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Jorge Sastre Domínguez

@jorgesastred.bsky.social
233 followers 240 following 16 posts

PhD student in the Plasmid Biology and Evolution (PBE) and Evolution of Microbes and Mobile Genetic Elements labs. Bioinformatics 💻 Evolutionary Biology 🦠 Antimicrobial resistance 💊 📍CNB - CSIC

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Reposted by Jorge Sastre Domínguez
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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Rachel M. Wheatley @rachelmwheatley.bsky.social · 14/09/2026
What a lovely email to receive this morning. Our perspective paper on the importance of microbial interactions for antibiotic resistance evolution was one of the most viewed papers in Microbiology (the society journal) in August. Shameless plug here 😉: www.microbiologyresearch.org/content/jour...
microbiologyresearch.org
Microbial interactions as key players shaping the emergence and spread of de novo resistance mutations
Antibiotic resistance and the microbiome are two of the most prominent and highly active research areas currently in microbiology. However, these studies are commonly siloed. Research into antibiotic ...
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Clàudia Morros Bernaus @claudiamb98.bsky.social · 14/09/2026
Very happy to share the publication of the first manuscript from my PhD! 🥳 Here, we show that PCR amplification of repetitive DNA sequences, such as AMR genes flanked by insertion sequences, can lead to the generation of artefact products that need to be interpreted cautiously. (See comments 👇)
microbiologyresearch.org
PCR analysis of insertion sequences leads to the generation of artefact amplicons
Insertion sequences (ISs) are small, self-mobilizing DNA elements widespread across prokaryotic genomes, including chromosomes and plasmids. IS elements frequently co-localize with antimicrobial resis...
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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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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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François Rousset @francoisrousset.bsky.social · 08/09/2026
🚨 We are excited to share the first preprint of our lab ! We discovered an NADase enzymatic domain in bacterial immunity and in the human protein TEP1. www.biorxiv.org/content/10.6...
biorxiv.org
A widespread NADase domain links bacterial immunity with human TEP1
Recent discoveries on bacterial immunity have revealed that several protein domains involved in anti-phage defense are conserved in eukaryotes, such as SIRim, TIR, PNP and gasdermin. Bacterial immune ...
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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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Landon Getz @landongetz.bsky.social · 06/08/2026
DNA glycosylases are repair enzymes, essential to all cellular life. They find chemically damaged bases and remove them so DNA can be repaired. Today in Nature Microbiology, we show bacteria have repeatedly repurposed them into antiviral immune systems 🧵 www.nature.com/articles/s41...
nature.com
Antiviral defence is a conserved function of diverse bacterial DNA glycosylases - Nature Microbiology
DNA glycosylases, typically used for DNA repair, can also protect bacteria against phages that would otherwise evade host immunity by incorporating modified bases into their genomes.
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Nature Microbiology @natmicrobiol.nature.com · 30/07/2026
Out Now! Combined phage therapy and faecal microbiota transplantation to treat recurrent urinary tract infection: a case series #MicroSky
go.nature.com
Combined phage therapy and faecal microbiota transplantation to treat recurrent urinary tract infection: a case series
Nature Microbiology, Published online: 30 July 2026; doi:10.1038/s41564-026-02409-0In a small case series, combined phage therapy and faecal microbiota transplantation was safe and led to sustained reductions in recurrence, severity and antibiotic use in women with recurrent urinary tract infections, even without complete eradication of Escherichia coli.
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Vaughn Cooper @vscooper.micropopbio.org · 26/07/2026
In 2014, Jason Rosch and I met at a GRC in Tuscany and sketched an idea on a cocktail napkin: what if we evolved S.pneumo in mice, treated them with antibiotics, varied their immune systems and watched what won? 11 years and a huge team effort later, it's out in @cp-cellhostmicrobe.bsky.social 🧵
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Sofia Luengo-Woods @sluengo.bsky.social · 30/07/2026
We’re so excited to share our new paper, where we tackle the wealth of structural and functional diversity of anti-phage sensors across bacteria (1/6)
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Nature @nature.com · 29/07/2026
Nature research paper: Diverse bacterial pattern recognition receptors sense the core phage proteome go.nature.com/45fpXCZ
go.nature.com
Diverse bacterial pattern recognition receptors sense the core phage proteome - Nature
Systematic analysis of prokaryotic STAND NTPases — relatives of animal and plant immune receptors — uncovers diverse antiviral sensors that detect most of the core structural and replicative proteins of bacteriophages.
