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Published on: May 13, 2015
The effects of multiple infections on the expression and evolution of virulence in a Daphnia-endoparasite system
Frida Ben-Ami1,2, Laurence Mouton1,3, Dieter Ebert1
1Zoologisches Institut, Evolutionsbiologie, Universität Basel, Vesalgasse 1, CH-4051 Basel, Switzerland.
Abstract:
Multiple infections of a host by different strains of the same microparasite are common in nature. Although numerous models have been developed in an attempt to predict the evolutionary effects of intrahost competition, tests of the assumptions of these models are rare and the outcome is diverse. In the present study we examined the outcome of mixed-isolate infections in individual hosts, using a single clone of the waterflea Daphnia magna and three isolates of its semelparous endoparasite Pasteuria ramosa. We exposed individual Daphnia to single- and mixed-isolate infection treatments, both simultaneously and sequentially. Virulence was assessed by monitoring host mortality and fecundity, and parasite spore production was used as a measure of parasite fitness. Consistent with most assumptions, in multiply infected hosts we found that the virulence of mixed infections resembled that of the more virulent competitor, both in simultaneous multiple infections and in sequential multiple infections in which the virulent isolate was first to infect. The more virulent competitor also produced the vast majority of transmission stages. Only when the less virulent isolate was first to infect, the intrahost contest resembled scramble competition, whereby both isolates suffered by producing fewer transmission stages. Surprisingly, mixed-isolate infections resulted in lower fecundity-costs for the hosts, suggesting that parasite competition comes with an advantage for the host relative to single infections. Finally, spore production correlated positively with time-to-host-death. Thus, early-killing of more competitive isolates produces less transmission stages than less virulent, inferior isolates. Our results are consistent with the idea that less virulent parasite lines may be replaced by more virulent strains under conditions with high rates of multiple infections.
Insights
Mixed parasite infections in hosts often favor the more virulent strain, impacting host mortality and parasite reproduction. Surprisingly, host fecundity costs were lower in mixed infections, suggesting a potential host benefit from parasite competition.
Area of Science:
- Evolutionary biology
- Parasitology
- Ecology
Background:
- Multiple infections by microparasite strains are common in nature.
- Models predict evolutionary effects of intrahost competition, but empirical tests are scarce.
Purpose of the Study:
- To investigate the outcome of mixed-isolate infections in individual hosts.
- To assess the impact of intrahost competition on parasite virulence and fitness.
Main Methods:
- Used Daphnia magna and three Pasteuria ramosa isolates for single and mixed infections (simultaneous and sequential).
- Monitored host mortality and fecundity for virulence assessment.
- Measured parasite spore production as a proxy for parasite fitness.
Main Results:
- Mixed infections generally mirrored the virulence of the more virulent parasite strain.
- The dominant parasite strain produced most transmission stages, except when the less virulent strain infected first.
- Mixed infections led to reduced host fecundity costs compared to single infections.
Conclusions:
- Parasite competition can benefit hosts by reducing negative impacts on fecundity.
- More virulent parasite strains may outcompete less virulent ones in multiply infected hosts.
- Virulence and parasite fitness are linked to the timing and nature of intrahost competition.
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