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George Turner @dlimnothrissa.bsky.social · 06/05/2026
We've got a nice new paper out now on Malawi cichlid evolution: Rhamphochromis show an amazing range of body sizes (multiple transitions) and in one satellite lake they seem to have evolved into their own predator. genome.cshlp.org/content/earl...
genome.cshlp.org
Dynamic body size evolution during speciation of predatory cichlid fishes in the Lake Malawi superradiation
Evolutionary divergence in body size is common in animal adaptive radiations and is often associated with differences in key ecological traits, including habitat use and prey consumption. Here we characterize a notable case of body size–associated adaptive radiation in a group of predatory open water cichlid fish species from the Lake Malawi catchment. Using whole-genome sequences, we show that body size differences have evolved multiple times in the focal genus, Rhamphochromis, and that the group possesses well-defined signals of ancient interspecific hybridization. We identify genetic variants strongly associated with body size and show that these variants are connected to genes enriched for functions in vertebrate skeletal and nervous system development. We focus our analyses on two species of Rhamphochromis endemic to Lake Kingiri, a small (600 m diameter) crater lake geographically isolated from the main body of Lake Malawi but within the catchment. We show that these two ecomorphologically divergent sympatric species—one small-bodied, the other larger-bodied—share a unique common ancestor and diverged from one another ∼2000 years ago. We demonstrate strong directional selection focused on the larger-bodied Kingiri species, specifically on genetic variants connected to genes with anatomical development and nervous system function. Collectively, these results are supportive of body size–associated speciation taking place rapidly in the Lake Malawi cichlid fish superradiation. We conclude that body size–associated genetic variants have been important targets of selection during large-scale cichlid fish diversification, including in a crater lake sympatric speciation context.
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Cedric Feschotte @cedricfeschotte.bsky.social · 07/05/2026
👋 Transposon lovers: registration is now open for the CSHL TE meeting! We have a 🔥 lineup of invited speakers and many slots for short talks selected upon abstract across all areas of TE biology. 🧬➰🧬 #TEsky Abstract deadline: July 10 meetings.cshl.edu/meetings.asp...
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Ali Seleit @aliseleit.bsky.social · 05/05/2026
(1/15) Thrilled to share new Evo-Devo work where we address the molecular, cellular & morphometric basis of an extreme axis segmentation program in the Japanese eel — an animal that forms 120 vertebrae.
biorxiv.org
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The EMBO Journal @embojournal.org · 04/05/2026
Retrovirus insertions in host transcripts trigger de novo piRNA immunity: Kirsten-André Senti, @juliusbrennecke.bsky.social et al investigate the 20th-century invasion of D. melanogaster by iERV Tirant to reveal piRNA-pathway evolution in response to new threats link.springer.com/article/10.1...
link.springer.com
Retrovirus insertions in host transcripts trigger de novo piRNA immunity - The EMBO Journal
How host organisms adapt their defense systems to newly invading transposable elements remains poorly understood. Here, we show how Drosophila melanogaster acquired PIWI-interacting RNA (piRNA)-mediat...
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European Research Council (ERC) @erc.europa.eu · 29/04/2026
NEWS: The ERC Scientific Council has listened to the concerns from members of the research community about changes to the re-submission rules, intended to manage the surge in demand for grants. The Scientific Council will readjust some of the changes: link.europa.eu/TBqRQJ
link.europa.eu
ERC Scientific Council readjusts rules for reapplication
The ERC Scientific Council has listened to the concerns from members of the research community about the recent announcement on changes to the re-submission rules. The changes, intended to manage the ...
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Cichlid Science 2026 @cichlidscience2026.bsky.social · 25/04/2026
🐟 CALL FOR ABSTRACTS 🐟 Abstract submission for Cichlid Science 2026 is open until May 31st - spread the word! We look forward to welcoming you to Antwerp!
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Susanne Bornelöv @susbo.bsky.social · 21/04/2026
We are recruiting a postdoc interested in using machine learning and AI to understand and control post-transcriptional gene regulation. Please apply and join us at @cambiochem.bsky.social ⏳ Closing date: 16 May 2026 🔗 www.jobs.cam.ac.uk/job/55254 Learn more about us: www.sblab.uk
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Berta Verd @bertaverd.bsky.social · 21/04/2026
New Pre-Print Alert! Evolving initial conditions: an alternative developmental route to morphological diversity with Shannon Taylor and @jamesehammond.bsky.social www.biorxiv.org/content/10.6...
