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Ran Tahan

@rantahan.bsky.social
78 followers 204 following 1 posts

PhD student @ Lindell Lab, Technion 🧬 Exploring cyanophage host take-over genes | Microbiology | Phages | Genetic Engineering | Infection Physiology

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Reposted by Ran Tahan
Maik Wolfram-Schauerte @maiktungsten.bsky.social · 18/08/2026
🦠 How do phages interact with their bacterial hosts... across infection phases and across diverse phage-host combinations? You can address such questions with the PhageExpressionAtlas now published. Please spread the word and provide your feedback as a user: academic.oup.com/nargab/artic...
academic.oup.com
The PhageExpressionAtlas reveals shared and unique transcriptional patterns across phage–host interactions
Abstract. Time-resolved transcriptomic profiling has been used to study phage–host interactions for more than a decade. However, the resulting datasets are
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Reposted by Ran Tahan
Tominaga K. (tomiken) @pacyc184.bsky.social · 18/08/2026
PhageExpressionAtlas reveals shared and unique transcriptional patterns across phage–host interactions | NAR Genomics and Bioinformatics | Oxford Academic
dx.doi.org
The PhageExpressionAtlas reveals shared and unique transcriptional patterns across phage–host interactions
Abstract. Time-resolved transcriptomic profiling has been used to study phage–host interactions for more than a decade. However, the resulting datasets are
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Reposted by Ran Tahan
Joshua Weitz @joshuasweitz.bsky.social · 15/07/2026
Bacteriophage continue to have so much to teach us. It's in our interest to understand how they work and impact human & environmental health. New joint work led by @mariandm.bsky.social & @rantahan.bsky.social inferring single-cell latent period & burst size heterogeneity from population dynamics.
science.org
Inferring single-cell heterogeneity of bacteriophage lysis-associated life-history traits from population-scale dynamics
Theory-guided experiments reveal single-cell heterogeneity of lysis-associated bacteriophage traits from population scale data.
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Reposted by Ran Tahan
PlantEvolution 🌱🌾 @plantevolution.bsky.social · 16/04/2026
1/8 🔥 New preprint dropped: Dynamic co-existence of bacteriophages and their hosts 🦠 in the Arabidopsis thaliana 🌱 phyllosphere Work led by the indomitable @sheilaroitman.bsky.social‬ #plantscience #microbiome #holobiont www.biorxiv.org/content/10.6...
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Reposted by Ran Tahan
BejaLabTechnion @bejalab.bsky.social · 04/01/2026
Phage-associated Cas12p nucleases require binding to bacterial thioredoxin for activation and cleavage of target DNA www.nature.com/articles/s41...
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Reposted by Ran Tahan
BejaLabTechnion @bejalab.bsky.social · 24/11/2025
Inferring single-cell heterogeneity of bacteriophage lysis-associated life-history traits from population-scale dynamics www.biorxiv.org/content/10.1...
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Reposted by Ran Tahan
BiologyTechnion @biologytechnion.bsky.social · 24/11/2025
A functional cyanophage thioredoxin increases competitive phage fitness www.biorxiv.org/content/10.1... @rantahan.bsky.social
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Reposted by Ran Tahan
BejaLabTechnion @bejalab.bsky.social · 12/11/2025
Viral NblA proteins negatively affect oceanic cyanobacterial photosynthesis www.nature.com/articles/s41... this project was led by @omernadel.bsky.social and is a joint work between the labs of @bejalab.bsky.social, Debbie Lindell and Oded Kleifeld from @biologytechnion.bsky.social
media.tenor.com
the sun is shining through the clouds in the sky above the ocean
ALT: the sun is shining through the clouds in the sky above the ocean
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Reposted by Ran Tahan
Tominaga K. (tomiken) @pacyc184.bsky.social · 07/10/2025
A functional cyanophage thioredoxin increases competitive phage fitness | bioRxiv www.biorxiv.org/content/10.1101/202…
biorxiv.org
A functional cyanophage thioredoxin increases competitive phage fitness
Thioredoxins are ubiquitous redox proteins that are found in all domains of life. These conserved proteins are also found in many phages, including marine cyanophages that infect the ecologically important marine cyanobacteria. However, their role in phage infection is not known. Cyanophages also carry many small genes lacking homology to known functional domains. Whether these have a functional role or not remains unknown. Here, we explore the distribution and role of a cyanophage thioredoxin (trxA), and that of a small gene directly downstream of it (g26), in phage infection. For this we used the T7-like cyanophage, Syn5, which infects an open-ocean marine Synechococcus strain, WH8109. We found that thioredoxin genes are common in phage genomes, including in cyanophages. The g26 gene, however, is restricted in it distribution to the cyanophages. The cyanophage thioredoxin is catalytically active and it increases phage DNA replication, progeny production and competitive fitness. It also negatively impacts host growth. The g26 gene product is translationally coupled to, and thus dependent on, translation of the thioredoxin gene. This gene itself significantly increases phage virulence and fitness, yet reduces burst size. Our findings demonstrate that cyanophage thioredoxins impact phage fitness and infection physiology and that small viral genes with no homology to known genes can play an important role in the infection process. These findings provide insights into the importance of unusual genes in phage genomes and show that they are likely to play an important role in the interactions between abundant cyanobacteria and cyanophages in ocean ecosystems. ### Competing Interest Statement The authors have declared no competing interest.
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