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Romain Strock

@romainstrock.bsky.social
1.8K followers 281 following 22 posts

Senior ML scientist @ Bactobio, searching for novel antimicrobials produced by understudied microbes. PhD focused on conflicts between archaea and bacteria (Imperial / MRC LMS). Cyclist, chess enthusiast, father of 2 fantastic eukaryotes.

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Reposted by Romain Strock
Nika Pende @nikapende.bsky.social · 23/09/2026
So happy to see this paper finally out 🥳 it took only seven years after the first purification of archaeal peptidoglycan 🤣 Congrats to all the people involved 🥂🍾 And here is the story behind the paper: communities.springernature.com/posts/cracki...
communities.springernature.com
Cracking the Archaeal Cell Wall: How a hydrolase overturned a 50-year-old paradigm
Using bioinformatics, biochemistry, NMR, as well as the newly characterized enzyme ArmA from methanogenic archaea, we revised the existing knowledge on archaeal peptidoglycan structure. At the same ti...
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Milot Mirdita @milot.bsky.social · 16/09/2026
ColabFold 1.6.3 is out! 2.5x faster, pip-installable, ipSAE+pDockQ2 scores. Thanks Choonghwan Lee, Marielle Russo, Gyuri Kim 🐍pip install colabfold[alphafold] CF2 Sneak Peak with AF3/Boltz/Protenix/ESMFold2… 🐍pip install "colabfold[alphafold3]@git+https://github.com/sokrypton/ColabFold@af3-preview"
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Tatta Bio @tattabio.bsky.social · 04/09/2026
UniProt is where most researchers start when they want to understand a protein. As of today, prokaryotic entries there will show something new: genomic context, powered by SeqHub, right in the Sequence section of the page.
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Tobias Warnecke @tobiaswarnecke.bsky.social · 22/08/2026
Who needs chromatin anyway...? NOT THIS GUY! www.biorxiv.org/content/10.6... 1/n
biorxiv.org
Chromatin is dispensable for bacterial life
Inside cells, DNA is intimately associated with proteins, forming chromatin. The protein constituents of chromatin vary across the tree of life: histones are the principal building blocks of chromatin...
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Romain Strock @romainstrock.bsky.social · 29/07/2026
Preprint alert: the final two chapters of my thesis are out! www.biorxiv.org/content/10.6... Bacteriocins in archaea and archaeocins in bacteria: a computational journey into the search for weaponry borrowed from another domain of life. A short 🧵
biorxiv.org
Bacteriocins in archaea and archaeocins in bacteria
Archaea and bacteria routinely live side by side in microbial communities and must interact at least on occasion. Whether such cross-Domain interactions are dominated by mutual disregard, co-operation...
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Tobias Warnecke @tobiaswarnecke.bsky.social · 29/07/2026
Bacteriocins in archaea and archaeocins in bacteria. @romainstrock.bsky.social surveys the the exchange of molecular weaponry between archaea and bacteria. www.biorxiv.org/content/10.6...
biorxiv.org
Bacteriocins in archaea and archaeocins in bacteria
Archaea and bacteria routinely live side by side in microbial communities and must interact at least on occasion. Whether such cross-Domain interactions are dominated by mutual disregard, co-operation...
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Reposted by Romain Strock
Nadine Ziemert @nadineziemert.bsky.social · 27/07/2026
Looking for BGCs in large metagenomic datasets? Our new biorxiv preprint introduces metaSMASH, a scalable fork of antiSMASH designed specifically for metagenome-scale BGC detection and analysis : www.biorxiv.org/cgi/content/... Thanks @canerbagci.bsky.social and @kblin.bsky.social ❤️
biorxiv.org
metaSMASH: Scalable Biosynthetic Gene Cluster Detection for Large Metagenomic Assemblies
antiSMASH is widely used for biosynthetic gene cluster (BGC) detection and annotation, but its standard workflow is poorly suited to large metagenomic assemblies, where massive contig counts create severe runtime bottlenecks and complicate downstream result exploration. We present metaSMASH, a re-engineered fork of antiSMASH for metagenome-scale BGC analysis. metaSMASH preserves the original antiSMASH detection and annotation logic while introducing streaming, memory-bounded execution, record-level parallelisation, optional output filtering, and an interactive dashboard for large result sets. Across 25 benchmark metagenome datasets, metaSMASH reproduced identical BGC detection results while dramatically reducing computational cost. Relative to the default antiSMASH configuration, metaSMASH was a geometric-mean 38x faster. It also outperformed an ad hoc chunked antiSMASH workflow: in the default configuration it achieved a geometric-mean 2.9x speed-up and 1.7x lower peak memory, and with extended-analysis modules enabled it was 2.7x faster and used 3.1x less memory while completing all datasets, whereas the ad hoc workflow ran out of memory on the two largest assemblies. By substantially reducing the computational burden of large-scale metagenome analysis without sacrificing result equivalence, metaSMASH makes routine mining of assembled metagenomes more practical and provides a scalable foundation for natural product discovery from complex microbial communities. ### Competing Interest Statement The authors have declared no competing interest. German Center for Infection Research, TTU Novel Antibiotics 09.716 Volkswagen Foundation, 0072511-00
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Chung Hyun Cho @chc-evobio.bsky.social · 04/07/2026
Excited to share our new preprint led by Fred and me in collaboration with the archaeal community! We found that the molecular foundation of histone-based chromatin has pre-eukaryotic roots in Asgard archaea. (1/4) #ArchaeaSky www.biorxiv.org/content/10.6...
