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Manuel Ares-Arroyo

@aresarroyom.bsky.social
670 followers 327 following 52 posts

Head of Biology of Mobile Genetic Elements Unit | ERC StG | Ramón y Cajal Fellow | Plasmids, MGEs, AMR, bacteria evolution | Fisabio Foundation

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Reposted by Manuel Ares-Arroyo
Ben Parker @ben-parker.bsky.social · 21/09/2026
Excited that our new paper with @henrylabsymbio.bsky.social and Kerry Oliver is out @pnas.org! We show that mobile genetic elements can spread adaptive host-benefiting traits across heritable insect symbionts on eco-evolutionary timescales.🧵 www.pnas.org/doi/10.1073/...
pnas.org
Phenotypic divergence is driven by mobile genetic elements in a heritable insect symbiont | PNAS
Heritable microbes profoundly influence insect biology, yet the traits they confer often evolve rapidly and differ among closely related symbiont s...
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Reposted by Manuel Ares-Arroyo
Sneha Sundar @sunsneha.bsky.social · 23h
Ever wondered how plasmid mobility differs across natural environments? In our new ISME Commun paper, Sebastian Bonhoeffer, @jhuisman.bsky.social and I ask: do F-like plasmids in E.coli associated with cows, pigs and poultry differ in their ability to transfer? [1/6] doi.org/10.1093/isme...
doi.org
Transfer potential of F-like plasmids in Escherichia coli differs by animal environment
Abstract. Plasmids play a key role in the spread of virulence and antimicrobial resistance genes to new genetic backgrounds. Genetic variation in the trans
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Reposted by Manuel Ares-Arroyo
Antonio Martínez Ron @aberron.bsky.social · 30/09/2026
Ya para socios: Un biólogo español también sospecha que la IA le ha robado sus ideas: “Dejaré Claude y recomiendo buscar alternativas” www.eldiario.es/1_ceb346?utm...
eldiario.es
Un biólogo español también sospecha que la IA le ha robado sus ideas: “Dejaré Claude y recomiendo buscar alternativas”
El investigador Mario Rodríguez Mestre sostiene que el ‘revolucionario’ sistema molecular que Anthropic anunció como descubrimiento de su IA fue descrito por él en 2022 y que compartió los datos con l...
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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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ASM @aussocmic.bsky.social · 28/09/2026
The latest issue of Microbiology Australia is now online! connectsci.au/ma/issue/47/3
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Tominaga K. (tomiken) @pacyc184.bsky.social · 26/09/2026
Entry exclusion enables selective conjugative DNA delivery in synthetic bacterial communities. | bioRxiv
biorxiv.org
Entry exclusion enables selective conjugative DNA delivery in synthetic bacterial communities.
Selective DNA delivery to specific members of assembled bacterial communities remains challenging. Bacterial conjugation enables efficient DNA delivery, but transfer to non-target recipients limits its specificity within mixed communities. Here, we repurpose plasmid entry exclusion (Eex) as a recipient-side gate to control conjugative DNA delivery. We demonstrate selective plasmid delivery to Eex-negative recipients within populations containing both Eex-expressing and Eex-negative cells. This recipient selectivity was maintained at increased cell densities and during prolonged mating. By combining RP4-type and F-type conjugation systems with their corresponding exclusion modules, we further directed DNA delivery from distinct donors to defined recipient populations. RP4-derived Eex also functioned in environmental bacteria, including Pseudomonas putida and Sphingobium japonicum, enabling recipient-specific exclusion within a multispecies mixture. Furthermore, repeated cycles of Eex-guided conjugation and selection altered community composition after assembly. These results establish entry exclusion as a recipient-side strategy for selective conjugative DNA delivery and, when combined with selection, for controlling the composition of assembled bacterial communities. ### Competing Interest Statement The authors have declared no competing interest. Japan Society for the Promotion of Science, https://ror.org/00hhkn466, 19K15725, 25K18154, 24KJ0025 Institute for Fermentation, Y-2024-1-007
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Dorentina Humolli @humollidorentina.bsky.social · 25/09/2026
Very happy to share that HIDEN-SEQ is now out in @natmicrobiol.nature.com! Using this technique, we recapitulated decades of established phage genetics and uncovered new gene functions, including previously unknown anti-defense factors against several defense systems. www.nature.com/articles/s41...
