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Alfonso Santos Lopez

@asantoslopez.bsky.social
745 followers 347 following 20 posts

Evolution of antibiotic resistance. Ramón y Cajal Fellow at Universidad Autónoma de Madrid. amrevolution.es

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Reposted by Alfonso Santos Lopez
Tami Lieberman @contaminatedsci.bsky.social · 08/09/2026
Two announcements regarding AccuSNV, which calls high precision SNVs across microbial genomes: Version 1.1 is now incredibly easy to install, run, and perform downstream analyses with (see image of typical output!). The manuscript was also published this summer in Genome Research! Links next...
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Alvaro Sanchez @asanchezlab.bsky.social · 21/08/2026
New preprint from the lab: The Latent Simplicity of Microbial Ecological Interactions www.biorxiv.org/content/10.6... We're excited about this one. We find that high-order microbial interactions often obey simple linear laws making microbial communities far more predictable than one might expect
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Chris Marshall @sirmicrobe.bsky.social · 06/08/2026
Since I dont think my coauthors are on here, I thought I should share this cool work showing how biosurfactants can enhance growth of a tricky but important dechlorinating bacterium Dehalobium chlorocoercia (DF1 for those that have followed along since its discovery) journals.asm.org/doi/full/10....
journals.asm.org
Rhamnolipid-augmented medium enhances growth of Dehalobium chlorocoercia on chloroethenes and polychlorinated biphenyls | Applied and Environmental Microbiology
Polychlorinated biphenyls (PCBs) and chlorinated ethenes remain widespread contaminants that are difficult to remove with conventional technologies, creating a need for scalable bioremediation strateg...
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Reposted by Alfonso Santos Lopez
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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Chris Marshall @sirmicrobe.bsky.social · 17/07/2026
Our group recently posted 2 new papers! This is the first one where we looked at how anaerobic metabolism in P. aeruginosa alters antibiotic resistance determinants. 1/2
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Chris Marshall @sirmicrobe.bsky.social · 17/07/2026
This is our 2nd recently posted paper where we wanted to build off the fantastic 2023 PNAS paper by @prsecor.bsky.social group (www.pnas.org/doi/10.1073/...) 1/3
pnas.org
PNAS
Proceedings of the National Academy of Sciences (PNAS), a peer reviewed journal of the National Academy of Sciences (NAS) - an authoritative source of high-impact, original research that broadly spans...
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Reposted by Alfonso Santos Lopez
MadScientist @mads100tist.bsky.social · 15/07/2026
To put science in Spain into context, the median project is 50k per year. That's basically doing guerilla science 🧪
A bar graph showing 2/3rds of projects fall within the < 150k threshold.
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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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Rowan Green @rowancallumg.bsky.social · 16/06/2026
Where are mutations most likely to happen in the genome? @mattjago.bsky.social has answers! This paper is also a masterclass in simple visualizations of complicated ideas. I really enjoyed getting deep into these results as a middle author 🧬
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Toni Gabaldón @tonigabaldon.bsky.social · 10/06/2026
Our paper "Gene ancestries reveal diverse microbial associations during eukaryogenesis.” is finally out in Nature. Eukaryogenesis was likely a gradual process shaped by multiple microbial partners and virus-mediated gene transfer, rather than a single binary symbiosis. doi.org/10.1038/s415...
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Vaughn Cooper @vscooper.micropopbio.org · 28/05/2026
In celebration of good friends and collaborators Erin Gloag @sirmicrobe.bsky.social, Dan Wozniak and @nanamikubota.bsky.social, here's a cool new study about rapid P. aeruginosa adaptation in wounds, with some hidden phage phun as bonus. journals.asm.org/doi/10.1128/...
journals.asm.org
Pseudomonas aeruginosa biofilm-deficient mutants undergo parallel evolution during chronic infection | Journal of Bacteriology
We demonstrate that in a porcine full-thickness thermal injury wound model, a Pseudomonas aeruginosa mutant deficient in biofilm formation undergoes adaptive evolution by acquiring mutations that alter the outer membrane, either type IV pili (T4P) or lipopolysaccharide (LPS) mutations, that restores the deficient biofilm phenotype. We also observe a striking degree of mutational parallelism, at both the biosynthetic pathway and gene level, indicating the strong selective pressures experienced by these pathways during chronic wound infection.