biorxiv.org
Emergence of histone-based chromatin complexity in Asgard archaea
The emergence of the eukaryotes coincided with the diversification of histone proteins and their post-translational modifications by enzymes that constitute the core of eukaryotic chromatin. Yet the e...
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Tobias Warnecke @tobiaswarnecke.bsky.social · 11/06/2026
Archaea the hornets of the microbial world. Discuss. www.biorxiv.org/content/10.6... TLDR: Archaeon kills bacterium with secreted phospholipase. Pretty nifty way to kill bacteria if you are a microbe with a very different lipid make-up, I reckon. No need to worry about accidentally killing yourself.
biorxiv.org
A Bactericidal Phospholipase from Archaea
Archaea kill bacteria, at least on occasion. The molecular underpinnings of these lethal interactions are barely understood. Here, we describe cinquedea, an α/β hydrolase secreted by the halophilic ar...
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Tobias Warnecke @tobiaswarnecke.bsky.social · 08/04/2026
I wrote an essay. It’s about gain-of-function mutations. And penguins. Also ion channels, chihuahuas, the film Alien, recycled cardboard, and the Apollonian mind. Oh, and muffins. Thanks to the editors of #GENETICS @genetics-gsa.bsky.social for letting me take some stylistic liberties. 1/2
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Nick Polizzi @nickpolizzi.bsky.social · 11/03/2026
Our paper with @sokrypton.org using AlphaFold2 to predict small-molecule binding sites in proteins is now out in Nature Methods! 🧵 rdcu.be/e7SnX www.nature.com/articles/s41...
rdcu.be
AF2BIND: predicting small-molecule binding sites using the pair representation of AlphaFold2
Nature Methods - AF2BIND is a logistic regression model trained on AlphaFold2 pair features to predict small-molecule binding-site residues in proteins, without multiple sequence alignments,...
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Theo Sanderson @theo.io · 08/02/2026
I made a map of 3.4 million Bluesky users - see if you can find yourself! bluesky-map.theo.io I've seen some similar projects, but IMO this seems to better capture some of the fine-grained detail
bluesky-map.theo.io
Bluesky Map
Interactive map of 3.4 million Bluesky users, visualised by their follower pattern.
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Antoine Hocher @ahocher.bsky.social · 05/12/2025
Our study of the evolution of the ParB NTP binding domain across the Tree of Life is now published! An awesome collaboration with @tunglejic.bsky.social led by @jovanakaljevic.bsky.social at the John Ines Center. Thanks to editors and reviewers. www.pnas.org/doi/10.1073/...
pnas.org
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Lianet Noda @lianetn.bsky.social · 01/12/2025
Paper alert! We have created a bacterium that eats plastic! We named it PETBuster! Great work by PhD student Dekel Freund @dekel-freund.bsky.social. www.biorxiv.org/content/10.1...
biorxiv.org
A synthetic bacterium that degrades and assimilates poly(ethylene terephthalate)
Polyethylene terephthalate (PET) is the fourth most commonly used plastic worldwide. Like all plastics, post-consumer PET is poorly managed and accumulates in the environment, posing significant ecolo...
