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Samay Pande

@iamsamayp.bsky.social
186 followers 179 following 51 posts

Microbial ecology and evolution. Indian Institute of Science Bangalore. www.redqueenlab.com

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Reposted by Samay Pande
Paul Rainey @paulbrainey.bsky.social · 06/06/2026
I’ve started Academic Renewal, a Substack on research culture, scholarship and the pursuit of knowledge. The first post asks how private concerns about academic life might become an open conversation about incentives, assessment and responsibility. academicrenewal.substack.com/p/why-academ...
academicrenewal.substack.com
Why academic renewal?
From private concern to shared conversation
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Reposted by Samay Pande
PopBio on the Dark Side @pop-bio.bsky.social · 22/05/2026
Join us for the next PopBio seminar this Thursday 28 May! Samay Pande (Indian Institute of Science) @iamsamayp.bsky.social will present a talk titled "Microbial predation as a driver of antibiotic resistance in natural communities" Sign up link: forms.gle/2x8kmq44fpZb...
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Olaya Rendueles @olayarendueles.bsky.social · 15/01/2026
My team at @cbitoulouse.bsky.social is recruiting a postdoc #bioinformatics with solid experience in metagenomic analyses. Interest in evolution, ecology & MGEs is important. The offer stands until the perfect candidate is found, and it could be you 🫵 🔁 🙏 #microSky #phagesky #UTIsky @cnrs.fr
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Prakhar Jaiswal @prakharj.bsky.social · 07/01/2026
Happy to share our new paper in PLOS Biology journals.plos.org/plosbiology/... Showed that population bottlenecks don't uniformly drive “cooperation” but rather selectively shape which cooperative traits evolve #evolution #ecology #microbiology @vishuguttal.bsky.social @iamsamayp.bsky.social
journals.plos.org
Bottleneck size drives the evolution of cooperative traits in an aggregative multicellular myxobacterium
Population bottlenecks shape the evolution of cooperative traits in Myxococcus xanthus through life cycle trade-offs. This study shows that stringent bottlenecks favor growth and sporulation, while re...
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Christian Kost @kostchristian.bsky.social · 07/01/2026
Very cool paper by Jyotsna Kalathera et al. from @iamsamayp.bsky.social 's-lab on Bottleneck size drives the evolution of cooperative traits in an aggregative multicellular myxobacterium just out @plosbiology.org Congratulations to all coauthors. journals.plos.org/plosbiology/...
journals.plos.org
Bottleneck size drives the evolution of cooperative traits in an aggregative multicellular myxobacterium
Population bottlenecks shape the evolution of cooperative traits in Myxococcus xanthus through life cycle trade-offs. This study shows that stringent bottlenecks favor growth and sporulation, while re...
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
Thank you so much Christian!
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
n/n Because bottlenecks occur in many complex life cycles (from microbes to multicellular development) these results can have broad implications for understanding evolution beyond bacteria.
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
11/n When multiple cooperative traits are under selection, bottleneck size determines which traits persist, which fade, and how life histories evolve, not just whether cooperation survives.
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
10/n Thus, being efficient at only one trait (for example) sporulation alone isn’t enough. Fitness depends on how selection acts across multiple cooperative traits, and bottlenecks reshape that selection.
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
9/n Whole-genome sequencing linked trait evolution to mutations in key regulators, including a σ54-interacting protein and a DNA-binding response regulator. Different bottleneck sizes led to distinct molecular paths.
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
8/n To understand these patterns, Prakhar developed a population. It shows how bottleneck size, random fluctuations, and clonal interference shape the evolution of cooperative traits.
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
7/n Mechanistically, stringent bottlenecks remove cells that fail to sporulate before transfer. Sporulation becomes essential, while other traits experience weaker selection, limiting improvements in overall fitness.
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
6/n Looking at lifecycle-level fitness, only populations evolved under relaxed bottlenecks became fitter than the ancestor. Stringent bottlenecks improved some traits, but not enough to increase overall fitness.