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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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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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Michael Brockhurst @brockhurstlab.bsky.social · 01/05/2026
Why does antibiotic resistance evolution vary between patients? Come to @officialuom.bsky.social @mermanchester.bsky.social to help us find out! 2.5 year @wellcometrust.bsky.social postdoc position in experimental evolution Closing 15 May. Apply here: www.jobs.manchester.ac.uk/Job/JobDetai...
jobs.manchester.ac.uk
Research Associate in Microbial Evolution:Oxford Road
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Vaughn Cooper @vscooper.micropopbio.org · 15/04/2026
Great article about EvolvingSTEM & Dr. Abigail Matela's leadership to infuse dozens of schools w/ authentic microbiology research experiences that demonstrate evolution in real time. We've engaged more than 11,000 students over 11 years! 😅 🧪 🧫 www.hotmetalcampus.com/news-researc...
hotmetalcampus.com
EvolvingSTEM Brings Lab Experiments Straight Into the Classroom — Hot Metal Campus
Based out of Bridgeside Point II in Hot Metal Campus, EvolvingSTEM is a science outreach program that brings evolution and microbiology research directly into classrooms across the Pittsburgh region. ...
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Reposted by Alfonso Santos Lopez
Paul Rainey @paulbrainey.bsky.social · 09/04/2026
Multiple fully funded PhD/postdoc positions available: experimental evolution of tumour suppression, egalitarian & fraternal ETIs, jumbo phage ecology & genetics. Related EoIs welcome. Email CV/statement of motivation written in own words. Open until filled. Grateful for reposting 🙏
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Carl Zimmer @carlzimmer.com · 30/03/2026
@vscooper.micropopbio.org & @isabelott.bsky.social let me crash their high-school bacteria hunt while I was working on my book "Life's Edge." Their paper's now out, featuring lots of mutants (including my very own CZ1A).
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Vaughn Cooper @vscooper.micropopbio.org · 30/03/2026
Now out in AEM @asm.org! 🎉🧪 *High school student-isolated mutants 👉🏻 novel genetic causes of biofilm-associated adaptations *We learn how diversity arises quickly and is maintained *EvolvingSTEM enables scalable research in classrooms & promotes scientific literacy journals.asm.org/eprint/FBU9M...
journals.asm.org
Genetic diversification of Pseudomonas fluorescens maintained by multi-niche selection within biofilms | Applied and Environmental Microbiology
Bacterial biofilms dominate microbial life; however, their evolutionary genetics remain incompletely understood. Extensive replication of biofilm selection experiments by secondary school students can...
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Olaya Rendueles @olayarendueles.bsky.social · 26/03/2026
So happy to see this finally published in @plosbiology.org! This is the first chapter of @julielebris.bsky.social PhD thesis demonstrating how capsules are exchanged by plug-and-play dynamics w/ @epcrocha.bsky.social #microsky @klebclub.bsky.social Link below- Check out her 🧵 for more details!
doi.org
Plug-and-play evolution of the Klebsiella pneumoniae capsule locus enables serotype exchange across genetic backgrounds
How complex multi-gene systems evolve across genetic backgrounds without disruptive epistasis remains unclear, particularly in highly exchangeable loci such as the capsule of Klebsiella pneumoniae. Th...
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Ana Elena Pérez-Cobas @anaelenaperezcobas.bsky.social · 26/03/2026
Happy to have participated in this beautiful work on the human gut resistome in populations exposed to minimal anthropogenic pollution 🥳. Do not miss it!