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César Sánchez @twistedbacteria.bsky.social · 03/11/2025
Early Microbial Evolution "The origin of life on Earth remains one of the greatest and most pervasive mysteries in science. We know the story in broad strokes: Around 4 billion years ago, simple chemical compounds gave rise to living cells, which later formed..." 🦠 asm.org/articles/202...
asm.org
Early Microbial Evolution | ASM.org
How did life begin, and why does it matter? Scientists are tracing early microbial life—from LUCA to multicellularity—to unlock insights for biotech, climate science and even space exploration.
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Kevin K. Yang 楊凱筌 @kevinkaichuang.bsky.social · 15/10/2025
Alternate between predicting structure with AF3 and designing sequence with ProteinMPNN to generate proteins, including protein, small molecule and nucleic acid binders @yehlincho.bsky.social @sokrypton.org www.biorxiv.org/content/10.1...
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Antoine Hocher @ahocher.bsky.social · 11/10/2025
Thrilled to see this work in its preprint form! A great collaboration with Jovana and Tung to explore the evolution and properties of the surprisingly versatile nucleotide binding domain of ParB.
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Michael Brockhurst @brockhurstlab.bsky.social · 06/10/2025
New preprint! Ever wondered why only a fraction of genomes encode CRISPR immunity? 🧬 🦠 Turns out CRISPR is rarely beneficial against virulent phages, being most beneficial against those for which resistance mutations are rare! An epic effort by Rosanna Wright www.biorxiv.org/content/10.1...
biorxiv.org
Resistance mutation supply modulates the benefit of CRISPR immunity against virulent phages
Only a fraction of bacterial genomes encode CRISPR-Cas systems but the selective causes of this variation are unexplained. How naturally virulent bacteriophages (phages) select for CRISPR immunity has...
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Nature Microbiology @natmicrobiol.nature.com · 22/09/2025
#NewResearch Structure of a functional archaellum in bacteria of the Chloroflexota phylum #MicroSky @archaellum.bsky.social @sshamphavi.bsky.social @loumollat.bsky.social ‬ @mariejoest.bsky.social @sgribaldo.bsky.social www.nature.com/articles/s41...
nature.com
Structure of a functional archaellum in Bacteria of the Chloroflexota phylum - Nature Microbiology
Bona fide gene clusters for archaella are widespread across a bacterial phylum and encode functional motility machinery.
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Sofya Garushyants @garushyants.bsky.social · 15/09/2025
hey bluesky 👋 visa hurdles mean I’m looking for opportunities outside the US. I’m a computational biologist (bacterial + phage genomics, postdoc in Koonin’s group @ NIH). I am interested in teaming up on funding apps. reach out if this resonates!
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Zamin Iqbal @zaminiqbal.bsky.social · 10/09/2025
Sometimes you meet absolutely incredible bioinfo-magicians. It was a huge privilege when @shenwei356.bsky.social joined our group for a year on an @embl.org sabbatical. While here, he developed a new way of aligning to millions of bacteria, called LexicMap 1/n www.nature.com/articles/s41...
nature.com
Efficient sequence alignment against millions of prokaryotic genomes with LexicMap - Nature Biotechnology
LexicMap uses a fixed set of probes to efficiently query gene sequences for fast and low-memory alignment.
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Tobias Warnecke @tobiaswarnecke.bsky.social · 08/09/2025
Please re-post: Interested in chromatin and its evolution? Good news! There's still time to join us in beautiful Catalonia (9-12 Dec) to discuss eukaryotic, bacterial, archaeal, and viral chromatin and how it all hangs together meetings.embo.org/event/24-evo... Abstract deadline: 30 September
meetings.embo.org
EvoChromo: Evolutionary approaches to research in chromatin
Chromatin is the complex of DNA, RNA and protein that is found making up the chromosomes in eukaryotic cells. Chromatin is essential for proper genome function and is involved in chromosome segregati…
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Sorek Lab @soreklab.bsky.social · 02/09/2025
Preprint: De-novo design of proteins that inhibit bacterial defenses Our approach allows silencing defense systems of choice. We show how this approach enables programming of “untransformable” bacteria, and how it can enhance phage therapy applications Congrats Jeremy Garb! tinyurl.com/Syttt 🧵
biorxiv.org
Synthetically designed anti-defense proteins overcome barriers to bacterial transformation and phage infection
Bacterial defense systems present considerable barriers to both phage infection and plasmid transformation. These systems target mobile genetic elements, limiting the efficacy of bacteriophage-based t...