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
5/n Relaxed bottlenecks produced the opposite pattern: predation and germination improved, while sporulation and growth declined. These results reveal strong trade-offs between cooperative traits.
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
4/n Under stringent bottlenecks, only sporulation and growth got better. Surprisingly, predation and germination declined, showing that bottlenecks don’t universally maintain cooperation
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
3/n We evolved M. xanthus through full life cycles under repeated stringent or relaxed bottlenecks while tracking four cooperative traits at once. This lets us see how cooperation evolves when multiple traits are under selection together.
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
2/n Led by Jyotsna, with help from Vishwa, Neha, and Prakhar, we show how population bottleneck size shapes the evolution of multiple cooperative traits in Myxococcus xanthus. Big thanks to Vishu Guttal and Sandeep Krishna for helping make this study possible.
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Samay Pande @iamsamayp.bsky.social · 08/01/2026
1/n New paper alert! Bottlenecks are common in life cycles, but how do they shape the evolution of multiple cooperative traits at once? We tested this in M. xanthus under stringent vs relaxed bottlenecks.
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PLOS Biology @plosbiology.org · 08/01/2026
Population bottlenecks shape the evolution of #cooperative traits in #Myxococcus via #LifeCycle trade-offs. @iamsamayp.bsky.social &co show that stringent bottlenecks favor growth & sporulation, while relaxed bottlenecks favor predation & germination @plosbiology.org 🧪 plos.io/3N1nia7
Outline of the life cycle experimental evolution of M. xanthus with either 1% (stringent) or 15% (relaxed) population bottlenecks. Four different colonies of M. xanthus (GV1) were used to establish four parallel evolving lines. One generation of the complex life cycle with multiple social traits involved the growth of M. xanthus populations in nutrient-rich CTT liquid (with gentamycin) medium till O.D. 600 nm reached 0.3–0.4. These cultures were then spotted on starvation TPM hard agar (1.5% agar) plate for sporulation and fruiting body development. Next, only the spores (and not vegetative cells that failed to sporulate) were harvested by first incubating the M. xanthus populations at 50°C, after which they were transferred onto TPM hard agar (supplemented with 0.025% glucose) beds overlaid with Escherichia coli lawns in flasks for germination and predation. After incubation for 4 days on E. coli lawns, populations were harvested by adding 4 mL TPM buffer, shaking at 200 rpm, and either (0.04 mL) 1%, or (0.6 mL) 15% of harvested populations were transferred to fresh CTT liquid media with gentamycin (M. xanthus is naturally resistant to gentamycin whereas E. coli is sensitive to it). This selection regimen was repeated for 10 cycles.
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Reposted by Samay Pande
PLOS Biology @plosbiology.org · 08/01/2026
Population bottlenecks shape the evolution of #cooperative traits in #Myxococcus via #LifeCycle trade-offs. @iamsamayp.bsky.social &co show that stringent bottlenecks favor growth & sporulation, while relaxed bottlenecks favor predation & germination @plosbiology.org 🧪 plos.io/3N1nia7
Outline of the life cycle experimental evolution of M. xanthus with either 1% (stringent) or 15% (relaxed) population bottlenecks. Four different colonies of M. xanthus (GV1) were used to establish four parallel evolving lines. One generation of the complex life cycle with multiple social traits involved the growth of M. xanthus populations in nutrient-rich CTT liquid (with gentamycin) medium till O.D. 600 nm reached 0.3–0.4. These cultures were then spotted on starvation TPM hard agar (1.5% agar) plate for sporulation and fruiting body development. Next, only the spores (and not vegetative cells that failed to sporulate) were harvested by first incubating the M. xanthus populations at 50°C, after which they were transferred onto TPM hard agar (supplemented with 0.025% glucose) beds overlaid with Escherichia coli lawns in flasks for germination and predation. After incubation for 4 days on E. coli lawns, populations were harvested by adding 4 mL TPM buffer, shaking at 200 rpm, and either (0.04 mL) 1%, or (0.6 mL) 15% of harvested populations were transferred to fresh CTT liquid media with gentamycin (M. xanthus is naturally resistant to gentamycin whereas E. coli is sensitive to it). This selection regimen was repeated for 10 cycles.
