
ABSTRACT Many plant species worldwide are dispersed by scatterhoarding granivores: animals that hide seeds in numerous, small caches for future consumption. Yet, the evolution of scatterhoarding is difficult to explain because undefended caches are at high risk of pilferage. Previous models have attempted to solve this problem by giving cache owners large advantages in cache recovery, by kin selection, or by introducing reciprocal pilferage of “shared” seed resources. However, the role of environmental variability has been so far overlooked in this context. One important form of such variability is masting, which is displayed by many plant species dispersed by scatterhoarders. We use a mathematical model to investigate the influence of masting on the evolution of scatter-hoarding. The model accounts for periodically varying annual seed fall, caching and pilfering behavior, and the demography of scatterhoarders. The parameter values are based mostly on research on European beech ( Fagus sylvatica ) and yellow-necked mice ( Apodemus flavicollis ). Starvation of scatterhoarders between mast years decreases the population density that enters masting events, which leads to reduced seed pilferage. Satiation of scatterhoarders during mast events lowers the reproductive cost of caching (i.e. the cost of caching for the future rather than using seeds for current reproduction). These reductions promote the evolution of scatter-hoarding behavior especially when interannual variation in seed fall and the period between masting events are large.
Evolutionary Biology, pilferage, Reproduction, Feeding Behavior, Hoarding, Biological Sciences, evolutionary stable strategies, Medical and Health Sciences, masting, scatter-hoarding, Mice, Seeds, synzoochory, Fagus, Animals, seed caching
Evolutionary Biology, pilferage, Reproduction, Feeding Behavior, Hoarding, Biological Sciences, evolutionary stable strategies, Medical and Health Sciences, masting, scatter-hoarding, Mice, Seeds, synzoochory, Fagus, Animals, seed caching
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