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Ewan Harney @ewanharney.bsky.social · 09/04/2026
📢 New work with @gonzalezlabbcn.bsky.social out now in Molecular Biology and Evolution! Transgenerational effects of heat shock 🥵 on gene regulation 🧬 and fitness-related traits in natural Drosophila 🪰 populations: academic.oup.com/mbe/article/...
academic.oup.com
Transgenerational effects of heat shock on gene regulation and fitness-related traits in natural Drosophila populations
Abstract. Heat stress will increasingly affect populations as climate change leads to higher temperatures and more frequent heat waves. Recent work suggest
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Robin Allshire 🇮🇪 🇪🇺✊🏿 ⬆️ Zak’s favourite nucleosome: K9me @allshire-lab.bsky.social · 09/04/2026
Very upsetting to hear the sad news of Greg Hannon’s passing. I always enjoyed our far too few conversations we had over the years. He had an interesting and insightful perspective on any science being discussed. He will be missed. www.cruk.cam.ac.uk/news/in-memo...
cruk.cam.ac.uk
In Memoriam: Professor Greg Hannon (1964–2026) - Cancer Research UK Cambridge Institute
Greg was already a world-renowned scientist when appointed Director, and for the community, he was a visionary leader, a cherished mentor, and a singular force of nature whose influence shaped the research landscape.
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Stephen Montgomery @ebablab.bsky.social · 07/04/2026
New preprint from us and @emiliapsantos.bsky.social’s #NERC grant, led by Jake Morris, @gadusmo.bsky.social et al Using an interspecific cross between two #cichlids to think about models of #brainevolution 🐟🧠 Feedback and suggestions welcome! 🙏🏻 🧪
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Peter Andersen @germline.bsky.social · 01/04/2026
Germ cells have their own versions of core transcription factors and fertility depends on them. We're hiring a PhD student to figure out how! 📢 Fly genetics + proteomics + genomics. Fully funded. Aarhus University 🇩🇰 Deadline May 1 👇 Please share with anyone who might be interested!
phd.nat.au.dk
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Rebecca Berrens @rberrens.bsky.social · 12/03/2026
We are looking for a Postdoc to join our lab at @oxfordbiochemistry.bsky.social. This is a dry-lab focused post on the computational analysis of long read single-cell sequencing data to understand the role of transposable elements (TEs) in early development. my.corehr.com/pls/uoxrecru... #TEsky
lnkd.in
LinkedIn
This link will take you to a page that’s not on LinkedIn
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Colin Conine @colinconine.bsky.social · 19/03/2026
There is accumulating evidence that sperm miRNAs function to regulate embryonic gene expression and transmit inherited phenotypes to offspring but how does this work since sperm cargo is massively diluted in the egg upon fertilization. Here we directly address this ? www.biorxiv.org/content/10.6...
biorxiv.org
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Dr. Tyler A. Elliott @transposableman.bsky.social · 17/03/2026
#TEsky Another paper in our TE ecology exploration of the Octopus out in BioEssays. Types of niches for TEs and what that could mean for their expression in neural tissue doi.org/10.1002/bies...
doi.org
Transposon Ecology and the Octopus Genome
Transposable elements (TEs) are mobile strands of DNA prevalent in octopus genomes. TE activity in the octopus brain might reflect an organism-beneficial role in cognition; or could be a deleterious ...
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Yehu Moran @yehumoran.bsky.social · 16/03/2026
Today the EMBO Journal special issue on molecular ecology and evolution is finally published. It was a pleasure coordinating this collection together with @berndpulverer.bsky.social and many outstanding authors. Editorial: link.springer.com/article/10.1... Cover art by @munafomarzia.bsky.social
link.springer.com
EMBO Press co-evolves with molecular ecology and evolutionary biology - The EMBO Journal
The EMBO Journal - Molecular ecology and evolution are central to understanding how biological systems function, interact, and diversify. A special issue of this journal reflects the growing...
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