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Tominaga K. (tomiken) @pacyc184.bsky.social · 25/09/2026
Plasmid typing challenges in the era of genomic antimicrobial resistance surveillance: Trends in Microbiology
cell.com
Plasmid typing challenges in the era of genomic antimicrobial resistance surveillance
Plasmids are central drivers of antimicrobial resistance (AMR) dissemination, yet their modular, recombinogenic genomes defy concepts of relatedness derived from bacterial chromosomes. Long-read sequencing now routinely yields complete plasmid sequences, exposing a key gap: we can reconstruct plasmids but lack agreed principles for comparing them. In response, diverse clustering tools have emerged that emphasise different signals, such as marker genes, whole-sequence similarity, gene content, backbone structure, or explicit rearrangement events. Each encodes a distinct notion of plasmid distance. This review organises these tools into conceptual families, highlights how their assumptions shape surveillance outputs, and proposes hierarchical, multitool strategies and clearer models of plasmid evolution as the basis for scalable and interpretable plasmid-based AMR surveillance.
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Reposted by Manuel Ares-Arroyo
Burstein lab @bursteinlab.bsky.social · 24/09/2026
So many bacterial genomes are being edited… Could we spot them in the wild even without obvious markers??? Worry not! Our @EdanGabay has you covered. In our new preprint, she pinpoints such genes disrupting the natural genomic "grammar": www.biorxiv.org/content/10.6... 1/4
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Eduardo Rocha @epcrocha.bsky.social · 22/09/2026
Fun collaboration with the Van Melderen lab, led by Ludovic Belot on the acquisition and erosion of toxin-antitoxin systems in bacterial chromosomes. academic.oup.com/mbe/article/...
academic.oup.com
Acquisition and erosion of toxin-antitoxin systems in bacterial chromosomes
Abstract. Toxin-antitoxin systems (TAs) are widespread in bacterial genomes. Yet, their integration, persistence, and impact in chromosome dynamics remain
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Daniela Barillà @danielabarilla.bsky.social · 21/09/2026
@plasmidsociety.bsky.social
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David Bikard @dbikard.bsky.social · 21/09/2026
New paper from the lab, out in Nature Microbiology. We ran CRISPRi screens to ask what genes E. coli needs in order to live in a gut and what this can tell us about the gut environment itself. doi.org/10.1038/s41564-026-02471-8
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Jorge Moura de Sousa @jmouradesousa.bsky.social · 20/09/2026
Happy to see our work on the evolution of antiviral repertoires in P4-like satellites and their P2-like helper phages (check out the 🧵 👇) out in @narjournal.bsky.social 🔗 doi.org/10.1093/nar/... #phagesky #MicroSky #evosky
doi.org
Shuttling, swapping, and mixing: the rapid modular evolution of antiviral repertoires in temperate phages and their satellites
Abstract. Interactions between bacteria, bacteriophages, and their satellites are shaped by a myriad of defence and counter-defence mechanisms. Here, we id
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Vivek Mutalik @vivekmutalik.bsky.social · 19/09/2026
Some of the smallest 😎 viruses on Earth are all around us. Three or four genes 😍 each, in nearly every environment. We keep finding thousands by sequencing, yet don't know who they infect, can't easily isolate them, or even how the few we have infect a cell. Our new preprint takes this on 🧵👇
Schematics of how single strand RNA and DNA phages infect bacteria with F-pilus
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Thomas Ipoutcha @tomipou.bsky.social · 16/09/2026
Finally out! 🎉 After 3 years of postdoc in London, here is my main work, now published in Nature Comm. (and as co-corresponding author!) Using a combination of bioinformatic and experimental approaches, we propose a model of plasmid evolution in Staphylococcus. www.nature.com/articles/s41... ⬇️ 1/4
nature.com
Mobile genetic elements drive a plasmid fusion and deletion lifecycle shaping evolution and antimicrobial resistance - Nature Communications
Plasmids drive bacterial adaptation, but how their diversity arises has remained unclear. Here, they show that in Staphylococcus aureus, mobile genetic elements repeatedly fuse and delete plasmids, re...
