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Esther

@estherrubioport.bsky.social
29 followers 96 following 2 posts
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Esther @estherrubioport.bsky.social · 21/07/2026
Happy to share our new paper: Shifts in microbial communities driven by the replacement of seagrasses by benthic macroalgae may exacerbate heatwave effects in eutrophicated coastal lagoons | mSystems journals.asm.org/doi/10.1128/...
journals.asm.org
Shifts in microbial communities driven by the replacement of seagrasses by benthic macroalgae may exacerbate heatwave effects in eutrophicated coastal lagoons | mSystems
Coastal lagoons are among the ecosystems most vulnerable to thermal anomalies; however, the responses of sediment-associated microbial communities remain poorly understood. Here, we assess the impact ...
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Esther @estherrubioport.bsky.social · 15/04/2026
Effects of marine heatwaves on the dynamics of marine coastal microbial communities | Environmental Microbiome | Springer Nature Link share.google/fyDhfj1v2K2a...
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Effects of marine heatwaves on the dynamics of marine coastal microbial communities - Environmental Microbiome
Background Climate change is projected to intensify and prolong marine heatwaves, characterized by abnormally high sea surface temperatures. These events can profoundly alter ecosystem composition and functioning, sometimes triggering mass mortality events. The Mediterranean Sea, due to its semi-enclosed nature, is particularly susceptible to warming, with future climate scenarios predicting a temperature increase of up to 3.8 °C and at least one persistent heatwave annually by 2100. Despite this vulnerability, the effects of marine heatwaves on seawater microbial and viral communities remain poorly understood. Results Using microcosm experiments, we examined microbial and viral dynamics under control conditions (20 °C) and two simulated marine heatwaves (MHWs) (23 °C and 25 °C). By the end of the experiment, microbial assemblages in all three conditions were dominated by metagenome-assembled genomes (MAGs) that were not detected in the initial natural sample, indicating the competitive success of rare biosphere taxa over initially abundant species. Virulence factors and antibiotic resistance genes increased in relative abundance throughout the incubation, but such increase was amplified under warming conditions. Temperature also shaped viral strategies, with heatwaves showing a higher percentage of integrated lysogenic viruses compared to control samples. This trend was consistent with observations from natural samples, where lysogenic viruses peaked during warmer months. Conclusions The shift toward lysogeny observed under elevated temperatures may enhance horizontal gene transfer, accelerating the spread of virulence and antibiotic resistance genes. In fact, we observed an increased abundance of these genes in samples under heat stress. These processes could weaken ecosystem resilience, disrupt microbial-driven biogeochemical cycles, and amplify risks to marine and human health. Our study underscores the need to integrate microbial and viral responses into predictions of ocean functioning in a rapidly warming world.
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Reposted by Esther
Rodrigo Sánchez Martínez @rodrisanchez95.bsky.social · 09/02/2026
Double Marie Curie win! My lab and life partner, @alopezm.bsky.social, and I have both been awarded MSCA Fellowships with @baerboletta.bsky.social. Exciting times ahead! 🚀
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Reposted by Esther
Cristian Villena Alemany @cristian-vi-al.bsky.social · 23/04/2025
Transcript-based libraries and BChla concentration indicated that AAP bacteria prefered particle-attached lifestyle and their phototrophy varied between lifestyles and seasons. Traditional DNA assessments may misrepresent photoheterotrophic capacities in the sea. www.biorxiv.org/content/10.1...
biorxiv.org
Particle attachment drives seasonal abundance and photoheterotrophy of marine aerobic anoxygenic phototrophs
Background: Aerobic Anoxygenic Phototrophic (AAP) bacteria are an essential component of aquatic microbial communities and play an important role in carbon cycling due to their ability to supplement t...
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Reposted by Esther
Asunción de los Rios @asundelosriosbsky.bsky.social · 11/09/2025
Happy to share our upcoming paper on pioneer microbial communities, including viruses, establishing after glacier retreat, result of a great collaboration @ua.es @mncn-csic.bsky.social @univgirona.bsky.social @pepa-anton.bsky.social @estherrubioport.bsky.social academic.oup.com/ismecommun/a...
academic.oup.com
Short-term virus-host interactions and functional dynamics in recently deglaciated Antarctic tundra soils
Abstract. Long-term chronosequence studies have shown that, as glaciers retreat, newly exposed soils become colonized through primary succession. To determ
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Reposted by Esther
Emil Ruff @emilruff.bsky.social · 24/06/2025
For ANME enthusiasts & for those who wonder how a methanogen turns into a methanotroph 👇New work by Orphanlab Identification of key steps in the evolution of anaerobic methanotrophy in Candidatus Methanovorans (ANME-3) archaea www.science.org/doi/10.1126/... @caltech.edu @mblscience.bsky.social
science.org
Identification of key steps in the evolution of anaerobic methanotrophy in Candidatus Methanovorans (ANME-3) archaea
Modification of core carbon and energy metabolism aided a recent evolution of anaerobic methanotrophy in archaea.
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