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Martin Thanbichler @thanbichlerlab.bsky.social · 02/11/2025
📢 Postdoc position: Cell Biology of Cyanobacteria in my group, as part of the Excellence Cluster "Microbes for Climate" (M4C) in Marburg, Germany. More information at shorturl.at/wNnDT (see Project 2) 🔗Apply at shorturl.at/VsEDl 📅Deadline: Nov 16, 2025 Please repost. #Postdoc
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Craig MacLean @craigmaclean.bsky.social · 27/10/2025
New pre-print: Plasmid dependent phage effectively eliminate AMR bacteria and block plasmid transmission in the chicken gut microbiome Fun collaboration with Tao He lab (JAAS) and @brockhurstlab.bsky.social lab (Manchester) #phagesky#microsky www.biorxiv.org/content/10.1...
biorxiv.org
Plasmid dependent phage eliminate pathogenic bacteria and antibiotic resistance plasmids from the chicken gut microbiome
Conjugative plasmids are a key reservoir of antimicrobial resistance (AMR) in commensal and pathogenic bacteria within the gut microbiome. Plasmid-dependent phage (PDPs) are a promising therapeutic op...
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Ákos T Kovács @evolvedbiofilm.bsky.social · 28/10/2025
Learn how Bacillus siderophore benefit various plant species and the role of the biofilm matrix: our collaboration with Zhihui Xu's group published in @cp-cellreports.bsky.social Siderophore-mediated iron enrichment in the biofilm matrix enhances plant iron nutrition www.cell.com/cell-reports...
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Paul Rainey @paulbrainey.bsky.social · 28/10/2025
Who would have thought: nitrogen-fixing vibrios 😱 that interact with Pokkali rice roots and promote plant growth in brackish water. Amazing! Wonderful to see this detailed and careful investigation out for all to oogle. Many congratulations Ramesh 🎉 journals.asm.org/doi/10.1128/...
journals.asm.org
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PLOS Biology @plosbiology.org · 23/10/2025
Intrinsic resistance pathways & #ResistanceBreaking. Study shows that inhibiting efflux pumps & cell envelope biogenesis sensitizes #bacteria to #antibiotics, but rapid evolutionary recovery may limit long-term effectiveness of resistance-breaking strategies #AMR @plosbiology.org 🧪 plos.io/4huAtvo
Genome-wide screen to identify Escherichia coli gene knockouts hypersensitive to trimethoprim and chloramphenicol. Top left: Schematic showing the screening strategy for identifying hypersensitive gene knockouts from the Keio mutant library. All mutants were cultured in LB and LB supplemented with trimethoprim (TMP) and chloramphenicol (CMP) at their respective IC50s. Top right: Distribution of drug-susceptibilities of Keio mutants grown in indicated growth media obtained after normalizing the growth of each mutant to wild type (set to 1). Mean ± S.D. derived after fitting each distribution to a Gaussian function are shown. Bottom left: Analysis of gene functional categories for hypersensitive mutants compared with the frequency of genes in each category encoded by E. coli K-12 MG1655. Percentage of the total in each case is provided above each bar. Bottom right: Comparison of hypersensitive mutants identified in the trimethoprim and chloramphenicol screens shown as a Venn diagram. Representative genes from each set are named and gene names are colored by functional categories.
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Simona Huwiler @simonahuwiler.bsky.social · 23/10/2025
Multiple small, curved, predatory bacteria (Bdellovibrio bacteriovorus) lyse the bacterial prey remnants below. How are they doing this & which predator proteins are involved in this process? See our newly released research article 📑 => rdcu.be/eL6gu 🦠 #microsky #bacteria #PredatoryBacteria
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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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Ákos T Kovács @evolvedbiofilm.bsky.social · 21/10/2025
Evolution of One Species Increases Resistance to Invasion in a Simple Synthetic Community Microbial Ecology link.springer.com/article/10.1...
link.springer.com
Evolution of One Species Increases Resistance to Invasion in a Simple Synthetic Community - Microbial Ecology
The species that make up a microbial community determine its potential function. A major goal of microbial ecology is to make assemblages of microbes — synthetic communities — with targeted applicatio...
