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◆ Nature microbiology2026-09-25

Systematic mapping of bacteriophage gene essentiality with HIDEN-SEQ.

Dorentina Humolli, Damien Piel, Jessica Ransome, Kathrin Bausch, Sarah Tschudin-Sutter, Monica Ortelli, Christoph Dehio, Jan-Willem Veening, Alexander Harms

原始摘要(英文原文)· Original abstract
The arms race of bacteriophages and their bacterial hosts has inspired major breakthroughs in biotechnology and shaped phages as fierce predators with great clinical potential to fight multidrug-resistant bacterial pathogens. However, the large amount of genes of unknown function in phage genomes remains a major obstacle for the molecular understanding of phage-host interactions. Here we present HIDEN-SEQ (hidden Acr-enabled transposon-insertion sequencing), a transposon-insertion sequencing method for phages that systematically links viral genes to selectable phenotypes. Using model phage T4, we show that HIDEN-SEQ readily reproduces the gene essentiality map established over decades of research. Our method is easily portable across diverse non-model phages and reveals conditionally essential genes in multiple bacterial hosts and growth conditions, including previously unknown antidefence factors that we matched to specific antiviral defences. We anticipate that HIDEN-SEQ will be leveraged to reveal functions of viral genes with direct relevance for microbial ecology, biotechnology and phage therapy.
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Systematic mapping of bacteriophage gene essentiality with HIDEN-SEQ. — 科研速览 Science Skim