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Updated: Apr 14, 2026

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Defensomes, counter-defensomes, and the remodeling of microbial communities
Vinicius S Kavagutti1, Angelina Beavogui1, Nicolas Wiart2
1Génomique Métabolique, Genoscope, Institut François Jacob, Commissariat à l'Énergie Atomique, CNRS, Université Evry, Université Paris-Saclay, 2 Rue Gaston Crémieux, Evry 91057, France.
Abstract:
Bacteria and mobile genetic elements (MGEs) have coevolved for billions of years in an enduring evolutionary arms race, leading to the emergence and diversification of a vast arsenal of defense and counter-defense systems. In the last recent years, high-throughput screening methods and genome-resolved metagenomics have markedly enhanced our understanding of the diversity and abundance of immune systems across cultured and uncultured microorganisms. This fueled subsequent interest in better understanding the dynamic tri-kingdom interplay between bacteria, bacteriophages, and eukaryotic cells, and led to renewed efforts to improve alternative antibacterial phage-based therapies. Here, we discuss the evolutionary and ecological dynamics underlying the bacteria-MGE arms race, recent findings on bacterial defensomes, MGE counter-defensomes, holodefensomes, and their key role in the development of microbiome-targeted therapies. To this end, we argue why and how highly conserved anti-MGE defense systems should be prioritized as promising targets for the development of next-generation bacterial inhibitors with broad biomedical relevance, supported by a comprehensive analysis of their distribution and diversity across bacteria.
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