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Manuel Ares-Arroyo @aresarroyom.bsky.social · 15/09/2026
As a wonderful way to wrap up these past few months, I’m deeply honored to receive the Plasmid Biology Prize from the International Society for Plasmid Biology at #ISPB2026 Berlin. 🍾🥳 Many thanks to the Society, and to all the friends, colleagues, and mentors I’m lucky to meet at these meetings.
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Miss Salmonella @misssalmonella.bsky.social · 14/09/2026
I have an email alert for the word #plasmid. Yes, I'm that person. Today it brought me a paper comparing bacterial plasmids with #ecDNA in cancer (same tricks, different kingdoms). "A paper a day keeps ignorance away" 👇 www.nature.com/articles/s41...
nature.com
The shared evolutionary capacities of plasmids and extrachromosomal DNA - Nature Reviews Genetics
Plasmids in bacteria and extrachromosomal DNA in cancer both generate copy-number variation, alter gene expression and promote rapid adaptation. In this Perspective, Shaw and Henssen explore their sha...
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Willem van Schaik @wvschaik.bsky.social · 12/09/2026
Interesting paper 'Plasmid–Host Networks Reveal Persistent Mobile Elements Across Wastewater Treatment' www.nature.com/articles/s41...
nature.com
Plasmid–Host Networks Reveal Persistent Mobile Elements Across Wastewater Treatment - Nature Communications
Using Hi-C metagenomics, this study maps how plasmids associate with bacterial hosts across wastewater treatment. They find that plasmid host range narrows from influent to effluent, and a few bacteri...
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Reposted by Manuel Ares-Arroyo
Paul Hoskisson 🧫 🦠🐸 @paulhoskisson.bsky.social · 13/09/2026
Fascinating stuff - Acquisition and erosion of toxin-antitoxin systems in bacterial chromosomes academic.oup.com/mbe/advance-...
academic.oup.com
Acquisition and erosion of toxin-antitoxin systems in bacterial chromosomes
Abstract. Toxin-antitoxin systems (TAs) are widespread in bacterial genomes. Yet, their integration, persistence, and impact in chromosome dynamics remain
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Reposted by Manuel Ares-Arroyo
Mart Krupovic @mkrupovic.bsky.social · 11/09/2026
Why did some #viruses evolve to be #giants while others did not? Our perspective piece on this topic with Eugene Koonin. www.pnas.org/doi/10.1073/...
pnas.org
Why did some viruses evolve to be giants while others did not? | PNAS
Viruses are ubiquitous mobile genetic elements that are obligate symbionts of cellular life forms and replicate exclusively within host cells. The ...
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Reposted by Manuel Ares-Arroyo
Ellinor Alseth @ellinoralseth.bsky.social · 11/09/2026
It's finally published! What a journey @brownlab.bsky.social and I have been on with this one (ask me about it over a pint 🍻). Super excited to be able to say that it's finally out in Trends (author gift link to follow)! 🦠🧫 #phagesky
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David Sünderhauf @davvi36.bsky.social · 10/09/2026
Please share! We are looking for a PhD student excited about gene transfer, and tackling Antimicrobial Resistance in Klebsiella pneumoniae. 🧬 More details & applications on funder website by 21st Oct 👇🏻 gw4biomed.ac.uk/developing-c...
gw4biomed.ac.uk
Developing CRISPR-Cas antimicrobials to tackle antibiotic resistance spread in Klebsiella pneumoniae - GW4 BioMed MRC DTP
Project Code IIAR27Ex van Houte Project Type Wet lab Research Theme Infection, Immunity, and Antimicrobial Resistance Project Summary Download Summary Antimicrobial resistance (AMR) poses a major thre...