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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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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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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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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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Reposted by Alfonso Santos Lopez
Alberto HCA @albertohca.bsky.social · 10/03/2026
Excited to share our latest work! 📝 We measured the fitness effect of 136 AMR genes and found that many are neutral or even beneficial without selection. 🤯🧬 Oxygen availability can flip their fitness and our stochastic model indicates that oxygen fluctuations help maintain them. Learn more 👇🏼
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Alvaro Sanchez @asanchezlab.bsky.social · 09/03/2026
New preprint on the limits of detecting higher-order interactions in microbial communities. www.biorxiv.org/content/10.6... We find that the dominance of additive and pairwise interactions on community function may not reflect biological simplicity, but fundamental limits of statistical detection.
biorxiv.org
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Vaughn Cooper @vscooper.micropopbio.org · 01/03/2026
Given that clonal biofilms of single bacterial species rapidly diversify into niche specialists, how do biofilms of multiple species evolve? A 🧵 featuring new collaborative pubs: 1. www.biorxiv.org/content/10.6... 2. www.nature.com/articles/s41...
biorxiv.org
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Matthew J Shepherd @matthewjshepherd.bsky.social · 20/02/2026
🚨 New pre-print! 🚨 In the largest study of its kind to-date, we investigate the ecological and evolutionary mechanisms driving within-patient evolution of antimicrobial resistance (AMR). Read here: www.biorxiv.org/content/10.6... , and follow along with this thread, discussing our findings (1/21)
biorxiv.org
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Alfonso Santos Lopez @asantoslopez.bsky.social · 18/02/2026
What a fantastic new addition to my lab! 🚀 Welcome @albertohca.bsky.social to the @uam.es family! Stay tuned for the science we’re going to build together in the coming years!
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Vaughn Cooper @vscooper.micropopbio.org · 16/02/2026
🧵 New preprint! Our 4-lab team evolved Streptococcus pneumoniae in antibiotic-treated mice of varying immune states and discovered something surprising: bacteria rarely evolved resistance. Instead, they found a different way to survive — by rewiring RNA turnover. 🔗 www.biorxiv.org/content/10.6...
biorxiv.org
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Paula Ramiro-Martínez @paularamiro.bsky.social · 27/01/2026
New paper out in PNAS!!! 🎉 Do more plasmid copies mean faster evolution? 🧵 Dive into the story www.pnas.org/doi/10.1073/...
pnas.org
Plasmid mutation rates scale with copy number | PNAS
Plasmids are extrachromosomal DNA molecules that spread by horizontal transfer and shape bacterial evolution. Plasmids are typically present at mul...
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Jerónimo Rodríguez-Beltrán @jerorb.bsky.social · 27/01/2026
New paper out in @pnas.org, and it made the cover! 👁️ We represent plasmids as circles and mutations as dots, resembling an eye, because in this paper we literally 𝑤𝑎𝑡𝑐ℎ plasmids evolve. ‼️Check Paula’s 🧵 and the paper👇 𝗣𝗹𝗮𝘀𝗺𝗶𝗱 𝗺𝘂𝘁𝗮𝘁𝗶𝗼𝗻 𝗿𝗮𝘁𝗲𝘀 𝘀𝗰𝗮𝗹𝗲 𝘄𝗶𝘁𝗵 𝗰𝗼𝗽𝘆 𝗻𝘂𝗺𝗯𝗲𝗿 www.pnas.org/doi/10.1073/...
Cover of PNAS in which we show plasmids as colourful concentric circles, with dots scattered. The image kind of resembles an eye, although it’s visibly a plot.
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Cameron Thrash @jcamthrash.bsky.social · 20/01/2026
Emerging advances in prokaryotic transposition: TnPedia as a promising tool www.cell.com/trends/micro... #jcampubs
cell.com
Emerging advances in prokaryotic transposition: TnPedia as a promising tool
TnPedia provides a curated framework for understanding prokaryotic transposable elements (TEs), including general and historical information and basic concepts, while integrating mechanistic insights,...
