2021
DOI: 10.1111/1365-2435.13966
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Host–parasite dynamics shaped by temperature and genotype: Quantifying the role of underlying vital rates

Abstract: Global warming challenges the persistence of local populations, not only through heat‐induced stress, but also through indirect biotic changes. We study the interactive effects of temperature, competition and parasitism in the water flea Daphnia magna. We carried out a common garden experiment monitoring the dynamics of Daphnia populations along a temperature gradient. Halfway through the experiment, all populations became infected with the ectoparasite Amoebidium parasiticum, enabling us to study the interact… Show more

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Cited by 3 publications
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“…Although we are unable to elucidate which of these two hypotheses (dose versus parasite virulence) is more likely with our current data, these findings nevertheless suggest an important interactive effect of host resistance with temperature on outbreak timing and dynamics. Temperature‐by‐genotype interactions have been found in D. magna resistance to other parasites (Bruijning et al 2022, Santos and Ebert 2022) and in other host–parasite systems (Judelson and Michelmore 1992, Gsell et al 2013), indicating that changes in temperature may alter infection dynamics differently for different host genotypes.…”
Section: Discussionmentioning
confidence: 99%
“…Although we are unable to elucidate which of these two hypotheses (dose versus parasite virulence) is more likely with our current data, these findings nevertheless suggest an important interactive effect of host resistance with temperature on outbreak timing and dynamics. Temperature‐by‐genotype interactions have been found in D. magna resistance to other parasites (Bruijning et al 2022, Santos and Ebert 2022) and in other host–parasite systems (Judelson and Michelmore 1992, Gsell et al 2013), indicating that changes in temperature may alter infection dynamics differently for different host genotypes.…”
Section: Discussionmentioning
confidence: 99%