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Paula Ramiro-Martínez

@paularamiro.bsky.social
183 followers 130 following 37 posts

Predoctoral researcher at evodynamics lab in Madrid. Bacterial and plasmid evolution 🫧🧬💻

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Reposted by Paula Ramiro-Martínez
Ada Muñoz @adamunozz.bsky.social · 16/09/2026
Last week at #ISPB2026 ✨🥨 Another #ISPB full of exciting science! Such a great time with amazing people, finally meeting some, catching up with friends, and getting really cool feedback on this new project 🐘 Already looking forward to Toronto!
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Reposted by Paula Ramiro-Martínez
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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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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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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bioRxiv Microbiology @biorxiv-microbiol.bsky.social · 26/06/2026
Bacterial Mercury Resistance Reveals a Robust Species-Structured Human Antimicrobial Mobilome www.biorxiv.org/content/10.64898/20…
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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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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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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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Eduardo Rocha @epcrocha.bsky.social · 27/03/2026
What happens when Klebsiella's capsule locus is swapped? Unexpectedly little in terms of cell growth. Yet, it does change the bacterium's environment and interactions with it: evolution by seamless plug-and-play capsule swap. Led by @julielebris.bsky.social @olayarendueles.bsky.social
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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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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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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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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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Jorge Moura de Sousa @jmouradesousa.bsky.social · 02/03/2026
➡️ preprint from the lab! Bacteria have loads of antiviral defences in their mobile genetic elements (MGEs). So when MGEs move between bacteria, the defences move with them, generating a fast turnover of defences in bacteria. But what about the antiviral defence turnover in the MGEs themselves? 🤔 🧵👇
biorxiv.org
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Eduardo Rocha @epcrocha.bsky.social · 03/03/2026
Fantastic collaboration w/ @dbikard.bsky.social @audeber.bsky.social @rayanchikhi.bsky.social labs led by @jmouradesousa.bsky.social : We assessed the rates of variation of anti-phage systems in P4-like satellites and P2 helper phages. Quick conclusion: Huge variation! We focus on 4 key questions/5
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Pedro Dorado-Morales @doradomoralesp.bsky.social · 26/02/2026
New preprint out on bioRxiv! www.biorxiv.org/content/10.6... Can conjugative plasmids be used to control plasmid and pathogen spread? Follow me down the rabbit hole that led to this story 🧵
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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Pedro Dorado-Morales @doradomoralesp.bsky.social · 16/02/2026
A short research stay in 2019 (back in the pre-COVID era) at José R. Penadés lab turned into the third chapter of my PhD and today it finally sees the light.
nature.com
Targeted elimination of Staphylococcus aureus mastitis infections with synthetic phage-based CRISPR-Cas delivery systems - npj Biofilms and Microbiomes
npj Biofilms and Microbiomes - Targeted elimination of Staphylococcus aureus mastitis infections with synthetic phage-based CRISPR-Cas delivery systems
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Cristina Herencias @crisherencias.bsky.social · 02/02/2026
🧬New paper out! We report the first isolation of viable B. bacteriovorus predators from human gut microbiota. www.frontiersin.org/journals/mic.... Great work of Mario Romero @migueldiezfdz.bsky.social @josete600.bsky.social and @rosacampo.bsky.social
frontiersin.org
Frontiers | Genome assembly and functional predation analysis of novel Bdellovibrio isolates from human gut microbiota
IntroductionPredatory bacteria of the Bdellovibrio and like organisms (BALOs) have long been postulated as living antimicrobials, yet their occurrence and ec...
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Proceedings of the National Academy of Sciences @pnas.org · 29/01/2026
In this issue: Fresh light on horse evolution, mangrove restoration as coastal flood protection, and the links between aerobic metabolism and planetary oxygenation. In PNAS: ow.ly/yB6J50Y5ykK
Pictured is a map of plasmids, which are DNA molecules that can be transferred between bacteria. Each ring and dot represents an evolved plasmid and a mutation, respectively.

Image credit: Paula Ramiro-Martínez.
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Teresa M. Coque @tmcoque.bsky.social · 29/01/2026
And what a beautiful @pnas.org cover @paularamiro.bsky.social and @jerorb.bsky.social !!!!!! You should be very proud!
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Alvaro San Millan @sanmillan.bsky.social · 28/01/2026
So great to finally have such a clear answer to this question!! Well done guys!
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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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Paula Ramiro-Martínez @paularamiro.bsky.social · 27/01/2026
We're thrilled that, in addition, our figure has been chosen as the cover for this issue of PNAS! 🥹🎉
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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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Eduardo Rocha @epcrocha.bsky.social · 14/01/2026
Here, we find that many Genomic islands have origins of transfer (oriT) mobilisable by conjugation, incl. known Pathogenicity & defense islands. iOriT use only an oriT for transfer by hitching on conjugative elements: they make abundant, diverse, ancient families of mobile genetic elements. See🧵
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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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Nature Microbiology @natmicrobiol.nature.com · 02/01/2026
#NewResearch The long-term existence of diverse virulent phages within cultures of Escherichia coli and others challenges the virulent–temperate dichotomy and points to non-canonical phage lifestyles. #MicroSky 🦠 @peterdoug.bsky.social @emggroupucph.bsky.social www.nature.com/articles/s41...
nature.com
Persistent virulent phages exist across bacterial isolates - Nature Microbiology
The long-term existence of diverse virulent phages within cultures of Escherichia coli and others challenges the virulent–temperate dichotomy and points to non-canonical phage lifestyles.