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Timothy Fuqua 🏳️‍🌈 @timothyfuqua.bsky.social · 21/10/2025
A fun little side project I've been working on with @stepadenisov.bsky.social , Mato Lagator, and Andreas Wagner: "Strong promoters are mutationally robust". Briefly... www.biorxiv.org/content/10.1...
biorxiv.org
Strong promoters are mutationally robust
Mutational robustness is the persistence of a phenotype upon mutation. It facilitates molecular evolution and has been characterized in a variety of biological systems, but studies of prokaryotic prom...
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Christian Kost @kostchristian.bsky.social · 15/10/2025
#microsky #mevosky @spp2389.bsky.social A PhD position is available in my lab to work on: Emergence and self-organisation of bacterial metabolism in consortia of cross-feeding bacteria. Please RT Deadline: 12.11.25 More infos 👇 shorturl.at/rAKAT
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Samay Pande @iamsamayp.bsky.social · 03/09/2025
Big thanks to Rekha (lead), an absolute rockstar who drove the project, and Jyotsna for pushing this work forward! Also grateful to our collaborator Prof. Siva Umapathy for the Raman spectroscopy expertise.
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Samay Pande @iamsamayp.bsky.social · 03/09/2025
This is one of the first demonstrations linking biochemical markers of spores to their germination efficiency, using a non-invasive, label-free approach.
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Samay Pande @iamsamayp.bsky.social · 03/09/2025
Most excitingly, these Raman spectral features of mature spores correlated strongly with germination efficiency across natural soil isolates of M. xanthus. Meaning: Raman spectra can serve as predictive markers of germination success.
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Samay Pande @iamsamayp.bsky.social · 03/09/2025
We found that: 1. Lipid and protein signatures shift dynamically during sporulation 2. Carotenoids accumulate in spores (stress protection!) 3. Nucleic acid signatures become compacted
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Samay Pande @iamsamayp.bsky.social · 03/09/2025
Using single-cell Raman spectroscopy, we tracked key biochemical changes (lipids, proteins, nucleic acids, carotenoids) as M. xanthus transitioned from vegetative cells into spores.
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Samay Pande @iamsamayp.bsky.social · 03/09/2025
Dormancy is one of the most widespread microbial survival strategies — from spores to persisters to VBNCs. But how do we predict which spores will successfully germinate and “wake up” again?
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Samay Pande @iamsamayp.bsky.social · 03/09/2025
New paper out in @pubs.acs.org Analytical Chemistry! We show that Raman spectroscopy can identify biochemical signatures of spores in Myxococcus xanthus, and that these signatures can predict germination efficiency across natural isolates. pubs.acs.org/doi/10.1021/...
pubs.acs.org
Raman Spectral Predictors of Spore Germination Efficiency in Natural Isolates of Myxococcus xanthus
Due to the prevalence and importance of dormant microbial forms in regulating microbial ecosystems, the generation of dormant structures, like spores, has been extensively studied. However, several aspects of the exit of bacterial spores from dormancy, i.e., the germination of spores, remain relatively unclear. Since the biology of cells before transitioning into spores and the biology of the spores themselves could potentially influence the germination process, we used Myxococcus xanthus as a model organism to demonstrate that Raman spectroscopy can be used to characterize the factors that affect the ability of individual cells and spores to sporulate and germinate, respectively. M. xanthus is a Gram-negative soil bacterium that forms spore-filled multicellular fruiting bodies upon starvation. Single-cell Raman spectral profiling revealed lower Raman peak intensities of nucleic acids as a marker for the beginning of sporulation. Moreover, Raman profiles of sporulating cells of M. xanthus demonstrated that the lipid peaks increased during the initial sporulation phase before decreasing during the late sporulation phase. We also observed higher carotenoid peaks in spores than in cells, which might explain the reason for spores being more tolerant to oxidative stress than the cells. Significantly, the trends in Raman bands of nucleic acids and proteins observed in the lab strain were also observed in the natural isolates. Furthermore, partial least squares regression (PLSR) analysis of peak intensities of the most significantly affected chemical groups demonstrated a strong correlation between Raman spectra and germination efficiencies of spores, suggesting that such spectral markers are potential indicators of the germination efficiency of the spore population.