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Nature Microbiology @natmicrobiol.nature.com · 23/07/2026
Out Now! Within-patient gene transfer between transiently and chronically infecting bacteria causes extreme antibiotic resistance during lung infections #MicroSky
go.nature.com
Within-patient gene transfer between transiently and chronically infecting bacteria causes extreme antibiotic resistance during lung infections
Nature Microbiology, Published online: 23 July 2026; doi:10.1038/s41564-026-02414-3Antibiotic resistance gene acquisition by Pseudomonas aeruginosa and Achromobacter from transiently infecting bacteria drives rapid and extreme resistance to tobramycin during chronic lung infection within patients.
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Nature Microbiology @natmicrobiol.nature.com · 21/07/2026
Out Now! Klebsiella pneumoniae inhibits vasodilation through capsule and T6SS-dependent pathways #MicroSky
go.nature.com
Klebsiella pneumoniae inhibits vasodilation through capsule and T6SS-dependent pathways
Nature Microbiology, Published online: 21 July 2026; doi:10.1038/s41564-026-02425-0Vasodilation is inhibited by Klebsiella pneumonia through a multipronged approach involving type VI secretion system activity and the VgrG4 effector, plus capsule, to limit eNOS-dependent and endothelial hyperpolarization routes to vasodilation.
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Zamin Iqbal @zaminiqbal.bsky.social · 20/07/2026
Significant update to the AllTheBacteria paper, including discovering new antimicrobial peptides and testing in vitro and vivo. This has grown into a fantastic collaboration!
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Sarah Bagby @scbagby.bsky.social · 29/06/2026
Out today in Nature Microbiology: a paper that started in 2021 with an email from @sullivan-lab.bsky.social. Subject line: "Crazy ideas". www.nature.com/articles/s41... 1/23
Screenshot of an email header with subject line "Crazy ideas"
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Ricardo León-Sampedro @rleonsampedro.bsky.social · 22/06/2026
New Perspective out co-led with Lisa Pagani! We look at how microbiome ecology and evolution shape AMR across scales, from within-host communities to hospitals and environments, and how mathematical models can help us understand them. @natmicrobiol.nature.com www.nature.com/articles/s41...
nature.com
Modelling the role of the microbiome in antimicrobial resistance across scales - Nature Microbiology
The microbiome plays a significant yet underexplored role in antimicrobial resistance by influencing ecological and evolutionary processes. This Perspective proposes a framework to integrate microbiom...
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Pleuni Pennings @pleunipennings.bsky.social · 09/06/2026
So it turns out that after these six years, there was almost no further increase. One of the big surprises in the world of drug resistance: in many cases resistance levels stop increasing even when we don't change how we use the drugs.
Hand drawn plot showing an initial increase in resistance and then a plateau at around 35%. data for quinilone resistance in E coli in Hungary from Emons et al  2025
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Vaughn Cooper @vscooper.micropopbio.org · 16/06/2026
Rather: small N + strong selection = beneficial mutations linked to DNA repair mutants that ⬆️ mutation supply We tried to be accurate here @catarmbruster.bsky.social www.cell.com/cell-reports... Grateful that evolutionary biology is being used in microbial pathogenesis, now need more pop-gen
cell.com
Adaptation and genomic erosion in fragmented Pseudomonas aeruginosa populations in the sinuses of people with cystic fibrosis
Armbruster et al. find that infection-site biogeography impacts evolution of the opportunistic pathogen, Pseudomonas aeruginosa. In the sinuses of adults with cystic fibrosis, P. aeruginosa residing i...
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balazs-papp-lab.bsky.social @balazs-papp-lab.bsky.social · 16/06/2026
Can harmful gene loss become an evolutionary opportunity? In our new work in @molbioevol.bsky.social , lab-evolved E. coli lines recovering from metabolic gene loss did more than return to normal: some surpassed wild type on nutrients never seen during lab evolution. 📎 doi.org/10.1093/molb...
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Rafael Pinilla-Redondo (Rafa) @rafomics.bsky.social · 02/06/2026
Phages invented sgRNAs before humans!! 🧬 Obviously, for mischief… 😈 Loved seeing this story unfold!
