Ricardo León-Sampedro

@rleonsampedro.bsky.social

| Microbial ecology & evolution | Plasmids, genetic invasion, and antimicrobial resistance | IPLA-CSIC | RicardoLeonSampedro.com

Our new paper is out today! How is social information used in sequential decision-making? We did a virtual evacuation experiment with participants chosing between two options, standing in a line. We found that they followed the majority of previous decisions, rather than most recent ones.

Determining social mechanisms for sequential decision-making in a virtual pedestrian route choice experiment

Abstract. Moving groups are routinely faced with a choice of different routes as part of their daily lives, such as choosing between exits from a building.

royalsocietypublishing.org

Our preprint on using waxmoth larvae as a model for in vivo evolution experiments studying the microbiome is out! We'll write a bsky thread soon once we update the figures with new data, and early feedback is appreciated!

bioRxiv Microbiology@biorxiv-microbiol.bsky.social · last mo.

A humanized Galleria mellonella model reveals prophage-mediated breakdown of colonization resistance against Salmonella https://www.biorxiv.org/content/10.64898/2026.06.24.734175v1

"Tell me who your friends are, and I’ll tell you who you are." It turns out, microbes follow the same rule! Very proud to share our lab's new paper in @natmicrobiol.nature.com showing that bacteria don't just respond to their environment, they respond to each other. www.nature.com/articles/s41...

Community context reshapes microbial proteomes and reduces functional overlap - Nature Microbiology

Biotic interactions modulate protein abundance, reducing functional redundancy and increasing productivity in complex bacterial communities.

nature.com

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...

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.

doi.org

🚨 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!👇👇

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

biorxiv.org

Ignacio (Nacho) de Quinto@nachodequinto.bsky.social · 3mo ago

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!🧵👇

Really happy to see this out! Great work led by @mboum.bsky.social A nice example of how microbiome-specific ecological constraints can shape E. coli growth www.pnas.org/doi/10.1073/... @pnas.org

Mathilde Boumasmoud@mboum.bsky.social · 3mo ago

New paper out in @pnas.org 🎆! Across healthy humans, the same bacterium encounters markedly different gut microbiomes. How does this shape the ecological interactions it experiences? We explored this focusing on commensal E. coli.
 www.pnas.org/doi/10.1073/... Image: @illuzation.bsky.social

Artistic representation of variation in the human gut microbiome. Four silhouettes contain colorful bubbles and abstract shapes, representing individualized community compositions.

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👇

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 ...

rdcu.be

How does population density affect evolutionary trajectory? Microbes construct their own niche which in turn reshapes their evolution. Preprint drop from grad student @noahhoupt.bsky.social whose evolution experiments featured blue/white colonies, 1000 generations, a lab move, and much more!

Noah Houpt@noahhoupt.bsky.social · 7mo ago

Interested in eco-evolutionary feedbacks? Microbial experimental evolution? Pleiotropy? Filamentous phages?? Check out our latest preprint, now up on BioRxiv! biorxiv.org/content/10.6... For a quick summary, peep the thread below...🧵 (1/10)

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.
Paula Ramiro-Martínez@paularamiro.bsky.social · 6mo ago

New paper out in PNAS!!! 🎉 Do more plasmid copies mean faster evolution? 🧵 Dive into the story www.pnas.org/doi/10.1073/...