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Updated: Jan 18, 2026

Predicting the Effectiveness of Population Replacement Strategy Using Mathematical Modeling
Published on: July 4, 2007
Cheats can boost the success of an invading population
Luke Lear1, Angus Buckling1, Elze Hesse1
1University of Exeter - Penryn Campus , PenrynTR10 9FE, UK.
Abstract:
Successful biological invasions are dependent on the invader being able to grow and reproduce in the new environment. One way that microbial invaders may facilitate this is to use cooperative public goods, such as metal-detoxifying siderophores. However, siderophore production can be exploited by non-producing cheats that benefit from production without paying any associated costs. Here, we test the importance of cooperation for the success of Pseudomonas aeruginosa invading a 5-species microbial community. We do this by comparing the success of a siderophore-producing strain, a siderophore-deficient mutant strain and a 50 : 50 mixed population, both in environments with weak (copper-absent) and strong (copper-rich) siderophore requirement. We found no effect of invader type on success when siderophores were less essential for growth, but large differences when they were selectively favoured. Here, the producer-cheat mix had the greatest success, with both strains having near-equal fitness and reaching high densities, while in isolation producers had intermediate success and cheats the lowest. Similarly, resident diversity only differed across invader treatments in the copper-rich environment. In conclusion, we show that the presence of cheats can provide a larger benefit for invasion success than pure cooperator populations, but only when public goods are particularly beneficial.
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