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Olaya Rendueles @olayarendueles.bsky.social · 19/05/2026
🔬🦠 Comment #Klebsiella parvient-elle à changer de capsule aussi fréquemment pour mieux s’adapter à son environnement ? Les travaux de @julielebris.bsky.social mis à la une par @cnrsbiologie.bsky.social 👏 -avec @epcrocha.bsky.social #MicroSky @cbitoulouse.bsky.social
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Alvaro Sanchez @asanchezlab.bsky.social · 20/05/2026
The version of record of our revised preprint is finally out today. In it, we introduce a fast and reliable methdology for the full factorial design of microbial communities, i.e. constructing every monoculture, pair, trio, four-member,... n-member co-culture of N strains. doi.org/10.7554/eLif...
doi.org
Full factorial construction of synthetic microbial communities
A rapid, inexpensive, and easy to implement experimental protocol enables the construction of combinatorially complete sets of microbial consortia.
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Jorge Sastre Domínguez @jorgesastred.bsky.social · 19/05/2026
Check it out, this is a truly useful dataset! #mevosky
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Paloma Rodera @palomarodera.bsky.social · 19/05/2026
New paper out! 🔈 Genomic Characterization of the RyC collection: 50 Multidrug Resistant Clinical Isolates of Escherichia coli and Klebsiella spp. 50 MDR gut isolates, 2 sequencing platforms, 4 “omes,” and 1 mission: provide a resource to decode AMR and MGE dynamics www.biorxiv.org/content/10.6...
biorxiv.org
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Richard Lenski @relenski.bsky.social · 11/05/2026
New book "A Primer for Experimental Evolution" with coauthors Michael Rose, Margarida Matos, and Joe Graves. www.worldscientific.com/worldscibook... A compact primer for students and colleagues interested in planning and designing experiments to address questions in evolutionary biology.
worldscientific.com
A Primer for Experimental Evolution
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Daniel Cazares @danielcazares.bsky.social · 11/05/2026
Happy to share that our latest research on the eco-evolutionary dynamics of MDR plasmids and PDPs is now out (open access vAuthor) in The ISME Journal doi.org/10.1093/isme... Here, we explored how plasmid-dependent phages (PDPs) act as a selective pressure against the spread of multidrug resistance
doi.org
Eco-evolutionary responses to plasmid-dependent phage constrain the spread of multidrug resistance plasmids
Abstract. Phage therapy offers a promising alternative to antibiotics for treating multidrug-resistant infections. Plasmid-dependent phages (PDPs) are part
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Ignacio (Nacho) de Quinto @nachodequinto.bsky.social · 07/05/2026
What if multireplicon plasmids are not an oddity, but an evolutionary strategy? We found that they are common, more mobile, broader-host-range, and enriched in AMR. Even more interesting: their assembly doesn’t look random. 👀 Paper preprint: www.biorxiv.org/content/10.6... Thread below!🧵👇
biorxiv.org
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Jerónimo Rodríguez-Beltrán @jerorb.bsky.social · 07/05/2026
🚨 New preprint from the lab! 🚨 We show that multireplicon plasmids are true AMR "jack-of-all-trades": Widespread, highly mobile, broad host-range, and packed with resistance genes. Far from random, they form co-evolving associations driven & 𝘮𝘢𝘪𝘯𝘵𝘢𝘪𝘯𝘦𝘥 by IS elements. See Nacho's thread below!👇👇
biorxiv.org
Multireplicon plasmids emerge under predictable rules and drive the spread of antimicrobial resistance across bacterial hosts
Plasmids are DNA molecules that replicate independently of the bacterial chromosome and are typically associated with the spread of antimicrobial resistance (AMR) and virulence determinants, among other relevant traits. Fusion events between plasmids generate larger, complex backbones that carry two or more replication systems, known as multireplicon plasmids. Despite decades of study, we are still far from understanding how multireplicon plasmids arise, persist, and shape the evolution of AMR. Here, we analyzed 24,000 non-redundant plasmids across bacterial genera and found that more than 30% of them encoded multiple replicons. Compared to single-replicon plasmids, multireplicon plasmids were larger, were enriched in genes encoding antimicrobial, metal, and biocide resistance as well as virulence factors, and showed higher mobility and a broader host range. We also found that multireplicon assembly is not random. Some replicon pairs repeatedly merge into stable multireplicon plasmids, while other pairs rarely fuse even when they commonly coexist intracellularly. We also show that replicon pairs tend to be localized either in close proximity to one another or on opposite poles of the plasmid. We further highlight that multireplicon plasmids can be broadly classified into two groups: long-term coevolving replicon pairs and transient associations that lack a shared evolutionary history. Finally, we reveal the molecular