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Nature Microbiology @natmicrobiol.nature.com · 02/01/2026
#NewResearch Diverse genomes of lytic phages are found in bacterial assemblies, challenging assumptions about the nature of the lytic lifestyle. #MicroSky 🦠 www.nature.com/articles/s41...
nature.com
Large-scale analysis of bacterial genomes reveals thousands of lytic phages - Nature Microbiology
Diverse genomes of lytic phages are found in bacterial assemblies, challenging assumptions about the nature of the lytic lifestyle.
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Jerónimo Rodríguez-Beltrán @jerorb.bsky.social · 20/12/2025
🎁 Getting a paper acceptance right before Christmas break is one of the best feelings. 100% recommend. Happy holidays, everyone! 🎄✨
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Teresa M. Coque @tmcoque.bsky.social · 21/11/2025
A pleasure and an honour to have received this prestigious grant with my admired colleagues and friends @sanmillan.bsky.social and @asanchezlab.bsky.social . More about AMR under plasmid lens!. My sincere gratitude to @caixaresearch.bsky.social @microryc.bsky.social @esgem-sg.bsky.social
caixaresearch.bsky.social
caixaresearch.bsky.social
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AnniZLab: [🦠, 🧬 , ✨] @annizlab.bsky.social · 09/09/2025
A plasmid golden ratio? 🧬 Plasmid copy number ≈ 2.5% of chromosome size—consistent across bacterial species! pmc.ncbi.nlm.nih.gov/articles/PMC... @jerorb.bsky.social 🧪 #microbesky
a Scatter plots showing the correlation between plasmid size (x-axis) and PCN (y-axis) for the analysed genera. Each point represents the median PCN and plasmid size for each PTU, and error bars indicate the standard deviation from the median. Grey lines represent ordinary least squares regression, with the surrounding shaded area indicating 95% confidence intervals. The scaling factor or slope, k, is indicated on each panel. b Distribution of total DNA load per plasmid (x-axis) relative to chromosome size per genus (y-axis). The DNA load of each plasmid is calculated by multiplying the plasmid size by the copy number and then expressed as a proportion relative to the chromosome size. The point inside the box marks the median. The upper and lower hinges correspond to the 25th and 75th percentiles, and whiskers extend to 1.5 times the interquartile range. Only Escherichia and Salmonella significantly differ from All; Kruskal–Wallis test followed by Dunn’s test for pairwise multiple comparisons p < 10−4; effect size = 0.006. c Relative plasmid DNA load observed (%) (x-axis) and expected (y-axis) per cell. The y-axis indicates the expected plasmid DNA load (%) inside a cell when it contains one plasmid (1n), two plasmids (2n), and so on. This expected data has been calculated by generating a sequence from 1 to 9 multiplied by the median of the DNA load per plasmid (2.49%). Each green point represents a single genome, and the black points are the median for each category. Shading indicates interquartile ranges. Pearson’s p value and coefficient are shown for the correlation between expected and observed plasmid DNA.
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Microbetv @microbetv.bsky.social · 19/08/2025
In episode 337 TWiM explains a study that examines pathogen presence in ancient humans and concludes that zoonoses emerged 6500 years ago with the domestication of livestock, and determination of universal rules that govern plasmid copy number. This week's special guest: @markowenmartin.bsky.social
youtu.be
TWiM 337: Lifestyles of the plasmids
YouTube video by MicrobeTV
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Alicia Calvo-Villamañán @aliciapcv.bsky.social · 20/08/2025
This work is finally published! 🥳🧬 Plasmids are associated with very variable fitness costs in their different bacterial hosts. But, what is the contribution of each of the plasmid-genes in these host-specific effects? Study led by @jorgesastred.bsky.social, @sanmillan.bsky.social and myself! 1/14
rdcu.be
Dissecting pOXA-48 fitness effects in clinical Enterobacterales using plasmid-wide CRISPRi screens
Nature Communications - This study investigates the effects of the carbapenem resistance plasmid pOXA-48 in clinical enterobacteria. Using CRISPRi screens, the authors revealed that the...
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Alfonso Santos Lopez @asantoslopez.bsky.social · 13/08/2025
Our new manuscript is out! A bit of everything cool: Plasmids ✅ Insertion Sequences ✅ AMR Evolution ✅ Microbial Communities ✅ Databases analyses ✅ Mathematical modeling ✅ See the scientific thread below of Jorge Sastre, who has brilliantly led this work with @palomarodera.bsky.social
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Jorge Sastre Domínguez @jorgesastred.bsky.social · 13/08/2025
New paper out! 🔈🔈📣📣 Plasmids promote antimicrobial resistance through Insertion Sequence-mediated gene inactivation. Combining experimental and computational approaches, we unveil how two of the most prevalent bacterial MGE accelerate the evolution of AMR. 🧵👇🏻 www.biorxiv.org/content/10.1...
biorxiv.org
Plasmids promote antimicrobial resistance through Insertion Sequence-mediated gene inactivation
Antimicrobial Resistance (AMR) is a major threat to public health. Plasmids are mobile genetic elements that can rapidly spread across bacterial populations, promoting the dissemination of AMR genes i...
