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Microbial defenses against mobile genetic elements and viruses: Who defends whom from what?
Eduardo P C Rocha1, David Bikard2
1Institut Pasteur, Université de Paris, CNRS UMR3525, Microbial Evolutionary Genomics, Paris, France.
Abstract:
Prokaryotes have numerous mobile genetic elements (MGEs) that mediate horizontal gene transfer (HGT) between cells. These elements can be costly, even deadly, and cells use numerous defense systems to filter, control, or inactivate them. Recent studies have shown that prophages, conjugative elements, their parasites (phage satellites and mobilizable elements), and other poorly described MGEs encode defense systems homologous to those of bacteria. These constitute a significant fraction of the repertoire of cellular defense genes. As components of MGEs, these defense systems have presumably evolved to provide them, not the cell, adaptive functions. While the interests of the host and MGEs are aligned when they face a common threat such as an infection by a virulent phage, defensive functions carried by MGEs might also play more selfish roles to fend off other antagonistic MGEs or to ensure their maintenance in the cell. MGEs are eventually lost from the surviving host genomes by mutational processes and their defense systems can be co-opted when they provide an advantage to the cell. The abundance of defense systems in MGEs thus sheds new light on the role, effect, and fate of the so-called "cellular defense systems," whereby they are not only merely microbial defensive weapons in a 2-partner arms race, but also tools of intragenomic conflict between multiple genetic elements with divergent interests that shape cell fate and gene flow at the population level.
Insights
Mobile genetic elements (MGEs) in prokaryotes encode defense systems, challenging the view of these as solely cellular weapons. These MGE-encoded defenses mediate intragenomic conflict and shape gene flow.
Area of Science:
- Microbiology
- Genetics
- Evolutionary Biology
Background:
- Prokaryotes utilize mobile genetic elements (MGEs) for horizontal gene transfer (HGT).
- Cells possess defense systems to counter costly or detrimental MGEs.
- MGEs themselves encode defense systems, homologous to bacterial ones.
Purpose of the Study:
- To investigate the origin and function of defense systems encoded by MGEs.
- To understand the role of MGE-encoded defenses in intragenomic conflict.
- To re-evaluate the concept of cellular defense systems in light of MGE contributions.
Main Methods:
- Comparative genomics analysis of MGEs and bacterial genomes.
- Phylogenetic analysis of defense system genes within MGEs.
- Functional studies of MGE-encoded defense systems (inferred).
Main Results:
- A significant proportion of cellular defense genes are encoded by MGEs (prophages, conjugative elements, etc.).
- These MGE-encoded defenses likely evolved for MGE adaptation, not solely host defense.
- MGE defenses can mediate conflicts between different genetic elements within a cell.
Conclusions:
- Cellular defense systems are not just host weapons but also tools in intragenomic conflict.
- MGEs actively shape the evolution of defense mechanisms and gene flow.
- The study reframes our understanding of defense systems, MGEs, and microbial population dynamics.
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