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Manuel Ares-Arroyo @aresarroyom.bsky.social · 14/01/2026
Bacteria chromosomes contain Genomic Islands that provide virulence, antibiotic resistance, MGE-defence,... They transfer between cells, but the mechanism of most remains elusive. Here we explore the conjugative capacity of these mysterious Genomic Islands. www.biorxiv.org/content/10.6...
biorxiv.org
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Ayari Fuentes-Hernandez @ayari.bsky.social · 14/01/2026
New preprint from the lab! Stress-Induced Cooperation Promotes Tolerance in Resource-Limited Auxotrophic Microbial Consortia. Great and long journey with great collaborators.
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Dani Reyes-Gonzalez @daniireyes.bsky.social · 14/01/2026
We’re very happy to share the results from the last chapter of my PhD, now out as a preprint on bioRxiv www.biorxiv.org/content/bior...
biorxiv.org
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Vaughn Cooper @vscooper.micropopbio.org · 09/01/2026
🚨Call for papers🚨 Microbial Evolution: Impacts on Human Health in the society journal Evolution, Medicine, and Public Health Guest Editors: Bob Woods, Silvie Huijben & Camilo Barbosa EIC: me This will be great, please submit and share! academic.oup.com/emph/pages/m...
Microbial Evolution: Impacts on Human Health

Call for Papers

A defining characteristic of infectious diseases is that they evolve. The consequences of this evolution are among the most pressing medical issues facing humanity, including emerging pandemics, antibiotic resistance, and the success or failure of vaccines. Pathogen evolution profoundly influences virulence, transmission, and responses to a broad array of human interventions. While the evolutionary dynamics of pathogens have historically been challenging to study, large-scale genomic sequencing, novel computational tools, and experimental methods are rapidly changing the field. We encourage submissions on the broad topic of the evolution of infectious diseases.

This Special Issue aims to feature research that blends evolutionary approaches to understanding pathogen heterogeneity and ongoing genetic change in clinical samples and models of human infection. It also seeks to highlight opportunities to design treatment and prevention strategies that remain effective in the face of ongoing pathogen evolution.

Submission – open until January 31, 2027

Guest editors
Robert Woods, MD PhD, University of Michigan
Camilo Barbosa, PhD, University of Michigan 
Silvie Huijben, PhD, Arizona State University
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Michael Baym @baym.lol · 06/01/2026
New preprint from my lab (with Arya Kaul, @fernpizza.bsky.social, and @brinda.eu), in which we explore new genes hitchhiking on the beneficial deletion that fused them together, and find them in the LTEE, M. Tb/bovis, and across the bacterial tree of life
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Manuel Irimia @mirimiam.bsky.social · 23/12/2025
🚨🚨🚨 We're looking for a research tech to work on alt splicing, pancreatic islets and diabetes. The goal is to set a high-throughput platform to investigate the role of alternative exons in beta cell biology! Interested in joining our lab at @melisupf.bsky.social? 👇 www.upf.edu/documents/d/...
upf.edu
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Olaya Rendueles @olayarendueles.bsky.social · 18/12/2025
Preprint alert📢! 
Ever wondered how much bacterial parasites influence evolutionary outcomes of their host? ➡️ We co-evolved two bacterial strains in conditions in which the costs and benefits of prophage carriage varied Here is what we found. 
www.biorxiv.org/content/10.6... 
#MicroSky #PhageSky 🧵
biorxiv.org
Environment-dependent evolution drives divergent adaptive strategies and parasite dynamics in a minimal community
Prophages, phage genomes integrated into bacterial chromosomes, are widespread, yet, the extent to which these resident parasites contribute to host fitness and shape evolutionary trajectories, partic...