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Reposted by Manuel Ares-Arroyo
Will Matlock @wtmatlock.bsky.social · 09/09/2026
Does an AMR gene on a plasmid diversify differently to an AMR gene on a chromosome? We are looking for a PhD student to work on this question in Bath!
gw4biomed.ac.uk
Turning up the volume: plasmid copy number and gene duplications as drivers of antimicrobial resistance evolution - GW4 BioMed MRC DTP
Project Code IIAR27Ba Matlock Project Type Wet lab Research Theme Infection, Immunity, and Antimicrobial Resistance Project Summary Download Summary Plasmids are important drivers of antimicrobial res...
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Paul Rainey @paulbrainey.bsky.social · 07/09/2026
A beautiful piece of detective work by @honour.bsky.social + colleagues revealing the origins of Ralstonia disease of bananas on Martinique. As so often, ICEs (ICERs!) prove to be extraordinary capacitors for evolutionary change. Evolution for evolution's sake 🤔 doi.org/10.1093/gbe/...
doi.org
Interspecies Exchange of Mobile Genetic Elements During a Plant Disease Outbreak
Abstract. Outbreak sequencing provides insight into the origin and evolutionary processes acting on emerging pathogens. Sequencing a historic multihost out
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European Research Council (ERC) @erc.europa.eu · 06/09/2026
705 million euro in ERC Starting Grants has just been awarded to 421 researchers across Europe. In the coming months many will start to hire staff and set up their own research groups. Keep an eye 👀 on the ERC team positions advertised on the #Euraxess website. 👉 buff.ly/7xrOtMp
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Manuel Ares-Arroyo @aresarroyom.bsky.social · 03/09/2026
Big news! Deeply honored to receive an #ERCStG from @erc.europa.eu! 🍾 Over the next five years, E-MOTION will study how interactions between Mobile Genetic Elements shape bacterial evolution in clinical settings. Exciting science and opportunities ahead: stay tuned, positions will be opening soon!
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Filipa Trigo da Roza @filipatr.bsky.social · 03/09/2026
It’s out! 🥹🎉 We’re so incredibly happy and proud to see this work out in the world. And once again, a huge thank you to the great mastermind @jaescudero.bsky.social and all the co-authors; this wouldn’t have been possible without you! doi.org/10.1038/s415... @natmicrobiol.nature.com
doi.org
High-throughput recovery of integron cassettes for gene discovery screens - Nature Microbiology
Integron insertion sites engineered into counterselection markers allow large-scale and high-throughput capture of integron-encoded genes from genetically tractable bacteria or DNA samples.