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Samay Pande @iamsamayp.bsky.social · 11/08/2025
Not many positions offer this rare combination: exciting research questions, a highly supportive work atmosphere, and an exceptional mentor @KostChristian . If you’re in theoretical biology and want to collaborate closely with experimentalists, this is it!
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Samay Pande @iamsamayp.bsky.social · 13/06/2025
Congrats Glen. This sounds interesting. Look forward to reading it.
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Glen Dsouza @nonresidentdesi.bsky.social · 13/06/2025
Thrilled to share our new paper in @science.org describing our discovery that bacteria can switch from competitors to bonafide predators when resources run dry—arming nanoscale “spears” (T6SS) to stab & consume neighbours. www.science.org/doi/10.1126/... #MicroSKy #Microbiology
science.org
Antagonism as a foraging strategy in microbial communities
In natural habitats, nutrient availability limits bacterial growth. We discovered that bacteria can overcome this limitation by acquiring nutrients by lysing neighboring cells through contact-dependen...
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Samay Pande @iamsamayp.bsky.social · 04/06/2025
Big kudos to @sahelis.bsky.social , Sneha, and @vaibhav-sharma.bsky.social ! Stay tuned for more stories on how microbial predation affects the evolution of resistance in pristine environments.
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Samay Pande @iamsamayp.bsky.social · 04/06/2025
Thus, microbial interactions in pristine environments can influence the evolvability of pathogens long before clinical antibiotic exposure.
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Samay Pande @iamsamayp.bsky.social · 04/06/2025
These findings are important because: Resistance traits arising under biotic stress may be less constrained, and potentially more evolutionarily potent, than those shaped in antibiotic-only settings.
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Samay Pande @iamsamayp.bsky.social · 04/06/2025
Our work demonstrates that coevolutionary history with a predator influences not only present-day survival but also the trajectory, speed, and cost of future adaptations, such as antibiotic resistance.
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Samay Pande @iamsamayp.bsky.social · 04/06/2025
While abiotic influences on evolvability have been widely studied, the historical contingencies of antagonisms, such as microbial predation, remain underexplored.
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Samay Pande @iamsamayp.bsky.social · 04/06/2025
Anti-predatory adaptations in E. coli were retained even after propagation in predator-free environments. These historical imprints persist and affect future evolutionary responses.
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Samay Pande @iamsamayp.bsky.social · 04/06/2025
And yet, if resistance does evolve in predator-adapted prey, it comes at a lower fitness cost than in other backgrounds. This means such resistance may spread faster in microbial populations.
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Samay Pande @iamsamayp.bsky.social · 04/06/2025
Key finding: Predation history restricts the evolution of high-level antibiotic resistance in prey bacteria, compared to those evolved only under abiotic conditions or wild-type controls.
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Samay Pande @iamsamayp.bsky.social · 04/06/2025
We show that E. coli strains previously exposed to M. xanthus showed altered survivability when challenged with increasing concentrations of antibiotics.
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Samay Pande @iamsamayp.bsky.social · 04/06/2025
New paper alert! We show that adaptation to the bacterial predator Myxococcus xanthus shapes how prey bacteria like E. coli evolve antibiotic resistance. Now online at NPJ Antimicrobials and Resistance !! www.nature.com/articles/s44...
nature.com
Coevolutionary history of predation constrains the evolvability of antibiotic resistance in prey bacteria - npj Antimicrobials and Resistance
npj Antimicrobials and Resistance - Coevolutionary history of predation constrains the evolvability of antibiotic resistance in prey bacteria
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