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Tobias Warnecke @tobiaswarnecke.bsky.social · 01/09/2025
Please re-post: If you know (or are!) somebody who might fancy doing a PhD (Oct 2026 start) in my group @oxfordbiochemistry.bsky.social, working on chromatin evolution in prokaryotes (or other things we're interested in), please have a look at www.bioch.ox.ac.uk/supervisors-...
bioch.ox.ac.uk
Supervisors and Projects
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Jerónimo Rodríguez-Beltrán @jerorb.bsky.social · 22/07/2025
Do plasmids evolve faster 🐇, slower 🐢, or just like chromosomes 🧬? In our new paper, we tackled this question using theory, simulations, bioinformatics, and experiments! 👇 Check out all the details in Paula’s thread! Hint: 🐇 (most of the time)
biorxiv.org
Plasmids promote bacterial evolution through a copy number-driven increase in mutation rate
Plasmids are autonomously replicating DNA molecules that stably coexist with chromosomes in bacterial cells. These genetic elements drive horizontal gene transfer and play a fundamental role in bacter...
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Mark O. Martin @markowenmartin.bsky.social · 30/08/2025
I was #TWiMAdjacent about the much missed Elio Schaechter. I tried to discuss an article later, but I was stressed for time. The first part about Elio is so worth your time, as is the paper I discussed, about how archaea make enzymes that break down the bacterial cell wall! asm.org/podcasts/twi...
asm.org
Missing the Company of Elio
Paying tribute to Elio Schaechter, former TWiM host, blogger, and microbiologist extraordinaire, and review of the finding that Archaea produce peptidoglycan hydrolases that kill bacteria - a form of ...
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Kate Baker @ksbakes.bsky.social · 27/08/2025
Awesome to see the transparent, systematic, and evidence-based approach behind the WHO Bacterial Priority Pathogens List 2024 out in the Lancet Infectious Diseases www.thelancet.com/journals/lan...
thelancet.com
The WHO Bacterial Priority Pathogens List 2024: a prioritisation study to guide research, development, and public health strategies against antimicrobial resistance
The 2024 WHO BPPL is a key tool for prioritising research and development investments and informing global public health policies to combat AMR. Gram-negative bacteria and rifampicin-resistant M tuber...
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Thalia, PhD @thalia.bsky.social · 25/08/2025
I cannot fully put into words what publishing this Review has meant to me, so I leave you with how we closed the paper. "The humble bacterium is still a relevant tool for the study of the underlying mechanisms that are conserved throughout life." 🧪🧫🧬📚 doi.org/10.1093/gene...
doi.org
The nature of mutation: a legacy of bacterial genetics
Abstract. A central question in the fields of genetics and evolution was the nature and origin of spontaneous mutation. Bacterial genetic experiments throu
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Ákos T Kovács @evolvedbiofilm.bsky.social · 19/08/2025
When we started sampling soil to isolate Bacilli and other bacterial species within @cemist.bsky.social, I did not expect that so many direct and indirect publications and numerous chapters in 6 PhD theses in my group will originate from those efforts 🧵 [1/n]
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Zamin Iqbal @zaminiqbal.bsky.social · 17/08/2025
"We show that unrelated proteins have a universal tendency towards convergent evolution of secondary and tertiary motifs, causing an excess of high-scoring FP alignment... previous methods routinely overestimate significance by up to six orders of magnitude." www.biorxiv.org/content/10.1...
biorxiv.org
Protein structure alignment significance is often exaggerated
Machine learning has generated millions of high-quality predicted protein structures, creating a need for computationally efficient structure search algorithms and robust estimates of statistical sign...
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Sarah Gurev @sarahgurev.bsky.social · 17/08/2025
🚨New paper 🚨 Can protein language models help us fight viral outbreaks? Not yet. Here’s why 🧵👇 1/12
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Nejc Haberman @nejchaberman.bsky.social · 15/08/2025
📣 ABSTRACT DEADLINE EXTENDED UNTIL 18TH AUGUST! Register here: register.oxfordabstracts.com/event/75604?... Abstract submission: app.oxfordabstracts.com/stages/79029...
