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Change in prey genotype frequency rescues predator from extinction
Ruben Joseph Hermann1, Lutz Becks1
1Aquatic Ecology and Evolution Group, Limnological Institute University Konstanz, Konstanz, Germany.
Indirect evolutionary rescue (IER) occurs when one species evolves to save another from extinction. This study shows IER in predator-prey systems depends on prey evolution and initial frequencies, especially with high predator mortality.
Area of Science:
- Ecology
- Evolutionary Biology
- Theoretical Biology
Background:
- Indirect evolutionary rescue (IER) describes how one species' evolution can prevent another's extinction in a shared environment.
- Previous models suggested IER in predator-prey systems, where prey evolution rescues predators from extinction.
- The influence of environmental stressors like increased mortality and initial species frequencies on IER remains underexplored.
Purpose of the Study:
- To investigate how increased predator mortality and initial prey frequencies impact indirect evolutionary rescue.
- To determine the conditions under which prey evolution can facilitate predator survival in a changing environment.
Main Methods:
- Conducted model simulations of predator-prey dynamics.
- Performed experimental studies using rotifers feeding on algae.
- Analyzed the effects of varying predator mortality rates and initial prey type frequencies.
Main Results:
- Demonstrated indirect evolutionary rescue in predator-prey systems under increased predator mortality.
- Found that IER is contingent upon the prey's capacity for evolution and the initial frequency of defended prey.
- Observed that high initial frequencies of defended prey can lead to predator extinction, even with prey evolution, due to delayed shifts in prey composition.
Conclusions:
- Indirect evolutionary rescue is a frequency-dependent process influenced by predator mortality and prey evolution.
- Conservation strategies must consider the initial community structure and evolutionary potential to predict and manage species persistence.
- Understanding these dynamics is crucial for predicting ecological community responses to environmental change.
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