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Jerónimo Rodríguez-Beltrán @jerorb.bsky.social · 25/07/2025
🚨🚨 New paper in @narjournal.bsky.social! 🍾 Excludons are pairs of overlapping genes that block each other’s expression (basically, reverse operons). We built a tool to identify them in bacterial genomes using transcriptomic data, in an awesome collab led by Iñigo Lasa and Álvaro San Martín. 👇
academic.oup.com
ExcludonFinder: mapping transcriptional overlaps between neighboring genes
Abstract. Bacteria regulate neighboring genes via overlapping transcription in untranslated regions (UTRs), forming excludons. This overlap leads to transc
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Laura Álvaro-Llorente @lauralvllo.bsky.social · 23/07/2025
Had an amazing time at #FEMS2025 last week, where I presented our latest findings on collateral sensitivity mediated by beta-lactamases ☯️ Big thanks to everyone who came by! So proud of my colleagues for their brilliant talks and posters ✨
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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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Ana Elena Pérez-Cobas @anaelenaperezcobas.bsky.social · 22/07/2025
The must-read of this Summer! 🤩 Congrats to all the authors for this beautiful work 🥳
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Paula Ramiro-Martínez @paularamiro.bsky.social · 22/07/2025
New paper alert! 🚨 Plasmids promote bacterial evolution through a copy number-driven increase in mutation rate. We combine theory, simulations, experimental evolution, and bioinformatics to demonstrate that mutation rates scale with plasmid copy number. Let's dive in! 🧵👇
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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bioRxiv Microbiology @biorxiv-microbiol.bsky.social · 22/07/2025
Plasmids promote bacterial evolution through a copy number-driven increase in mutation rate www.biorxiv.org/content/10.1101/202…
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Dave Baltrus 🦦 @surtlab.bsky.social · 20/07/2025
This is a legitimately incredible result that hints at something fundamental about plasmids that we don’t yet understand
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Jerónimo Rodríguez-Beltrán @jerorb.bsky.social · 17/07/2025
Super proud of the lab for their outstanding presentations at #FEMS2025 in Milano! Science is better when you work with such a stellar team!🚀✨ @femsmicro.org
People from the lab killing itAt the Duomo with friends
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Jerónimo Rodríguez-Beltrán @jerorb.bsky.social · 03/07/2025
It was an honor and a joy to receive the National Research Prize for Young (!) Researchers. The highlight? My grandma greeting the King of Spain. What a day! www.youtube.com/watch?v=oSQP...
Felipe VI, king of Spain, greeting my grandmaFelipe VI and JeroA selfie of some of the Prize Recipients
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naturepoker @binomicalabs.org · 02/07/2025
Oh this is fantastic 🦠🧫
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Javier DelaFuente @javierdelafuente.bsky.social · 02/07/2025
If you're into plasmid biology, you can't miss this back-to-back by two inspiring teams!
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Jerónimo Rodríguez-Beltrán @jerorb.bsky.social · 02/07/2025
🚨🚨New paper out in @natcomms.nature.com!! Come for the first large-scale analysis of plasmid copy number across species, stay for one of the most intriguing results of my lab: universal scaling laws in plasmid biology! 📈🧬 👉 www.nature.com/articles/s41...
nature.com
Universal rules govern plasmid copy number - Nature Communications
Plasmids exhibit a broad range of sizes and copies per cell, and these two parameters appear to be negatively correlated. Here, Ramiro-Martínez et al. analyse the copy number of thousands of diverse b...
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Paula Ramiro-Martínez @paularamiro.bsky.social · 02/07/2025
Curious about plasmid biology? Our latest paper is out now in Nature Communications! 🚨 doi.org/10.1038/s414... We analyzed thousands of diverse bacterial plasmids to shed light for the first time on a key aspect of plasmid biology: plasmid copy number. 1/7 👇
doi.org
Universal rules govern plasmid copy number - Nature Communications
Plasmids exhibit a broad range of sizes and copies per cell, and these two parameters appear to be negatively correlated. Here, Ramiro-Martínez et al. analyse the copy number of thousands of diverse b...
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Ana Elena Pérez-Cobas @anaelenaperezcobas.bsky.social · 29/04/2025
New mini-review on the respiratory microbiome and its contribution to human health from biotechnology 🫁🦠 @tmcoque.bsky.social @microbiotech.bsky.social enviromicro-journals.onlinelibrary.wiley.com/doi/10.1111/...
enviromicro-journals.onlinelibrary.wiley.com
The Respiratory Tract Microbiome and Human Health
The respiratory tract microbiome (RTM) trains the immune system and protects against infections. Changes in the RTM are linked to various respiratory diseases. High-throughput methodologies and compu...
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