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PLOS Biology @plosbiology.org · 15/08/2025
Archaea-on-bacteria action! @romainstrock.bsky.social @tobiaswarnecke.bsky.social &co show that many #archaea encode #peptidoglycan hydrolases, which specifically target #bacterial cell walls, experimentally confirming the killing capacity of 2 of these enzymes @plosbiology.org 🧪 plos.io/4lrJBBa
Left: Results of spotting various supernatants onto lawns of Halalkalibacterium halodurans, Phycicoccus endophyticus, and Virgibacillus salexigens. a,b: top fraction (>3 kDa) of supernatant from Haloferax volcanii expressing an intact (a) or catalytic mutant (b) version of Woldo; c,d: bottom fraction (<3 kDa) of supernatant from H. volcanii expressing an intact (c) or catalytic mutant (d) version of Woldo; e: unfiltered supernatant from Halogranum salarium B-1; f,g: top fraction (>3 kDa) of supernatant from H. volcanii expressing (f) Danwoldo or (g) and empty plasmid control; h,i: bottom fraction (<3 kDa) of supernatant from H. volcanii expressing (h) Danwoldo or (i) and empty plasmid control. Top right: Structural overlay of zoocin A from Streptococcus zooepidemicus (UniProt ID: O54308) and Woldo, a candidate PGH from Halogranum salarium B-1 (UniProt ID: J2ZZK6), highlighting homologous M23 domains but divergent cell wall binding domains. TRD: target recognition domain. PG: peptidoglycan. Bottom right: Images of bacterial cells following exposure to H. volcanii supernatants expressing Woldo, Danwoldo or the control (as above). Bacteria are stained using LIVE/DEAD BacLight bacterial viability staining kit with ingress of red dye into bacterial cells indicative of cells with terminally compromised cell wall integrity.
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Romain Strock @romainstrock.bsky.social · 15/08/2025
This first-author publication is my… first! Archaea kill bacteria by targeting their Achilles’ heel: peptidoglycan. Big shoutout to @ahocher.bsky.social‬, @valeriesoo.bsky.social‬, Pauline Misson, @tobiaswarnecke.bsky.social‬ and MRC LMS Proteomics. A thread 🔽 journals.plos.org/plosbiology/...
journals.plos.org
Archaea produce peptidoglycan hydrolases that kill bacteria
Archaea regularly interact with bacteria but reports of archaea killing bacteria are very rare. This study shows that many archaea encode peptidoglycan hydrolases, which specifically target bacterial ...
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Antoine Hocher @ahocher.bsky.social · 15/08/2025
@romainstrock.bsky.social work is out! Why should you care? Because it helps shift our view of archaea — from rare extremophiles to not-so-passive bystanders. Some archaea can also fend off bacteria. Glad to be part of this cool project from @tobiaswarnecke.bsky.social. Opens lots of Questions.
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Valerie Soo @valeriesoo.bsky.social · 15/08/2025
Very happy to see this work published + getting the recognition it deserves! Archaea are very cool + understudied organisms and we are only scratching the surface! Since the preprint last year, we (@romainstrock.bsky.social) have included more evidence of bacteria getting killed by archaeal arsenal.
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Tobias Warnecke @tobiaswarnecke.bsky.social · 14/08/2025
Archaea are often surrounded by bacteria. But is there ever active conflict between the two? Can archaea kill bacteria? If so, how do they do it? Work by @romainstrock.bsky.social shows that some archaea can kill bacteria by secreting peptidoglycan hydrolases. journals.plos.org/plosbiology/...
journals.plos.org
Archaea produce peptidoglycan hydrolases that kill bacteria
Archaea regularly interact with bacteria but reports of archaea killing bacteria are very rare. This study shows that many archaea encode peptidoglycan hydrolases, which specifically target bacterial ...
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ERR_Moody @emoody.bsky.social · 12/08/2025
Very happy to announce our new paper on the evolution of metabolism is out now! royalsocietypublishing.org/doi/10.1098/... With @tweethinking.bsky.social @sabifo4.bsky.social @ssolo.bsky.social Davide Pisani, Tim Lenton and @phil-donoghue.bsky.social (1/2)
royalsocietypublishing.org
The emergence of metabolisms through Earth history and implications for biospheric evolution | Philosophical Transactions of the Royal Society B: Biological Sciences
We investigate the evolution of microbial metabolisms from the last universal common ancestor to the extant biota through comparative phylogenomics, reconciling the evolution of the genes that underpi...
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James McDonald @jamesemcdonald.bsky.social · 11/08/2025
Really exciting and important tree microbiome paper published in @nature.com ‘A diverse and distinct microbiome inside living trees’ 👏 www.nature.com/articles/s41...
nature.com
A diverse and distinct microbiome inside living trees - Nature
Microbiome analyses of living trees show that a single tree can host approximately one trillion bacteria, with microbial communities distinctly partitioned between heartwood and sapwood and with minim...