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Tominaga K. (tomiken) @pacyc184.bsky.social · 21/08/2026
Distinct plasmid- and host-encoded mechanisms drive small plasmid copy number-mediated heteroresistance in Escherichia coli | bioRxiv
biorxiv.org
Distinct plasmid- and host-encoded mechanisms drive small plasmid copy number-mediated heteroresistance in Escherichia coli
Antibiotic heteroresistance, the presence of a rare resistant subpopulation within an otherwise susceptible bacterial population, poses a significant clinical challenge. Understanding its genetic mechanisms is critical for early detection and treatment efficacy. Here, we investigate the contribution of small plasmids to heteroresistance using a clinical bloodstream Escherichia coli isolate carrying a 12 kb ColE1-type plasmid (p12). We show that this plasmid drives transient β-lactam heteroresistance through massive increases in plasmid copy number. Two distinct genetic mechanisms drive this amplification: mutations in the plasmid RNAI/RNAII that deregulate replication control, and a chromosomal recD mutation that induces multimerization and a shift toward rolling-circle replication. Notably, this recD-mediated amplification is restricted to small ColE1 and F- plasmids. This study highlights the crucial role of small plasmids in resistance evolution, demonstrating that they can cause this phenotype via alternative genetic pathways, without the involvement of traditional large resistance plasmids. ### Competing Interest Statement The authors have declared no competing interest. Swedish Research Council, https://ror.org/03zttf063, 2024-03665, 2024-06136, 2021-02091 NIH Common Fund, https://ror.org/001d55x84, 1U19AI158080-01
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Tatiana Dimitriu @tatianadimitriu.bsky.social · 20/08/2026
New paper led by Liam Shaw, with Arancha Peñil Celis, @aresarroyom.bsky.social, @adalijuanluo.bsky.social & Fernando de la Cruz. academic.oup.com/nar/article/... This is very much Liam’s story, but I loved playing a small part in it 🧵
academic.oup.com
The leading region of many plasmids is adapted for translational efficiency
Abstract. To successfully transfer, conjugative plasmids must overcome a recipient cell’s defence mechanisms. The leading region of many plasmids—the first
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STCmicrobeblog @stcmicrobeblog.bsky.social · 19/08/2026
#MicroSky maybe we should update this post?
smallthingsconsidered.blog
A two-part res­ur­rec­tion tale (1|2)
by Christoph — Besides a resurrection tale that I'll re­late to in the se­cond part, this post will be about an­ti-de­fense sys­tems of plas­mids as an in­trin­sic part of the seem­ing­ly end­less…
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Janina Rinke @jannelrinke.bsky.social · 02/07/2026
Excited to share that our paper on Horizontal Gene Transfer is now out in its final form in @gigascience.bsky.social! 🥳 By analysing 163 high-quality ant genomes, we show that HGT from bacteria is widespread across the ants and likely has adaptive functions! doi.org/10.1093/giga... 🐜📸: Alex Wild
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Zeynep Baharoglu @zeynepbaharoglu.bsky.social · 18/08/2026
academic.oup.com/nar/article/... 🦠
academic.oup.com
The leading region of many plasmids is adapted for translational efficiency
Abstract. To successfully transfer, conjugative plasmids must overcome a recipient cell’s defence mechanisms. The leading region of many plasmids—the first
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Rubin Lab @therubinlab.bsky.social · 18/08/2026
Excited to share our latest preprint from the lab! 🧬 We found that IS110 elements, typically considered small, can grow into large elements that carry cargo and disseminate antimicrobial resistance. We also experimentally validated the smallest and largest IS110s characterized to date.
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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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Tominaga K. (tomiken) @pacyc184.bsky.social · 13/08/2026
Plasmid biology is compressed in host chromosomal architecture | bioRxiv www.biorxiv.org/content/10.6...
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Arc Institute @arcinstitute.org · 06/08/2026
One of our most popular preprints of 2025 is now published in @science.org. Congrats to @brianhie.bsky.social, @samuelhking.bsky.social, and team on establishing a framework for generating and evaluating AI-generated genomes. - Access the paper: www.science.org/doi/10.1126/...
science.org
Generative design of bacteriophages with genome language models
Many important biological functions arise not from single genes but from complex interactions encoded by entire genomes. We report the first generative design of complete bacteriophage genomes using g...
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Molecular Cell @cp-molcell.bsky.social · 07/08/2026
Broken chromosomes don’t stay home: Tunneling nanotubes carry damaged DNA between human cells
dlvr.it
Broken chromosomes don’t stay home: Tunneling nanotubes carry damaged DNA between human cells
In a recent Cell paper, Maurais et al. show that genomic instability drives human cells to transfer fragmented chromosomes to neighbors via tunneling nanotubes (TNTs), with heritable functional consequences, raising fundamental questions about intercellular communication, genome surveillance, and cancer evolution.