mechanisms underlying multireplicon formation and highlight the role of insertion sequences in their formation and maintenance. Together, our work sheds light on the abundance, gene content, evolutionary patterns, and formation dynamics of multireplicon plasmids and pinpoints their relevance to bacterial evolution and human health. ### Competing Interest Statement The authors have declared no competing interest. Instituto de Salud Carlos III, https://ror.org/00ca2c886, PI23/01945, PFIS - FI22/00265, Miguel Servet - CP22/00164 European Research Council, https://ror.org/0472cxd90, HorizonGT, 101077809 Fundación Ramón Areces, "Ayudas Fundación Ramón Areces para la realización de Tesis Doctorales en Ciencias de la Vida y de la Materia 2025" Coordenação de Aperfeicoamento de Pessoal de Nível Superior, https://ror.org/00x0ma614, 88881.128025/2025-01
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Melanie Blokesch @mblokesch.bsky.social · 10/04/2026
Excited to share our new paper out today in @science.org 🎉 We show that HGT via natural competence drives diversification of chromosomal integrons in V. cholerae 🤩 Below a 🧵 on key findings incl. background on natural competence in V. cholerae 1/ #microsky #phagesky www.science.org/doi/10.1126/...
science.org
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José R Penadés @jrpenades.bsky.social · 05/04/2026
Latest from the lab! Between clinical S. aureus, most gene transfer mechanisms are blocked, yet lateral transduction remains highly efficient. Restriction modification-defective strains act as gateways for horizontal gene transfer, enabling DNA flow across populations. rdcu.be/fbNQK
rdcu.be
Immune-deficient bacteria serve as gateways to genetic exchange and microbial evolution
Nature Communications - The efficiency of horizontal gene transfer between different bacterial lineages is often unclear. Here, Figueroa et al. show that lateral transduction is the primary driver...
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Wendy Figueroa @wfigueroac3.bsky.social · 06/04/2026
Out in @natcomms.nature.com! We show that while most MGEs are blocked by RM systems🛡️, the chromosome is still mobile! 🧬And that cells with defective systems act as "gateways" for HGT. Can you find the hidden Easter egg🐇🥚? Hint: There's a nod to my 🇲🇽 heritage in one of the figures! rdcu.be/fbUC8
rdcu.be
Immune-deficient bacteria serve as gateways to genetic exchange and microbial evolution
Nature Communications - The efficiency of horizontal gene transfer between different bacterial lineages is often unclear. Here, Figueroa et al. show that lateral transduction is the primary driver...
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Zamin Iqbal @zaminiqbal.bsky.social · 02/04/2026
New paper from Hugh Cottingham, @katholt.bsky.social , @yekwah.bsky.social @nenadmacesic.bsky.social and co. Great to see the speed/accuracy tradeoff info here, I don't think I've seen it laid out like this before. www.microbiologyresearch.org/content/jour...
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Rachel M. Wheatley @rachelmwheatley.bsky.social · 30/03/2026
🔊 Looking for a Research Assistant in Bacterial Evolution to join my lab 🦠 🥼Main duties: Research (AMR + microbiome) + lab assistance. ⏲️ Post duration: 30 months 🗓️ Closing date for applications: 20th April 2026 💰 Salary: ~£35k Details and how to apply: tinyurl.com/2a3v66y7 Please share!
lnkd.in
LinkedIn
This link will take you to a page that’s not on LinkedIn
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PLOS Biology @plosbiology.org · 27/03/2026
Predicting the effect of a #mutation on #fitness is hard. @oliviamghosh.bsky.social @petrovadmitri.bsky.social &co use fitness effects of adaptive yeast mutants to show that underlying genotype-phenotype-fitness maps are low-dimensional but context-dependent @plosbiology.org 🧪 plos.io/4dLy2Ez
Two models for the nature of pleiotropy in adaptation. Left: Schematic of the environmental structure in this study. Environments can be mapped onto a multidimensional environment space characterized by chemical and physical compositions. The large green circle represents an environment where adaptive mutants evolved, and the large pink circle is a distant environment. Around each base, a set of identical environmental perturbations (arrows) is applied, generating clusters of similar environments around distinct base environments. Top right: Schematic of fitnotype map for adaptive mutants near their home base environment. By measuring fitness in each of the green environments, one can infer how many fitnotypes matter for this set of mutants in their home environment. Here, only four of the possible 8 fitnotypes matter. Bottom right: When the mutants are moved to the distant base environment, and their fitness is measured in all pink environments (base and perturbations), there are two possibilities. Either more fitnotypes become important and the space appears higher-dimensional (left, pleiotropic expansion), or the set of fitnotypes that matters remains low-dimensional, but shifts (right, pleiotropic shift).
