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Updated: Dec 26, 2025

Understanding the Impact of Temperate Bacteriophages on Their Lysogens Through Transcriptomics
Published on: January 5, 2024
Formation of phage lysis patterns and implications on co-propagation of phages and motile host bacteria
Xiaochu Li1,2, Floricel Gonzalez1, Nathaniel Esteves1
1Department of Biological Sciences, Virginia Polytechnic Institute and State University, Blacksburg, Virginia, United States of America.
Abstract:
Coexistence of bacteriophages, or phages, and their host bacteria plays an important role in maintaining the microbial communities. In natural environments with limited nutrients, motile bacteria can actively migrate towards locations of richer resources. Although phages are not motile themselves, they can infect motile bacterial hosts and spread in space via the hosts. Therefore, in a migrating microbial community coexistence of bacteria and phages implies their co-propagation in space. Here, we combine an experimental approach and mathematical modeling to explore how phages and their motile host bacteria coexist and co-propagate. When lytic phages encountered motile host bacteria in our experimental set up, a sector-shaped lysis zone formed. Our mathematical model indicates that local nutrient depletion and the resulting inhibition of proliferation and motility of bacteria and phages are the key to formation of the observed lysis pattern. The model further reveals the straight radial boundaries in the lysis pattern as a telltale sign for coexistence and co-propagation of bacteria and phages. Emergence of such a pattern, albeit insensitive to extrinsic factors, requires a balance between intrinsic biological properties of phages and bacteria, which likely results from coevolution of phages and bacteria.
Insights
Bacteriophages (phages) and motile bacteria co-propagate in space, forming distinct lysis patterns. Nutrient depletion and biological balances drive this coexistence, crucial for microbial community dynamics.
Area of Science:
- Microbiology
- Ecology
- Biophysics
Background:
- Bacteriophages (phages) and bacteria coexist in microbial communities.
- Motile bacteria migrate to nutrient-rich areas, influencing phage spatial spread.
- Understanding phage-bacteria co-propagation is key to microbial ecology.
Purpose of the Study:
- To investigate the spatial dynamics of phage-motile bacteria coexistence.
- To explore the mechanisms behind their co-propagation in resource-limited environments.
- To identify patterns indicative of bacterial and phage co-propagation.
Main Methods:
- Experimental approach using lytic phages and motile bacteria.
- Mathematical modeling to simulate spatial dynamics.
- Analysis of lysis zone patterns.
Main Results:
- Observed sector-shaped lysis zones when phages encountered motile bacteria.
- Mathematical model identified nutrient depletion and inhibited motility as key factors.
- Straight radial boundaries in lysis patterns signify co-propagation.
Conclusions:
- Phage-bacteria co-propagation results in distinct spatial patterns.
- Nutrient depletion and biological property balance are critical for this phenomenon.
- The observed patterns suggest coevolution between phages and their motile hosts.
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