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Mizrahi Lab @mizrahilab.bsky.social · 10/08/2025
Archaea never stop to surprise us! 🌞 @bejalab.bsky.social @galitzlil.bsky.social discovered that marine archaea use carotenoid "antennas" to capture blue light, transferring the energy to their rhodopsin pumps. A huge leap in microbial photobiology! www.nature.com/articles/s41...
nature.com
Structural insights into light harvesting by antenna-containing rhodopsins in marine Asgard archaea - Nature Microbiology
Uncultured open-ocean Asgard archaea can harvest light energy using rhodopsins and diverse hydroxylated carotenoid antennas.
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News Eye @newseye.bsky.social · 10/08/2025
Photo of the Day: Just Following Orders. An 89 year old woman is arrested in London for opposing the genocide in Gaza & supporting Palestine Action. According to the UK Government, this is the face of terrorism in 2025. Credit to the photographer, Chris Ratcliffe, for AFP.
Four Met police officers are seen carrying the 89 year old protester away. Her face looks strained with anguish, her eyes closed as she is taken away. Others around are taking photos. Credit to Chris J Ratcliffe/AFP.
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Richard Waite @waiterich.bsky.social · 09/08/2025
What’s your favorite food fact that is true but sounds totally made up? I’ll start: about half of the mushrooms produced across the United States of America each year (more than 300 million pounds of mushrooms in recent years) are produced in *one county* in Pennsylvania.
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David Grimm @david-grimm.bsky.social · 28/07/2025
Crab-like creatures are famed for having evolved five times in evolutionary history. But anteaters have evolved at least 12 times--in half the evolutionary span. Cool story by @jakebuehler.bsky.social for @science.org
science.org
‘Things keep evolving into anteaters.’ Odd animals arose at least 12 separate times
Findings speak to the dramatic impact ants and termites can have on mammalian evolution
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Martin Steinegger 🇺🇦 @martinsteinegger.bsky.social · 07/07/2025
Folddisco finds similar (dis)continuous 3D motifs in large protein structure databases. Its efficient index enables fast uncharacterized active site annotation, protein conformational state analysis and PPI interface comparison. 1/9🧶🧬 📄 www.biorxiv.org/content/10.1... 🌐 search.foldseek.com/folddisco
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Cristian Farias @cristianfarias.com · 17/07/2025
For the first time since she was freed from an immigration prison, Rümeysa Öztürk speaks. And she does so by ... writing: "Writing is the heart of freedom of expression. Unbelievably, this single opinion piece, published in our student newspaper, would lead to my arrest and detention."
vanityfair.com
“Even God Cannot Hear Us Here”: What I Witnessed Inside an ICE Women’s Prison
Tufts University doctoral student Rümeysa Öztürk opens up about her 45 days in a South Louisiana processing facility—and the generous and compassionate women she met.
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Christine Moissl-Eichinger @chmoei.bsky.social · 13/06/2025
🚨 New preprint alert! We report what might be the first mechanistic link between gut Archaea and human disease. Methanobrevibacter smithii is enriched in CRC patients—and boosts growth of cancer-associated bacteria like F. nucleatum. www.biorxiv.org/content/10.1... @archaeasky @microbiomesky
biorxiv.org
Methanobrevibacter smithii associates with colorectal cancer through trophic control of the cancer bacteriome
The human gut is colonized by trillions of microbes that influence the health of their human host. Whereas many bacterial species have now been linked to a variety of different diseases, the involveme...
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cryoEM papers @cryoempapers.bsky.social · 05/07/2025
MIC: A deep learning tool for assigning ions and waters in cryo-EM and crystal structures pubmed.ncbi.nlm.nih.gov/40615379/ #cryoEM
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regular slime guy @regularslimeguy.bsky.social · 05/07/2025
from www.instagram.com/yeweijun98 Slime molds eat the microbes on decaying plants but not the microbes on decaying animals. Badhamia (Physarum) polycephala is an unusually adventurous eater who also enjoys mushrooms, oats, and probably a number of other things! I wonder what's up with the peanut
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brittanyabaker.bsky.social @brittanyabaker.bsky.social · 17/06/2025
Very happy to finally have this out! Thank you to my awesome PhD supervisors and all the co-authors!!
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Dirk-Jan Scheffers 🟥 @dirkscheffers.bsky.social · 13/06/2025
It’s a bacterium-eats-bacterium world… www.science.org/doi/10.1126/...
science.org
Bacteria poison and eat their neighbors
Bacteria leverage a secretion system to kill and scavenge nutrients from nearby competitors
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