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Teresa M. Coque @tmcoque.bsky.social · 26/03/2026
We are pleased to share our last article rdcu.be/fabhM. It offers the most comprehensive analysis so far of Ab+non-Ab resistance genes in human gut microbiome, using an Indigenous population (low industrialization, chronic Hg exposure from gold mining) 6/6👇
rdcu.be
The antimicrobial gut resistome of the Wayampi reveals a shared background of antibiotic and metal resistance genes with industrialized populations, underscoring the “robust-yet-fragile” architecture ...
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Filipa Trigo da Roza @filipatr.bsky.social · 20/03/2026
New preprint alert!!! 🚀🤓 We are very happy to finally share this with the world — the result of seven years of work and a new tool to study integrons and discover new functions encoded in these bacterial platforms. If you want to know more, here is a thread 🧵 www.biorxiv.org/content/10.6...
biorxiv.org
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Shu-Sin Chng @figlegend.bsky.social · 23/03/2026
Here is it! Super new science from us on horizontal gene transfer & bact defense systems! Liyana OW YONG discovered the first-of-its-kind defense factor AbjA that triggers 'abortive conjugation' as a defense mechanism, by targeting the T4SS! How neat?! #MicroSky 1/7 www.biorxiv.org/content/10.6...
biorxiv.org
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Bram van Dijk 🏳️‍🌈 @bramvandijk.bsky.social · 23/03/2026
Phd Position alert 🚨 Join our project ASTRAfun (Adaptation and Starship Traffic in Root-Associated fungi), in which we will use computational models to unveil the hidden dynamics of fungal evolution. It’s not going to be just regular fun. It’s going to ASTRAfun. 🤓 www.uu.nl/en/organisat...
uu.nl
PhD Position in Computational Modelling of Fungal Evolution
How do giant mobile elements called ‘Starships’ reshape fungal plant pathogens? Help us computationally model their spread and impact in nature and agriculture!
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Will Smith @willpjsmith.bsky.social · 20/03/2026
Here’s the latest preprint from my work on evolved resistance to Type VI Secretion system (T6SS) weaponry, funded by a @wellcometrust.bsky.social Sir Henry Wellcome Fellowship. So happy to see this out! www.biorxiv.org/content/10.6...
biorxiv.org
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Alan McNally @alanmcn1.bsky.social · 19/03/2026
Am stoked and thrilled that our latest paper is now out. A longitudinal study of invasive E. coli from children in the Netherlands over 50 years www.sciencedirect.com/science/arti...
sciencedirect.com
Lineage dynamics of invasive Escherichia coli isolates in the Netherlands from 1975 to 2021: a retrospective longitudinal genomic analysis
Escherichia coli is a common cause of invasive infections such as bloodstream and cerebrospinal fluid infections in neonates. Strains positive for the…
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Eduardo Rocha @epcrocha.bsky.social · 17/03/2026
Horizontal gene transfer is often depicted as a process distributing pre-existing functions to novel genetic backgrounds. Yet HGT can also increase the rate of functional innovation after transfer. Here's a brief review on the topic: ecoevorxiv.org/repository/v... #evosky #microsky
ecoevorxiv.org
From Trading Genes to Crafting New Tricks: How Horizontal Gene Transfer Potentiates the Emergence of Novel Functions
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Jesse Shapiro @bjesseshapiro.bsky.social · 16/03/2026
In the lab, antibiotics can make integrated viruses (prophages) pop out of bacterial genomes. In this (short!) preprint, we asked a simple question: how much does this happen outside the lab, in the human gut? TLDR: Not much overall, in specific bacterial species. 🧵 www.biorxiv.org/content/10.6...
