Phage predation, disease severity, and pathogen genetic diversity in cholera patients.

Madi, Naïma; Cato, Emilee T; Abu Sayeed, Md; Creasy-Marrazzo, Ashton; Cuénod, Aline; Islam, Kamrul; Khabir, Md Imam Ul; Bhuiyan, Md Taufiqur R et al. · Science · 2024

prospective_cohort · Level II

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Abstract

Despite an increasingly detailed picture of the molecular mechanisms of bacteriophage (phage)-bacterial interactions, we lack an understanding of how these interactions evolve and impact disease within patients. In this work, we report a year-long, nationwide study of diarrheal disease patients in Bangladesh. Among cholera patients, we quantified <i>Vibrio cholerae</i> (prey) and its virulent phages (predators) using metagenomics and quantitative polymerase chain reaction while accounting for antibiotic exposure using quantitative mass spectrometry. Virulent phage (ICP1) and antibiotics suppressed <i>V. cholerae</i> to varying degrees and were inversely associated with severe dehydration depending on resistance mechanisms. In the absence of antiphage defenses, predation was "effective," with a high predator:prey ratio that correlated with increased genetic diversity among the prey. In the presence of antiphage defenses, predation was "ineffective," with a lower predator:prey ratio that correlated with increased genetic diversity among the predators. Phage-bacteria coevolution within patients should therefore be considered in the deployment of phage-based therapies and diagnostics.

Medical subject headings