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Asher Leeks @asherleeks.bsky.social · 04/12/2025
It was great to write a brief commentary with @sociovirology.bsky.social on @nanamikubota.bsky.social and @vscooper.micropopbio.org's recent discovery of cheat-driven cycles in Pseudomonas (www.cell.com/current-biol... - amazing example of the tragedy of the commons! 🧪 #socialviruses #evosky
cell.com
Phage–bacteria dynamics: The tragedy of the commons at hyperspeed
A recent study found that apparently stable coexistence between a clinically important pathogen, Pseudomonas aeruginosa, and its integrated prophages can break down, setting off an evolutionary cycle ...
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Everyone's least favorite lab mate @kepatitis-c.bsky.social · 20/11/2025
What is the best strategy to win any contest? Eliminate your opponents of course. Recently, my friend @fernpizza.bsky.social showed how plasmids compete intracellularly (check out his paper published in Science today!). With @baym.lol, we now know they can fight. www.biorxiv.org/content/10.1...
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Michael Baym @baym.lol · 20/11/2025
Hot off the press! Our latest paper led by @fernpizza.bsky.social, understanding how plasmids evolve inside cells. These small, self-replicating DNA circles live inside bacteria and carry antibiotic resistance genes, but also compete with one another to replicate. 1/ www.science.org/doi/10.1126/...
science.org
Intracellular competition shapes plasmid population dynamics
From populations of multicellular organisms to selfish genetic elements, conflicts between levels of biological organization are central to evolution. Plasmids are extrachromosomal, self-replicating g...
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Ricardo León-Sampedro @rleonsampedro.bsky.social · 07/11/2025
🚨 Excited to share our new paper is out! 🎉 We show how interactions within gut microbiomes allow certain antibiotic-resistant E. coli strains to persist even without antibiotics, helping explain how resistance is maintained in the human gut. Now published in @natcomms.nature.com rdcu.be/eOf63
rdcu.be
Multi-layered ecological interactions determine growth of clinical antibiotic-resistant strains within human microbiomes
Nature Communications - The role of ecological factors in modulating the spread of antibiotic-resistance bacteria in the gut remains unclear. Here, the authors use anaerobic microcosms to study the...
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Alfonso Santos Lopez @asantoslopez.bsky.social · 22/10/2025
Do plasmids really move around that much? Well, maybe not always Thrilled to have contributed to this story with two of my favourite microbiologists: @jrpenades.bsky.social & @sanmillan.bsky.social This great work was led by Akshay Sabnis & @wfigueroac3.bsky.social www.cell.com/cell-reports...
cell.com
Non-conjugative plasmids limit their mobility to persist in nature
Sabnis et al. explain why non-conjugative plasmids move at a low rate in nature. While increased mobility can easily evolve by incorporating phage DNA into plasmids, this is disadvantageous because it...
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Alvaro San Millan @sanmillan.bsky.social · 22/10/2025
New paper with my (amazing) friend and mentor @jrpenades.bsky.social Really looking forward to see what plasmid aficionados think of this one!! With @asantoslopez.bsky.social @wfigueroac3.bsky.social Akshay Sabins and others www.cell.com/cell-reports...
cell.com
Non-conjugative plasmids limit their mobility to persist in nature
Sabnis et al. explain why non-conjugative plasmids move at a low rate in nature. While increased mobility can easily evolve by incorporating phage DNA into plasmids, this is disadvantageous because it...
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Wendy Figueroa @wfigueroac3.bsky.social · 22/10/2025
✨New paper from @jrpenades.bsky.social and @sanmillan.bsky.social labs. We found that non-conjugative plasmids 🧬 tend to have low mobility to promote functional diversity ⚔️💊 in bacterial communities🦠🦠. Brilliant work by Akshay, @asantoslopez.bsky.social and others. www.cell.com/cell-reports...
cell.com
Non-conjugative plasmids limit their mobility to persist in nature
Sabnis et al. explain why non-conjugative plasmids move at a low rate in nature. While increased mobility can easily evolve by incorporating phage DNA into plasmids, this is disadvantageous because it...
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