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Craig Kaplan @triggerloop.bsky.social · 22/07/2026
Some bacteria use the CRISPR/Cas systems as transcriptional repressors of other anti-phage systems, such that when CRISPR interfered with, gene expression of repressed anti-phage systems goes up www.nature.com/articles/s41...
nature.com
CRISPR–Cas regulates expression of embedded anti-phage defence systems - Nature
CRISPR–Cas systems transcriptionally tune diverse innate defences using CRISPR RNA-like guides to balance antiviral protection with fitness, and hyperactivate these defences when compromised, establis...
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Vicki Orr @vickiorr.bsky.social · 24/07/2026
Our pQBR plasmid paper is out! A model environmental plasmid collection that contains no known AMR genes and worldwide relatives! @jpjhall.bsky.social @ellieevolves.bsky.social @dwrivett.bsky.social and Rosanna Wright @microbiologysociety.org microbiologyresearch.org/content/journal/mgen/10.1099
microbiologyresearch.org
The pQBR mercury resistance plasmids: a model set of sympatric environmental mobile genetic elements
Plasmids are extrachromosomal mobile genetic elements that can facilitate rapid bacterial adaptation by transferring genes between individuals. Whilst plasmids are known to exist in diverse habitats a...
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Ákos T Kovács @evolvedbiofilm.bsky.social · 26/07/2026
Expression of conjugation genes is controlled by a novel zipper-type transcriptional attenuation mechanism (pLS20 in Bacillus subtilis) @narjournal.bsky.social from Wilfried Meijer and @paulbabitzke.bsky.social academic.oup.com/nar/article/...
academic.oup.com
Expression of conjugation genes is controlled by a novel zipper-type transcriptional attenuation mechanism
Abstract. Proper expression of genes clustered in operons, particularly large operons, can be complex, often involving multiple regulatory switches. The co
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Will Matlock @wtmatlock.bsky.social · 24/07/2026
🚨 New preprint with @annadewar.bsky.social 🚨 Do plasmids “ameliorate” towards their hosts? Maybe… We show that the classic plasmid-host GC correlation is confounded by population structure, and argue that plasmid mobility shapes the opportunity for host-associated compositional evolution.
doi.org
Mobility shapes plasmid GC content evolution
Plasmids are frequently AT-rich relative to their bacterial hosts. Despite this tendency towards lower GC content, plasmid and host chromosome GC content are positively correlated across diverse collections of plasmid-host pairs. However, the evolutionary processes underlying this pattern remain unclear. The classic model of amelioration predicts that horizontally acquired DNA gradually converges on host nucleotide composition. However, because plasmids can repeatedly transfer between bacterial hosts, the opportunity for such host-associated evolution may depend on their transmission dynamics. Using 50,936 plasmid-host pairs from a public sequence database, we found that the apparent global correlation between plasmid and host chromosome GC content was largely driven by differences between bacterial species rather than within species. We therefore accounted for plasmid and host population structure when testing how plasmid mobility shaped host-associated compositional evolution. We compared two contrasting regimes: a population of 3,682 Enterobacterales plasmids distributed across diverse host backgrounds, and six long-term host-associated plasmids from a Rhizobium leguminosarum lineage with INSeq-determined gene essentiality data. In the Enterobacterales population, GC content variation was overwhelmingly explained by plasmid lineage rather than host phylogeny, and conjugative plasmids showed greater similarity to their host chromosomes than mobilisable or non-mobilisable plasmids. In the Rhizobium leguminosarum plasmids, synonymous-site composition was more similar to the host chromosome among genes required across multiple host life stages. Together, these results support a model in which plasmid mobility influences the opportunity for host-associated evolutionary processes to alter nucleotide composition. ### Competing Interest Statement The authors have declared no competing interest. Wellcome Trust, 319534/Z/24/Z St. John's College, University of Oxford, UK
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The Daily Pub @thedailypub.bsky.social · 17/07/2026
AllTheBacteria: a community resource empowers biology and discovers novel peptide antibiotics.
doi.org
AllTheBacteria: a community resource empowers biology and discovers novel peptide antibiotics.