biorxiv.org
Species-specific prophage induction by ciprofloxacin in human gut metagenomes
Antibiotics are known to trigger prophage induction in controlled laboratory settings, but it remains unclear whether this also occurs within microbiomes in nature. Current methods investigating the link between antibiotics and prophage induction within the human gut rely on in vitro culturing of human gut bacterial isolates. Using a metagenomic approach, we aimed to measure prophage induction and whether it is associated with antibiotic exposure. Across two independent human cohorts, we compared prophage to bacterial host read depth ratios (P:H) across known or measured antibiotic exposures. We found that induction is not broadly associated with antibiotic exposures at the level of the overall microbiome, but that ciprofloxacin increases P:H ratios in specific bacterial species. We documented heterogeneous trajectories of P:H ratios over the course of antibiotic exposure, sometimes increasing and remaining high, or returning to baseline. This study complements experimental models by providing in vivo evidence of induction in the human gut. Importance Bacteriophages are viruses that infect a bacterial host. The lytic and lysogenic cycles are the two classic outcomes of phage infection. In the lytic cycle, the phage immediately replicates and lyses its host to release new viral particles. In the lysogenic cycle, the phage, now called a prophage, integrates its genome into that of its host without killing it. Prophages can switch to the lytic cycle in a process called induction, in which the viral genome is replicated, the host cell is lysed, and viral particles are released. The most immediate consequence of induction is host cell death which can impact bacterial populations and communities. Since prophages are mobile genetic elements that can move between bacteria, they are also an important vehicle for horizontal gene transfer. While induction has been well studied in vitro , whether and how induction occurs within the complex microbial ecosystem in humans is less well characterized. Understanding prophage induction in vivo is therefore critical in corroborating in vitro observations. ### Competing Interest Statement The authors have declared no competing interest. NIH Common Fund, https://ror.org/001d55x84 Natural Sciences and Engineering Research Council
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Alfonso Santos Lopez @asantoslopez.bsky.social · 13/03/2026
Check out the latest version of our paper — peer-reviewed, polished, and published. Hope you like it! www.nature.com/articles/s41...
nature.com
Plasmids promote antimicrobial resistance through insertion sequence-mediated gene inactivation - Nature Microbiology
Inactivation of chromosomal genes through plasmid-encoded IS elements is an extended mechanism of antimicrobial resistance evolution in bacteria.
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Nature Microbiology @natmicrobiol.nature.com · 13/03/2026
Out Now! Plasmids promote antimicrobial resistance through insertion sequence-mediated gene inactivation #MicroSky
go.nature.com
Plasmids promote antimicrobial resistance through insertion sequence-mediated gene inactivation
Nature Microbiology, Published online: 13 March 2026; doi:10.1038/s41564-026-02290-xInactivation of chromosomal genes through plasmid-encoded IS elements is an extended mechanism of antimicrobial resistance evolution in bacteria.
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Jorge Sastre Domínguez @jorgesastred.bsky.social · 13/03/2026
Glad to see our latest work out in Nature Microbiology!! Extremely grateful to everyone involved in the project. Check it out!! 👇🏻👇🏻
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Alvaro San Millan @sanmillan.bsky.social · 13/03/2026
In this motion we give an overview of the results! www.youtube.com/watch?v=KbOY...
youtube.com
Plasfighter: Antibiotic resistance mediated by plasmids
YouTube video by Centro Nacional de Biotecnología (CNB-CSIC)
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Alvaro San Millan @sanmillan.bsky.social · 13/03/2026
Final version of our last paper is out! www.nature.com/articles/s41...
nature.com
Plasmids promote antimicrobial resistance through insertion sequence-mediated gene inactivation - Nature Microbiology
Inactivation of chromosomal genes through plasmid-encoded IS elements is an extended mechanism of antimicrobial resistance evolution in bacteria.
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Reposted by Jorge Sastre Domínguez
Centro Nacional de Biotecnología (CNB) @cnb-csic.bsky.social · 13/03/2026
Identifican un nuevo mecanismo utilizado por plásmidos para acelerar la aparición de resistencia a los antibióticos. @sanmillan.bsky.social @uam.es @csic.es  Más info en nuestra web: f.mtr.cool/pmappovlkt Artículo en: f.mtr.cool/yvxpgzaraz @natureportfolio.nature.com   @erc.europa.eu
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