Published in bioRxiv : the preprint server for biology
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Rafael Pinilla-Redondo (Rafa) @rafomics.bsky.social · 16/07/2026
1/10 🚨Preprint! One RING to rule them all (phages)👑💍⚔️ Bacteria build giant DNA-scaffolded RNase rings (larger than the ribosome!) to shut down viral infection🧬🧵👇 biorxiv.org/content/10.6...
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ESCMID_ESGMAP @esgmap.bsky.social · 16/07/2026
🧬When antimicrobial resistance spreads, how do we know whether plasmids are part of the story? This is the focus of our ESCMID Postgraduate Course: Tracking plasmids for clinical and public health use, taking place 2–4 November 2026. Read more & sign up for the course: www.escmid.org/event-detail...
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Cameron Thrash @jcamthrash.bsky.social · 13/07/2026
Characterizing the ecological niche of insertion sequences within prokaryotic genomes academic.oup.com/ismej/advanc... #jcampubs
academic.oup.com
Characterizing the ecological niche of insertion sequences within prokaryotic genomes
Abstract. Insertion sequences (ISs) are widespread prokaryotic transposable elements, often regarded as genomic parasites that primarily cause deleterious
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Eugen Pfeifer @eugenpfeifer.bsky.social · 10/07/2026
We are looking for a motivated PhD student in phage genomics! Please find the details attached. Application deadline 24/07. Don't hesitate to spread the word!
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Xavier Charpentier @labxc.bsky.social · 07/07/2026
#microsky New preprint from the lab! Widespread immune systems protect bacteria against conjugative plasmids www.biorxiv.org/content/10.6... Kudos to the extremely talented lead author Ludovic Poiré! Key contributions by @francoisrousset.bsky.social and also help from C. Lesterlin/TacC lab. 🧵⬇️
biorxiv.org
Widespread immune systems protect bacteria against conjugative plasmids
Conjugative plasmids are a class of mobile genetic elements capable of efficient transfer between bacterial cells. Although they can introduce beneficial traits such as antibiotic resistance to recipi...
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Kevin Forsberg @kvnforsberg.bsky.social · 02/07/2026
Humans and bacteria share strategies to defend against viruses. We wondered: could they use each other's genes? Yes, both can! Bacteria can use human immune genes to defend against phages AND Human cells can use bacterial genes for viral defense. www.biorxiv.org/content/10.6...
biorxiv.org
Bacterial and human exonucleases mediate interkingdom antiviral immunity
All kingdoms of life have developed strategies to limit viral infection. In humans, interferons induce a suite of antiviral factors that collectively provide immunity. Some human immune genes are homo...
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Nature Microbiology @natmicrobiol.nature.com · 29/06/2026
Out Now! Mobile genetic elements shape microbial diversity and functions in thawing permafrost soils #MicroSky
go.nature.com
Mobile genetic elements shape microbial diversity and functions in thawing permafrost soils
Nature Microbiology, Published online: 29 June 2026; doi:10.1038/s41564-026-02391-7An 8-year soil meta-omic time series shows how mobile genetic elements shape permafrost microbial diversity and impact a range of functions, including carbon and nutrient cycling.
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Labex IBEID @ibeidlabex.bsky.social · 08/06/2026
Young Talents session is ON. First up: Manuel ARES ARROYO, Pasteur-Roux-Cantarini fellow @pasteur.fr in the lab of @epcrocha.bsky.social, unraveling how genomic islands move and drive both pathogenicity and AMR spread. #AMR @ibeidlabex.bsky.social
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